On the use of Deming and quadratic calibrations in analytical chemistry

Size: px
Start display at page:

Download "On the use of Deming and quadratic calibrations in analytical chemistry"

Transcription

1 On the use of Deming and quadratic calibrations in analytical chemistry Henry Foden Rand Water October PO Box 3526, Vereeniging, 1930, Republic of South Africa Phone: Fax:

2 Introduction The objective of this presentation is to introduce the audience to instrumental calibration techniques which are less familiar than the traditional linear calibration techniques normally used in analytical chemistry. These include 1) The Deming regression. 2) The quadratic regression. Purpose The calibration (regression) techniques already mentioned carry advantages associated with their use which are not available from those associated with linear regression methods.

3 Challenges Modern high volume production laboratories face many challenges. These include technical, quality control (QC), and production (sample load) issues. Consequently, analysts are faced with ever increasing demands for faster analytical turnaround times, increasingly strict quality control measures, lower detection limits, greater numbers of samples for analysis and more analytes per sample than was previously the case.

4 Given that any laboratory has only a given quantity of resources in terms of available finances, laboratory staff, analytical instrumentation and ancillary equipment; it becomes obvious that methodologies for reducing the overall workload which are acceptable from a technical and QC point of view, become targets for investigation. On the purely technical side of chemical analysis, stricter demands on QC practices by governmental and other statutory bodies occasionally require innovative solutions to satisfy their requirements.

5 Objectives The purpose of this presentation is to give an overview of two of the potential solutions to the issues mentioned above, both of which use regression methods which differ from the classical linear calibration techniques commonly used in analytical chemistry.

6 1 - The Deming regression This takes the point of view that unlike a least linear curves approximation to a linear calibration, where all uncertainty is attributed to that which is contained in the ordinate (i.e. the Y axis of a graph normally containing the raw instrument response), that a portion of the uncertainty is also present in the abscissa (i.e. the X axis of the graph normally containing the concentration of standards used for instrument calibration). This relationship has found realistic application in these laboratories for the calibration of microsyringes used for sample and reagent dispensing in discrete analysers and graphite furnace atomic absorption spectrometers for the definitive calibration of microsyringes, such as those having capacities of 100 µl or less.

7 The calibration of micropipettes Many modern analytical instruments utilise microsyringes for dispensing known volumes of sample as well as for the autodilution of a high level standard to produce calibration standards. Examples include discrete analysers, graphite furnace atomic absorption spectrometers and chromatographic instruments. Using traditional gravimetric methods for the determination of the accuracy of microsyringes is sometimes impractical due to the small volumes of liquid involved as well as the possibility that they are built into the instrument and are not readily removable by an analyst. In addition, the syringes have to normally have to be removed from the instrument and may not have a convenient hypodermic syringe adaptor.

8 Practical determination - 1 In order to determine the accuracy of the microsyringe of a graphite furnace atomic absorption spectrometer (GFAA) autosampler, the technique outlined below was performed utilising the element selenium as the test analyte. The instrument was a Thermofisher ice 3000 series GFAA. The instrument was calibrated from 0-50 µg/l as normal using the autodiluter to produce the standards from the master standard, which had a concentration of 50 µg/l. A second set of standards of the same concentrations as the calibration standards was then analysed. These standards however were manually prepared and then ran as analytical unknowns. They were prepared from the same stock solution as the autodiluter calibration standard to minimise the number of experimental variables.

9 Practical determination - 2 The absorbance data for the two sets of calibration data were then analysed using the Deming model II linear regression. As both data sets were obtained via the same method, they were assumed to possess equal uncertainties. The commercially available statistical package GraphPad Prism 4 was used to perform the Deming regression. In table 1 below, the output absorbance of the autopipetted and the manually prepared standards as a function of concentration are shown. The output data from Graphpad was then pasted into EXCEL, and t and F tests performed.

10 Table 1. Absorption values for manual and autosampler prepared standards Se concentration µg/l Manual standard absorption values Microsyringe standard absorption values

11 Table 2 - t-test: Two-Sample Assuming Equal Variances Microsyringe Manual Mean t Stat P(T<=t) one-tail t Critical one-tail

12 Table 3 - F-Test: Microsyringe Manual Mean F P(F<=f) one-tail F Critical one-tail

13 Statistical summary of results for microsyringe calibration As no statistically significant differences are shown between the results of the t and of the F tests for the two different calibration methods, it is therefore proven that the microsyringe is accurate. It should be noted that the Deming regression allows for the input of the standard deviation of replicate samples, thus also making it a powerful tool for the comparison of different methods for the analysis of the same analyte. In this case, this was unnecessary as the analytical method (and specific instrument) was the same for both sets of data obtained. Both sets of data were obtained from the same analytical run.

14 2 - The Quadratic calibration It has long been the practice in analytical chemistry and chemometrics courses for instrumental methods of analysis, to present topics related to the determination of the linear range of an analytical method together with the required statistical background. Such topics would naturally include correlation methods e.g. the method of least linear squares, and, in more advanced courses, the methods attached to the determination of the uncertainty of regression, and suitable analytical spacing of the calibration standards. Although seldom explicitly stated as such, these didactic methods leave an implicit assumption unstated, namely that other methods of calibration are unacceptable.

15 The Quadratic calibration Whilst objections have been raised to the practice of quadratic calibration, it has been conclusively shown in these laboratories that when used in conjunction with well-defined ISO practices and statistical procedures, and despite algebraic difficulties which may arise during the course of the determination of more difficult analytical parameters e.g. the uncertainty of calibration regression of the method, that these may be easily overcome on a routine basis.

16 Main references used in this section of the presentation South African National Standard SANS :2002, Water quality- Calibration and evaluation of analytical methods and estimation of performance characteristics, Part 1: Statistical evaluation of the linear function. pp 5. South African National Standard SANS :2002, Water quality- Calibration and evaluation of analytical methods and estimation of performance characteristics, Part 2: Calibration strategy for non linear second-order calibration functions. pp 7.

17 Quadratic regressions - 1 The calibration of an instrument may be viewed as the analysis of a series of standards of known concentration to obtain an instrument output for each of the standards. The derivation of a defined mathematical formula relating the magnitude of the instrument output to the standard concentration, normally utilising a mathematical regression technique, results in an equation by which the instrument output for unknown samples can then be utilised to calculate the analyte concentration. Given that a linear calibration methodology has been the traditional and mathematically simpler approach, it is reasonable to examine the underlying reasons for the selection of a quadratic approach.

18 Quadratic regressions - 2 Accredited laboratories which are primarily involved in high sample throughput routine analytical work, with tight deadlines on turnaround time require analytical procedures which are as simple and fast as possible, whilst bearing in mind the technical and quality control requirements of the specific analysis. As a natural corollary of this requirement, analytical procedures with simple sample preparation procedures would naturally be preferred over those with more complex preparation procedures.

19 Quadratic regressions - 3 In some cases where the linear dynamic range of a method is high, covering many orders of magnitude, e.g. ICP-OES or ICP-MS, quadratic calibrations may be unnecessary, however other methods e.g. those which are colorimetrically or atomic absorption based which have relatively low linear dynamic ranges can benefit greatly from the use of quadratic calibrations.

20 Quadratic regressions - 3 In some cases where the linear dynamic range of a method is high, covering many orders of magnitude, e.g. ICP-OES or ICP-MS, quadratic calibrations may be unnecessary, however other methods e.g. those which are colorimetrically or atomic absorption based which have relatively low linear dynamic ranges can benefit greatly from the use of quadratic calibrations.

21 Quadratic regressions - 3 In some cases where the linear dynamic range of a method is high, covering many orders of magnitude, e.g. ICP-OES or ICP-MS, quadratic calibrations may be unnecessary, however other methods e.g. those which are colorimetrically or atomic absorption based which have relatively low linear dynamic ranges can benefit greatly from the use of quadratic calibrations.

22 Quadratic regressions - 3 In some cases where the linear dynamic range of a method is high, covering many orders of magnitude, e.g. ICP-OES or ICP-MS, quadratic calibrations may be unnecessary, however other methods e.g. those which are colorimetrically or atomic absorption based which have relatively low linear dynamic ranges can benefit greatly from the use of quadratic calibrations.

23 Fundamentals of linear a quadratic equations These are shown below in equations one and two Equation 1 Linear equation Equation 2 Quadratic equation By way of example, figuires 1 and 2 show the linear and quadratic calibrations for the analysis of potassium in sewage samples by flame atomic absorption utilising a high range calibration methodology. Table 5 contains the raw data upon which the two calibrations are based.

24 Table 4 Raw data for Potassium calibrations Calibration 1 Nominal concentration mg/l Absorbance K Blank Standard Standard Standard Standard Standard

25 Linear calibration for high range K analysis

26 Quadratic calibration for high range K analysis

27 Table 5 Raw data for Potassium calibrations If we sequentially remove the calibration points from the high concentration end of the calibration curve, we obtain the information in table 6. Calibration points Top calibration standard mg/l R Squared R N/A N/A N/A N/A N/A N/A

28 As can be readily seen in the two previous graphs of the linear and quadratic approaches to the regression analysis presented in the data, the quadratic approach leads to substantially higher correlation coefficients than the linear approach.

29 Accuracy of quadratic calibrations Possibly the most critical question that can be asked of any calibration technique is how accurate is it? In order to answer this question, test samples spreading across the analytical range consisting of a certified reference standard (CRM), a spiked sewerage sample, together with mid and high range QC verification standards were analysed.

30 Accuracy of quadratic calibrations Table 6 Analysis of CRM RTC QCI-046 Lot / PARAMETER Mean analysed value of CRMs mg/l Accuracy of CRMs. % Bias of CRMs. % Manufacturers certified value mg/l 8.09 Manufacturers specified standard deviation mg/l Calculated Z Score Manufacturers acceptance limits mg/l K

31 Accuracy of quadratic calibrations To establish the accuracy at higher analytical levels (± 30 mg/l), samples of sewerage were analysed with and without spike addition. The spiking was performed as follows; A 100 ml volumetric flask was rinsed out with sample and then approximately half filled with the sample. 2 ml of 1000 mg/l K standard was added with a piston pipette. The flasks were then made up to the mark with the sample, mixed and used for spike recovery tests. The data obtained is in table eight below.

32 Accuracy of quadratic calibrations Table seven CONCENTRATION OF UNSPIKED SAMPLE mg/l MEAN VALUE OF SPIKED SAMPLE mg/l SIGMA R.S.D. % MAXIMUM mg/l MINIMUM mg/l SPIKE RECOVERY %

33 Table eight accuracy of a 50 mg/l K standard Accuracy of Q.C. verifications % R.S.D. OF Q.C. verifications % Bias of Q.C. verifications %

34 Table nine accuracy of an 80 mg/l K standard standard MEAN mg/l SIGMA R.S.D. % MAXIMUM mg/l MINIMUM mg/l Accuracy % 98.27

35 Potential pitfalls to avoid in quadratic calibration

36 Potential pitfalls to avoid in quadratic calibration Samples with concentrations higher than the analytical rollover point will be incorrectly interpreted by the instrument software as have a lower value than is actually the case, therefore caution has to be observed using the quadratic method, and the samples analysed should preferably have been historically well characterised to ensure that they fall within the method calibration range. In cases of doubt, it is preferable to dilute the sample prior to analysis.

37 CONCLUSIONS DEMING REGRESSIONS The Deming technique is both a mathematically and analytically elegant method for the determination of the accuracy of microsyringes for instrumental analysis as it is used without removal of the syringe from its position in the instrument. As all test samples are analysed with the syringe in position, leading to analytically realistic results as the output obtained from the instrument are directly used as the input for statistical analysis. Quadratic calibration, although somewhat more complex for the determination of uncertainty budgets, where the uncertainty of calibration regression is required, are still relatively easy to perform, and result in the extension of analytical range. This leads to material savings in terms of resource requirements due to the smaller amount of dilutions

38 CONCLUSIONS QUADRATIC REGRESSIONS Quadratic calibration, although somewhat more complex for the determination of uncertainty budgets, where the uncertainty of calibration regression is required, are still relatively easy to perform, and result in the extension of analytical range. This leads to material savings in terms of resource requirements due to the smaller amount of dilutions required when samples which exceed the calibration range of a linearly calibrated method are used.

39 THANK YOU Are their any questions?

Quality Control Procedures for Graphite Furnace AAS using Avanta Software

Quality Control Procedures for Graphite Furnace AAS using Avanta Software Application Note Quality Control Procedures for Graphite Furnace AAS using Avanta Software Introduction With the arrival of quality standards in the analytical laboratory, an ever increasing emphasis is

More information

NATIONAL ASSOCIATION OF TESTING AUTHORITIES (NATA) REQUIREMENTS FOR ACCREDITATION OF ICP-MS TECHNIQUES

NATIONAL ASSOCIATION OF TESTING AUTHORITIES (NATA) REQUIREMENTS FOR ACCREDITATION OF ICP-MS TECHNIQUES NATIONAL ASSOCIATION OF TESTING AUTHORITIES (NATA) REQUIREMENTS FOR ACCREDITATION OF ICP-MS TECHNIQUES The National Association of Testing Authorities (NATA) requirements for accreditation have undergone

More information

Direct Determination of Aluminium in Milk by Graphite Furnace Atomic Absorption Spectrometry

Direct Determination of Aluminium in Milk by Graphite Furnace Atomic Absorption Spectrometry Direct Determination of Aluminium in Milk by Graphite Furnace Atomic Absorption Spectrometry NOTICE: This method has been developed by the EURL-CEFAO using the facilities available in its laboratories.

More information

Experiment 1 (Part A): Plotting the Absorption Spectrum of Iron (II) Complex with 1,10- Phenanthroline

Experiment 1 (Part A): Plotting the Absorption Spectrum of Iron (II) Complex with 1,10- Phenanthroline Experiment (Part A): Plotting the Absorption Spectrum of Iron (II) Complex with,0- Phenanthroline Background The first step of an analytical spectrophotometric procedure for quantitative determination

More information

VAM Project Development and Harmonisation of Measurement Uncertainty Principles

VAM Project Development and Harmonisation of Measurement Uncertainty Principles VAM Project 3.2.1 Development and Harmonisation of Measurement Uncertainty Principles Part (d): Protocol for uncertainty evaluation from validation data V J Barwick and S L R Ellison January 2000 LGC/VAM/1998/088

More information

Maintenance with OQ. ZEEnit 700. Operational Qualification OQ within the scope of a maintenance for the. Atomic Absorption Spectrometer

Maintenance with OQ. ZEEnit 700. Operational Qualification OQ within the scope of a maintenance for the. Atomic Absorption Spectrometer Maintenance with OQ Operational Qualification OQ within the scope of a maintenance for the Atomic Absorption Spectrometer ZEEnit 700 Contents 1. GENERAL INFORMATION...4 2. DEFINITIONS...4 2.1 Validation...4

More information

Examples of Method Validation Studies Conducted in Different Economies

Examples of Method Validation Studies Conducted in Different Economies Examples of Method Validation Studies Conducted in Different Economies Template for group discussion National Metrology Laboratory, Malaysia 8th APMP TCQM-DEC MiC Workshop, Kobe, Japan December 2011 Description

More information

NOTICE: This method: The laboratories have to study the instrumental conditions appropriate for their own instrumentation.

NOTICE: This method: The laboratories have to study the instrumental conditions appropriate for their own instrumentation. Determination of Cadmium and Lead in powdered infant formula by Electrothermal Atomization Atomic Absorption Spectrometry with Zeeman Effect Correction NOTICE: This method: - has to be considered only

More information

Direct Determination of Cadmium and Lead in honey by Electrothermal Atomization Atomic Absorption Spectrometry with Zeeman Effect Correction

Direct Determination of Cadmium and Lead in honey by Electrothermal Atomization Atomic Absorption Spectrometry with Zeeman Effect Correction NOTICE: This method: Direct Determination of Cadmium and Lead in honey by Electrothermal Atomization Atomic Absorption Spectrometry with Zeeman Effect Correction - has to be considered only as guideline

More information

Method Validation. Role of Validation. Two levels. Flow of method validation. Method selection

Method Validation. Role of Validation. Two levels. Flow of method validation. Method selection Role of Validation Method Validation An overview Confirms the fitness for purpose of a particular analytical method. ISO definition: Conformation by examination and provision of objective evidence that

More information

Test Method: CPSC-CH-E

Test Method: CPSC-CH-E UNITED STATES CONSUMER PRODUCT SAFETY COMMISSION DIRECTORATE FOR LABORATORY SCIENCES DIVISION OF CHEMISTRY 10901 DARNESTOWN RD GAITHERSBURG, MD 20878 Test Method: CPSC-CH-E1001-08 Standard Operating Procedure

More information

Technical Procedure for Concentration Determination of Methamphetamine in Liquids via HPLC

Technical Procedure for Concentration Determination of Methamphetamine in Liquids via HPLC Technical Procedure for Concentration Determination of 1.0 Purpose This procedure specifies the required elements for the preparation and use of the Agilent 1100/1200 series High Performance Liquid Chromatograph

More information

Application Note. Abstract. Introduction. Experimental-Instrument Conditions. By: Anne Jurek

Application Note. Abstract. Introduction. Experimental-Instrument Conditions. By: Anne Jurek Automated Handling Techniques for the Analysis of Elevated Volatile Organic Compound (VOC) Concentrations in Soils Utilizing the Atomx Concentrator/Multimatrix Autosampler. Application Note By: Anne Jurek

More information

METHOD 8032A ACRYLAMIDE BY GAS CHROMATOGRAPHY

METHOD 8032A ACRYLAMIDE BY GAS CHROMATOGRAPHY METHOD 8032A ACRYLAMIDE BY GAS CHROMATOGRAPHY 1.0 SCOPE AND APPLICATION 1.1 Method 8032 is used to determine trace amounts of acrylamide monomer (CAS No. 79-06-1) in aqueous matrices. This method may be

More information

Elemental Scientific. Spike Recovery. Elemental Scientific

Elemental Scientific. Spike Recovery. Elemental Scientific Elemental Scientific prepfast ICP-MS: USP Oral Drugs by Dissolution Automated Inline Calibration and Sample Dilution Authors: Kyle Uhlmeyer and Paul Field (field@icpms.com) Brief The prepfast

More information

Standard Operating Procedures. Determination of Anions and/or Cations Extracted from Nylon Filters by Ion Chromatography (IC)

Standard Operating Procedures. Determination of Anions and/or Cations Extracted from Nylon Filters by Ion Chromatography (IC) Page 1 of 15 Standard Operating Procedures Determination of Anions and/or Cations Extracted from Nylon Filters by Ion Chromatography (IC) Analytical Sciences Department Innovation, Technology, and Development

More information

Comparing the MICROLAB 600 to Volumetric Glassware and Air Displacement Pipettes. June 2011

Comparing the MICROLAB 600 to Volumetric Glassware and Air Displacement Pipettes. June 2011 Comparing the MICROLAB 600 to tric Glassware and Air Displacement Pipettes June 2011 tric Glassware and Air Displacement Pipettes Table of Contents ``Abstract...3 ``Introduction...4 ``Method & Results...5

More information

Determination of Pb, Cd, Cr and Ni in Grains Based on Four Chinese National Methods via Zeeman GFAAS

Determination of Pb, Cd, Cr and Ni in Grains Based on Four Chinese National Methods via Zeeman GFAAS Determination of Pb, Cd, Cr and Ni in Grains Based on Four Chinese National Methods via Zeeman GFAAS Application Note Food Testing Author John Cauduro Agilent Technologies, Australia Introduction Trace

More information

Z/zs. tnitiats: wu\ Z-z* I A. sop-c-102. Determination of Chemical Oxygen Demand. Revision 6. Approval: Effective date: 3. Renewat date: 7lt:,:

Z/zs. tnitiats: wu\ Z-z* I A. sop-c-102. Determination of Chemical Oxygen Demand. Revision 6. Approval: Effective date: 3. Renewat date: 7lt:,: sop-c-102 Determination of Chemical Oxygen Demand Revision 6 Approval: Laborato ry Manager/LQAO/RS O Date Z/zs Date Z-z* I A Renewat date: 7lt:,: Effective date: 3, tnitiats: wu\ Texas lnstitute for Applied

More information

Analysis of domestic sludge using the Agilent 4200 MP-AES

Analysis of domestic sludge using the Agilent 4200 MP-AES Analysis of domestic sludge using the Agilent 4200 MP-AES Application note Environmental Authors Neli Drvodelic Agilent Technologies, Melbourne, Australia Introduction Managing the treatment and disposal

More information

Elemental analysis of river sediment using the Agilent 4200 MP-AES

Elemental analysis of river sediment using the Agilent 4200 MP-AES Elemental analysis of river sediment using the Agilent 4200 MP-AES Application note Environmental: Soils, sludges & sediments Authors Neli Drvodelic Agilent Technologies, Melbourne, Australia Introduction

More information

UNIVERSITI SAINS MALAYSIA. Second Semester Examination Academic Session 2004/2005. March KAA 502 Atomic Spectroscopy.

UNIVERSITI SAINS MALAYSIA. Second Semester Examination Academic Session 2004/2005. March KAA 502 Atomic Spectroscopy. UNIVERSITI SAINS MALAYSIA Second Semester Examination Academic Session 2004/2005 March 2005 KAA 502 Atomic Spectroscopy Time: 3 hours Please make sure this paper consists of FIVE typed pages before answering

More information

Comparing the Microlab 600 to Volumetric Glassware and Air Displacement Pipettes. January 2013

Comparing the Microlab 600 to Volumetric Glassware and Air Displacement Pipettes. January 2013 Comparing the Microlab 600 to tric Glassware and Air Displacement Pipettes January 2013 White Paper: Comparing the Microlab 600 to tric Table of Contents Abstract... 3 Introduction... 4 Methods & Results...

More information

Technical Procedure for General Laboratory Equipment

Technical Procedure for General Laboratory Equipment Technical Procedure for General Laboratory Equipment 1.0 Purpose - This procedure specifies the required elements for the use of general laboratory equipment. 2.0 Scope - This procedure applies to all

More information

Elemental Scientific. Stability. Elemental Scientific

Elemental Scientific. Stability. Elemental Scientific Elemental Scientific prepfast ICP-MS: USP Oral Drugs by Dilution Automated Inline Calibration and Sample Dilution Authors: Kyle Uhlmeyer and Paul Field (field@icpms.com) Brief The prepfast inline

More information

High-Speed Environmental Analysis Using the Agilent 7500cx with Integrated Sample Introduction System Discrete Sampling (ISIS DS)

High-Speed Environmental Analysis Using the Agilent 7500cx with Integrated Sample Introduction System Discrete Sampling (ISIS DS) High-Speed Environmental Analysis Using the Agilent 7500cx with Integrated Sample Introduction System Discrete Sampling (ISIS DS) Application Note Environmental Authors Steve Wilbur Agilent Technologies,

More information

Measurement Uncertainty, March 2009, F. Cordeiro 1

Measurement Uncertainty, March 2009, F. Cordeiro 1 Measurement Uncertainty, March 2009, F. Cordeiro 1 Uncertainty Estimation on the Quantification of Major Proteins in Milk by Liquid Chromatography Contribution to a Chemical Reference Measurement System

More information

Determination of Total Bromine and Iodine Emission Spectrometric Method (ICP-OES) EuSalt/AS

Determination of Total Bromine and Iodine Emission Spectrometric Method (ICP-OES) EuSalt/AS Determination of Total Bromine and Iodine Page 2 of 5 1. SCOPE AND FIELD OF APPLICATION The present EuSalt Analytical Standard describes an inductively coupled plasma optical emission spectrometry method

More information

METHOD 8033 ACETONITRILE BY GAS CHROMATOGRAPHY WITH NITROGEN-PHOSPHORUS DETECTION

METHOD 8033 ACETONITRILE BY GAS CHROMATOGRAPHY WITH NITROGEN-PHOSPHORUS DETECTION METHOD 80 ACETONITRILE BY GAS CHROMATOGRAPHY WITH NITROGEN-PHOSPHORUS DETECTION 1.0 SCOPE AND APPLICATION 1.1 Method 80 may be used to determine the concentration of acetonitrile (CAS No. 75-05-8) in aqueous

More information

Ohio EPA Total (Extracellular and Intracellular) Microcystins - ADDA by ELISA Analytical Methodology Ohio EPA DES Version 2.

Ohio EPA Total (Extracellular and Intracellular) Microcystins - ADDA by ELISA Analytical Methodology Ohio EPA DES Version 2. Ohio EPA Total (Extracellular and Intracellular) Microcystins - ADDA by ELISA Analytical Methodology Ohio EPA DES 701.0 Version 2.3 July 2018 1. SCOPE AND APPLICATION This method is used for the determination

More information

ALLOWAY METHOD OUTLINE

ALLOWAY METHOD OUTLINE ALLOWAY METHOD OUTLINE Standard Laboratory Method SM4500-Cl -G Parameter Residual Chlorine & Free Chlorine Method DPD Colorimetric Test Kit Date Issued Originator: Section Supervisor: QA Manager Date:

More information

Measurement uncertainty and legal limits in analytical measurements

Measurement uncertainty and legal limits in analytical measurements UNCERTAINTY Measurement uncertainty and legal limits in analytical measurements MIRELLA BUZOIANU, Reference Materials Laboratory, National Institute of Metrology (INM), Bucharest, Romania 1 Introduction

More information

The stimation of Uncertainty by the Utilization of Validation and Quality Control Data; Lead in Gasoline by AAS

The stimation of Uncertainty by the Utilization of Validation and Quality Control Data; Lead in Gasoline by AAS The stimation of ncertainty by the tilization of Validation and Quality Control Data; Lead in Gasoline by AAS Stefica Celap, Ina Rafinerija nafte Rijeka, Laboratorij, rinj bb, e-mail:stefica.celap@ina.hr

More information

ANALYSIS CERTIFICATE OF

ANALYSIS CERTIFICATE OF CERTIFICATE OF ANALYSIS 300 Technology Drive Christiansburg, VA 24073. USA inorganicventures.com tel: 800.669.6799. 540.585.3030 fax: 540.585.3012 info@inorganicventures.com 1.0 INORGANIC VENTURES is an

More information

Meeting the Challenges of Soil Analysis with the Avio 200 ICP-OES

Meeting the Challenges of Soil Analysis with the Avio 200 ICP-OES APPLICATION NOTE ICP-Optical Emission Spectroscopy Author: Nick Spivey PerkinElmer, Inc. Shelton, CT Meeting the Challenges of Soil Analysis with the Avio 200 ICP-OES Introduction Micronutrients contained

More information

Elemental Scientific. Spike Recovery. Elemental Scientific

Elemental Scientific. Spike Recovery. Elemental Scientific Elemental Scientific prepfast ICP-MS: USP Oral Drugs by Dissolution Automated Inline Calibration and Sample Dilution Authors: Kyle Uhlmeyer and Paul Field (field@icpms.com) Brief The prepfast

More information

Chapter 4: Verification of compendial methods

Chapter 4: Verification of compendial methods Chapter 4: Verification of compendial methods Introduction In order to ensure accurate and reliable test results, the quality control laboratory (QCL) needs to use analytical methods (and accompanying

More information

U.S. EPA SW-846 Method 6010C using the Prodigy High Dispersion ICP

U.S. EPA SW-846 Method 6010C using the Prodigy High Dispersion ICP Prodigy ICP Application Note: 1035 U.S. EPA SW-846 Method 6010C using the Prodigy High Dispersion ICP Introduction This Application Note describes the capability of the Teledyne Leeman Labs Prodigy High

More information

V. LAB REPORT. PART I. ICP-AES (section IVA)

V. LAB REPORT. PART I. ICP-AES (section IVA) V. LAB REPORT The lab report should include an abstract and responses to the following items. All materials should be submitted by each individual, not one copy for the group. The goal for this part of

More information

LAMBTON SCIENTIFIC (A Division of Technical Chemical Services Inc.)

LAMBTON SCIENTIFIC (A Division of Technical Chemical Services Inc.) LAMBTON SCIENTIFIC (A Division of Technical Chemical Services Inc.) SOP-316 391 S. Vidal St., Sarnia, Ontario, N7T 7L1 Phone: (519) 344-4747 Fax: (519) 344-2350 E-Mail: info@lambtonscientific.com Method

More information

United States EPA Method 415.3

United States EPA Method 415.3 United States EPA Method 415.3 Application Note Abstract In order to ensure drinking water is safe for human consumption, water treatment plants often add disinfectants to drinking water. The disinfectants,

More information

DRAFT EAST AFRICAN STANDARD

DRAFT EAST AFRICAN STANDARD ICS 71.100.70 DRAFT EAST AFRICAN STANDARD Oils for cosmetic industry Methods of test Part 16 : Determination of Heavy metal Content EAST AFRICAN COMMUNITY EAS 2015 First Edition 2015 Copyright notice

More information

Application Note. Author. Abstract. Xinlei Yang Agilent Technologies Co. Ltd Shanghai, China

Application Note. Author. Abstract. Xinlei Yang Agilent Technologies Co. Ltd Shanghai, China Rapid Deteration of Eight Related Aromatic Acids in the p-phthalic Acid Mother Liquid Using an Agilent 126 Infinity LC System and an Agilent Poroshell 12 SB-C18 Column Application Note Author Xinlei Yang

More information

Example method validation and MU approach for Cadmium in seafood test method

Example method validation and MU approach for Cadmium in seafood test method Example method validation and MU approach for Cadmium in seafood test method Charun Yafa National Institute of Metrology (Thailand) (NIMT) 8th APMP TCQM-DEC MiC Workshop, Kobe, Japan December 011 QA Measures

More information

Proposed Procedures for Determining the Method Detection Limit and Minimum Level

Proposed Procedures for Determining the Method Detection Limit and Minimum Level Proposed Procedures for Determining the Method Detection Limit and Minimum Level Published by: ACIL Environmental Services Section Technical Committee Revision 3.0 3/8/006 PROCEDURES These procedures set

More information

High Throughput Water Analysis using Agilent 7900 ICP-MS coupled with ESI prepfast

High Throughput Water Analysis using Agilent 7900 ICP-MS coupled with ESI prepfast High Throughput Water Analysis using Agilent 7900 ICP-MS coupled with ESI prepfast Application Note Environmental Authors Austin Schultz and Jake Unnerstall, Elemental Scientific, Omaha NE, USA Steve Wilbur,

More information

Authors: C. Derrick Quarles, Jr. *, Patrick Sullivan, M. Paul Field, Hwan Kim, and Daniel R. Wiederin

Authors: C. Derrick Quarles, Jr. *, Patrick Sullivan, M. Paul Field, Hwan Kim, and Daniel R. Wiederin Elemental Scientific prepfast IC: Inline Autodilution Method to Eliminate Species Interconversion for LC-ICPMS Based Applications Authors: C. Derrick Quarles, Jr. *, Patrick Sullivan, M. Paul Field, Hwan

More information

Technical Report. Determination of Nitrite and Nitrate in Smokeless Tobacco Products by Ion Chromatography and Continuous Flow Analysis

Technical Report. Determination of Nitrite and Nitrate in Smokeless Tobacco Products by Ion Chromatography and Continuous Flow Analysis Tobacco and Tobacco Products Analytes Sub-Group Technical Report Determination of Nitrite and Nitrate in Smokeless Tobacco Products by Ion Chromatography and Continuous Flow Analysis 2016 Collaborative

More information

Hydra-C Application Note: 1076

Hydra-C Application Note: 1076 Hydra-C Application Note: 1076 The Determination of Mercury in Samples by U.S. EPA SOW 846 Method 7473 using the Hydra-C Mercury Analyzer Introduction The accurate determination of mercury in various samples

More information

British American Tobacco Group Research & Development. Method - Determination of ammonia in mainstream smoke

British American Tobacco Group Research & Development. Method - Determination of ammonia in mainstream smoke British American Tobacco Group Research & Development Method - Determination of ammonia in mainstream smoke 1 SCOPE OF APPLICATION The method is applicable to quantitative determination of the yields of

More information

Analytical Performance & Method. Validation

Analytical Performance & Method. Validation Analytical Performance & Method Ahmad Aqel Ifseisi Assistant Professor of Analytical Chemistry College of Science, Department of Chemistry King Saud University P.O. Box 2455 Riyadh 11451 Saudi Arabia Building:

More information

Using FIMS to Determine Mercury Content in Sewage Sludge, Sediment and Soil Samples

Using FIMS to Determine Mercury Content in Sewage Sludge, Sediment and Soil Samples A P P L I C A T I O N N ot e Atomic Absorption Using FIMS to Determine Mercury Content in Sewage Sludge, Sediment and Soil Samples Introduction The Flow Injection Mercury System (FIMS) is a dedicated system

More information

Application Note PB 401. Improve HPLC Sample Preparation in an Analytical Laboratory A New Automated Sample Preparation Process

Application Note PB 401. Improve HPLC Sample Preparation in an Analytical Laboratory A New Automated Sample Preparation Process CHROMTECH Application Note PB 401 Improve HPLC Sample Preparation in an Analytical Laboratory A New Automated Sample Preparation Process By LP Raman* Technical Marketing Manager Whatman, Inc. 9 Bridewell

More information

Exploring the Benefits of Automated Unattended Sample Derivatization Prior to Gas Chromatography Analysis

Exploring the Benefits of Automated Unattended Sample Derivatization Prior to Gas Chromatography Analysis Exploring the Benefits of Automated Unattended Sample Derivatization Prior to Gas Chromatography Analysis A. Caruso, M. Santoro, P. Magni, S. Pelagatti, and R. Facchetti Thermo Fisher Scientific, Milan,

More information

What is measurement uncertainty?

What is measurement uncertainty? What is measurement uncertainty? What is measurement uncertainty? Introduction Whenever a measurement is made, the result obtained is only an estimate of the true value of the property being measured.

More information

STANDARD OPERATING PROCEDURES SOP: 1828 PAGE: 1 of 14 REV: 0.0 DATE: 05/12/95 ANALYSIS OF METHYL PARATHION IN CARPET SAMPLES BY GC/MS

STANDARD OPERATING PROCEDURES SOP: 1828 PAGE: 1 of 14 REV: 0.0 DATE: 05/12/95 ANALYSIS OF METHYL PARATHION IN CARPET SAMPLES BY GC/MS PAGE: 1 of 14 1.0 SCOPE AND APPLICATION 2.0 METHOD SUMMARY CONTENTS 3.0 SAMPLE PRESERVATION, CONTAINERS, HANDLING AND STORAGE 4.0 INTERFERENCES AND POTENTIAL PROBLEMS 5.0 EQUIPMENT/APPARATUS 6.0 REAGENTS

More information

The Determination of Toxic, Trace, and Essential Elements in Food Matrices using THGA Coupled with Longitudinal Zeeman Background Correction

The Determination of Toxic, Trace, and Essential Elements in Food Matrices using THGA Coupled with Longitudinal Zeeman Background Correction application Note Atomic Absorption Authors David Bass Senior Product Specialist Cynthia P. Bosnak Senior Product Specialist PerkinElmer, Inc. Shelton, CT 06484 USA The Determination of Toxic, Trace, and

More information

China Soil Pollution Survey: Elemental Analysis of Soil and Sediment Digests by ICP-MS

China Soil Pollution Survey: Elemental Analysis of Soil and Sediment Digests by ICP-MS Application Note Environmental China Soil Pollution Survey: Elemental Analysis of Soil and Sediment Digests by ICP-MS Fast, accurate quantitative analysis of 16 elements using an Agilent 7800 ICP-MS with

More information

Copyright ENCO Laboratories, Inc. II. Quality Control. A. Introduction

Copyright ENCO Laboratories, Inc. II. Quality Control. A. Introduction II. Quality Control A. Introduction ENCO adheres to strict quality control practices in order to assure our clients that the data provided are accurate and reliable. We are required by the EPA to analyze

More information

Analysis of mineral elements in wines using ICP-AES (inductively coupled plasma / atomic emission spectrometry) (Resolution Oeno 478/2013)

Analysis of mineral elements in wines using ICP-AES (inductively coupled plasma / atomic emission spectrometry) (Resolution Oeno 478/2013) Analysis of mineral elements in s using ICP-AES (inductively Method OIV-MA-AS3-3 Type III method Analysis of mineral elements in s using ICP-AES (inductively (Resolution Oeno 478/03). Warning SAFETY PRECAUTIONS

More information

A Newly Approved ASTM Standard For Analysis of Thiophene in Benzene Using a Pulsed Flame Photometric Detector (PFPD)

A Newly Approved ASTM Standard For Analysis of Thiophene in Benzene Using a Pulsed Flame Photometric Detector (PFPD) Application Note 19010803 A Newly Approved ASTM Standard For Analysis of in Using a Pulsed Flame Photometric Detector (PFPD) Keywords ASTM Standard D4735-96 FPD Flame Photometric Detector Model 5380 PFPD

More information

Accreditation of radiochemical analyses, from NAMAS to ISO 17025:2005 and beyond

Accreditation of radiochemical analyses, from NAMAS to ISO 17025:2005 and beyond Accreditation of radiochemical analyses, from NAMAS to ISO 17025:2005 and beyond George Ham Centre for Radiation, Chemicals and Environmental Hazards Health Protection Agency The Analysts Dilemma: Maintaining

More information

á233ñ ELEMENTAL IMPURITIES PROCEDURES

á233ñ ELEMENTAL IMPURITIES PROCEDURES Second Supplement to USP 38 NF 33 Chemical Tests / á233ñ Elemental Impurities Procedures 1 á233ñ ELEMENTAL IMPURITIES PROCEDURES INTRODUCTION This chapter describes two analytical procedures (Procedures

More information

Uncertainty of Measurement (Analytical) Maré Linsky 14 October 2015

Uncertainty of Measurement (Analytical) Maré Linsky 14 October 2015 Uncertainty of Measurement (Analytical) Maré Linsky 14 October 015 Introduction Uncertainty of Measurement GUM (Guide to the Expression of Uncertainty in Measurement ) (Analytical) Method Validation and

More information

ASCORBIC ACID METHOD FOR PHOSPHORUS DETERMINATION

ASCORBIC ACID METHOD FOR PHOSPHORUS DETERMINATION ASCORBIC ACID METHOD FOR PHOSPHORUS DETERMINATION Written by Pamela Doolittle, University of Wisconsin- Madison, pssemrad@wisc.edu 2014 In this experiment you will determine the phosphorus (P) concentration

More information

Analytische Qualitätssicherung Baden-Württemberg

Analytische Qualitätssicherung Baden-Württemberg Analytische Qualitätssicherung Baden-Württemberg Proficiency Test 2/17 TW S3 alkylphenoles in drinking water Nonylphenol, Octylphenol, Bisphenol-A provided by AQS Baden-Württemberg at Institute for Sanitary

More information

Skill Building Activity 2 Determining the Concentration of a Species using a Vernier Spectrometer

Skill Building Activity 2 Determining the Concentration of a Species using a Vernier Spectrometer Skill Building Activity 2 Determining the Concentration of a Species using a Vernier Spectrometer Purpose To use spectroscopy to prepare a Beer s Law plot of known dilutions of copper(ii) sulfate so that

More information

PA-DEP 3686, Rev. 1. Light Hydrocarbons in Aqueous Samples via Headspace and Gas Chromatography with Flame Ionization Detection (GC/FID)

PA-DEP 3686, Rev. 1. Light Hydrocarbons in Aqueous Samples via Headspace and Gas Chromatography with Flame Ionization Detection (GC/FID) Light Hydrocarbons in Aqueous Samples via Headspace and Gas Chromatography with Flame Ionization Detection (GC/FID) Table of Contents Section 1: Summary of Method Section 2: Scope and Application Section

More information

METHOD 8030A ACROLEIN AND ACRYLONITRILE BY GAS CHROMATOGRAPHY

METHOD 8030A ACROLEIN AND ACRYLONITRILE BY GAS CHROMATOGRAPHY METHOD 8030A ACROLEIN AND ACRYLONITRILE BY GAS CHROMATOGRAPHY 1.0 SCOPE AND APPLICATION 1.1 Method 8030 is used to determine the concentration of the following volatile organic compounds: Compound Name

More information

Revision: 11 (MBAS) ALLOWAY METHOD OUTLINE. Standard Laboratory Method:

Revision: 11 (MBAS) ALLOWAY METHOD OUTLINE. Standard Laboratory Method: ALLOWAY METHOD OUTLINE Standard Laboratory Method: SM Parameter: Methylene Blue Method: Colorimetric Reporting Level: Reference: 0.05 mg/l Standard Methods for the Examination Of Water and Wastewater;

More information

Application note. Determination of exchangeable cations in soil extracts using the Agilent 4100 Microwave Plasma-Atomic Emission Spectrometer

Application note. Determination of exchangeable cations in soil extracts using the Agilent 4100 Microwave Plasma-Atomic Emission Spectrometer Determination of exchangeable cations in soil extracts using the Agilent 4100 Microwave Plasma-Atomic Emission Spectrometer Application note Agriculture Authors Annie Guerin INRA, Laboratoire d Analyses

More information

MEASUREMENT UNCERTAINTY PREPARED FOR ENAO ASSESSOR CALIBRATION COURSE OCTOBER/NOVEMBER Prepared by MJ Mc Nerney for ENAO Assessor Calibration

MEASUREMENT UNCERTAINTY PREPARED FOR ENAO ASSESSOR CALIBRATION COURSE OCTOBER/NOVEMBER Prepared by MJ Mc Nerney for ENAO Assessor Calibration MEASUREMENT PREPARED FOR ENAO ASSESSOR CALIBRATION COURSE UNCERTAINTY OCTOBER/NOVEMBER 2012 Prepared by for ENAO Assessor Calibration B SCOPE Introduction House Rules Overview 17025 & 15189 MU Approaches

More information

Determinations by Atomic Absorption Spectroscopy and Inductively Coupled Plasma-Atomic Emission

Determinations by Atomic Absorption Spectroscopy and Inductively Coupled Plasma-Atomic Emission 0 chapter Sodium and Potassium Determinations by Atomic Absorption Spectroscopy and Inductively Coupled Plasma-Atomic Emission Spectroscopy 67 S. S. Nielsen (ed.), Food Analysis Laboratory Manual Springer

More information

SeCtiOn 5 [STOCK AND CUSTOM] Assurance. Multi-Element CLP Standards

SeCtiOn 5 [STOCK AND CUSTOM] Assurance. Multi-Element CLP Standards SeCtiOn 5 [STOCK AND CUSTOM] Assurance Multi-Element CLP Standards Your Science is Our Passion. Assurance CLPStandards SPEX CertiPrep offers acomplete series of multi-element standards and blanks designed

More information

Hach Method Total Organic Carbon in Finished Drinking Water by Catalyzed Ozone Hydroxyl Radical Oxidation Infrared Analysis

Hach Method Total Organic Carbon in Finished Drinking Water by Catalyzed Ozone Hydroxyl Radical Oxidation Infrared Analysis Hach Method 1061 Total Organic Carbon in Finished Drinking Water by Catalyzed Ozone Hydroxyl Radical Oxidation Infrared Analysis Hach Company Method 1061 Revision 1. December 015 Organic Carbon in Finished

More information

Ultra-fast determination of base metals in geochemical samples using the 5100 SVDV ICP-OES

Ultra-fast determination of base metals in geochemical samples using the 5100 SVDV ICP-OES Ultra-fast determination of base metals in geochemical samples using the 5100 SVDV ICP-OES Application note Geochemistry, metals, mining Authors John Cauduro Agilent Technologies, Mulgrave, Australia Introduction

More information

110 Lowell Rd Hudson, NH USA Tel:

110 Lowell Rd Hudson, NH USA Tel: 110 Lowell Rd Hudson, NH 03051 USA Tel: 603-886-8400 www.teledyneleemanlabs.com Product Descriptions and Offerings Teledyne Leeman Labs is a leading innovator of analytical instrumentation for elemental

More information

METHOD 8000A GAS CHROMATOGRAPHY

METHOD 8000A GAS CHROMATOGRAPHY METHOD 8000A GAS CHROMATOGRAPHY 1.0 SCOPE AND APPLICATION 1.1 Gas chromatography is a quantitative technique useful for the analysis of organic compounds capable of being volatilized without being decomposed

More information

Annex 2 Formaldehyde

Annex 2 Formaldehyde Annex 2 Formaldehyde The 2 methods are analytical procedures for the determination of formaldehyde CH2O, PM/Ref. No 17260, and hexamethylenetetramine (HMTA) C6H12N4, PM/Ref. No 18670, in food simulants

More information

METHOD 7196A CHROMIUM, HEXAVALENT (COLORIMETRIC)

METHOD 7196A CHROMIUM, HEXAVALENT (COLORIMETRIC) METHOD 7196A CHROMIUM, HEXAVALENT (COLORIMETRIC) 1.0 SCOPE AND APPLICATION 1.1 Method 7196 is used to determine the concentration of dissolved hexavalent chromium [Cr(VI)] in EP/TCLP characteristic extracts

More information

Traceability is easy. All results are traceable. To what is the issue!

Traceability is easy. All results are traceable. To what is the issue! Eurachem Workshop - Validation, Alex Williams Chairman EURACHEM/CITAC Measurement Uncertainty & Traceability Working Group Traceability is easy All results are traceable To what is the issue! 1 Eurachem

More information

Analytische Qualitätssicherung Baden-Württemberg

Analytische Qualitätssicherung Baden-Württemberg Analytische Qualitätssicherung Baden-Württemberg Proficiency Test 2/15 TW S5 Sulfonylurea herbicides amidosulfuron, metsulfuron-methyl, nicosulfuron, thifensulfuron-methyl, triasulfuron provided by AQS

More information

Quality Assurance is what we do to get the right answer for our purpose FITNESS FOR PURPOSE

Quality Assurance is what we do to get the right answer for our purpose FITNESS FOR PURPOSE Quality Assurance is what we do to get the right answer for our purpose FITNESS FOR PURPOSE Use objectives: state purpose for which results will be used. Specifications: How good should the numbers be

More information

2. QUALITY CONTROL IN MASS SPECTROMETRY

2. QUALITY CONTROL IN MASS SPECTROMETRY IAEA-SM-367/5/03 Evaluation of Uncertainties for Pu and U Measurements Achieved in the On-Site Laboratory by Thermal Ionisation Mass Spectrometry during Two Years of Operation E. Zuleger, K. Mayer, L.

More information

Chlorphosphonazo Colorimetric Method Method to 1000 µg/l Ca and Mg as CaCO 3 (ULR) Solution Pillow. Instrument Adapter Sample cell

Chlorphosphonazo Colorimetric Method Method to 1000 µg/l Ca and Mg as CaCO 3 (ULR) Solution Pillow. Instrument Adapter Sample cell Hardness DOC316.53.01044 Chlorphosphonazo Colorimetric Method Method 8374 8 to 1000 µg/l Ca and Mg as CaCO 3 (ULR) Solution Pillow Scope and application: For boiler and ultrapure water. Test preparation

More information

Measurement uncertainty revisited Alternative approaches to uncertainty evaluation

Measurement uncertainty revisited Alternative approaches to uncertainty evaluation Measurement uncertainty revisited Alternative approaches to uncertainty evaluation based on EUROLAB Technical Report No. 1/007 Dr.-Ing. Michael Koch Institute for Sanitary Engineering, Water Quality and

More information

Hexavalent Chromium by Flow Injection Analysis (FIA)

Hexavalent Chromium by Flow Injection Analysis (FIA) Methodology Hexavalent Chromium by Flow Injection Analysis (FIA) (Cartridge Part #A002831) 1.0 Scope and Application 1.1 This method is used for the determination of hexavalent chromium in water, including

More information

METHOD 5000 SAMPLE PREPARATION FOR VOLATILE ORGANIC COMPOUNDS

METHOD 5000 SAMPLE PREPARATION FOR VOLATILE ORGANIC COMPOUNDS METHOD 5000 SAMPLE PREPARATION FOR VOLATILE ORGANIC COMPOUNDS 1.0 SCOPE AND APPLICATION 1.1 Method 5000 provides general guidance on the selection of sample preparation methods (purge-and-trap, extraction,

More information

Analysis of Arsenic, Selenium and Antimony in Seawater by Continuous-Flow Hydride ICP-MS with ISIS

Analysis of Arsenic, Selenium and Antimony in Seawater by Continuous-Flow Hydride ICP-MS with ISIS ICP-MS Environmental Analysis of Arsenic, Selenium and Antimony in Seawater by Continuous-Flow Hydride ICP-MS with ISIS Application Note Steve Wilbur Analysis of arsenic and selenium in seawater at trace

More information

METHOD 7060A ARSENIC (ATOMIC ABSORPTION, FURNACE TECHNIQUE)

METHOD 7060A ARSENIC (ATOMIC ABSORPTION, FURNACE TECHNIQUE) METHOD 7060A ARSENIC (ATOMIC ABSORPTION, FURNACE TECHNIQUE) 1.0 SCOPE AND APPLICATION 1.1 Method 7060 is an atomic absorption procedure approved for determining the concentration of arsenic in wastes,

More information

Automation of the radiochemical procedures for the sequential separation of radionuclides

Automation of the radiochemical procedures for the sequential separation of radionuclides LSC2017 - An International Conference on Advances in Liquid Scintillation Spectrometry, Copenhagen Denmark, 1 5 May 2017 Automation of the radiochemical procedures for the sequential separation of radionuclides

More information

SECTION D.2 AMMONIA NITROGEN

SECTION D.2 AMMONIA NITROGEN SECTION D.2 AMMONIA NITROGEN CEDR Method Code: NH4F L01 a) Scope and Application i) This method describes the determination of low-level ammonia nitrogen concentrations in filtered samples taken from fresh

More information

Determination of Trace Cations in Power Plant Waters Containing Morpholine

Determination of Trace Cations in Power Plant Waters Containing Morpholine Application Note 8 Determination of Trace Cations in Power Plant Waters Containing Morpholine INTRODUCTION Morpholine and ammonium are used as additives in power plant waters. Morpholine acts as a corrosion

More information

Determination of Orthophosphate Ion

Determination of Orthophosphate Ion Determination of Orthophosphate Ion Introduction Phosphorous, in the form of phosphate, is one of several important elements in the growth of plants. Excessive algae growth in water is stimulated by the

More information

Product Descriptions and Offerings

Product Descriptions and Offerings Product Descriptions and Offerings Teledyne Leeman Labs is a leading innovator of analytical instrumentation for elemental analysis. Laboratories in industries ranging from environmental science, oil and

More information

Cadmium and lead content

Cadmium and lead content Accepted 1997 Pulps, papers and boards Cadmium and lead content Atomic absption spectrometry - graphite furnace technique 1 Scope This SCAN-test Method specifies a method f the determination of traces

More information

U.S. EPA SW-846 Method 6010C Using the Prodigy7 High- Dispersion ICP Introduction. Application Note - AN1305. Experimental

U.S. EPA SW-846 Method 6010C Using the Prodigy7 High- Dispersion ICP Introduction. Application Note - AN1305. Experimental Application Note - AN1305 This application note describes the capability of the Teledyne Leeman Lab s Prodigy7 High-Dispersion ICP for performing analysis according to SW-846 Method 6010C. This method

More information

Traceability, validation and measurement uncertainty 3 pillars for quality of measurement results. David MILDE

Traceability, validation and measurement uncertainty 3 pillars for quality of measurement results. David MILDE Traceability, validation and measurement uncertainty 3 pillars for quality of measurement results David MILDE Traceability Validation Measurement Uncerainty Outline Introduction to 3 pillars Recommended

More information

Chemistry 119: Experiment 4. Titrimetric Determination of Acetic Acid Samples And Preparation of Youden Plot

Chemistry 119: Experiment 4. Titrimetric Determination of Acetic Acid Samples And Preparation of Youden Plot Chemistry 119: Experiment 4 Titrimetric Determination of Acetic Acid Samples And Preparation of Youden Plot In this experiment standard sodium hydroxide solution is used to titrimetrically determine acetic

More information

Nordic Innovation Centre Holbergsgate 1, 0166 OSLO Telephone Fax

Nordic Innovation Centre Holbergsgate 1, 0166 OSLO Telephone Fax Nordic Innovation Centre Holbergsgate 1, 0166 OSLO Telephone +47 23 35 45 40 Fax +47 23 35 45 45 info@nordicinnovation.net www.nordicinnovation.net TR 569 Preface The aim of the Troll book is to give good

More information