ASTM D 5904 : 2002 : R2017
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Test Method for Total Carbon, Inorganic Carbon, and Organic Carbon in Water by Ultraviolet, Persulfate Oxidation, and Membrane Conductivity Detection
Hardcopy , PDF
06-05-2024
English
01-03-2017
This test method covers the determination of total carbon (TC), inorganic carbon (IC), and total organic carbon (TOC) in water in the range from 0.5 to 30 mg/L of carbon.
Committee |
D 19
|
DocumentType |
Test Method
|
Pages |
7
|
ProductNote |
Reconfirmed 2017
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
|
SupersededBy | |
Supersedes |
1.1This test method covers the determination of total carbon (TC), inorganic carbon (IC), and total organic carbon (TOC) in water in the range from 0.5 to 30 mg/L of carbon. Higher levels may be determined by sample dilution. The test method utilizes ultraviolet-persulfate oxidation of organic carbon, coupled with a CO2 selective membrane to recover the CO2 into deionized water. The change in conductivity of the deionized water is measured and related to carbon concentration in the oxidized sample. Inorganic carbon is determined in a similar manner without the requirement for oxidation. In both cases, the sample is acidified to facilitate CO2 recovery through the membrane. The relationship between the conductivity measurement and carbon concentration is described by a set of chemometric equations for the chemical equilibrium of CO2, HCO3−, H+, and the relationship between the ionic concentrations and the conductivity. The chemometric model includes the temperature dependence of the equilibrium constants and the specific conductances.
1.2This test method has the advantage of a very high sensitivity detector that allows very low detection levels on relatively small volumes of sample. Also, use of two measurement channels allows determination of CO2 in the sample independently of organic carbon. Isolation of the conductivity detector from the sample by the CO2 selective membrane results in a very stable calibration, with minimal interferences.
1.3This test method was used successfully with reagent water spiked with sodium bicarbonate and various organic materials. It is the user's responsibility to ensure the validity of this test method for waters of untested matrices.
1.4This test method is applicable only to carbonaceous matter in the sample that can be introduced into the reaction zone. The injector opening size generally limits the maximum size of particles that can be introduced.
1.5In addition to laboratory analyses, this test method may be applied to on line monitoring.
1.6The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.
1.7This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
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ASTM D 5173 : 2015 : R2023 | Standard Guide for On-Line Monitoring of Total Organic Carbon in Water by Oxidation and Detection of Resulting Carbon Dioxide |
ASTM D 5810 : 1996 : R2021 | Standard Guide for Spiking into Aqueous Samples |
ASTM D 3370 : 1995 : REV A : R2003 : EDT 1 | Standard Practices for Sampling Water from Closed Conduits |
ASTM D 1129 : 2013 : REDLINE | Standard Terminology Relating to Water |
ASTM D 1129 : 2003 | Standard Terminology Relating to Water |
ASTM D 2777 : 2013 : REDLINE | Standard Practice for Determination of Precision and Bias of Applicable Test Methods of Committee D19 on Water |
ASTM D 1129 : 2013 | Standard Terminology Relating to Water |
ASTM D 1129 : 2013 : R2020 | Standard Terminology Relating to Water |
ASTM D 5847 : 1999 : REV A : EDT 1 | Standard Practice for Writing Quality Control Specifications for Standard Test Methods for Water Analysis |
ASTM D 5810 : 1996 : R2011 | Standard Guide for Spiking into Aqueous Samples |
ASTM D 2777 : 2012 | Standard Practice for Determination of Precision and Bias of Applicable Test Methods of Committee D19 on Water |
ASTM D 1129 : 2013 : R2020 : EDT 2 | Standard Terminology Relating to Water |
ASTM D 1193 : 1977 : R1983 : EDT 1 | Standard Specification for Reagent Water |
ASTM D 5847 : 2002 : R2007 | Standard Practice for Writing Quality Control Specifications for Standard Test Methods for Water Analysis |
ASTM D 5810 : 1996 : R2001 | Standard Guide for Spiking into Aqueous Samples |
ASTM D 1129 : 2006 | Standard Terminology Relating to Water |
ASTM D 2777 : 2003 | Standard Practice for Determination of Precision and Bias of Applicable Methods of Committee D-19 on Water |
ASTM D 2777 : 2021 | Standard Practice for Determination of Precision and Bias of Applicable Test Methods of Committee D19 on Water |
ASTM D 3370 : 2010 | Standard Practices for Sampling Water from Closed Conduits |
ASTM D 2777 : 2013 | Standard Practice for Determination of Precision and Bias of Applicable Test Methods of Committee D19 on Water |
ASTM D 5847 : 2002 : R2012 | Standard Practice for Writing Quality Control Specifications for Standard Test Methods for Water Analysis |
ASTM D 2777 : 1998 | Standard Practice for Determination of Precision and Bias of Applicable Methods of Committee D-19 on Water |
ASTM D 1129 : 2013 : R2020 : EDT 1 | Standard Terminology Relating to Water |
ASTM D 3370 : 2008 | Standard Practices for Sampling Water from Closed Conduits |
ASTM D 1129 : 1999 : REV A | Standard Terminology Relating to Water |
ASTM D 1129 : 2006 : REV A | Standard Terminology Relating to Water |
ASTM D 1193 : 2006 : R2011 | Standard Specification for Reagent Water |
ASTM D 5847 : 2002 : R2020 | Standard Practice for Writing Quality Control Specifications for Standard Test Methods for Water Analysis |
ASTM D 1129 : 2003 : REV A | Standard Terminology Relating to Water |
ASTM D 1129 : 2002 | Standard Terminology Relating to Water |
ASTM D 5810 : 1996 : R2006 | Standard Guide for Spiking into Aqueous Samples |
ASTM D 1193 : 1991 | Standard Specification for Reagent Water |
ASTM D 1129 : 2004 | Standard Terminology Relating to Water |
ASTM D 5847 : 2022 | Standard Practice for Writing Quality Control Specifications for Standard Test Methods for Water Analysis |
ASTM D 2777 : 2008 | Standard Practice for Determination of Precision and Bias of Applicable Test Methods of Committee D19 on Water |
ASTM D 1192 : 1998 | Standard Guide for Equipment for Sampling Water and Steam in Closed Conduits (Withdrawn 2003) |
ASTM D 2777 : 2006 | Standard Practice for Determination of Precision and Bias of Applicable Test Methods of Committee D19 on Water |
ASTM D 3370 : 2018 | Standard Practices for Sampling Water from Flowing Process Streams |
ASTM D 1129 : 2002 : REV A | Standard Terminology Relating to Water |
ASTM D 5847 : 2002 | Standard Practice for Writing Quality Control Specifications for Standard Test Methods for Water Analysis |
ASTM D 3370 : 1976 | Standard Practices for Sampling Water |
ASTM D 1193 : 1970 | Standard Specification For Reagent Water |
ASTM D 1193 : 2006 | Standard Specification for Reagent Water |
ASTM D 3370 : 1995 : REV A : R1999 : EDT 1 | Standard Practices for Sampling Water from Closed Conduits |
ASTM D 1193 : 1999 | Standard Specification for Reagent Water |
ASTM D 1129 : 2010 | Standard Terminology Relating to Water |
ASTM D 5810 : 1996 | Standard Guide for Spiking into Aqueous Samples |
ASTM D 3370 : 2007 | Standard Practices for Sampling Water from Closed Conduits |
ASTM D 1129 : 2006 : REV A : EDT 1 | Standard Terminology Relating to Water |
ASTM D 1129 : 2001 | Standard Terminology Relating to Water |
ASTM D 1129 : 2004 : EDT 1 | Standard Terminology Relating to Water |
ASTM D 1193 : 2006 : R2018 | Standard Specification for Reagent Water |
ASTM D 2777 : 2008 : EDT 1 | Standard Practice for Determination of Precision and Bias of Applicable Test Methods of Committee D19 on Water |
ASTM D 5810 : 1996 : R2015 | Standard Guide for Spiking into Aqueous Samples |
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