ASTM D5904-02(2017) Standard Test Method for Total Carbon, Inorganic Carbon, and Organic Carbon in Water by Ultraviolet, Persulfate Oxidation, and Membrane Conductivity Detection.pdf
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1、Designation: D5904 02 (Reapproved 2017)Standard Test Method forTotal Carbon, Inorganic Carbon, and Organic Carbon inWater by Ultraviolet, Persulfate Oxidation, and MembraneConductivity Detection1This standard is issued under the fixed designation D5904; the number immediately following the designati
2、on indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the determi
3、nation of totalcarbon (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 testmethod utilizes ultraviolet-persulfate oxidation of organiccarbon, coupled with a CO2selective membrane to
4、recover theCO2into deionized water. The change in conductivity of thedeionized water is measured and related to carbon concentra-tion in the oxidized sample. Inorganic carbon is determined ina similar manner without the requirement for oxidation. In bothcases, the sample is acidified to facilitate C
5、O2recovery throughthe membrane. The relationship between the conductivitymeasurement and carbon concentration is described by a set ofchemometric equations for the chemical equilibrium of CO2,HCO3,H+, and the relationship between the ionic concentra-tions and the conductivity. The chemometric model
6、includesthe temperature dependence of the equilibrium constants andthe specific conductances.1.2 This test method has the advantage of a very highsensitivity detector that allows very low detection levels onrelatively small volumes of sample. Also, use of two measure-ment channels allows determinati
7、on of CO2in the sampleindependently of organic carbon. Isolation of the conductivitydetector from the sample by the CO2selective membraneresults in a very stable calibration, with minimal interferences.1.3 This test method was used successfully with reagentwater spiked with sodium bicarbonate and va
8、rious organicmaterials. It is the users responsibility to ensure the validity ofthis test method for waters of untested matrices.1.4 This test method is applicable only to carbonaceousmatter in the sample that can be introduced into the reactionzone. The injector opening size generally limits the ma
9、ximumsize of particles that can be introduced.1.5 In addition to laboratory analyses, this test method maybe applied to on line monitoring.1.6 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.7 This standard does not purport to
10、 address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety, health, and environmental practices and deter-mine the applicability of regulatory limitations prior to use.1.8 This international standard was
11、developed in accor-dance with internationally recognized principles on standard-ization established in the Decision on Principles for theDevelopment of International Standards, Guides and Recom-mendations issued by the World Trade Organization TechnicalBarriers to Trade (TBT) Committee.2. Referenced
12、 Documents2.1 ASTM Standards:2D1129 Terminology Relating to WaterD1192 Guide for Equipment for Sampling Water and Steamin Closed Conduits (Withdrawn 2003)3D1193 Specification for Reagent WaterD2777 Practice for Determination of Precision and Bias ofApplicable Test Methods of Committee D19 on WaterD3
13、370 Practices for Sampling Water from Closed ConduitsD5810 Guide for Spiking into Aqueous SamplesD5847 Practice for Writing Quality Control Specificationsfor Standard Test Methods for Water Analysis3. Terminology3.1 Definitions:3.1.1 For definitions of terms used in this standard, refer toTerminolog
14、y D1129.1This test method is under the jurisdiction of ASTM Committee D19 on Waterand is the direct responsibility of Subcommittee D19.06 on Methods forAnalysis forOrganic Substances in Water.Current edition approved Feb. 1, 2017. Published February 2017. Originallyapproved in 1996. Last previous ed
15、ition approved in 2009 as D5904 02 (2009).DOI: 10.1520/D5904-02R17.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM we
16、bsite.3The last approved version of this historical standard is referenced onwww.astm.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United StatesThis international standard was developed in accordance with internationally recognized principle
17、s on standardization established in the Decision on Principles for theDevelopment of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.13.2 Definitions of Terms Specific to This Standard:3.2.1 inorganic carbon (IC),
18、 ncarbon in the form ofcarbon dioxide, carbonate ion, or bicarbonate ion.3.2.2 potassium hydrogen phthalate (KHP), nKHC8H4O4.3.2.3 refractory material, nthat which cannot be oxidizedcompletely under the test method conditions.3.2.4 total carbon (TC), nthe sum of IC and TOC.3.2.5 total organic carbon
19、 (TOC), ncarbon in the form oforganic compounds.4. Summary of Test Method4.1 FundamentalsCarbon can occur in water as inorganicand organic compounds. This test method can be used to makeindependent measurements of IC and TC and can also deter-mine TOC as the difference of TC and IC. If IC is high re
20、lativeto TOC it is desirable to use a vacuum degassing unit to reducethe IC concentration as part of the measurement.Alternatively,the IC can be removed by acidifying and sparging the sampleprior to injection into the instrument.4.2 The basic steps of this test method are:FIG. 1 Schematic Diagram of
21、 TOC Analyzer SystemD5904 02 (2017)24.2.1 Removal of IC, if desired, by vacuum degassing;4.2.2 Conversion of remaining inorganic carbon to CO2byaction of acid in both channels and oxidation of total carbon toCO2by action of acid-persulfate, aided by ultraviolet (UV)radiation in the TC channel;4.2.3
22、Detection of CO2that is swept out of the reactors bythe liquid stream over membranes that allow the specificpassage of CO2to high purity water where change in conduc-tivity is measured; and4.2.4 Conversion of the conductivity detector signal to adisplay of carbon concentration in parts per million(p
23、pm = mgL) or parts per billion (ppb = gL). The IC chan-nel reading is subtracted from the TC channel to give a TOCreading. A diagram of suitable apparatus is given in Fig. 1.References (1-5)4provide additional information on this testmethod.5. Significance and Use5.1 This test method is used for det
24、ermination of the carboncontent of water from a variety of natural, domestic, andindustrial sources. In its most common form, this test methodis used to measure organic carbon as a means of monitoringorganic pollutants in high purity and drinking water. Thesemeasurements are also used in monitoring
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