ANSI ASME PTC 31-2011 High-Purity Water Treatment Systems.pdf
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1、AN AMERICAN NATIONAL STANDARD ASME PTC 31-2011Revision of ASME PTC 31-1973 (R1991)High-Purity Water Treatment SystemsPerformance Test CodesASME PTC 31-2011High-PurityWater TreatmentSystemsPerformance Test CodesAN AMERICAN NATIONAL STANDARDRevision of ASME PTC 31-1973 (R1991)Three Park Avenue New Yor
2、k, NY 10016 USADate of Issuance: April 9, 2012This Code will be revised when the Society approves the issuance of a new edition. There will be no addenda issued to PTC 31-2011.ASME issues written replies to inquiries concerning interpretations of technical aspects of this Code. Periodically certain
3、actions of the ASME PTC Committee may be published as Code Cases. Code Cases and interpretations are published on the ASME Web site under the Committee Pages at http:/cstools.asme.org/ as they are issued.Errata to codes and standards may be posted on the ASME Web site under the Committee Pages to pr
4、ovide correc-tions to incorrectly published items, or to correct typographical or grammatical errors in codes and standards. Such errata shall be used on the date posted.The Committee Pages can be found at http:/cstools.asme.org/. There is an option available to automatically receive an e-mail notif
5、ication when errata are posted to a particular code or standard. This option can be found on the appro-priate Committee Page after selecting “Errata” in the “Publication Information” section.ASME is the registered trademark of The American Society of Mechanical Engineers.This code or standard was de
6、veloped under procedures accredited as meeting the criteria for American National Standards. The Standards Committee that approved the code or standard was balanced to assure that individuals from competent and concerned interests have had an opportunity to participate. The proposed code or standard
7、 was made available for public review and comment that provides an opportunity for additional public input from industry, academia, regulatory agencies, and the public-at-large.ASME does not “approve,” “rate,” or “endorse” any item, construction, proprietary device, or activity.ASME does not take an
8、y position with respect to the validity of any patent rights asserted in connection with any items mentioned in this document, and does not undertake to insure anyone utilizing a standard against liability for infringement of any applicable letters patent, nor assumes any such liability. Users of a
9、code or standard are expressly advised that determination of the validity of any such patent rights, and the risk of infringement of such rights, is entirely their own responsibility.Participation by federal agency representative(s) or person(s) affiliated with industry is not to be interpreted as g
10、overnment or industry endorsement of this code or standard.ASME accepts responsibility for only those interpretations of this document issued in accordance with the established ASME procedures and policies, which precludes the issuance of interpretations by individuals.No part of this document may b
11、e reproduced in any form,in an electronic retrieval system or otherwise,without the prior written permission of the publisher.The American Society of Mechanical EngineersThree Park Avenue, New York, NY 10016-5990Copyright 2012 byTHE AMERICAN SOCIETY OF MECHANICAL ENGINEERSAll rights reservedPrinted
12、in U.S.A.iiiCONTENTSNotice vForeword viCommittee Roster viiCorrespondence With the PTC Committee . viiiSection 1 Object and Scope 11-1 Object . 11-2 Scope 11-3 Test Uncertainties 2Section 2 Description and Definition of TermsIon Exchange . 32-1 Definitions . 32-2 References . 10Section 3 Guiding Pri
13、nciples . 123-1 Advance Planning for Test . 123-2 General Description of Test Requirements 123-3 Preliminary Tests . 123-4 Frequency of Observations. 133-5 Duration of Test Runs . 133-6 General Description of Test Procedures . 133-7 Membranes Testing . 153-8 Reverse Osmosis (RO) Operating Performanc
14、e 193-9 Membrane Plant Performance Normalization 21Section 4 Instruments and Methods of Measurement . 244-1 Instruments and Methods of Measurement 244-2 Mechanical Measurements . 244-3 Flowmeter Absence . 244-4 Temperature Measurement 244-5 Loss of Pressure Measurement 244-6 Pressure Loss Across a S
15、ingle Unit/Array or Train of Multiple Units/Arrays Measurement 254-7 Pressure Loss Indication Across a Resin Bed Measurement . 254-8 Chemical Measurements 254-9 Sampling of Water From Influent and Effluent of Water Treatment Equipment . 254-10 Field Sampling of Media 264-11 Field Measurement of Resi
16、n Volume 264-12 Analysis of Ion Exchange Materials 264-13 Sampling for Suspended Solids . 264-14 Ion Exchange Operating Capacity 27Section 5 Interpretation of Results 295-1 Introduction 295-2 Performance Benchmark 325-3 Calculations and Analytical Procedures 325-4 Expression of Specified Performance
17、 and Results of Tests 32Section 6 Report of Tests 336-1 Report of Tests 33ivTables3-6.1.4-1 Resin Volume Change Chemical Form-to-Form . 143-6.3-1 Ion Exchange System Performance Testing . 163-6.4-1 Chemical Measurements During Ion Exchange System Performance Testing . 173-8.2-1 K-Factor for Reverse
18、Osmosis Calculations . 203-8.2-2 SDI Indices 204-13-1 Purge Times Required for Representative Sampling . 275-1.1.1-1 Typical Operating Flow Rates Specifications 305-1.1.1-2 Typical System Flux Rates 30Mandatory AppendicesI Regenerant Purity Requirements for Ion Exchange Materials 35II Suspended Iron
19、 Oxide Solids: Membrane Comparison Charts 38Nonmandatory AppendicesA Sample Calculations 40B Causes of Operating Capacity Reduction 46C Selectivity of Resins . 47vNOTICEAll Performance Test Codes MUST adhere to the requirements of PTC 1, General Instructions. The following infor-mation is based on t
20、hat document and is included here for emphasis and for the convenience of the user of this Code. It is expected that the Code user is fully cognizant of Sections 1 and 3 of ASME PTC 1 and has read them prior to applying this Code.ASME Performance Test Codes provide test procedures that yield results
21、 of the highest level of accuracy consistent with the best engineering knowledge and practice currently available. They were developed by balanced committees representing all concerned interests and specify procedures, instrumentation, equipment-operating requirements, calculation methods, and uncer
22、tainty analysis.When tests are run in accordance with a Code, the test results themselves, without adjustment for uncertainty, yield the best available indication of the actual performance of the tested equipment. ASME Performance Test Codes do not specify means to compare those results to contractu
23、al guarantees. Therefore, it is recommended that the parties to a commercial test agree before starting the test and preferably before signing the contract on the method to be used for comparing the test results to the contractual guarantees. It is beyond the scope of any Code to determine or interp
24、ret how such comparisons shall be made.viFOREWORDThe ASME Performance Test Codes Committee voted in December 1965 to establish a Test Code Committee for Demineralizers (PTC 31) and later approved as PTC 31 Committees objective, the development of a Test Code that would define the procedures for the
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