CEN TR 16363-2012 Characterization of waste - Kinetic testing for assessing acid generation potential of sulfidic waste from extractive industries《表征的浪费 动力学测试评估酸代sulfidic废料采掘业的潜力》.pdf
《CEN TR 16363-2012 Characterization of waste - Kinetic testing for assessing acid generation potential of sulfidic waste from extractive industries《表征的浪费 动力学测试评估酸代sulfidic废料采掘业的潜力》.pdf》由会员分享,可在线阅读,更多相关《CEN TR 16363-2012 Characterization of waste - Kinetic testing for assessing acid generation potential of sulfidic waste from extractive industries《表征的浪费 动力学测试评估酸代sulfidic废料采掘业的潜力》.pdf(36页珍藏版)》请在麦多课文档分享上搜索。
1、raising standards worldwideNO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAWBSI Standards PublicationCharacterization of waste Kinetic testing for assessing acid generation potential of sulfidic waste from extractiveindustriesPD CEN/TR 16363:2012National forewordThis Published D
2、ocument is the UK implementation of CEN/TR 16363:2012.The UK participation in its preparation was entrusted by Technical CommitteeB/508, Waste Management, to Subcommittee B/508/3, Characterization ofwaste.A list of organizations represented on this committee can be obtained onrequest to its secretar
3、y.This publication does not purport to include all the necessary provisions of acontract. Users are responsible for its correct application. The British Standards Institution 2013Published by BSI Standards Limited 2013ISBN 978 0 580 72732 0ICS 13.030.01Compliance with a British Standard cannot confe
4、r immunity fromlegal obligations.This Published Document was published under the authority of theStandards Policy and Strategy Committee on 31 January 2013.Amendments issued since publicationAmd. No. Date Text affectedPUBLISHED DOCUMENTPD CEN/TR 16363:2012TECHNICAL REPORT RAPPORT TECHNIQUE TECHNISCH
5、ER BERICHT CEN/TR 16363 December 2012 ICS 13.030.01 English Version Characterization of waste - Kinetic testing for assessing acid generation potential of sulfidic waste from extractive industries Caractrisation des dchets - Essais cintiques pour la dtermination du potentiel de gnration dacide des d
6、chets sulfurs des industries extractives Charakterisierung von Abfllen - Kinetische Prfungen zur Bestimmung des Surebildungspotentials von sulfidhaltigen Abfllen der mineralgewinnenden Industrie This Technical Report was approved by CEN on 9 April 2012. It has been drawn up by the Technical Committe
7、e CEN/TC 292. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands,
8、Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and United Kingdom. EUROPEAN COMMITTEE FOR STANDARDIZATION COMIT EUROPEN DE NORMALISATION EUROPISCHES KOMITEE FR NORMUNG Management Centre: Avenue Marnix 17, B-1000 Brussels 2012 CEN All rights of exploitation
9、in any form and by any means reserved worldwide for CEN national Members. Ref. No. CEN/TR 16363:2012: EPD CEN/TR 16363:2012CEN/TR 16363:2012 (E) 2 Contents Page Foreword 4Introduction .51 Scope 72 Methods 72.1 General 72.2 Planning 72.3 Testing data 92.4 Humidity cell test 102.5 Other column tests .
10、 112.6 Lysimeter . 122.7 Field test 122.7.1 General . 122.7.2 Rainfall simulation tests 132.7.3 Long-term field tests 132.8 Key testing variables 132.8.1 General . 132.8.2 Sample size and sample preparation 142.8.3 Temperature 152.8.4 Duration . 152.8.5 Sample selection. 152.9 Method summary 153 Int
11、erpretation and evaluation 173.1 General . 173.2 Reaction rates . 173.2.1 General . 173.2.2 Sulfide oxidation rate, assessed by sulfate release 183.2.3 Sulfide oxidation rate, assessed by oxygen consumption 193.3 Leaching rates . 203.4 Leaching result evaluation 213.5 Application to field conditions
12、 223.5.1 General . 223.5.2 Mineralogy/mineral chemistry . 233.5.3 Particle size . 233.5.4 Texture / hydraulic conditions . 243.5.5 Air flow / oxygen exposure 243.5.6 Temperature 243.5.7 Microbes (inhibitors/enhancers) . 243.5.8 Test duration . 253.6 Field test evaluations . 253.6.1 General . 253.6.2
13、 Rainfall simulation tests 253.6.3 Long-term field tests 254 Recommendations 274.1 General . 274.2 Assess if the material is going acidic or not . 274.3 Define sulfide oxidation rate 274.4 Define acid consuming reaction rate 274.5 Assess when the material will go acidic 284.6 Estimate leaching rates
14、 and leachate quality 284.7 Evaluate closure options . 28PD CEN/TR 16363:2012CEN/TR 16363:2012 (E) 3 Bibliography 29PD CEN/TR 16363:2012CEN/TR 16363:2012 (E) 4 Foreword This document (CEN/TR 16363:2012) has been prepared by Technical Committee CEN/TC 292 “Characterization of waste”, the secretariat
15、of which is held by NEN. The preparation of this document by CEN is based on a mandate by the European Commission (Mandate M/395), which assigned the development of standards on the characterization of waste from extractive industries. Attention is drawn to the possibility that some of the elements
16、of this document may be the subject of patent rights. CEN and/or CENELEC shall not be held responsible for identifying any or all such patent rights. PD CEN/TR 16363:2012CEN/TR 16363:2012 (E) 5 Introduction A specific feature of sulfide containing waste is the risk for acid/neutral drainage generati
17、on (A/NRD). Acid drainage occurs if the acid generation from sulfide oxidation exceeds the acid buffering from minerals in the waste while, in this context, neutral drainage occurs when neutralisation generation exceeds the acid generation. Test methods for the determination of acid generation behav
18、iour can be divided into static and kinetic tests. A static test is used for screening purposes. It is usually relatively fast to perform, but gives only indicative information based on total content of sulfur (or sulfides) and of readily available buffering minerals in the waste material. Kinetic t
19、ests give more detailed information on behaviour based on the determination of mineral reaction rates under specified conditions. A European Standard, EN 15875, has been established for the static testing, while this Technical Report gives guidance on how the kinetic testing may be performed and int
20、erpreted. Kinetic testing has been required as part of permit processes for many new and operating mine sites. Many different test methods have been used over the last 20 to 30 years. These tests are commonly designed to avoid that the oxidation rate is limited due to the lack of oxygen or build-up
21、of secondary minerals. Kinetic tests based on current standards and laboratory-scale standard practise (ASTM D5744 - 96:2001 and ASTM D5744 - 07:2007; Morin and Hutt, 1997; Lapakko, 2003) are not designed to evaluate short- and long-term drainage water quality. However, adjustments to the standard p
22、rotocols can be done to produce indicative information about short-term drainage water quality. Together with modelling, this information can be used to predict/estimate long-term drainage water quality. This Technical Report is a guidance document that discusses the main kinetic test methods that a
23、re used within the mining sector internationally, the applicability of the different tests and how to evaluate the results. Kinetic test results may provide valuable information, but it is important to understand their limitations. Sulfide oxidation in the field is controlled by many different facto
24、rs that may be difficult to simulate within the laboratory. Some of these factors may in fact be unknown at the time of testing. The complexity of applying test results to field conditions may to some extent be balanced by long experience in evaluating such data. The objective of this Technical Repo
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