CEN TR 15018-2005 Characterization of waste - Digestion of waste samples using alkali-fusion techniques《废弃物特性 通过碱熔融技术进行废弃物样品分类》.pdf
《CEN TR 15018-2005 Characterization of waste - Digestion of waste samples using alkali-fusion techniques《废弃物特性 通过碱熔融技术进行废弃物样品分类》.pdf》由会员分享,可在线阅读,更多相关《CEN TR 15018-2005 Characterization of waste - Digestion of waste samples using alkali-fusion techniques《废弃物特性 通过碱熔融技术进行废弃物样品分类》.pdf(28页珍藏版)》请在麦多课文档分享上搜索。
1、PUBLISHED DOCUMENTPD CEN/TR 15018:2005Characterization of waste Digestion of waste samples using alkali-fusion techniquesICS 13.030.01g49g50g3g38g50g51g60g44g49g42g3g58g44g55g43g50g56g55g3g37g54g44g3g51g40g53g48g44g54g54g44g50g49g3g40g59g38g40g51g55g3g36g54g3g51g40g53g48g44g55g55g40g39g3g37g60g3g38g
2、50g51g60g53g44g42g43g55g3g47g36g58PD CEN/TR 15018:2005This Published Document was published under the authority of the Standards Policy and Strategy Committee on 19 January 2006 BSI 19 January 2006ISBN 0 580 47029 6National forewordThis Published Document is the official English language version of
3、CEN/TR 15018:2005.The UK participation in its preparation was entrusted by Technical Committee B/508, Waste management, to Subcommittee B/508/3, Waste characterization, which has the responsibility to: A list of organizations represented on this subcommittee can be obtained on request to its secreta
4、ry.Cross-referencesThe British Standards which implement international publications referred to in this document may be found in the BSI Catalogue under the section entitled “International Standards Correspondence Index”, or by using the “Search” facility of the BSI Electronic Catalogue or of Britis
5、h Standards Online.This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application.Compliance with a Published Document does not of itself confer immunity from legal obligations. aid enquirers to understand the text; present
6、to the responsible international/European committee any enquiries on the interpretation, or proposals for change, and keep UK interests informed; monitor related international and European developments and promulgate them in the UK.Summary of pagesThis document comprises a front cover, an inside fro
7、nt cover, the CEN/TR title page, pages 2 to 25 and a back cover.The BSI copyright notice displayed in this document indicates when the document was last issued.Amendments issued since publicationAmd. No. Date CommentsTECHNICAL REPORTRAPPORT TECHNIQUETECHNISCHER BERICHTCEN/TR 15018November 2005ICS 13
8、.030.01English VersionCharacterization of waste - Digestion of waste samples usingalkali-fusion techniquesCaractrisation des dchets - Digetsion dchnatillon dedchets par Mise en solution par fusion alcaline - Guide debonnes pratiques pour la mise en solution par fusion - Lesdiffrentes mthodes et prot
9、ocoles existantsAufschluss von Abfallproben mittels AlkalifusionThis Technical Report was approved by CEN on 6 December 2004. It has been drawn up by the Technical Committee CEN/TC 292.CEN members are the national standards bodies of Austria, Belgium, Cyprus, Czech Republic, Denmark, Estonia, Finlan
10、d, France,Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Slovakia,Slovenia, Spain, Sweden, Switzerland and United Kingdom.EUROPEAN COMMITTEE FOR STANDARDIZATIONCOMIT EUROPEN DE NORMALISATIONEUROPISCHES KOMITEE FR NORMUN
11、GManagement Centre: rue de Stassart, 36 B-1050 Brussels 2005 CEN All rights of exploitation in any form and by any means reservedworldwide for CEN national Members.Ref. No. CEN/TR 15018:2005: E2 Contents Introduction4 1 Scope .5 2 General information5 2.1 Digestion of samples 5 2.2 Digestion by fusi
12、on.5 3 Fluxes 6 3.1 Alkaline fluxes.7 3.2 Acid fluxes.10 3.3 Oxidising fluxes 11 3.4 Reducing fluxes (alkaline fluxes + reducing agents, sulphides).12 3.5 Digestion by sintering 12 4 The crucibles.12 4.1 Platinum.12 4.2 Silver 13 4.3 Nickel .13 4.4 Vitreous carbon.13 4.5 Iron.13 4.6 Porcelain13 5 Pr
13、otocols currently used within industry13 5.1 Analysis of 16 metallic elements in crushing residues 11 13 5.2 Determination of Si, Al, Fe, Mn, Mg, Cr, Ti, and F in slags 12 .15 5.3 Fusion with carbonate or borate mixture 15.16 5.4 Fusion with lithium borate 14 17 5.5 Standards (non exhaustive list) .
14、17 5.6 Fluxes and their applications.18 6 Comparison of different digestion techniques .21 7 Conclusion 23 Bibliography.24 CEN/TR 15018:20053 Foreword This Technical Report (CEN/TR 15018:2005) has been prepared by Technical Committee CEN/TC 292 “Characterization of waste”, the secretariat of which i
15、s held by NEN. This Technical Report is the translation of the French guideline BP X 30-428 “Digestion by fusion Good practice guide for digestion by fusion: the different existing methods and protocols“ and adoption as a CEN/TR. It gives information about the digestion of the waste samples using al
16、kali-fusion techniques. CEN/TR 15018:20054 Introduction EU regulations (e.g. hazardous waste, waste incineration, European waste catalogue) ask in many cases for the total content of certain elements. In the European landfill directive, knowledge of total composition is given as an example of waste
17、property-based criteria and is part of the basic characterization of waste. In these special cases the total content of certain elements has to be determined. The standard based on acid digestion of waste samples (EN 13656) is in almost all cases applicable. However for some elements or waste compos
18、ed of very refractory matrix (e.g. silicates, carbides, oxides), or when some residue is left after acid digestion, alkali-fusion may be used to bring the waste sample completely into solution. CEN/TR 15018:20055 1 Scope This Technical Report describes digestion methods for the determination of elem
19、ent contents of waste samples by using different alkali-fusion techniques. 2 General information 2.1 Digestion of samples The determination of the elemental chemical composition of waste material includes a pretreatment of the sample comprising several stages: sampling for analysis (drying, crushing
20、, homogenisation, sample reduction); digestion. This last stage of digestion is essential because it allows to obtain a homogenous medium compatible with current analytical methods (atomic absorption spectrometry AAS, inductively coupled plasma and atomic emission spectrometry ICP/AES, inductively c
21、oupled plasma mass spectrometry ICP/MS, molecular absorption spectrometry MAS, X-ray fluorescencespectometry XRF). The diversity of the materials is such that this stage remains very complex and can give rise to major errors due mainly to: contamination of the sample by digestion reagents; incomplet
22、e digestion; loss of elements by adsorption onto the mineralization residue, onto the filter, or onto the walls of the mineralization reaction vessel; loss of elements by volatilisation (over and above those connected with drying and crushing); loss by reprecipitation in the form of hardly soluble s
23、alts. Digestion is generally conducted in two stages. The attack, which consists in destroying the samples organic matter and in dissolving the mineral residue by possibly modifying the specification by a very aggressive medium, followed by a dilution of the residue by a liquid allowing to obtain a
24、homogeneous solution compatible with the subsequently implemented analytical techniques. Specific methods have been developed for volatile elements. While numerous digestion methods exist, none is universal. The choice depends, on the one hand, on the nature of the sample (matrix type) and, on the o
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