BS PD 6699-2-2007 Nanotechnologies – nPart 2 Guide to safe handling and ndisposal of manufactured nnanomaterials《纳米技术 第2部分 安全处理和处置人造纳米材料用指南》.pdf
《BS PD 6699-2-2007 Nanotechnologies – nPart 2 Guide to safe handling and ndisposal of manufactured nnanomaterials《纳米技术 第2部分 安全处理和处置人造纳米材料用指南》.pdf》由会员分享,可在线阅读,更多相关《BS PD 6699-2-2007 Nanotechnologies – nPart 2 Guide to safe handling and ndisposal of manufactured nnanomaterials《纳米技术 第2部分 安全处理和处置人造纳米材料用指南》.pdf(32页珍藏版)》请在麦多课文档分享上搜索。
1、PD 6699-2:2007 Nanotechnologies Part 2: Guide to safe handling and disposal of manufactured nanomaterials ICS 13.100; 71.100.99 NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW PUBLISHED DOCUMENTPublishing and copyright information The BSI copyright notice displayed in this doc
2、ument indicates when the document was last issued. BSI 2007 ISBN 978 0 580 60832 2 The following BSI references relate to the work on this Published Document: Committee reference NTI/1 Publication history First published December 2007 Amendments issued since publication Amd. no. Date Text affected P
3、D 6699-2:2007 BSI 2007 i PD 6699-2:2007 Contents Foreword ii 1 Scope 1 2 Manufactured nanomaterial types and characteristics 1 3 Nanoparticle exposure and risk 3 4 General approach to managing risks from nanoparticles 6 5 Identification and competence of person conducting risk assessment 7 6 Informa
4、tion collection 8 7 Risk evaluation 8 8 Control of exposure 11 9 Health surveillance 16 10 Measurement methods for evaluating controls 17 11 Spillages and accidental releases 20 12 Disposal procedures 21 13 Prevention of fire and explosion 23 Bibliography 24 List of figures Figure 1 Approach to mana
5、ging risks from nanoparticles 7 Figure 2 Hierarchy of control 11 Figure 3 Suggested control approaches for various generic tasks 15 List of tables Table 1 Devices for direct measurement of number, mass and surface area concentration (adapted from PD/ISO TR 27628) 18 Table 2 Devices for indirect meas
6、urement of number, mass and surface area concentration (adapted from ISO 2007) 18 Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages 1 to 26, an inside back cover and a back cover.PD 6699-2:2007 ii BSI 2007 Foreword Publishing information This Publis
7、hed Document is published by BSI and came into effect on 31 December 2007. BSI Committee NTI/1, Nanotechnologies, takes collective responsibility for its preparation. The Committee wishes to acknowledge the contribution of SAFENANO at the Institute of Occupational Medicine in preparing this Publishe
8、d Document. A list of organizations represented on the Committee can be obtained on request to its secretary. This Published Document was commissioned by the UK Department for Innovation, Universities and Skills (DIUS) to provide guidance for manufacturers and users of nanoparticles on their proper
9、handling and disposal in order to minimize the risk from known, and as yet unknown, health and environmental hazards associated with such materials. Use of this document As a guide, this Published Document takes the form of guidance and recommendations. It should not be quoted as if it were a specif
10、ication and particular care should be taken to ensure that claims of compliance are not misleading. It has been assumed in the preparation of this Published Document that the execution of its provisions will be entrusted to appropriately qualified and experienced people, for whose use it has been pr
11、oduced. Presentational conventions The provisions in this Published Document are presented in roman (i.e. upright) type. Its recommendations are expressed in sentences in which the principal auxiliary verb is “should”. The word “may” is used in the text to express permissibility, e.g. as an alternat
12、ive to the primary recommendation of the clause. The word “can” is used to express possibility, e.g. a consequence of an action or an event. Contractual and legal considerations This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its cor
13、rect application. This Published Document is not to be regarded as a British Standard. BSI 2007 1 PD 6699-2:2007 1 Scope This Published Document gives guidance on assessing risks and recognizing uncertainties in the development, manufacture and use of nanomaterials, and on developing and implementin
14、g an effective strategy to address and control the risks. It is applicable to a wide range of nanomaterials and nanostructured materials as defined in PAS 136, including nanoparticles, nanofibres, nanopowders, nanotubes and nanowires, generically referred to as nano-objects, as well as aggregates an
15、d agglomerates of these materials. It also covers any material or preparation in which such nanomaterials comprise a significant proportion. This guide is not applicable to incidentally produced nanoparticles, such as diesel exhaust and welding fumes. NOTE For the purposes of this guide the terms na
16、noparticle and nanomaterial are used interchangeably to refer to all of the nanomaterial types listed above. This Published Document recognizes that there is considerable uncertainty about many aspects of effective risk assessment of nanomaterials, including the hazardous potential of many types of
17、nanoparticles and the levels below which individuals might be exposed with minimal likelihood of adverse health effects. The guide therefore recommends a cautious strategy for handling and disposing of nanomaterials. 2 Manufactured nanomaterial types and characteristics 2.1 General This clause descr
18、ibes some of the more common types of manufactured nanomaterials to which this guide may be applied. It is not intended to be a full and comprehensive guide to nanoparticle types. 2.2 Fullerenes Fullerenes comprise one of four types of naturally occurring forms of carbon, first identified in the 198
19、0s 1. Their molecules are composed entirely of carbon and take the form of a hollow sphere or a tube. Fullerenes are similar in structure to graphite which comprises a sheet of hexagonal carbon rings, but contain pentagonal or heptagonal rings which enable 3D structures to be formed. The best known
20、fullerene is C 60 , often referred to as a buckminsterfullerene or a buckyball. Fullerenes are chemically stable materials and insoluble in aqueous solutions. Potential applications include drug delivery, coatings, lubrication and hydrogen storage (PAS 136).PD 6699-2:2007 2 BSI 2007 2.3 Carbon nanot
21、ubes Carbon nanotubes (CNTs) are a specific form of fullerenes, first reported by Iijima 2. They are similar in structure to C 60but are elongated to form tubular structures a few nm in diameter. They can be produced with very large aspect ratios and can be more than 1 mm in length. In their simples
22、t form, CNTs comprise a single layer of carbon atoms arranged in a cylinder, known as single-wall carbon nanotubes (SWCNTs). They can also be formed as multiple concentric tubes (multi-wall carbon nanotubes, MWCNTs) with diameters up to 20 nm, and length greater than 1 mm. CNTs have great tensile st
23、rength and are considered to be 100 times stronger than steel, whilst being only one sixth of its weight. They also exhibit high conductivity, high surface area, unique electronic properties, and potentially high molecular adsorption capacity 3. They are chemically stable materials and insoluble in
24、aqueous solutions. Potential applications include coatings, composites, electronics, water purification and construction materials. 2.4 Nanowires Nanowires are small conducting or semiconducting nanoparticles with a single crystal structure, a typical diameter of a few 10s of nm and a large aspect r
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