API PUBL 4629-2007 Hexavalent Chromium Exposures During Hot Work (Second Edition Includes Access to Additional Content)《炎热环境下工作的六价铬暴露.(性别歧视条例)的认购客户参考 以获得您的互补拷贝接触的his在1-800-854-7179.pdf
《API PUBL 4629-2007 Hexavalent Chromium Exposures During Hot Work (Second Edition Includes Access to Additional Content)《炎热环境下工作的六价铬暴露.(性别歧视条例)的认购客户参考 以获得您的互补拷贝接触的his在1-800-854-7179.pdf》由会员分享,可在线阅读,更多相关《API PUBL 4629-2007 Hexavalent Chromium Exposures During Hot Work (Second Edition Includes Access to Additional Content)《炎热环境下工作的六价铬暴露.(性别歧视条例)的认购客户参考 以获得您的互补拷贝接触的his在1-800-854-7179.pdf(23页珍藏版)》请在麦多课文档分享上搜索。
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6、t, or guarantee that such products do in fact conform to the applicable API standard. All rights reserved. No part of this work may be reproduced, stored in a retrieval system, or transmitted by any means, electronic, mechanical, photocopying, recording, or otherwise, without prior written permissio
7、n from the publisher. Contact the Publisher, API Publishing Services, 1220 L Street, N.W., Washington, D.C. 20005. Copyright 2007 American Petroleum Institute API FOREWORD Nothing contained in any API publication is to be construed as granting any right, by implication or otherwise, for the manufact
8、ure, sale, or use of any method, apparatus, or product covered by letters patent. Neither should anything contained in the publication be construed as insuring anyone against liability for infringement of letters patent. Suggested revisions are invited and should be submitted to the Director of Regu
9、latory Analysis and Scientific Affairs, API, 1220 L Street, NW, Washington, DC 20005. TABLE OF CONTENTS Executive Summary 1 Methodology 2 Discussion. 3 Carbon Arc Cutting (CAC). 3 Flux Cored Arc Welding (FCAW) . 4 Gas Metal Arc Welding (GMAW or MIG) 5 Grinding 6 Gas Tungsten Arc Welding (GTAW) . 8 O
10、xyfuel Cutting (OFC). 9 Shielded Metal Arc Welding (SMAW or stick welding) 10 Conclusions 12 References 12 List of Figures Figure 1: Overview by Type of Hot Work 1 Figure 2: Overview by Base Metal 2 Figure 3: CAC Results Distribution 4 Figure 4: FCAW Results Distribution 5 Figure 5: GMAW Results Dis
11、tribution. 6 Figure 6: Grinding Results Distribution. 7 Figure 7: GTAW Results Distribution 9 Figure 8: OFC Results Distribution 10 Figure 9: SMAW Results Distribution 11 List of Tables Table 1: CAC Results Summary . 3 Table 2: FCAW Results Summary 4 Table 3: GMAW Results Summary 5 Table 4: Grinding
12、 Results Summary 7 Table 5: GTAW Results Summary . 8 Table 6: OFC Results Summary 9 Table 7: SMAW Results Summary . 11 1 Users of this information should not rely exclusively on the information contained in this document. Sound business, scientific, engineering, and safety judgment should be used in
13、 employing the information contained herein. Hexavalent Chromium Exposures During Hot Work Executive Summary This report details the findings from an air sampling survey contracted by the American Petroleum Institute (API) to evaluate inhalation exposures to hexavalent chromium (chromium (VI) during
14、 seven types of hot work: carbon arc cutting (CAC), flux cored arc welding (FCAW), gas metal arc welding (GMAW or MIG), grinding, gas tungsten arc welding (GTAW or TIG), oxyfuel gas cutting (OFC or torch cutting), and shielded metal arc welding (SMAW or stick). Eighty-three samples were collected in
15、 October and November 2005 at two petroleum sites during maintenance turnarounds by API member companies. An additional 188 samples were collected April June 2006 at three different petroleum company sites by ICU Environmental Health and Safety. Of the 271 total samples, 63 samples were at or above
16、the Occupational Safety and Health Administration (OSHA) action level of 2.5 ug/m3and 51 were at or above the OSHA permissible exposure limit of 5 ug/m3. The following two figures show an overview of the results. The first figure shows the number of samples collected for each type of hot work and th
17、e number of those samples that exceeded the OSHA permissible exposure limit and/or action level. Figure 1: Overview by Type of Hot Work The second figure shows the distribution of samples exceeding the exposure limit and/or action level grouped according to the base metal involved during the sample
18、collection. 6 92739775108521571701741155130130 20406080100120CAC FCAW GMAW (MIG) Grinding GTAW(TIG)OFC(TorchCutting)SMAW(Stick)Total Number of SamplesNumber Action LevelNumber PEL2 API PUBLICATION 4629 Users of this information should not rely exclusively on the information contained in this documen
19、t. Sound business, scientific, engineering, and safety judgment should be used in employing the information contained herein. Figure 2: Overview by Base Metal 665422498026093439012390102030405060708090Carbon Steel Chrome Steel GalvanizedSteelInconel StainlessSteelTotal Number of SamplesNumber PELNum
20、ber Action LevelFrom the two figures, it is apparent that both the type of hot work and the type of base metal must be considered together in order to draw conclusions on expected airborne concentrations. As discussed in the report, sample results were grouped based on type of hot work and base meta
21、l. In some cases, it was also important to look at the environmental conditions and the welding electrode as well. The intent of this survey is to provide sampling data that can be used as objective data to characterize employee exposure to chromium (VI) in accordance with the requirements of 29 CFR
22、 1910.1026. Methodology Samples were collected and analyzed in accordance with the National Institute of Occupational Safety and Health (NIOSH) Method 7605. All activities were sampled by drawing known volumes of air through 37-mm polystyrene cassettes containing PVC filters. Prior to sampling, pers
23、onal air sampling pumps were calibrated to +/- 5% of the recommended flow rate of 1.0 liter/minute with the representative sampler in line. Flow rates were verified after sampling. The air sampling pump was placed on the workers belt and the sampling cassette was placed in the breathing zone outside
24、 the welding helmet. The majority of the samples were TWA samples, collected for the majority of the shift (8- 10- and 12-hour shifts were monitored). Twelve of the samples are considered task samples (sample time was less than five hours). After sampling, the samples and field blanks were kept refr
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