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Local Exhaust Ventilation for the Control of Welding Fumes in the Construction Industry—A Literature Review

机译:建筑业中控制焊接烟气的局部排气通风—文献综述

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摘要

Arc welding is a common unit operation in the construction industry, where frequent changes in location and welding position make it more difficult to control fume exposures than in industries where fixed locations are the norm. Welders may be exposed to a variety of toxic airborne contaminants including manganese (Mn) and hexavalent chromium (CrVI). Local exhaust ventilation (LEV) is a well-known engineering control for welding fumes but has not been adopted widely in the construction industry. This literature review presents data on the performance of a variety of LEV systems for welding fume control from the construction (five references), shipyard (five references), and other industries. The studies indicate that LEV can reduce fume exposures to total particulate, Mn, and CrVI to levels below currently relevant standards. Field studies suggest that 40–50% or more reduction in exposure is possible with portable or fixed LEV systems relative to natural ventilation but that correct positioning of the hood and adequate exhaust flow rates are essential. Successful implementation of extraction guns for gas metal arc welding (GMAW) and flux core arc welding has been demonstrated, indicating that a successful balance between extraction airflow and shielding gas requirements is possible. Work practices are an important part of achieving successful control of fume exposures; in particular, positioning the hood close to the arc, checking exhaust flow rates, and avoiding the plume. Further research is needed on hood size effects for controlling welding fume with portable LEV systems and identifying and overcoming barriers to LEV use in construction.
机译:电弧焊是建筑行业中的常见单元操作,与固定位置为常态的行业相比,位置和焊接位置的频繁更改使控制烟尘暴露更加困难。焊工可能会接触到各种有毒的空气污染物,包括锰(Mn)和六价铬(CrVI)。局部排气通风(LEV)是一种用于焊接烟气的众所周知的工程控制方法,但并未在建筑行业中广泛采用。该文献综述提供了有关建筑(五个参考文献),造船厂(五个参考文献)和其他行业用于焊接烟雾控制的各种LEV系统性能的数据。研究表明,LEV可以将烟尘暴露于总颗粒,Mn和CrVI的水平降至目前相关标准以下。现场研究表明,相对于自然通风,便携式或固定式LEV系统可将暴露减少40%至50%或更多,但正确的通风橱位置和足够的排气流量至关重要。已证明成功实施了用于气体金属电弧焊(GMAW)和药芯焊丝的抽气枪,这表明在抽气气流和保护气体需求之间取得成功的平衡是可能的。工作实践是成功控制烟气暴露的重要组成部分;特别是将机罩放置在靠近电弧的位置,检查排气流量,并避免起烟。需要进一步研究引擎盖尺寸的影响,以通过便携式LEV系统控制焊接烟气,并确定和克服在建筑中使用LEV的障碍。

著录项

  • 来源
    《Annals of Occupational Hygiene》 |2012年第7期|p.764-776|共13页
  • 作者单位

    1Department of Environmental Sciences and Engineering, University of North Carolina, Chapel Hill, NC 27599-7431, USA 2Center for Construction Research and Training, 8484 Georgia Avenue, Suite 1000, Silver Spring, MD 20910, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 01:11:09

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