Reducing Dust and Respirable Crystalline Silica Near Conveyors Using a Hybrid Dust Control System.

IF 1.5 4区 工程技术 Q3 METALLURGY & METALLURGICAL ENGINEERING Mining, Metallurgy & Exploration Pub Date : 2024-11-01 DOI:10.1007/s42461-024-01095-y
David A Parks, Grant W King, B David Koski, Greg S Bierie, Carl B Sunderman, Samantha E Wilson, Arthur L Miller
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Abstract

Occupational exposures to respirable dusts and respirable crystalline silica (RCS) is well established as a health hazard in many industries including mining, construction, and oil and gas extraction. The U.S. National Institute for Occupational Safety and Health (NIOSH) is researching methods of controlling fugitive dust emissions at outdoor mining operations. In this study, a prototype engineering control system to control fugitive dust emissions was developed combining passive subsystems for dust settling with active dust filtration and spray-surfactant dust suppression comprising a hybrid system. The hybrid system was installed at an aggregate production facility to evaluate the effectiveness of controlling fugitive dust emissions generated from two cone crushers and belt conveyors that transport crushed materials. To evaluate effectiveness of the system, area air measurements (n = 14 on each day for a total of 42 samples) for respirable dust were collected by NIOSH before, during, and after the installation of the dust control system in the immediate vicinity of the crushers and the nearby conveyor transfer point. Compared to pre-intervention samples, over short periods of time, geometric mean concentrations of airborne respirable dust were reduced by 37% using passive controls (p = 0.34) but significantly reduced by 93% (p < 0.0001) when the full hybrid system was installed. This proof-of-concept project demonstrated that the combined use of active and passive dust controls along with a spray surfactant can be highly effective in controlling fugitive dust emissions even with minimal use of water, which is desirable for many remote mining applications.

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使用混合粉尘控制系统减少输送机附近的粉尘和可呼吸结晶二氧化硅。
在包括采矿、建筑、石油和天然气开采在内的许多行业中,职业暴露于可呼吸性粉尘和可呼吸性结晶二氧化硅(RCS)是公认的健康危害。美国国家职业安全与健康研究所(NIOSH)正在研究控制室外采矿作业中逸散粉尘排放的方法。在本研究中,开发了一种控制无组织粉尘排放的原型工程控制系统,该系统将被动粉尘沉降子系统与主动粉尘过滤子系统和喷雾表面活性剂抑尘子系统相结合,构成一个混合系统。该混合系统安装在一个骨料生产设施中,以评估控制两台圆锥破碎机和运输破碎物料的带式输送机产生的逸散粉尘排放的有效性。为了评估系统的有效性,NIOSH在安装粉尘控制系统之前,期间和之后收集了靠近破碎机和附近输送机转运点的呼吸性粉尘区域空气测量(n = 14,每天共42个样本)。与干预前的样本相比,在短时间内,被动对照的空气呼吸性粉尘几何平均浓度降低了37% (p = 0.34),而安装全混合系统后,空气呼吸性粉尘的几何平均浓度显著降低了93% (p < 0.0001)。这个概念验证项目表明,主动和被动粉尘控制以及喷雾表面活性剂的结合使用可以非常有效地控制逸散粉尘排放,即使使用最少的水,这对于许多远程采矿应用是理想的。
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来源期刊
Mining, Metallurgy & Exploration
Mining, Metallurgy & Exploration Materials Science-Materials Chemistry
CiteScore
3.50
自引率
10.50%
发文量
177
期刊介绍: The aim of this international peer-reviewed journal of the Society for Mining, Metallurgy & Exploration (SME) is to provide a broad-based forum for the exchange of real-world and theoretical knowledge from academia, government and industry that is pertinent to mining, mineral/metallurgical processing, exploration and other fields served by the Society. The journal publishes high-quality original research publications, in-depth special review articles, reviews of state-of-the-art and innovative technologies and industry methodologies, communications of work of topical and emerging interest, and other works that enhance understanding on both the fundamental and practical levels.
期刊最新文献
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