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Measuring and managing dust and nanoparticulates in pyrometallurgical processing

机译:测量和管理灰尘和nanoparticulates在pyrometallurgical处理

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摘要

Combustion processes, comminution and materials handling can generate airborne particulates. Regulation of these particulates by the U.S. Environmental Protection Agency (U.S. EPA) is becoming progressively more stringent, and regulations will soon include "nanoparticulates," which are particles finer than 100 nanometers (0.1 mu m). Nanoparticulates are believed to have significant negative health effects due to their high surface area and reactivity. Although it was argued that nanop articulate concerns were only important for combustion, studies at Michigan Technological University have shown that materials handling and comminution release significant quantities of nanop articles into the air. Laboratory studies have shown that the use of sodium metasilicate reduced airborne particles finer than 10 mu m (PM_(10)) by 86 percent and particles finer than 2.5 mu m (PM_(2.5)) by 80 percent for iron ore. Additional studies were conducted that revealed that nanop articulate emissions were present in the types of operations conducted at pyrometallurgical facilities.
机译:燃烧过程、粉碎和材料处理空气颗粒可以生成。这些颗粒由美国的监管美国环境保护署(EPA)变得越来越严格,规定将包括“nanoparticulates”,比100纳米粒子更好(0.1μm)。Nanoparticulates认为由于其显著的负面健康影响高表面积和反应性。认为只有nanop表达关切重要的燃烧,研究密歇根科技大学已经证明材料处理和粉碎到大量的nanop文章空气中。偏硅酸钠减少空气中的微粒更好的比10μm (PM_ (10)) 86%,颗粒细比2.5μm (PM_(2.5)到80年对铁矿石百分比。额外的研究进行显示nanop表达排放在操作的类型在pyrometallurgical设施。

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