电晕破坏:VOCs和空气有毒物质的创新控制技术。

C M Nunez, G H Ramsey, W H Ponder, J H Abbott, L E Hamel, P H Kariher
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引用次数: 143

摘要

本文讨论了迄今为止导致电晕破坏过程在中试规模上的演示的工作和结果。在电晕破坏挥发性有机化合物(VOCs)和空气有毒物质方面的研究工作显示出巨大的希望,可以为美国环境保护局和国家减少与接触有害空气污染物有关的健康影响的关键目标提供宝贵的贡献。电晕破坏技术在未来几年可能特别有用,有助于工业满足1990年《清洁空气法修正案》的残留风险要求。自1988年以来,美国环保署一直在对挥发性有机化合物和空气有毒物质的电晕破坏领域进行研究。环保局对分子物种的电晕破坏的兴趣始于对一个用于破坏有毒有机化合物的点平面反应器的建模。EPA的目标是开发一种能够以低资本和低运营成本控制低浓度流的技术。本工作的目的是开发一种工业规模的电晕反应器,能够在环境温度和压力下高效且经济地破坏挥发性有机化合物和空气有毒物质。结果表明,电晕破坏是一种很有前途的控制voc污染气流的技术,特别是在低浓度的情况下。介绍了电晕破坏与常规控制装置、碳吸附、催化焚烧和热焚烧的成本比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Corona destruction: an innovative control technology for VOCs and air toxics.

This paper discusses the work and results to date leading to the demonstration of the corona destruction process at pilot scale. The research effort in corona destruction of volatile organic compounds (VOCs) and air toxics has shown significant promise for providing a valuable contribution to critical U.S. Environmental Protection Agency and national goals of reducing the health effects associated with exposures to hazardous air pollutants. The corona destruction technology could be especially useful in future years in helping industry meet the residual risk requirements of the Clean Air Act Amendments of 1990. Since 1988, EPA has conducted research in the area of corona destruction of VOCs and air toxics. EPA's interest in corona destruction of molecular species started with modeling of a point-plane reactor for destroying toxic organic compounds. EPA's goal is to develop a technology capable of controlling low concentration streams at low capital and operating costs. The purpose of this work is to develop an industrial scale corona reactor capable of efficiently and cost-effectively destroying VOCs and air toxics at ambient temperature and pressure. Results show that corona destruction is a promising control technology for many VOC-contaminated air streams, especially at low concentrations. Cost comparisons are presented for corona destruction and conventional control devices, carbon adsorption, catalytic incineration and thermal incineration.

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