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Potential Dilemma: The Methods of Meeting Automotive Exhaust Emission Standards of the Clean Air Act of 1970

机译:潜在的困境:满足1970年清洁空气法汽车尾气排放标准的方法

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摘要

This review attempts to provide an overview of the interconnected industrial changes associated with compliance with the exhaust emission standards of the Clean Air Act of 1970. To understand the complex nature of air pollution problems, Federal legislation, and compliance with this legislation requires an understanding of automotive technology, petroleum refining, atmospheric chemistry and physics, economics, and public health. The endeavors of all of these different areas impinge to a greater or lesser extent on the final response to the Clean Air Act which is designed to safeguard public health.This overview begins by examining gasoline refinery practice and gasoline composition. Included in this discussion are average values for trace contaminants in gasoline, and an explanation of the function of the many gasoline additives. Next, exhaust emissions are characterized, average values of exhaust components given, and a summary of important atmospheric air pollution reactions presented. Emission control devices and sulfate emissions from these devices are described. This is followed by a complete discussion of methyl cyclopentadienyl manganese tricarbonyl, a substitute antiknock for tetraethyllead. In the event TEL is legally banned from gasoline, or removed because it poisons the catalytic muffler surface, this manganese antiknock is the most efficaous replacement. In this discussion, the adverse health effects caused by exposure to manganese oxide particulates, the possible exhaust emission products from this additive, are examined in detail. The review concludes with comments on automotive engine and gasoline composition redesign as an approach to automotive air pollution.
机译:这次审查试图概述与遵守1970年《清洁空气法》的废气排放标准相关的相互联系的工业变革。要了解空气污染问题的复杂性质,联邦法律以及对这一立法的遵守,需要了解汽车技术,炼油,大气化学与物理,经济学和公共卫生。所有这些不同领域的努力或多或少地影响了旨在保护公众健康的《清洁空气法》的最终反应。本概述首先从研究汽油精炼实践和汽油成分开始。讨论中包括汽油中痕量污染物的平均值,以及许多汽油添加剂的功能说明。接下来,对废气排放进行表征,给出废气成分的平均值,并对重要的大气污染反应进行总结。描述了排放控制装置和这些装置的硫酸盐排放。接下来是对甲基环戊二烯基三羰基锰(四乙基铅的替代抗爆剂)的完整讨论。如果TEL被合法禁止汽油使用,或由于其会毒化催化消音器表面而将其删除,则该锰抗爆剂是最有效的替代品。在本次讨论中,将详细研究由于暴露于氧化锰微粒(该添加剂可能产生的废气排放产物)所造成的不利健康影响。审查结束时对汽车发动机和汽油成分的重新设计提出了评论,以应对汽车空气污染。

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