改善车用汽油的环保性

O. Trotsenko, A. Grigorov
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引用次数: 0

摘要

本文考虑了通过减少道路运输过程中产生的废气的有害影响来改善大城市环境状况的措施。事实证明,直接提高汽车汽油的环保性是减少废气毒性的最有希望的方法。通过减少汽油中溶解的烃类气体(C4H10和iso-C4H10)和金属(Pb、Fe、Mn),可以实现这一提高;促进汽油馏分组成(包括末沸温度);减少汽油中硫、芳烃和烯烃的含量。从环保的角度来看,减少这些不受欢迎的成分将提高汽油的质量,达到乌克兰采用的欧5要求,并大大延长安装在机动车辆上的特殊催化剂的使用寿命,以清洁废气。对汽油馏分(PK - 180℃)和商品汽油A-95、氧合物(甲基叔丁基醚和乙醇)和1,3-二苯三氮的影响进行了研究。确定了1%质量的使用。在直馏汽油中添加1,3-二苯三氮烯,可使其抗爆轰能力提高12点,使废气的CO毒性降低24%,CH毒性降低17%。经测定,在a -95商品汽油中添加1%(重量比)的1,3-二苯三氮烯,与含氧化合物相比,不会导致汽油蒸发和物理稳定性的恶化。1,3-二苯三氮烯在商品汽油中的使用,由于其良好的性能,未来将优化其他添加剂的使用,包括目前在商品汽油技术中广泛使用的含氧化合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IMPROVING THE ENVIRONMENTALITY OF MOTOR GASOLINE
The article considers measures aimed at improving the environmental situation of large cities by reducing the harmful effects of exhaust gases generated during the operation of road transport. It is substantiated that a direct increase in the environmental friendliness of motor gasoline is the most promising approach to reducing the toxicity of exhaust gases. This increase can be achieved by reducing dissolved hydrocarbon gases (C4H10 and iso-C4H10) and metals (Pb, Fe, Mn) in gasoline; facilitation of the fractional composition of gasoline (including the end-boiling temperature); reduction in gasoline content of sulfur, aromatic hydrocarbons and olefins. Reducing these undesirable, from an environmental point of view, components will improve the quality of gasoline to the Euro-5 requirements adopted in Ukraine, as well as significantly extend the service life of special catalysts installed on motor vehicles to clean exhaust gases. The effect on the gasoline fraction (PK – 180 °C) and commercial gasoline A-95, oxygenates (methyl tert-butyl ether and ethyl alcohol) and 1,3-diphenyltriazene was studied. It is established that the use of 1% of the mass. 1,3-diphenyltriazene, in the composition of straight-run gasoline allows to increase its resistance to detonation by 12 points, reduce the toxicity of exhaust gases by 24% in terms of CO and 17% in terms of CH. It was determined that the addition of 1,3-diphenyltriazene to commercial gasoline A-95 in the amount of 1% by weight, in contrast to oxygenates, does not lead to a deterioration in the evaporation of gasolines and their physical stability. The use of 1,3-diphenyltriazene in commercial gasoline, due to its positive properties, in the future will optimize the use of other additives, including oxygenates, which are widely used today in the technology of commercial gasoline.
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