Clay Adsorption Perspective on Petroleum Refining Industry

E. Emam
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引用次数: 9

Abstract

Clays are the most utilized minerals and considered very efficient and economical sorbents according to their chemical and physical properties. Clays are enjoying rapid popularity in the petroleum refining industry for the various processes such as adsorption and separation. Removal of many components such as sulfur, heavy metals, colors and separation of different hydrocarbon groups of crude oil and petroleum fractions can be carried out by clay adsorption. The present review summarizes the using of clay as adsorbent in several petroleum refining processes such as desulphurization, deasphalting, waste oil recovery, bleaching, corrosion reduction, heavy metals removal and other. One of the simplest, easiest and efficient separation processes used in different industries is adsorption. Review results show that different types of clay are obtainable and used in many applications. Clay adsorption can be enhanced the treatment and finishing of crude oils and petroleum fractions through several modifications such as metals impregnation, acid and thermal activations. Bentonite clays promote the highest adsorption capacity to remove sulfur and a high bleaching potential. Attapulgite clay is effective in decolorization and neutralization any petroleum oil. Impregnation of NiO nanoparticles into kaolin improves the asphaltenes adsorption. Several modified as well as unmodified clays promote the highest removal efficiency of Ni and V from crude oil. Additionally, the adsorption pre-treatment affects the reduction in corrosion yields and the corrosion rate.
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石油炼制工业对粘土吸附的展望
粘土是利用最多的矿物,根据其化学和物理性质被认为是非常有效和经济的吸附剂。粘土在石油炼制工业中因其吸附和分离等各种过程而迅速普及。粘土吸附可以去除原油和石油馏分中硫、重金属、颜色等多种组分,分离不同的烃类基团。综述了粘土作为吸附剂在石油炼制过程中脱硫、脱沥青、废油回收、漂白、还原腐蚀、重金属去除等方面的应用。在不同的行业中使用的最简单、最容易和最有效的分离方法之一是吸附。回顾结果表明,不同类型的粘土是可获得的,并用于许多应用。粘土吸附可以通过金属浸渍、酸活化和热活化等改性措施来增强原油和石油馏分的处理和精加工能力。膨润土具有较高的除硫吸附能力和漂白潜力。凹凸棒石粘土对任何石油都有较好的脱色中和作用。在高岭土中浸渍NiO纳米颗粒可改善沥青质吸附。几种改性和未改性粘土对原油中Ni和V的去除效果最高。此外,吸附预处理还会降低腐蚀产率和腐蚀速率。
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