The Prospects of Using the Mechanical Activation Method in the Technological Processes of Oil and Gas Production

M. M. Orfanova
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Abstract

The need to improve the technological processes of raw fuel resources processing, to search for new technologies and to involve oil and gas waste production wastes as anthropogenic resources becomes urgent. The main directions of using the effects of the mechanical activation of substances in the technological processes of oil and gas production are analyzed.  A brief description of the method of mechanical activation is provided. The prospect of using the method of mechanical activation to solve the problem of waste disposal is shown. The author analyzes the main directions of mechanical activation influence used for changing the composition and properties of hydrocarbons and considers the possibilities of mechanical activation of a substance as an efficient way for accelerating the mechano-chemical processes that occur in hydrocarbons due to intense mechanical loads. The article generalizes the research results concerning the effect of mechanical activation on changes in the physical-chemical properties of oil, fuel oil, bottoms and sludge. The results of using mechanical activation for the preparation of plug-back mixtures based on silica sand and quartziferous waste are summarized. The laboratory research was carried out at a centrifugal-planetary mill. It is established that under the conditions of mechanical activation of hydrocarbons their destruction occurs. The process of transformations is a chain nature. The areas of mechanical and chemical transformations, change of fraction content in residual fuel oil, bottom products, and natural gasoline have been investigated. It has been established that destruction of hydrocarbon fractions takes place. The author demonstrates that processing modes, time and mechanical loads affect the course of hydrocarbon destruction, and its results depend on the type of substance. The researcher proves that it is promising to use the method of mechanical activation to control the properties of mineral flour obtained on the basis of oil sludge. The results of the research indicate clearly that it is possible to get different volume of the light cuts yield by regulating the modes of hydrocarbons processing. The author shows the possibility of increasing the depth of oil refining, as well as the possibility of obtaining a cement mixture with the addition of up to 30% of mechanically activated quartziferous additive without deteriorating the characteristics of cement stone achieved. The method of mechanical activation is promising for the utilization of the wastes of oil and gas complex, as these wastes can be considered the anthropogenic raw materials.
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机械活化法在油气生产工艺过程中的应用前景
迫切需要改进原料燃料资源加工的技术过程,寻求新技术,并将石油和天然气废料生产废料纳入人为资源。分析了在油气生产工艺过程中利用物质机械活化效应的主要方向。简要介绍了机械活化的方法。展望了利用机械活化法解决垃圾处理问题的前景。作者分析了用于改变碳氢化合物组成和性质的机械活化影响的主要方向,并考虑了物质的机械活化作为加速碳氢化合物中由于强机械载荷而发生的机械化学过程的有效途径的可能性。综述了机械活化对油品、燃料油、油底和污泥理化性质变化影响的研究成果。综述了用机械活化法制备石英砂和石英砂基塞塞混合物的研究结果。实验室研究是在离心行星磨机上进行的。在机械活化条件下,烃类会发生破坏。转变的过程是链式的。研究了机械和化学转化、残余燃料油、底产品和天然汽油中馏分含量的变化。已经确定烃类馏分会发生破坏。论证了处理方式、时间和机械载荷对烃类破坏过程的影响,其结果与物质类型有关。研究证明,采用机械活化的方法来控制以油泥为原料制备的矿物粉的性能是有前途的。研究结果清楚地表明,通过调节烃类加工方式,可以得到不同体积的轻屑收率。作者展示了增加石油精炼深度的可能性,以及在不破坏水泥石特性的情况下获得添加高达30%机械活化石英砂添加剂的水泥混合物的可能性。机械活化法是利用油气综合体废弃物的一种很有前途的方法,因为这些废弃物可以被认为是人为的原料。
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