Development of new C, S, N-containing plastic lubricants based on products from industrial waste integrated processing

Q3 Mathematics
Anatolii Ranskiy, Olha Sandul, O. Gordienko, N. Didenko, T. Titov
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引用次数: 0

Abstract

The object of this research is the integrated processing of industrial waste from various industries, which makes it possible to reduce the use of material and energy resources and improve the ecological state of the environment. Waste from the chemical, petrochemical, and machine-building industries was subject to integrated technological processing. The common link that united the investigated complex technological cycles was the use of a regenerated mixed sorbent (activated carbon+kieselguhr), on the surface of which topochemical transformations of chemicals that were part of industrial waste took place. Using a regenerated mixed sorbent, exhausted industrial oil which was the mineral basis of the developed new C, S, N-containing plastic lubricants was purified. In particular, we have established the conditions for obtaining diethyl ammonium chloride from unusable pesticides of the formula R1R2R3R4C6HCOOH∙HN(C2H5)2, whose topochemical interaction on the surface of the mixed sorbent leads to the formation of a sorbed fragment [sorbent (activated carbon+kieselguhr)]∙[(C2H5)2NC(=S)SK]. Subsequent interaction of aqueous solutions containing copper(II) ions with such a fragment leads to the formation of bis–(diethyldithiocarbamate)copper(II) on the surface of mixed sorbent. The resulting substances of the general composition [sorbent (activated carbon + kieselguhr)]∙{[(С2H5)2NC(=S)S]2Cu} were studied as thickeners and active polyfunctional components of the obtained plastic lubricants. Research into the tribological properties of new C, S, N-containing plastic lubricants showed their high anti-wear and heat-resistant properties and the possibility of effective use in highly loaded friction nodes
基于工业废物综合处理产品开发新型含 C、S、N 的塑料润滑剂
这项研究的目标是综合处理各行各业的工业废物,从而减少材料和能源的使用,改善生态环境。将所研究的复杂技术循环结合起来的共同环节是使用再生混合吸附剂(活性炭+硅藻土),在其表面对工业废料中的化学物质进行化学转化。使用再生混合吸附剂,可以提纯作为新开发的含 C、S、N 塑料润滑剂矿物基础的工业废油。特别是,我们已经确定了从 R1R2R3R4C6HCOOH∙HN(C2H5)2 式的无法使用的杀虫剂中获得二乙基氯化铵的条件,其在混合吸附剂表面的拓扑化学作用导致形成吸附片段[吸附剂(活性炭+硅藻土)]∙[(C2H5)2NC(=S)SK]。随后,含有铜(II)离子的水溶液与这种片段发生作用,在混合吸附剂表面形成双(二乙基二硫代氨基甲酸)铜(II)。研究发现,由此产生的一般组成为[吸附剂(活性炭 + 基塞尔古尔)]∙{[(С2H5)2NC(=S)S]2Cu}的物质可作为所得塑料润滑剂的增稠剂和活性多功能成分。对新型含 C、S、N 的塑料润滑剂摩擦学特性的研究表明,它们具有很高的抗磨损和耐热性能,可以有效地用于高负荷摩擦节点。
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来源期刊
Eastern-European Journal of Enterprise Technologies
Eastern-European Journal of Enterprise Technologies Mathematics-Applied Mathematics
CiteScore
2.00
自引率
0.00%
发文量
369
审稿时长
6 weeks
期刊介绍: Terminology used in the title of the "East European Journal of Enterprise Technologies" - "enterprise technologies" should be read as "industrial technologies". "Eastern-European Journal of Enterprise Technologies" publishes all those best ideas from the science, which can be introduced in the industry. Since, obtaining the high-quality, competitive industrial products is based on introducing high technologies from various independent spheres of scientific researches, but united by a common end result - a finished high-technology product. Among these scientific spheres, there are engineering, power engineering and energy saving, technologies of inorganic and organic substances and materials science, information technologies and control systems. Publishing scientific papers in these directions are the main development "vectors" of the "Eastern-European Journal of Enterprise Technologies". Since, these are those directions of scientific researches, the results of which can be directly used in modern industrial production: space and aircraft industry, instrument-making industry, mechanical engineering, power engineering, chemical industry and metallurgy.
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