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Technology of obtaining water-soluble surface-active substances by the method of phenol sulfomethylation

机译:通过苯酚磺甲基化方法获得水溶性表面活性物质的技术

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摘要

The object of this study is a technology of the new surface-active substances (SAS) based on sulfomethylated phenol. The study's aim was to improve the technology by a catalytic method, implying the development of industrial schemes for the synthesis processes.During phenol sulfomethylation, the active conversion of monomers into polymeric substances starts only at a temperature of 110‒120 °C; the surface-active substances with an optimal polymeric composition were obtained only at a temperature of 130 °C. In the reaction of phenol sulfomethylation in a water environment at a temperature below 90 °C, obtaining SAS with the required properties takes more than 9 hours. The significant disadvantages of this technique are the relatively low yield of the target product and a significant amount of free phenol in the finished product (over 15 percent).It is known that a more powerful and less risky technique to accelerate the reaction than rising the temperature is catalysis.This study investigated the reaction of phenol sulfomethylation under conditions of interphase catalysis. This has made it possible to improve the main technological parameters: the reaction temperature was reduced from 130 °C to 90 °C, the process duration was shortened to 3 hours, to process was conducted at atmospheric pressure. The catalyst used was a cation-active SAS: cetyltrimethylammonium bromide. This makes it possible to simplify the technological scheme of obtaining SAS, that is, to use less energy-intensive and cheap reactors.A benefit of the proposed technology is the low-waste, single-stage production, and the use of available raw materials: phenol, formaldehyde, and sodium sulfite. During the study, the products were obtained that are similar, in terms of the surface-active properties, to the NF Dispersant, which is widely used in the industry. This makes it possible to expand the range of multifunctional surface-active substances with better bio destruction than products based on naphthalene and lignin.According to the results of studying the samples obtained, the scope of their application has been proposed. The resulting products have been tested, with positive results, as the anion-active SAS, used as dispersants in the production of organic dyes, as aligners when dyeing textiles, and as plasticizing additives for concrete mixtures
机译:本研究的目的是基于磺甲基化苯酚的新表面活性物质(SAS)的技术。该研究的目的是通过催化方法改善该技术,暗示了合成方法的产业方案的发展。酚磺甲基化,单体的活性转化为110-120℃的温度仅在110-120℃的温度下开始。具有最佳聚合物组合物的表面活性物质仅在130℃的温度下获得。在低于90℃的温度下水环境中酚磺甲基化的反应中,以所需的特性获得SAS需要超过9小时。该技术的显着缺点是靶产物的相对低的产率和成品中的大量游离酚(超过15%)。据称是一种更强大,更不危险的技术来加速反应而不是上升温度是催化分解。本研究研究了苯酚磺甲基化在邻间催化条件下的反应。这使得可以改善主要技术参数:将反应温度从130℃降低至90℃,处理持续时间缩短至3小时,在大气压下进行处理。使用的催化剂是阳离子活性SAS:甲烷基三甲基溴化铵。这使得可以简化获得SAS的技术方案,即使用更少的能量密集型和廉价的反应堆。该技术的益处是低浪费,单级生产和可用原料的使用:苯酚,甲醛和亚硫酸钠。在研究期间,获得的产品是在表面活性性质方面与NF分散剂相似的产品,其在工业中广泛使用。这使得可以扩展具有比基于萘和木质素的产品更好的生物破坏的多功能表面活性物质的范围。根据研究所获得的样品的结果,提出了其应用范围。已经测试了所得产物,用阳性结果,作为阴离子活性SAS,用作有机染料中的分散剂,作为染色纺织品时的对准器,以及混凝土混合物的塑化添加剂

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