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Phase transfer catalyzed reaction for synthesis of sulfides and disulfides using hydrogen sulfide

机译:硫化氢相转移催化合成硫化物和二硫化物

摘要

This study focuses on utilization of hydrogen sulfide (H2S) in the synthesis of fine chemicals such as Dibenzyl Sulfide (DBS), Benzyl Mercaptant (BM) and Dibenzyl Disulfide (DBDS). This involves first absorption of H2S in either aqueous ethanolamine (MEA) or methyldiethanolamine (MDEA) and then reaction of this H2S richaqueous solution with organic reactants. Two reaction systems have been studied in the present work – first being the reaction of benzylchloride (BC) with H2S rich aqueous MDEA in the presence of Tetrabutyl Phosphonium bromide (TBPB) as a PT catalyst under liquid-liquid (L-L) phase transfer catalysis to synthesize DBS and BM and in second system, DBDS was synthesized by adding sulfur powder in H2S rich aqueous MEA using Amberlite IR-400 as a PT catalyst at liquid liquid-solid (L-L-S) PTC. The overall objective of this study is to maximize conversion of reactant, maximize selectivity of desired product, searching for mechanism and calculation of kinetic parameter. In all the systems under study, desirable products were obtained with 100% selectivity at some level of process parameters. Reaction time, temperature,catalyst loading, stirring speed, reactants concentration and solvent concentration were chosen as reaction parameters. Amberlite catalyst was recovered and reused 4 times with successive decrease in BC conversion in each run.
机译:这项研究的重点是利用硫化氢(H2S)合成精细化学品,例如二苄基硫醚(DBS),苄基助剂(BM)和二苄基二硫醚(DBDS)。这包括先在乙醇胺水溶液(MEA)或甲基二乙醇胺(MDEA)中吸收H2S,然后使这种富含H2S的水溶液与有机反应物反应。在目前的工作中,已经研究了两个反应系统–首先是在四丁基溴化膦(TBPB)作为PT催化剂存在下,在液-液(LL)相转移催化下,苄基氯(BC)与富H2S的MDEA水溶液反应。合成DBS和BM,然后在第二个系统中,使用Amberlite IR-400作为PT催化剂,在液-液-固(LLS)PTC上,在富含H2S的MEA中添加硫粉,从而合成DBDS。这项研究的总体目标是最大程度地提高反应物的转化率,最大化所需产物的选择性,寻找机理和动力学参数的计算。在所研究的所有系统中,在一定程度的工艺参数下均获得具有100%选择性的理想产品。选择反应时间,温度,催化剂负载量,搅拌速度,反应物浓度和溶剂浓度作为反应参数。回收Amberlite催化剂并重复使用4次,每次运行中BC转化率连续下降。

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    Nakade Priya G.;

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  • 年度 2014
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