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作 者:黄玉芳[1] 曾云龙[1] 唐春然[1] 李春香[1] 吴湘江[1]
机构地区:[1]湖南科技大学化学化工学院,湖南湘潭411201
出 处:《湖南科技大学学报(自然科学版)》2006年第3期81-84,共4页Journal of Hunan University of Science And Technology:Natural Science Edition
基 金:湖南省自然科学基金资助项目(04JJ3047)
摘 要:为了解决合成聚酰胺-胺时回收液处理复杂、能耗大、并污染环境的问题,以合成N,N,N',N'-四(2-甲酯基乙基)乙二胺(TMCEDA)为研究对象,对不同真空度条件下的回收液进行了定性定量分析,在此基础上,采用分段减压蒸馏分离合成TM-CEDA中的过量原料与溶剂,直接循环使用真空度在50kPa-100kPa的回收液的新工艺.应用气相色谱分析技术跟踪分析循环使用的回收液的成分,结果表明,经过40次循环使用的回收液,仍未见明显的杂质积累现象.该工艺对回收液的直接使用率高达98.0%,实现了TMCEDA的实验室绿色合成,可为其工业化生产提供参考.图7,表2,参11.In the synthesis of poly (amidoamine) , there are some problems with the reclaimed liquid, such as complex disposal,high energy consumption,and environmental pollution. In order to solve those problems,N,N,N', N'-tetra-2-methoxycarbonyl ethylethylenediamine (TMCEDA)is studied. Based on the qualitative and quantitative analysis of recovered liquid at several vacuity,a novel technique is proposed for removing the excesses of methyl acrylate and methanol by stepwise vacuum distillation method in the synthesis of TMCEDA. The components of the recycle recoveries were continuously determined by gas chromatographic analysis,the analytical resuhs show that the recovery, of methyl acrylate and methanol under lower vacuum conditions (from 50 to 100 kPa)can be reused directly,and the reclaimed liquid has not appeared the impurity accumulation phenomenon obviously after being reused 40 times, and there are more than 98.0% recovered liquid being reused in our experiment. This process make the laboratory gTeen synthesis of TMCEDA come to reality, and provide significance references for industry production.7fig., 2tabs., 11refs.
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