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二乙胺官能化大豆油的合成

Synthesis of diethylamine-functionalized soybean oil.

作者信息

Biswas Atanu, Adhvaryu Atanu, Gordon Sherald H, Erhan Sevim Z, Willett Julious L

机构信息

Plant Polymer and Food and Industrial Oil Research, Agricultural Research Service, U.S. Department of Agriculture, 1815 North University Street, Peoria, Illinois 61604, USA.

出版信息

J Agric Food Chem. 2005 Nov 30;53(24):9485-90. doi: 10.1021/jf050731o.

Abstract

Specialty chemicals based on renewable resources are desirable commodities due to their eco-friendly nature and "green" product characteristics. These chemicals can demonstrate physical and chemical properties comparable to those of conventional petroleum-based products. Suitably functionalized amines in the triacylglycerol structure can function as an antioxidant, as well as an antiwear/antifriction agent. In addition, the amphiphilic nature of seed oils makes them an excellent candidate as base fluid. The reaction of amine and epoxidized seed oils in the presence of a catalyst almost always leads to different intra/intermolecular cross-linked products. In most cases, the triacylglycerol structure is lost due to disruption of the ester linkage. Currently, there is no reported literature describing the aminolysis of vegetable oil without cross-linking. Here the epoxy group of the epoxidized soybean oil has been selectively reacted with amines to give amine-functionalized soybean oil. The optimization procedure involved various amines and catalysts for maximum aminolysis, without cross-linking and disruption of the ester linkage. Diethylamine and ZnCl2 were found to be the best. NMR, IR, and nitrogen analysis were used to characterize the products.

摘要

基于可再生资源的特种化学品因其环保特性和“绿色”产品特点而成为理想商品。这些化学品的物理和化学性质可与传统石油基产品相媲美。三酰甘油结构中适当官能化的胺可作为抗氧化剂以及抗磨/减摩剂。此外,种子油的两亲性使其成为基础液的极佳候选物。胺与环氧化种子油在催化剂存在下的反应几乎总是导致不同的分子内/分子间交联产物。在大多数情况下,由于酯键的断裂,三酰甘油结构会丧失。目前,尚无文献报道不发生交联的植物油氨解反应。在此,环氧化大豆油的环氧基团已与胺选择性反应,得到胺官能化大豆油。优化过程涉及各种胺和催化剂以实现最大程度的氨解,同时不发生交联和酯键断裂。发现二乙胺和氯化锌是最佳选择。使用核磁共振(NMR)、红外光谱(IR)和氮分析对产物进行表征。

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