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交联和乙酰化淀粉及其在连续循环膜反应器中水解产物的物理化学性质

Physicochemical properties of cross-linked and acetylated starches and products of their hydrolysis in continuous recycle membrane reactor.

作者信息

Prochaska Krystyna, Konował Emilia, Sulej-Chojnacka Joanna, Lewandowicz Grazyna

机构信息

Institute of Chemical Technology and Engineering, Poznań University of Technology, Pl. M. Skłodowskiej Curie 2, 60-965 Poznań, Poland.

出版信息

Colloids Surf B Biointerfaces. 2009 Nov 1;74(1):238-43. doi: 10.1016/j.colsurfb.2009.07.034. Epub 2009 Aug 3.

Abstract

The aim of the present work was to study the physicochemical properties of doubly modified, by cross-linking and acetylating, starches as well as the products of their enzymatic hydrolysis. A two step procedure of hydrolysis, including the batch and membrane reactors, were investigated. The second step of enzymatic processes were carried out in a continuous recycle membrane reactor (CRMR). Three kinds of commercial starches--two preparations of acetylated distarch adipate E1422 of different degrees of cross-linking, as well as one preparation of acetylated distarch phosphate E1414 were examined. It was found that the degree of substitution of acetyl groups in the macromolecules of starch did not influence the effectiveness of hydrolysis. However, the degree of cross-linking with adipate groups slightly decreased the efficiency of processing in the CRMR. Additionally, the relationship between the type of hydrocolloid and its adsorption activity in the air/water and oil/water systems was considered. All obtained derivatives revealed adsorption properties and reduced the surface/interface tension in the air/water and oil/water systems. The efficiency and effectiveness of adsorption of the investigated hydrocolloids were affected by the type of modification as well as the degree of substitution of acetyl groups in the macromolecules of starch. Particle size distributions formed in aqueous solutions for all investigated hydrolyses were determined and compared with results obtained for commercial products.

摘要

本研究的目的是研究经交联和乙酰化双重改性的淀粉及其酶促水解产物的物理化学性质。研究了包括间歇式和膜反应器在内的两步水解过程。酶促过程的第二步在连续循环膜反应器(CRMR)中进行。考察了三种商业淀粉,即两种不同交联度的乙酰化己二酸双淀粉E1422制剂以及一种乙酰化磷酸双淀粉E1414制剂。发现淀粉大分子中乙酰基的取代度不影响水解效率。然而,与己二酸基团的交联度略微降低了CRMR中的加工效率。此外,还考虑了水胶体类型与其在空气/水和油/水体系中的吸附活性之间的关系。所有获得的衍生物均表现出吸附性能,并降低了空气/水和油/水体系中的表面/界面张力。所研究水胶体的吸附效率和效果受改性类型以及淀粉大分子中乙酰基取代度的影响。测定了所有研究水解在水溶液中形成的粒度分布,并与商业产品的结果进行了比较。

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