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生物燃料和生物油加工前后生物高分子与角豆种子生物功能的相互作用及其生物产品(角豆粉)的生物降解:当前先进的分子光谱研究。

Interactive association between biopolymers and biofunctions in carinata seeds as energy feedstock and their coproducts (carinata meal) from biofuel and bio-oil processing before and after biodegradation: current advanced molecular spectroscopic investigations.

机构信息

Department of Animal Science, Tianjin Agricultural University , 22 Jinjin Road, Tianjin 300384, China.

出版信息

J Agric Food Chem. 2014 May 7;62(18):4039-47. doi: 10.1021/jf405809m. Epub 2014 Apr 28.

Abstract

Recent advances in biofuel and bio-oil processing technology require huge supplies of energy feedstocks for processing. Very recently, new carinata seeds have been developed as energy feedstocks for biofuel and bio-oil production. The processing results in a large amount of coproducts, which are carinata meal. To date, there is no systematic study on interactive association between biopolymers and biofunctions in carinata seed as energy feedstocks for biofuel and bioethanol processing and their processing coproducts (carinata meal). Molecular spectroscopy with synchrotron and globar sources is a rapid and noninvasive analytical technique and is able to investigate molecular structure conformation in relation to biopolymer functions and bioavailability. However, to date, these techniques are seldom used in biofuel and bioethanol processing in other research laboratories. This paper aims to provide research progress and updates with molecular spectroscopy on the energy feedstock (carinata seed) and coproducts (carinata meal) from biofuel and bioethanol processing and show how to use these molecular techniques to study the interactive association between biopolymers and biofunctions in the energy feedstocks and their coproducts (carinata meal) from biofuel and bio-oil processing before and after biodegradation.

摘要

生物燃料和生物油加工技术的最新进展需要大量的能源原料进行加工。最近,新的卡林塔种子已被开发为生物燃料和生物油生产的能源原料。加工过程会产生大量的副产物,即卡林塔粉。迄今为止,对于生物燃料和生物乙醇加工及其加工副产物(卡林塔粉)中的生物聚合物与生物功能之间的相互关联,尚无系统的研究。同步辐射和球管源的分子光谱学是一种快速、非侵入性的分析技术,能够研究与生物聚合物功能和生物利用度相关的分子结构构象。然而,迄今为止,这些技术在其他研究实验室的生物燃料和生物乙醇加工中很少使用。本文旨在提供有关生物燃料和生物乙醇加工中能源原料(卡林塔种子)和副产物(卡林塔粉)的分子光谱学的研究进展和最新信息,并展示如何使用这些分子技术来研究生物聚合物和生物功能在能源原料及其副产物(生物燃料和生物油加工前后的生物降解)中的相互关联。

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