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Application of Membrane Processes for Concentration and Separation of Sugar Streams in Biofuel Production.

机译:膜法在糖料流分离和浓缩中的应用

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摘要

The overall objective of this study was identification and development of a sugar concentration/separation membrane filtration unit to improve the bioconversion of lignocellulosic biomass into chemicals and fuels. This thesis is divided into three main parts. The first part is about our studies on the use of nanofiltration membranes for concentration of sugars in a lignocellulosic biomass hydrolysate. In addition, the feasibility of simultaneous removal of acetic acid, 5-(hydroxymethyl)furfural and furfural from the hydrolysate has also been investigated. The results obtained indicate that both concentration of sugars and removal of hydrolysis degradation products is feasible. However, careful selection of the membrane and operating conditions will be essential. Dead end filtration experiments have been used to test a number of commercially available nanofiltration membranes under a range of operating conditions. Model feed streams as well as real hydrolysates have been tested. The method developed here could be used to quickly screen membranes. Promising membranes and operating conditions could then be more rigorously tested in tangential flow operation.;The second part of this work focuses on recycle of cellulase enzyme (biocatalyst) used to catalyze the biopolymers of cellulose to monomeric soluble sugars. The enzyme represents one of the main costs in bioconversion of lignocellulosic biomass into biofuel. But exploration and development of efficient ways to reuse and recycle the enzyme are of great interest. Here we explore the use of microfiltration and ultrafiltration membranes for enzyme recycle and reuse.;Third part of this work is about modification of membranes using Layer-by-Layer (LbL) deposition of polyelectrolytes. Deposition of ultra-thin hyperbranched anionic and cationic polyelectrolytes on top of polysulfone ultrafiltration membranes results in a porous modified membrane showing nanofiltration characteristics. Deposition of polyelectrolytes on top of the polysulfone membrane substrate is confirmed by ATR-FTIR spectra, SEM images and filtration tests. We carried out several nanofiltration tests with 20 mM model feed streams containing sucrose, glucose and xylose. Results show that these membrane are capable of separating mono- and disaccharides.
机译:这项研究的总体目标是鉴定和开发一种糖浓缩/分离膜过滤装置,以改善木质纤维素生物质向化学品和燃料的生物转化。本文分为三个主要部分。第一部分是关于我们使用纳滤膜浓缩木质纤维素生物质水解产物中糖的研究。另外,还研究了同时从水解产物中除去乙酸,5-(羟甲基)糠醛和糠醛的可行性。获得的结果表明糖的浓缩和水解降解产物的去除都是可行的。但是,仔细选择膜和操作条件将至关重要。死端过滤实验已用于在一定范围的操作条件下测试许多市售的纳滤膜。已测试了模​​型进料流以及实际的水解产物。这里开发的方法可用于快速筛选膜。然后可以在切向流操作中更严格地测试有希望的膜和操作条件。;本工作的第二部分着眼于纤维素酶(生物催化剂)的循环利用,纤维素酶将纤维素的生物聚合物催化为单体可溶性糖。该酶代表了木质纤维素生物质生物转化为生物燃料的主要成本之一。但是,探索和开发一种有效的方法可以重复使用和回收酶,这引起了人们的极大兴趣。在这里,我们探索了微滤和超滤膜在酶回收和再利用中的应用。第三部分工作是关于使用聚电解质的逐层(LbL)沉积对膜进行修饰。在聚砜超滤膜的顶部沉积超薄的超支化阴离子和阳离子聚电解质会形成具有纳滤特性的多孔改性膜。通过ATR-FTIR光谱,SEM图像和过滤测试确认了聚砜膜基材顶部的聚电解质的沉积。我们对包含蔗糖,葡萄糖和木糖的20 mM模型进料流进行了几项纳滤测试。结果表明,这些膜能够分离单糖和二糖。

著录项

  • 作者

    Malmali, Mohammadmahdi.;

  • 作者单位

    University of Arkansas.;

  • 授予单位 University of Arkansas.;
  • 学科 Chemical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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