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在生物精炼过程中最大化液体燃料产量。

Maximizing the liquid fuel yield in a biorefining process.

作者信息

Zhang Bo, von Keitz Marc, Valentas Kenneth

机构信息

BioTechnology Institute, University of Minnesota, 240 Gdortner Labs, 1479 Gortner Avenue, St. Paul, Minnesota 55108, USA.

出版信息

Biotechnol Bioeng. 2008 Dec 1;101(5):903-12. doi: 10.1002/bit.21960.

Abstract

Biorefining strives to recover the maximum value from each fraction, at minimum energy cost. In order to seek an unbiased and thorough assessment of the alleged opportunity offered by biomass fuels, the direct conversion of various lignocellulosic biomass was studied: aspen pulp wood (Populus tremuloides), aspen wood pretreated with dilute acid, aspen lignin, aspen logging residues, corn stalk, corn spathe, corn cob, corn stover, corn stover pellet, corn stover pretreated with dilute acid, and lignin extracted from corn stover. Besides the heating rate, the yield of liquid products was found to be dependent on the final liquefaction temperature and the length of liquefaction time. The major compounds of the liquid products from various origins were identified by GC-MS. The lignin was found to be a good candidate for the liquefaction process, and biomass fractionation was necessary to maximize the yield of the liquid bio-fuel. The results suggest a biorefinery process accompanying pretreatment, fermentation to ethanol, liquefaction to bio-crude oil, and other thermo-conversion technologies, such as gasification. Other biorefinery options, including supercritical water gasification and the effectual utilization of the bio-crude oil, are also addressed.

摘要

生物精炼致力于以最低的能源成本从每个组分中回收最大价值。为了对生物质燃料所宣称的机会进行公正而全面的评估,研究了各种木质纤维素生物质的直接转化:白杨木浆(颤杨)、经稀酸预处理的白杨木、白杨木木质素、白杨木采伐剩余物、玉米秸秆、玉米苞叶、玉米芯、玉米秸秆、玉米秸秆颗粒、经稀酸预处理的玉米秸秆以及从玉米秸秆中提取的木质素。除加热速率外,发现液体产物的产率取决于最终液化温度和液化时间的长短。通过气相色谱 - 质谱联用仪(GC - MS)鉴定了各种来源液体产物的主要化合物。发现木质素是液化过程的良好候选物,并且生物质分馏对于最大化液体生物燃料的产率是必要的。结果表明了一种生物精炼工艺,该工艺伴随着预处理、发酵制乙醇、液化制生物原油以及其他热转化技术,如气化。还讨论了其他生物精炼选项,包括超临界水气化和生物原油的有效利用。

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