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采用亚硫酸盐化学工艺,以高浓度和木质素磺酸盐为目标,高效生物转化花旗松森林残余物为生物乙醇:中试规模评估。

Using sulfite chemistry for robust bioconversion of Douglas-fir forest residue to bioethanol at high titer and lignosulfonate: a pilot-scale evaluation.

机构信息

USDA Forest Service, Forest Products Lab, Madison, WI, USA.

USDA Forest Service, Forest Products Lab, Madison, WI, USA; Dept. of Microbiology, Yogi Vemana University, Kadapa, India.

出版信息

Bioresour Technol. 2015 Mar;179:390-397. doi: 10.1016/j.biortech.2014.12.052. Epub 2014 Dec 18.

Abstract

This study demonstrated at the pilot-scale (50 kg) use of Douglas-fir forest harvest residue, an underutilized forest biomass, for the production of high titer and high yield bioethanol using sulfite chemistry without solid-liquor separation and detoxification. Sulfite Pretreatment to Overcome the Recalcitrance of Lignocelluloses (SPORL) was directly applied to the ground forest harvest residue with no further mechanical size reduction, at a low temperature of 145°C and calcium bisulfite or total SO2 loadings of only 6.5 or 6.6 wt% on oven dry forest residue, respectively. The low temperature pretreatment facilitated high solids fermentation of the un-detoxified pretreated whole slurry. An ethanol yield of 282 L/tonne, equivalent to 70% theoretical, with a titer of 42 g/L was achieved. SPORL solubilized approximately 45% of the wood lignin as directly marketable lignosulfonate with properties equivalent to or better than a commercial lignosulfonate, important to improve the economics of biofuel production.

摘要

本研究在中试规模(50 公斤)下,使用未经充分利用的森林生物质——花旗松森林采伐剩余物,采用亚硫酸盐化学法,无需固液分离和解毒,生产高浓度和高产量的生物乙醇。亚硫酸盐预处理克服木质纤维素的顽固性(SPORL)直接应用于未经进一步机械减小尺寸的地面森林采伐剩余物,在 145°C 的低温下,仅用 6.5 或 6.6wt%的亚硫酸钙或总 SO2 负载量对风干的森林剩余物进行处理。低温预处理有利于未解毒的预处理全浆的高固体发酵。实现了 282 升/吨的乙醇得率,相当于 70%的理论值,浓度为 42 克/升。SPORL 将约 45%的木材木质素溶解为直接可销售的木质素磺酸盐,其性能与商业木质素磺酸盐相当或更好,这对于提高生物燃料生产的经济性非常重要。

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