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Green processing of Napier grass for generation of biofuel and biobased products

机译:纳皮尔草的绿色加工,用于生产生物燃料和生物基产品

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摘要

Napier grass, Pennisetum purpureum, is a high yielding perennial C-4 grass that has been naturalized in Hawai`i and resembles the former staple crop of the state, sugarcane. Because of its high moisture content, Napier grass presents a unique and relatively unexplored opportunity for fractionation into solid and liquid components via green processing. The resulting clean, solid fibers can serve as a substrate for (advanced) biofuel production, while the nutrient-rich liquids (juice) can serve as a supplemental additive for diverse microbial co-products generation. The recalcitrant lignocellulosic fibers of Napier grass contain structural carbohydrates which require pretreatment and enzymatic saccharification to release monomeric sugars for fermentation into biofuels. In this study, the effects of dilute acid pretreatment on structural carbohydrate release of Napier grass were investigated for the first time. The optimal conditions for green processed Napier grass were determined to be 5% (w/w) sulfuric acid, 120°C, 45 minutes; producing near theoretical xylose yields and ∼85% of the glucose from hemicellulose and cellulose, respectively. Preliminary trials of high value co-product generation were successful in cultivating protein-rich fungal biomass, Rhizopus oligosporus, on crude Napier grass juice. In determining the applicability of green processing for future biorefineries, an important and often overlooked consideration of the incoming feedstock is age. As Napier grass matures, significant changes may occur in its biochemical composition, subsequently affecting fractionation and biofuel and co-product generation. The composition of Napier grass was examined for the ages of 2, 4, 6, and 8 months old. Ash and lignin constituents, in particular, were found to be dependent on age and both constituents increased with feedstock age. Changes in the juice characteristics were also found to correlate with Napier grass maturation. Overall, the compositional data of Napier grass at different stages of growth represented the first of its kind for bioenergy crops grown in the (sub)tropical climate of Hawai`i, which has gained considerable attention for the development of biomass-to-biofuel strategies and technologies. Exploratory economic analyses of the results in this study however, suggest that future work is necessary. Ultimately, because green processing represents a biosystems engineering approach, it can be adapted and applied to a multitude of disciplines and biofuel platforms.
机译:纳皮尔草(Pennisetum purpureum)是一种高产多年生C-4草,已在夏威夷州自然化,与州以前的主要农作物甘蔗相似。由于其高的水分含量,纳皮尔草提供了独特的且相对未开发的机会,可通过绿色工艺将其分为固体和液体成分。产生的清洁的固体纤维可以用作(高级)生物燃料生产的基质,而营养丰富的液体(果汁)可以作为多种微生物副产物产生的补充添加剂。内皮草的顽固木质纤维素纤维含有结构性碳水化合物,需要预处理和酶促糖化才能释放出单体糖,以发酵成生物燃料。在这项研究中,首次研究了稀酸预处理对纳皮草结构性碳水化合物释放的影响。确定绿色处理的纳皮草的最佳条件是120°C,45分钟,5%(w / w)硫酸。从半纤维素和纤维素分别产生接近理论的木糖产率和约85%的葡萄糖。高价值联​​产品生成的初步试验成功地在粗制纳皮草汁上培养了富含蛋白质的真菌生物质,低聚根霉。在确定绿色工艺对未来的生物精炼厂的适用性时,对进料的重要且经常被忽视的考虑因素是年龄。随着纳皮尔草的成熟,其生化组成可能发生重大变化,从而影响分馏以及生物燃料和副产物的产生。检查了2、4、6和8个月大的纳皮草的成分。尤其发现灰分和木质素成分取决于年龄,并且两种成分都随着原料年龄的增长而增加。还发现果汁特性的变化与纳皮尔草的成熟有关。总体而言,纳皮尔草在不同生长阶段的组成数据代表了在夏威夷(亚热带)气候下生长的生物能源作物的首个此类数据,这已为生物质制生物燃料战略的发展引起了广泛关注。和技术。对本研究结果进行的探索性经济分析表明,未来的工作是必要的。归根结底,由于绿色加工代表了生物系统工程方法,因此可以将其修改并应用于众多学科和生物燃料平台。

著录项

  • 作者

    Takara, Devin T.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Alternative Energy.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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