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Techno-economic analysis of cellulose dissolving ionic liquid pretreatment of lignocellulosic biomass for fermentable sugars production

机译:纤维素溶解离子液体预处理木质纤维素生物质的技术经济分析,用于发酵糖生产

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Pretreatment of biomass is essential to produce fermentable sugars, which can be further transformed into biofuels. Most of the common pretreatment methods, including sulfuric acid pretreatment, lead to low sugar yields and high microbial inhibitors formation, and require an additional detoxification step prior to fermentation. Ionic liquid (IL) pretreatment has the potential to reduce or eliminate these problems, and, thus, recently, has gained significant attention as an alternative pretreatment technology. However, before commercial deployment, IL pretreatment requires a thorough assessment of its techno-economic feasibilities and bottlenecks. Thus, the main objective of this study was to assess the techno-economic feasibility of a commercial-scale IL pretreatment for a 113 million liter/year (30 million gal/year) cellulosic biorefinery and identify operational targets for process improvement. 1-ethyl-3-methylimidazolium acetate IL was used for analyses, which is one of the mostly investigated ILs and is currently best at dissolving the lignocellulosic biomass. Corn stover, poplar, and switchgrass were used as the model feedstock. Input data were obtained from recent literatures on IL pretreatment of these feedstocks. Estimated sugar production costs ($/kg) from corn stover, switchgrass and poplar were 2.7, 3.2, and 3.0, respectively. IL recovery was identified to be the most sensitive parameter followed by IL cost and heat recovery. Furthermore, for IL pretreatment to be economically competitive with sulfuric acid pretreatment, >97% IL recovery, $1/kg IL cost, and >90% waste heat recovery are necessary, all of which are very optimistic considerations at the present state of technology, thus requires further research and development efforts. (c) 2015 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:生物质的预处理对于生产可发酵的糖至关重要,可以进一步转化为生物燃料。大多数常见的预处理方法,包括硫酸预处理,导致低糖产率和高微生物抑制剂形成,并且在发酵之前需要额外的排毒步骤。离子液体(IL)预处理有可能降低或消除这些问题,因此,最近,最近,较此显着的关注作为替代预处理技术。但是,在商业部署之前,IL预处理需要对其技术经济的可行性和瓶颈进行全面评估。因此,本研究的主要目的是评估商业规模IL预处理的技术经济可行性,为1.13亿升(3000万Gal /年)纤维素生物遗料,并确定工艺改进的运营目标。 1-乙基-3-甲基咪唑鎓IL用于分析,这是主要研究的ILS之一,目前最好溶解木质纤维素生物质。玉米秸秆,杨树和切换术用作模型原料。输入数据是从最近的这些原料的预处理的文献获得。玉米秸秆,Switchgrass和Poplar的估计糖生产成本($ / kg)分别为2.7,3.2和3.0。鉴定IL恢复是最敏感的参数,然后是IL成本和热量恢复。此外,对于IL预处理在经济上具有经济竞争力的硫酸预处理,> 97%IL恢复,1美元/千克成本,以及> 90%的废热回收是必要的,这一切都是对目前技术状况的非常乐观的考虑因素,因此需要进一步的研发努力。 (c)2015化学工业协会和约翰瓦利和儿子有限公司

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