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利用生物柴油衍生粗甘油进行生物制氢:技术经济评估。

Bio-hydrogen production by biodiesel-derived crude glycerol bioconversion: a techno-economic evaluation.

机构信息

INRS-ETE, 490, Rue de la Couronne, Québec, QC G1K 9A9, Canada.

出版信息

Bioprocess Biosyst Eng. 2013 Jan;36(1):1-10. doi: 10.1007/s00449-012-0755-8. Epub 2012 May 30.

Abstract

Global biodiesel production is continuously increasing and it is proportionally accompanied by a huge amount of crude glycerol (CG) as by-product. Due to its crude nature, CG has very less commercial interest; although its pure counterpart has different industrial applications. Alternatively, CG is a very good carbon source and can be used as a feedstock for fermentative hydrogen production. Further, a move of this kind has dual benefits, namely it offers a sustainable method for disposal of biodiesel manufacturing waste as well as produces biofuels and contributes in greenhouse gas (GHG) reduction. Two-stage fermentation, comprising dark and photo-fermentation is one of the most promising options available for bio-hydrogen production. In the present study, techno-economic feasibility of such a two-stage process has been evaluated. The analysis has been made based on the recent advances in fermentative hydrogen production using CG as a feedstock. The study has been carried out with special reference to North American biodiesel market; and more specifically, data available for Canadian province, Québec City have been used. Based on our techno-economic analysis, higher production cost was found to be the major bottleneck in commercial production of fermentative hydrogen. However, certain achievable alternative options for reduction of process cost have been identified. Further, the process was found to be capable in reducing GHG emissions. Bioconversion of 1 kg of crude glycerol (70 % w/v) was found to reduce 7.66 kg CO(2) eq (equivalent) GHG emission, and the process also offers additional environmental benefits.

摘要

全球生物柴油产量不断增加,随之产生的大量粗甘油(CG)是其副产物。由于 CG 性质粗糙,其商业价值很低;而其纯品则有不同的工业应用。但是,CG 是一种很好的碳源,可以用作发酵制氢的原料。此外,这种做法有双重好处,即提供了一种可持续的方法来处理生物柴油制造废物,同时生产生物燃料并有助于减少温室气体(GHG)排放。两步发酵,包括暗发酵和光发酵,是生物制氢最有前途的方法之一。本研究评估了这种两步法的技术经济可行性。该分析是基于利用 CG 作为原料进行发酵制氢的最新进展进行的。该研究特别针对北美生物柴油市场进行;更具体地说,使用了加拿大魁北克市的数据。根据我们的技术经济分析,较高的生产成本是发酵制氢商业化生产的主要瓶颈。但是,已经确定了一些可以降低工艺成本的可行替代方案。此外,该过程被发现能够减少 GHG 排放。生物转化 1 公斤粗甘油(70%w/v)可减少 7.66 公斤 CO2eq(当量)GHG 排放,该过程还提供了额外的环境效益。

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