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The effects of syngas impurities on syngas fermentation to liquid fuels

机译:合成气杂质对合成气发酵成液体燃料的影响

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摘要

Biomass gasification to generate raw syngas used in anaerobic fermentation processes is one of several emerging technologies for the production of biofuels from biomass. The gasification-fermentation process can utilize a wide variety of lignocellulosic biomass such as prairie grasses, wood chips, and paper wastes, in addition to non-lignocellulosic biomass such as solid municipal wastes. Although the primary components of raw syngas used in the fermentation process are CO, H_2, and CO_2, several impurities can also be present. Some of these impurities may interfere with the fermentation process. Since the impurities will depend upon the feedstock, the gasifier type, and cleanup conditions, an understanding of the positive or adverse effects of the impurities on raw syngas fermentation is critical to understand the need for efficient gas cleaning processes required for commercialization. This work describes the impurities generated during gasification and discusses the potential accumulation of impurities in the fermentation media and the associated potential effects on the microbial fermentation process (e.g. cell toxicity, enzymatic inhibition and end product distribution). A wide distribution of impurity solubilities in the media shows that certain impurities, such as ammonia, are more likely to accumulate in the media. Additionally, entrained tar particulates greater than 0.025 nm, nitric oxide greater than 0.004 mol%, and ammonia in general have an adverse effect on the fermentation process. Therefore, a cleanup system suitable for raw syngas fermentation processes is evident although the degree of cleanup would likely depend upon the feedstock and the associated gasification process.
机译:生物质气化生产厌氧发酵过程中使用的原始合成气是从生物质生产生物燃料的几种新兴技术之一。除了非木质纤维素生物质(例如固体城市垃圾)以外,气化发酵过程还可以利用多种木质纤维素生物质(例如草原草,木屑和纸屑)。尽管发酵过程中使用的粗合成气的主要成分是CO,H_2和CO_2,但也可能存在一些杂质。这些杂质中的一些可能会干扰发酵过程。由于杂质将取决于原料,气化炉类型和净化条件,因此了解杂质对原料合成气发酵的正面或不利影响对于理解商业化所需的有效气体净化工艺的需求至关重要。这项工作描述了气化过程中产生的杂质,并讨论了发酵培养基中杂质的潜在积累以及对微生物发酵过程的相关潜在影响(例如细胞毒性,酶促抑制作用和最终产物分布)。介质中杂质溶解度的广泛分布表明某些杂质(例如氨)更可能在介质中积聚。另外,夹带的焦油颗粒大于0.025nm,一氧化氮大于0.004mol%和氨通常对发酵过程具有不利影响。因此,尽管净化程度可能取决于原料和相关的气化过程,但显然适用于粗合成气发酵工艺的净化系统。

著录项

  • 来源
    《Biomass & bioenergy》 |2011年第7期|p.2690-2696|共7页
  • 作者单位

    Department of Chemical Engineering, 350 Clyde Building, Brigham Young University, Prouo, UT 84602, USA;

    Department of Chemical Engineering, 350 Clyde Building, Brigham Young University, Prouo, UT 84602, USA;

    Department of Chemical Engineering, 350 Clyde Building, Brigham Young University, Prouo, UT 84602, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    syngas; fermentation; gasification; ethanol; impurities;

    机译:合成气;发酵;气化;乙醇;杂质;

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