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首页> 外文期刊>Waste Management >A systematic comparison of ectoine production from upgraded biogas using Methylomicrobium alcaliphilum and a mixed haloalkaliphilic consortium
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A systematic comparison of ectoine production from upgraded biogas using Methylomicrobium alcaliphilum and a mixed haloalkaliphilic consortium

机译:系统地比较了使用嗜碱甲基微球菌和混合卤代嗜碱性财团从提纯后的沼气中产生的植物素

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摘要

Biogas is the byproduct of anaerobic digestion with the highest valorization potential, however its full exploitation is limited by the lack of tax incentives and the inherent presence of pollutants. The development of technologies for biogas conversion into added-value products is crucial in order to ensure the competitiveness of this bioresource. This study constitutes the first proof of concept of upgraded biogas bioconversion into the high profit margin product ectoine. Ectoine represents the most expensive product synthesized by microorganisms with a retail value of 1000 $ kg~(-1) and a yearly increasing demand that currently entails a total market opportunity of 15000 M€. First, the production of ectoine from upgraded biogas was assessed in batch bioreactors. The presence of H_2S did not exert a negative effect on the growth of the haloalkaliphilic ectoine producers, and ectoine yields up to 49 mg g biomass~(-1) were obtained. A second experiment conducted in continuous bubble column bioreactors confirmed the feasibility of the process under continuous mode (with ectoine yields of 109 mg g biomass~(-1)). Finally, this study revealed that the removal of toxic compounds (i.e. medium dilution rate of 0.5 day~(-1)) and process operation with a consortium composed of methylotrophicon-methylotrophic ectoine producers enhanced upgraded biogas bioconversion. This research discloses the basis for the application of this innovative technology and could boost the economic performance of anaerobic digestion.
机译:沼气是厌氧消化的副产品,具有最高的增值潜力,但是由于缺乏税收优惠和污染物的固有存在,其充分利用受到限制。为了确保这种生物资源的竞争力,开发沼气转化为增值产品的技术至关重要。这项研究构成了将沼气生物转化为高利润率产品外泌素的第一个概念证明。 Ectoine是由微生物合成的最昂贵的产品,零售价为1000 $ kg〜(-1),并且需求逐年增加,目前总市场机会为150亿欧元。首先,在分批生物反应器中评估了从提纯后的沼气生产的植物素。 H_2S的存在对卤代链烷亲和性外植体生产者的生长没有负面影响,并获得了高达49 mg g生物量〜(-1)的外植体产量。在连续鼓泡塔生物反应器中进行的第二个实验证实了该方法在连续模式下的可行性(植物胶产量为109 mg g生物量〜(-1))。最后,这项研究表明,去除有毒化合物(即0.5天〜(-1)的中等稀释率)以及由甲基营养型/非甲基营养型水合生素生产者组成的联合体的工艺操作可以提高沼气的生物转化率。这项研究揭示了这项创新技术的应用基础,并可以提高厌氧消化的经济性能。

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