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首页> 外文期刊>Biochemical Engineering Journal >Biological valorization of natural gas for the production of lactic acid: Techno-economic analysis and life cycle assessment
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Biological valorization of natural gas for the production of lactic acid: Techno-economic analysis and life cycle assessment

机译:乳酸生产天然气的生物储气:技术经济分析与生命周期评估

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摘要

Due to the availability of natural gas, shale gas, and flared gas, there is increased interest in converting methane in these gases into commodity chemicals via cost-effective and sustainable processes. Recently, we have demonstrated an efficient process concept converting methane to lactic acid (LA) by methanotrophic bacteria with high carbon flux, pivoting potentials for commercialization. Herein, we present a first-of-kind conceptual design and a techno-economic analysis (TEA) of a biorefinery process with calculated minimum selling prices. This study includes both sensitivity analysis and scenario analysis for key cost drivers and for projecting path forwards in research and development. The analyses reveal that the conversion efficiency, LA product titer, LA productivity, and gas flow rate have the most significant impacts on cost. The MSP varies from $5.83-$2.17/kg LA depending on these key process attributes. Further, a life cycle assessment of this process concept is evaluated and compared to understand the sustainable aspects. In this TEA study, the bio-upgrading process from natural gas to LA presents a potentially promising approach in terms of the feedstock versatility, economic viability, and environmental impact.
机译:由于天然气,页岩气和喇叭形气体,通过成本效益和可持续的过程将这些气体中的甲烷转化为商品化学品,增加了兴趣。最近,我们已经证明了一种有效的过程概念,通过具有高碳助焊剂的甲脂蛋白细菌将甲烷转化为乳酸(LA),枢转商业化电位。在此,我们提出了一种概念性设计和生物遗弃过程的技术经济分析(茶),具有计算的最低销售价格。本研究包括关键成本驱动因素的敏感性分析和情景分析,以及研究和开发中的投影路径。分析表明,转换效率,LA产品滴度,LA生产率和气体流速对成本产生最大的影响。根据这些关键过程属性,MSP从5.83- $ 2.17 / kg la变化。此外,评估该过程概念的生命周期评估,并比较了解可持续方面。在这项茶叶研究中,从天然气到LA的生物升级过程在原料多功能性,经济可行性和环境影响方面提出了潜在有希望的方法。

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