Ram S K, Kumar L R, Tyagi R D, Drogui P
Centre Eau Terre Environnement, INRS, Canada E-mail:
Water Sci Technol. 2018 May;77(9-10):2228-2241. doi: 10.2166/wst.2018.140.
This study used the technical, economic analysis tool, SuperPro designer in evaluating a novel technology for simultaneous production of extracellular polymeric substance (EPS) and biodiesel using crude glycerol and secondary sludge. As renewable energy sources are depleting, the process utilizes municipal sewage sludge for production of EPS and biodiesel along with crude glycerol, which is a waste byproduct of biodiesel industry providing an alternate way for disposal of municipal sludge and crude glycerol. Newly isolated Cloacibacterium normanense NK6 is used as micro-organism in the study as it is capable of producing high EPS concentration, using activated sludge and crude glycerol as the sole carbon source. The technology has many environmental and economic advantages like the simultaneous production of two major products: EPS and lipids. Sensitivity analysis of the process revealed that biomass lipid content is a most significant factor where unit cost production of biodiesel was highly sensitive to lipid content during bioreaction. B7 biodiesel unit production cost can be lowered from $1 to $0.6 if the lipid content of the biomass is improved by various process parameter modifications.
本研究使用技术经济分析工具SuperPro Designer,评估一种利用粗甘油和剩余污泥同时生产胞外聚合物(EPS)和生物柴油的新技术。随着可再生能源的枯竭,该工艺利用城市污水污泥与粗甘油一起生产EPS和生物柴油,粗甘油是生物柴油行业的一种废弃副产品,为城市污泥和粗甘油的处置提供了另一种途径。新分离出的诺曼氏阴沟肠杆菌NK-6被用作本研究中的微生物,因为它能够以活性污泥和粗甘油作为唯一碳源,产生高浓度的EPS。该技术具有许多环境和经济优势,比如能同时生产两种主要产品:EPS和脂质。该工艺的敏感性分析表明,生物质脂质含量是一个最重要的因素,在生物反应过程中,生物柴油的单位生产成本对脂质含量高度敏感。如果通过各种工艺参数调整提高生物质的脂质含量,B7生物柴油的单位生产成本可以从1美元降至0.6美元。