生物转化
生物制氢
生物量(生态学)
渗滤液
生物能源
营养物
暗发酵
光合作用
化学
发酵
制浆造纸工业
废水
生物炼制
食品科学
环境化学
生物燃料
环境科学
生物
环境工程
生物化学
生物技术
生态学
有机化学
工程类
催化作用
制氢
作者
Haowen Feng,Chihe Sun,Chaofan Zhang,Haixing Chang,Nianbing Zhong,Wenbo Wu,Haihua Wu,Xuefei Tan,Mingjie Zhang,Shih‐Hsin Ho
标识
DOI:10.1016/j.enconman.2021.115035
摘要
Landfill leachate (LL) is endowed with double roles as refractory wastewater and nutrients/energy sources due to inherent vast inorganics and organics. Bioconversion of LL’s nutrients into biohydrogen and volatile fatty acids (VFAs) via eco-friendly dark fermentation (DF) is a promising approach to simultaneously deal with environment deterioration and energy crisis, but its application is severely restricted by poor fermentative performance attributing to strong toxicity of LL and vulnerable vitality of fermentative bacteria. Herein, a novel conversion strategy was proposed by coupling microalgal photosynthesis with DF, which was capable of reclaiming nutrients and organics from LL to produce biohydrogen and VFAs relying on robust microalgae coupled with DF. Results demonstrated that microalgae grew well in 10% LL with maximum biomass concentration of 1.41 g/L. More importantly, 86.12% NH4+ and 53.00% organics were recovered from LL and stored as carbohydrates (26.4%), proteins (48.7%) and lipid (15.9%) in microalgal cells. The accumulated intracellular carbohydrate and protein were then converted into biohydrogen and VFAs via DF, producing 16.37 kJ/L of output energy with overall energy conversion efficiency of 11.76%. Transformations of macromolecular organics and possible conversion mechanism of microalgae biomass to bioenergy were detailed discussed. Together, this work may provide a promising strategy for better dealing with LL disposal.
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