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Photohydrogen Production from Thermophilic Aerobic Digestion Effluent and Distillery Wastewater by Photosynthetic Bacterium Rhodopseudomonas palustris WP3-5

机译:光氢化来自嗜热的有氧消化污物流出物和酿酒渣的光合菌杜鹃花菌杜鹃花园Palustris WP3-5

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Based on the reserved limitation and environmental consequences of fossil fuel, hydrogen is considered to be one of the most promising clean fuels for the future [1], and can be produced using biological system through exploiting fermentative bacteria, algae, cyanobacteria, and anoxygenic photosynthetic bacteria [2]. Among these hydrogen microproducers, purple nonsulfur photosynthetic bacteria can utilize VFAs as the substrates for growing and producing hydrogen [3]. Thermophilic aerobic digestion (TAD) is a dynamic, new waste-processing technique which uses the heat generated during microbial aerobic metabolism to raise the temperature of waste undergoing treatment in an insulated system to thermophilic levels (45°C).
机译:基于化石燃料的保留限制和环境后果,氢被认为是未来最有希望的清洁燃料之一[1],可以通过利用发酵细菌,藻类,蓝藻和厌氧基因光合作用来生产生物系统细菌[2]。在这些氢微转换器中,紫色非素光合细菌可以利用VFA作为生长和产生氢的基材[3]。嗜热需氧消化(TAD)是一种动态,新的废物加工技术,使用微生物有氧代谢期间产生的热量,以提高在绝缘系统中进行治疗的废物温度(45°C)。

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