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首页> 外文期刊>Journal of Bioscience and Bioengineering >Methane Fermentation of Bean Curd Refuse
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Methane Fermentation of Bean Curd Refuse

机译:豆腐渣沼气发酵

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The methane fermentation of bean curd refuse was studied in a 11 reactor with a draft tube which was operated in a fed-batch mode with a once-a-day feeding cycle using two kinds of methanogens. The effects of substrate loading rate on the methane yield and on the behaviors of the product species were examined. A unified approach was employed for the material balance between the substrate (reactant) and product species based on the elemental carbon content in the species being considered. The classified product species are methane and carbon dioxide in the gas phase, soluble TOCs excluding VFAs, ICs and VFAs in the liquid phase and cells, and the unconverted substrate in the solid phase. It is found that the methane yield increases with the increasing substrate loading rate, reaches a maximum and then decreases with a further increasing loading rate. The maximum methane yield is found to be as high as 53.7% which is very close to the theoretical yield of 55% . It is also found that there is a critical substrate loading rate beyond which the operation becomes impossible due to excessive accumulation of unconverted solids.
机译:在带引流管的11反应器中研究了豆腐渣的甲烷发酵,该反应器以分批补料模式操作,每天使用两种产甲烷菌进行一次补料循环。研究了底物负载速率对甲烷产率和产物种类行为的影响。根据所考虑物质中元素碳的含量,采用统一的方法来平衡底物(反应物)和产物物质之间的材料。分类的产品种类为气相的甲烷和二氧化碳,液相和电池中VFA,IC和VFA除外的可溶性TOC和固相中未转化的底物。发现甲烷产率随底物负载率的增加而增加,达到最大值,然后随着负载率的进一步增加而降低。发现最大甲烷产率高达53.7%,这非常接近理论产率55%。还发现存在临界的基板加载速率,超过该速率,由于未转化的固体的过量积累,操作变得不可能。

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