首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Two-stage anaerobic digestion of tomato, cucumber, common reed and grass silage in leach-bed reactors and upflow anaerobic sludge blanket reactors
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Two-stage anaerobic digestion of tomato, cucumber, common reed and grass silage in leach-bed reactors and upflow anaerobic sludge blanket reactors

机译:浸出床反应器和上流式厌氧污泥床反应器中番茄,黄瓜,芦苇和草青贮饲料的两阶段厌氧消化

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Anaerobic digestion of tomato, cucumber, common reed and grass silage was studied in four separate two-stage reactor configuration consisting of leach bed reactor (LBR) and upflow anaerobic sludge blanket reactor (UASB). LBR studies showed that COD solubilization for cucumber and grass silage was higher (50%) than tomato (35%) and common reed (15%). Results also showed that 31-39% of initial TKN present in tomato and cucumber was solubilized in the leachates and 47-54% of the solubilized TKN was converted to NH_4-N. The corresponding values for common reed and grass silage were 38-50% and 18-36%, respectively. Biomethanation of the leachates in UASB reactors resulted in methane yields of 0.03-0.14m~3 CH_4 kg~(-1)VSfed for the studied crop materials. Thus, high COD solubilization, high nitrogen mineralization and solubilization rates were feasible during anaerobic digestion of lignocellulosic materials in a two-stage LBR-UASB reactor system.
机译:在四个单独的两级反应器配置中研究了番茄,黄瓜,普通芦苇和草料青贮饲料的厌氧消化,该反应器配置包括浸出床反应器(LBR)和上流厌氧污泥床反应器(UASB)。 LBR研究表明,黄瓜和草料青贮饲料的COD增溶率(50%)高于番茄(35%)和普通芦苇(15%)。结果还表明,番茄和黄瓜中存在的初始TKN中有31-39%溶解在沥滤液中,而溶解的TKN中有47-54%转化为NH_4-N。普通芦苇和青贮饲料的相应值分别为38-50%和18-36%。 UASB反应器中渗滤液的生物甲烷化导致甲烷产量为0.03-0.14m〜3 CH_4 kg〜(-1)VSfed。因此,在两级LBR-UASB反应器系统中,木质纤维素材料的厌氧消化过程中,高COD增溶,高氮矿化和增溶速率是可行的。

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