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首页> 外文期刊>Biotechnology and bioprocess engineering >Production of Hydrogen from Marine Macro-algae Biomass Using Anaerobic Sewage Sludge Micro flora
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Production of Hydrogen from Marine Macro-algae Biomass Using Anaerobic Sewage Sludge Micro flora

机译:利用厌氧污泥微生物群从海洋大型藻类生物质生产氢气

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摘要

Hydrogen was produced from various marine macro-algae (seaweeds) through anaerobic fermentation using an undefined bacterial consortium. In this study, anaerobic fermentation from various marine macro-algae for Ulva lactuca, Porphyra ten-era, Undaria pinnatifida, and Laminaria japonica was studied. From this analysis Laminaria japonica was determined to be the optimum substrate for hydrogen production. When L. japonica was used as the carbon source for enhanced hydrogen production, the optimum fermentation temperature, substrate concentration, initial pH, and pretreatment condition were determined to be 35℃, 5%, 7.5, and BT120 (Ball mill and thermal treatments at 120℃ for 30 min), respectively. In addition, hydrogen production was improved when the sludge was heat-treated at 65℃ for 20 min. Under these conditions, about 4,164 mL of hydrogen was produced from 50 g/L of dry algae (L. japonica) for 50 h, with a hydrogen concentration around 34.4%. And the maximum hydrogen production rate and yield were found to be 70 mL/L-h and 28 mL/g dry algae, respectively.
机译:氢气是由各种海洋大型藻类(海藻)通过使用不确定的细菌财团进行厌氧发酵而产生的。在这项研究中,研究了从各种海洋大型藻类中厌氧发酵制得Ulva lactuca,Porphyra 10时代,pindatifida和Underaria japonica的厌氧发酵。通过该分析,日本海带被确定为制氢的最佳底物。当日本粳稻作为碳源提高产氢量时,最佳发酵温度,底物浓度,初始pH和预处理条件确定为35℃,5%,7.5和BT120(球磨机和热处理120℃30分钟)。另外,污泥在65℃下热处理20分钟可以提高制氢效率。在这些条件下,从50 g / L的干燥藻类(L. japonica)持续50 h可产生约4,164 mL的氢,氢浓度约为34.4%。最高产氢量和产量分别为70 mL / L-h和28 mL / g干藻。

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