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Anaerobic Co-Digestion Biomethanation of Cannery Seafood Wastewater with Microcystis SP; Blue Green Algae with/without Glycerol Waste

机译:用微囊杆菌罐头海鲜废水的Anaerobic Co-Digestion BioMethation;蓝绿藻与/没有甘油垃圾

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We investigated the feasibility of using Microcystis sp; blue green algae (MB) as a co-substrate to improve the mesophilic anaerobic digestion of cannery seafood wastewater (CSW) supplemented with 1% (v/v) glycerol waste (GW), to maximize bio-methane production. The MB content was set at 5, 10 and 15% (v/v) to find a near optimal methane yield. The maximum 291 mL CH4/g VS-added methane yield, corresponding to 4.4 m~3-CH4/m~3-mixed wastewater, was achieved with a CSW: GW: MB mixture at the volumetric 94:1:5 ratio. The methane yield of CSW digested alone was 278 mL CH4/g VS-added (2.2 m~3 CH4/ m~3 of wastewater). The yields from our other experiments ranged within 81-150 mLCH4/g VS-added. Ratios of MB: CSW exceeding 5 % (v/v) gave lower than optimal methane yields. The energy content of methane from 1 m~3 of mixed wastewater, with the near optimal mixture ratio 94:1:5, was 157 MJ or equivalently 44 kWh.
机译:我们调查了使用微囊杆菌的可行性;蓝绿藻(MB)作为改善补充1%(v / v)甘油废物(GW)的罐头海鲜废水(CSW)的嗜苯胺厌氧消化,以最大化生物甲烷的生产。 Mb含量设定为5,10和15%(v / v),以找到近最佳甲烷产率。用CSW:GW:GW:Mb混合物在体积94:1:5的比例下实现最大291ml CH 4 / g对应于4.4m〜3-Ch 4 / m〜3混合废水的甲烷产率。单独消化的CSW的甲烷产率为278ml CH 4 / G VS加入(2.2M〜3 CH 4 / m〜3废水)。我们的其他实验的产量范围在81-150mLCH4 / g内进行VS加入。 MB的比率:CSW超过5%(v / v),低于最佳甲烷产率。甲烷的能量含量从1M〜3的混合废水中,具有近乎最佳混合比94:1:5,为157mJ或等效44千瓦时。

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