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Energy recovery in high rate algal pond used for domestic wastewater treatment

机译:高速藻类池塘能源回收用于国内污水处理

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High rate algal pond (HRAP) was evaluated according to its energy potential and productivity by two rates, net energy ratio (NER) and specific biomass productivity. All energy inputs were calculated according to one HRAP with pre-ultraviolet disinfection treating anaerobic domestic sewage. The outputs were calculated for two energetic pathways: lipid and biogas production for the raw biomass (RB) and biomass after lipid extraction. The non-polar lipid content in dry biomass was 7.6%, reaching a daily lipid productivity of 0.2 g/m~(2)·day and the biogas production potential was 0.20 m~(3)/kg solids. For the biomass after lipid extraction, the biogas production reached 2.6 m~(3)/kg solids. NER values of 10~(?3)for the RB were similar for lipids and biogas routes. The specific biomass productivity was 0.7 mg/kJ. For the residual biomass, after lipid extraction, NER value was 10~(?2)for the integrated route (lipids + biogas) and the specific biomass productivity of the extracted biomass was 0.4 mg/kJ. The best energetic pathway was to integrate both lipids and biogas route.
机译:根据其能量潜力和生产率,通过两个速率,净能量比(NER)和特定的生物量生产率来评估高速率藻类池(HRAP)。所有能量输入按照紫外线紫外线处理厌氧家庭污水,计算所有能量输入。对两种能量途径计算出输出:脂质提取后的原料生物量(RB)和生物量的脂质和沼气生产。干生物质中的非极性脂质含量为7.6%,达到每日脂质生产率为0.2g / m〜(2)·日,沼气生产潜力为0.20m〜(3)/ kg固体。对于脂质萃取后的生物质,沼气产量达到2.6m〜(3)/ kg固体。 RB的10〜(β3)的单位值类似于脂质和沼气路线。具体的生物质生产率为0.7mg / kJ。对于残留的生物质,在脂质萃取后,对于综合途径(脂质+沼气)为10〜(Δ2),提取的生物质的特异性生物质生产率为0.4mg / kJ。最好的能量途径是整合脂质和沼气途径。

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