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Benefits of supplementing an industrial waste anaerobic digester with energy crops for increased biogas production

机译:用能源作物补充工业废水厌氧消化池以提高沼气产量的好处

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Currently, there is increasing competition for waste as feedstock for the growing number of biogas plants. This has led to fluctuation in feedstock supply and biogas plants being operated below maximum capacity. The feasibility of supplementing a protein/lipid-rich industrial waste (pig manure, slaughterhouse waste, food processing and poultry waste) mesophilic anaerobic digester with carbohydrate-rich energy crops (hemp, maize and triticale) was therefore studied in laboratory scale batch and continuous stirred tank reactors (CSTR) with a view to scale-up to a commercial biogas process. Co-digesting industrial waste and crops led to significant improvement in methane yield per ton of feedstock and carbon-to-nitrogen ratio as compared to digestion of the industrial waste alone. Biogas production from crops in combination with industrial waste also avoids the need for micronutrients normally required in crop digestion. The batch co-digestion methane yields were used to predict co-digestion methane yield in full scale operation. This was done based on the ratio of methane yields observed for laboratory batch and CSTR experiments compared to full scale CSTR digestion of industrial waste. The economy of crop-based biogas production is limited under Swedish conditions; therefore, adding crops to existing industrial waste digestion could be a viable alternative to ensure a constant/reliable supply of feedstock to the anaerobic digester.
机译:当前,越来越多的沼气厂将废物作为原料的竞争越来越激烈。这导致了原料供应的波动,并且沼气厂的运行低于最大能力。因此,以实验室规模批量和连续地研究了用富含碳水化合物的能源作物(大麻,玉米和黑小麦)补充富含蛋白质/脂质的工业废物(猪粪,屠宰场废物,食品加工和家禽废物)中温厌氧消化池的可行性。搅拌釜反应器(CSTR),以扩大到商业沼气工艺的规模。与仅消化工业废物相比,共同消化工业废物和农作物可显着提高每吨原料的甲烷产量和碳氮比。从农作物中产生沼气与工业废料相结合,也避免了通常需要在农作物消化中使用的微量营养素。分批共消化甲烷的产率用于预测大规模操作中的共消化甲烷的产率。这是根据实验室批次和CSTR实验观察到的甲烷产率与工业废料的全面CSTR消化率之比得出的。在瑞典的条件下,以作物为基础的沼气生产的经济有限;因此,在现有的工业废物消化中添加农作物可能是确保向厌氧消化池稳定/可靠地供应原料的可行选择。

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