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Energy Recovery From Conventional Biogas Digester Effluent with a Novel Bioreactor Configuration

机译:具有新型生物反应器配置的常规沼气消化池废水的能量回收

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Anaerobic biotechnology offers both economic and ecological benefits for sustainable renewable energy production and sustainable agriculture practice. In this study, a novel bioreactor configuration, which is a combination of a continuous flow stirred-tank reactor (CSTR) and an up flow sludge blanket reactor (UASB), was used in order to valorize the residual organic content in the effluent of a conventional CSTR reactor. Thereby, maximum utilization of total COD potential was aimed by further processing of the residual COD from conventional farm based CSTR type digester effluent. The effluent of the CSTR reactor (dry matter 10%, HRT: 30 days) was fed into UASB reactors under varying HRT and Organic Loading Rate (OLR) conditions. Up to 98% CODremoval was achieved in 4 L UASB reactor corresponding to maximum biogas production of 0.7 m(3) biogas/kg CODremoved in UASB reactor. To the best of our knowledge, this integrated system is used for the first time to maximize the COD conversion into bio-methane during biogas production from laying hen litters. Thereby, a novel approach was presented a promising solution for the maximum valorization of animal manure as an alternative to conventional farm based biogas digester systems.
机译:厌氧生物技术为可持续可再生能源生产和可持续农业实践提供经济和生态效益。在这项研究中,采用了一种新颖的生物反应器配置,该配置是连续流搅拌釜反应器(CSTR)和上流污泥床反应器(UASB)的组合,目的是平衡废水中残留的有机物含量。常规CSTR反应器。因此,通过进一步处理来自传统农场基于CSTR型消化池废水的残留COD,可以最大程度地利用总COD潜力。将CSTR反应器(干物质10%,HRT:30天)的流出物在不同的HRT和有机负荷率(OLR)条件下进料到UASB反应器中。在4 L UASB反应器中实现了高达98%的CODremoval,相当于在UASB反应器中去除的最大沼气产量为0.7 m(3)沼气/ kg COD。据我们所知,该集成系统首次用于从产蛋母猪产生沼气期间最大程度地将COD转化为生物甲烷。因此,提出了一种新颖的方法,该方法有望最大程度地实现动物粪便的增值,从而替代传统的基于农场的沼气消化系统。

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