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新策略可实现生物甲烷化性能的快速稳定化。

New strategy for a suitable fast stabilization of the biomethanization performance.

机构信息

Department of Chemical Engineering and Food Technology, University of Cadiz, Cadiz, Puerto Real, Spain.

出版信息

Archaea. 2012;2012:418727. doi: 10.1155/2012/418727. Epub 2012 Nov 5.

Abstract

The start-up strategies for thermophilic anaerobic reactors usually consist of an initial mesophilic stage (35°C), with an approximate duration of 185 days, and a subsequent thermophilic stage (55°C), which normally requires around 60 days to achieve the system stabilizatio. During the first 8-10 days of the mesophilic stage, the reactor is not fed so that the inoculum, which is generally a mesophilic anaerobic sludge, may be adapted to the organic solid waste. Between mesophilic and thermophilic conditions the reactor is still not fed in an effort to prevent possible imbalances in the proces. As a consequence, the start-up and stabilization of the biomethanization performance described in the literature require, at least, around 245 days. In this sense, a new strategy for the start-up and stabilization phases is presented in this study. This approach allows an important reduction in the overall time necessary for these stages in an anaerobic continuous stirred tank reactor (CSTR) operated at thermophilic-dry conditions for treating the organic fraction of the municipal solid waste (OFMSW): 60 days versus 245 days of conventional strategies. The new strategy uses modified SEBAC technology to adapt an inoculum to the OFMSW and the operational conditions prior to seeding the CSTR.

摘要

高温厌氧反应器的启动策略通常包括初始的中温阶段(35°C),持续约 185 天,随后是高温阶段(55°C),通常需要大约 60 天才能实现系统稳定化。在中温阶段的前 8-10 天,反应器不进料,以便接种物(通常是中温厌氧污泥)适应有机固体废物。在中温和高温条件之间,反应器仍然不进料,以防止过程中可能出现的不平衡。因此,文献中描述的生物甲烷化性能的启动和稳定化至少需要 245 天。在这个意义上,本研究提出了一种新的启动和稳定化阶段的策略。这种方法可以在高温干条件下运行的厌氧连续搅拌罐反应器(CSTR)中处理城市固体废物(MSW)的有机部分时,显著减少这些阶段所需的总时间:60 天与传统策略的 245 天相比。新策略使用改良的 SEBAC 技术在接种 CSTR 之前,使接种物适应 OFMSW 和操作条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bdd/3501813/3ef5df776af2/ARCH2012-418727.001.jpg

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