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在 CO2 捕获并添加到有机废物后,两相厌氧消化厂的甲烷产量增加。

Enhanced methane production in a two-phase anaerobic digestion plant, after CO2 capture and addition to organic wastes.

机构信息

Biotec Sys Srl, Via Gaetano Tacconi, 59, 40139 Bologna, Italy.

出版信息

Bioresour Technol. 2011 Jun;102(11):6443-8. doi: 10.1016/j.biortech.2011.03.079. Epub 2011 Mar 29.

Abstract

Cost-effective technologies are needed to reach the international greenhouse gas (GHG) reduction targets in many fields, including waste and biomass treatment. This work reports the effects of CO(2) capture from a combustion flue gas and its use in a newly-patented, two-phase anaerobic digestion (TPAD) process, to improve energy recovery and to reduce CO(2) emissions. A TPAD process, fed with urban wastewater sludge, was successfully established and maintained for several months at pilot scale. The TPAD process with injection of CO(2) exhibits efficient biomass degradation (58% VSS reduction), increased VFA production during the acidogenic phase (leading to VFA concentration of 8.4 g/L) and high biomethane production (0.350 S m(3)/kg(SSV); 0.363 S m(3)/m(3)(react) · d). Moreover, CO(2) intake in the acid phase has a positive impact on the overall GHG balance associated to biomethane production, and suggests an improved solution for both emission reduction and biomass conversion into biomethane.

摘要

需要具有成本效益的技术来实现许多领域的国际温室气体 (GHG)减排目标,包括废物和生物质处理。本工作报告了从燃烧烟道气中捕获 CO(2)并将其用于新获得专利的两相厌氧消化 (TPAD)工艺中的效果,以提高能量回收并减少 CO(2)排放。采用城市污水污泥成功建立并在中试规模下维持了几个月的 TPAD 工艺。注入 CO(2)的 TPAD 工艺表现出高效的生物质降解(58% VSS 减少)、产酸阶段 VFA 产量增加(导致 VFA 浓度为 8.4 g/L)和高生物甲烷产量(0.350 S m(3)/kg(SSV);0.363 S m(3)/m(3)(react)·d)。此外,酸相中 CO(2)的摄入对与生物甲烷生产相关的整体温室气体平衡产生积极影响,并为减少排放和将生物质转化为生物甲烷提供了改进的解决方案。

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