首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Dual-fuel production from restaurant grease trap waste: Bio-fuel oil extraction and anaerobic methane production from the post-extracted residue
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Dual-fuel production from restaurant grease trap waste: Bio-fuel oil extraction and anaerobic methane production from the post-extracted residue

机译:餐馆隔油池废物的双燃料生产:提取后的残渣中的生物燃料提取和厌氧甲烷生产

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摘要

An effective way for restaurant grease trap waste (GTW) treatment to generate fuel oil and methane by the combination of physiological and biological processes was investigated. The heat-driven extraction could provide a high purity oil equivalent to an A-grade fuel oil of Japanese industrial standard with 81-93 wt% of extraction efficiency. A post-extracted residue was treated as an anaerobic digestion feedstock, and however, an inhibitory effect of long chain fatty acid (LCFA) was still a barrier for high-rate digestion. From the semi-continuous experiment fed with the residual sludge as a single substrate, it can be concluded that the continuous addition of calcium into the reactor contributed to reducing LCFA inhibition, resulting in the long-term stable operation over one year. Furthermore, the anaerobic reactor performed well with 70-80% of COD reduction and methane productivity under an organic loading rate up to 5.3 g-COD/L/d.
机译:研究了一种通过生理和生物过程相结合的方法处理饭店隔油池废物(GTW)来生产燃料油和甲烷的有效方法。热驱动萃取可以提供相当于日本工业标准的A级燃料油的高纯度油,萃取效率为81-93 wt%。提取后的残留物被视为厌氧消化的原料,但是,长链脂肪酸(LCFA)的抑制作用仍然是高消化率的障碍。从以残余污泥作为单一底物的半连续实验中可以得出结论,将钙连续添加到反应器中有助于降低LCFA抑制,从而导致一年以上的长期稳定运行。此外,厌氧反应器在有机负载率高达5.3 g-COD / L / d的情况下,COD减少量达70-80%,甲烷生产率良好。

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