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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancing hyper-thermophilic hydrolysis pre-treatment of chicken manure for biogas production by in-situ gas phase ammonia stripping
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Enhancing hyper-thermophilic hydrolysis pre-treatment of chicken manure for biogas production by in-situ gas phase ammonia stripping

机译:通过原位气相氨汽提提高脂肪母生产鸡粪的高热水解预处理

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Hydrolysis is normally the rate limiting step for anaerobic digestion (AD). In this study, hyper-thermophilic (70 degrees C) pre-treatment of chicken manure under HRTs of 10, 5, 3, 2 and 1 d(s) was investigated to enhance the hydrolysis efficiency for biogas production. In-situ phase gas stripping was integrated into the pre-treatment reactor to remove ammonia-N and to enhance the hydrolysis performance. The results showed that in-situ gas stripping removed 18%-31% of ammonia-N and improved hydrolysis by 2.6%-31.1%. The methane yield of pre-hydrolyzed chicken manure reached 518 mL g-VS-1- under optimal HRT 3 days, which was 54.6% higher than that obtained from the control reactor. However, shortening HRTs below 3 days resulted in a significant reduction in hydrolysis efficiency. The percent of hydrolysis and acidogenesis bacteria reduced to 40.6% at HRT 1 d. 16sRNA results indicated existence of methanogens in pre-hydrolysis reactor. Further optimizing of ammonia stripping was thus needed for hydrolysis pre-treatment.
机译:水解通常是厌氧消化(AD)的速率限制步骤。在本研究中,研究了在10,5,3,2和1d(S)的HRT下的高热嗜热(70摄氏度)预处理鸡粪。提高沼气生产的水解效率。原位相气汽提整合到预处理反应器中以除去氨-N并增强水解性能。结果表明,原位气汽提18%-31%的氨-n并改善水解2.6%-31.1%。预水解鸡粪的甲烷产率达到518ml G-Vs-1-在最佳HRT 3天下,比从对照反应器获得的54.6%。然而,缩短了3天以下的HRT,导致水解效率显着降低。水解百分比和酸化细菌在HRT 1 d中降至40.6%。 16SRNA结果表明在水解反应器中存在甲烷酮。因此需要进一步优化水解预处理所需的氨汽提。

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