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首页> 外文期刊>Scientific Research and Essays >Role of hydrogen peroxide (H2O2) enhanced anaerobic co-digestion of petrochemical wastewater on cycle time minimization during biomethanation
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Role of hydrogen peroxide (H2O2) enhanced anaerobic co-digestion of petrochemical wastewater on cycle time minimization during biomethanation

机译:过氧化氢(H2O2)增强石化废水厌氧共消化对生物甲烷化过程中循环时间最小化的作用

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摘要

The latent of per-oxidation pretreatment to petrochemical waste water (PWW) prior to anaerobic co-digestion process was explored in continuous stirred tank reactor (CSTR) continually with dairy cattle and beef cattle manure. Oxidation by hydrogen peroxide (OHP), elevated biodegradability index (BOD/COD) up to 35%. While CSTR operated with non-OHP PWW, system was found to be failed at organic loading of 6.5 to 12.99 kg COD/m3/day due to vigorous volatile fatty acid accumulation. Inversely, the OHP PWW rendered sustainable superior TCOD removal at 6.03 to 11.7 kg COD/m3/day organic loading with durable process stability at co-digestion period. As methane production is considered to be inhibited due to volatile fatty acid (VFA) accumulation leading to instability of reactor operation during anaerobic digestion, the co-digestion of OHP pretreated PWW resulted in exaggerated methane yield, followed by 98 ± 0.5%, 95 ± 0.05% and 79 ± 0.06% COD reduction at 9, 6 and 4 days HRT. The concrete data revealed that prolonged HRT and abridged cycle time (CT) caused CSTR aggrandized TCOD removal efficiency and methane yield.
机译:在连续搅拌釜反应器(CSTR)中,与奶牛和肉牛粪便一起,探索了厌氧共消化过程之前对石化废水(PWW)进行过氧化预处理的潜力。过氧化氢(OHP)氧化,可生物降解指数(BOD / COD)升高至35%。当CSTR与非OHP PWW一起运行时,由于挥发性脂肪酸的大量积聚,发现有机负荷为6.5至12.99 kg COD / m3 /天时,系统出现故障。相反,OHPW在有机负载量为6.03至11.7 kg COD / m3 / day的有机负荷下可实现可持续的卓越TCOD去除,并且在共消化期间具有持久的工艺稳定性。由于人们认为由于挥发性脂肪酸(VFA)的积累导致甲烷的产生受到抑制,导致厌氧消化过程中反应器运行不稳定,因此,OHP预处理的PWW的共消化导致甲烷的产率过高,其次是98甚至更多。 0.5%,95及以上; 0.05%和79±在HRT放置9、6和4天后,COD降低0.06%。具体数据显示,延长的HRT和缩短的循环时间(CT)会导致CSTR强化TCOD去除效率和甲烷产率。

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