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Oxygen tolerance capacity of upflow anaerobic solid-state (UASS) with anaerobic filter (AF) system

机译:厌氧过滤(aF)系统上流式厌氧固态(Uass)的耐氧能力

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摘要

In order to investigate the oxygen tolerance capacity of upflow anaerobic solid-state (UASS) with anaerobic filter (AF) system, the effect of microaeration on thermophilic anaerobic digestion of maize straw was investigated under batch conditions and in the UASS with AF system. Aeration intensities of 0–431 mL O2 gvs-1 were conducted as pretreatment under batch conditions. Aeration pretreatment obviously enhanced anaerobic digestion and an aeration intensity of 431 mL O2 gvs-1 increased the methane yield by 82.2%. Aeration intensities of 0–355 mL O2 gvs-1 were conducted in the process liquor circulation of the UASS with AF system. Dissolved oxygen (DO) of UASS and AF reactors kept around 1.39±0.27 and 0.99±0.38 mg L-1, respectively. pH was relatively stable around 7.11±0.04. Volatile fatty acids (VFAs) and soluble chemical oxygen demand (SCOD) concentration in UASS reactor were higher than those in AF reactor. Methane yield of the whole system was almost stable at 85±7 mL gvs-1 as aeration intensity increased step by step. The UASS with AF system showed good oxygen tolerance capacity.
机译:为了研究带有厌氧滤池(AF)系统的上流厌氧固态(UASS)的耐氧能力,在分批条件下和在带有AF系统的UASS中,研究了微曝气对玉米秸秆嗜热厌氧消化的影响。在分批条件下进行预处理的曝气强度为0–431 mL O2 gvs-1。曝气预处理明显增强了厌氧消化,并且431 mL O2 gvs-1的曝气强度使甲烷产率提高了82.2%。在带有AF系统的UASS的工艺液循环中进行了0–355 mL O2 gvs-1的曝气强度。 UASS和AF反应器的溶解氧(DO)分别保持在1.39±0.27和0.99±0.38 mg L-1左右。 pH在7.11±0.04左右相对稳定。 UASS反应器中的挥发性脂肪酸(VFA)和可溶性化学需氧量(SCOD)的浓度高于AF反应器中的。随着曝气强度的逐步提高,整个系统的甲烷产率基本稳定在85±7 mL gvs-1。具有AF系统的UASS表现出良好的耐氧能力。

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