Department of Environmental Engineering, Inha University, Michuhol-gu, Inharo 100, Incheon, Republic of Korea.
Department of Environmental Engineering, Inha University, Michuhol-gu, Inharo 100, Incheon, Republic of Korea.
Sci Total Environ. 2019 Aug 15;678:85-93. doi: 10.1016/j.scitotenv.2019.04.396. Epub 2019 Apr 27.
The effect of membrane cleaning chemical, NaOCl on specific acetoclastic methanogenic activity (SAMA) of biomass in the anaerobic fluidized membrane bioreactors (AFMBRs) was assessed. Granular activated carbon (GAC) was used as a fluidizing media in the AFMBR to provide membrane scouring effect and surface for biofilm attachment. Effect of NaOCl on methane production was negligible for GAC with biofilm (bGAC) samples up to 150 mg NaOCl/g VSS, but was significant for the bulk liquid samples with noticeable lag period over 300 h even at the dosage of 50 mg NaOCl/g VSS. The toxicity of NaOCl on methane production was reduced in samples with virgin GAC (vGAC) by allowing 14 days of biomass buildup period prior to NaOCl addition, although the vGAC alone did not alleviate the toxicity. The results revealed that NaOCl concentrations beyond 100 mg/L within the reactor inhibited methanogenic activity and the effects were more pronounced on suspended biomass than the immobilized biomass on GAC.
研究了膜清洗剂次氯酸钠(NaOCl)对厌氧流动膜生物反应器(AFMBR)中生物质的特定产乙酸甲烷活性(SAMA)的影响。在 AFMBR 中使用颗粒状活性炭(GAC)作为流化介质,以提供膜冲刷效果和生物膜附着的表面。对于具有生物膜的 GAC(bGAC)样品,高达 150mg NaOCl/g VSS 的 NaOCl 对甲烷生成的影响可以忽略不计,但对于批量液体样品,即使在 50mg NaOCl/g VSS 的剂量下,也会出现长达 300h 的明显滞后期,这表明 NaOCl 对甲烷生成具有毒性。在添加 NaOCl 之前,让新鲜 GAC(vGAC)中的生物质生长 14 天,可以减轻 NaOCl 对甲烷生成的毒性,尽管单独的 vGAC 并不能减轻毒性。结果表明,反应器内超过 100mg/L 的 NaOCl 浓度会抑制产甲烷活性,并且对悬浮生物质的影响比固定在 GAC 上的生物质更为明显。