Tezel Ulas, Pierson John A, Pavlostathis Spyros G
School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0512, USA.
Water Res. 2006 Nov;40(19):3660-8. doi: 10.1016/j.watres.2006.06.019. Epub 2006 Aug 8.
The potential inhibitory effect of four quaternary ammonium compounds (QACs) and Vigilquat, a commercial sanitizer which is a mixture of the four QACs, was investigated at concentrations up to 100 mg/L using a mixed, mesophilic (35 degrees C) methanogenic culture. Dextrin and peptone were used as the carbon and energy sources. A batch assay conducted at a range of QAC concentrations showed that QACs were inhibitory to methanogens at and above 25 mg/L. Methanogenesis was more susceptible to QAC inhibition than acidogenesis. Adsorption of QACs on biomass was successfully simulated with the Freundlich isotherm equation. The inhibitory effect of Vigilquat on the mixed methanogenic culture was also investigated in a batch reactor fed with dextrin and peptone. Methanogens were inhibited when the total QAC concentration reached 30 mg/L and volatile fatty acids (VFAs) accumulated. However, methane production recovered in 57 days of incubation, and all VFAs were consumed, suggesting that a prolonged incubation period is necessary for the methanogens to overcome the transient inhibition at a relatively low QAC concentration. None of the QACs tested in this study was biodegraded under methanogenic conditions.
使用混合的嗜温(35摄氏度)产甲烷培养物,研究了四种季铵化合物(QACs)以及Vigilquat(一种商业消毒剂,为四种QACs的混合物)在浓度高达100 mg/L时的潜在抑制作用。糊精和蛋白胨用作碳源和能源。在一系列QAC浓度下进行的批次试验表明,QACs在25 mg/L及以上浓度时对产甲烷菌具有抑制作用。产甲烷过程比产酸过程更容易受到QAC抑制。用Freundlich等温方程成功模拟了QACs在生物质上的吸附。在以糊精和蛋白胨为进料的批次反应器中,还研究了Vigilquat对混合产甲烷培养物的抑制作用。当总QAC浓度达到30 mg/L且挥发性脂肪酸(VFA)积累时,产甲烷菌受到抑制。然而,在57天的培养中甲烷产量恢复,所有VFA均被消耗,这表明产甲烷菌需要较长的培养期来克服相对较低QAC浓度下的短暂抑制。本研究中测试的QACs在产甲烷条件下均未被生物降解。