Collaborative Innovation Center of Yangtze River Delta Region Green Pharmaceuticals, College of Biological and Environmental Engineering, Zhejiang University of Technology, Hangzhou 310014, PR China.
Collaborative Innovation Center of Yangtze River Delta Region Green Pharmaceuticals, College of Biological and Environmental Engineering, Zhejiang University of Technology, Hangzhou 310014, PR China.
J Hazard Mater. 2016 Mar 5;304:543-52. doi: 10.1016/j.jhazmat.2015.11.006. Epub 2015 Nov 10.
Recently, the biodegradation of volatile organic sulfur compounds (VOSCs) has become a burgeoning field, with a growing focus on the reduction of VOSCs. The reduction of VOSCs encompasses both organic emission control and odor control. Herein, Alcaligenes sp. SY1 was isolated from active sludge and found to utilize dimethyl sulfide (DMS) as a growth substrate in a mineral salt medium. Response surface methodology (RSM) analysis was applied to optimize the incubation conditions. The following conditions for optimal degradation were identified: temperature 27.03°C; pH 7.80; inoculum salinity 0.84%; and initial DMS concentration 1585.39 μM. Under these conditions, approximately 99% of the DMS was degraded within 30 h of incubation. Two metabolic compounds were detected and identified by gas chromatography-mass spectrometry (GC-MS): dimethyl disulfide (DMDS) and dimethyl trisulfide (DMTS). The DMS degradation kinetics for different concentrations were evaluated using the Haldane-Andrews model and the pseudo first-order model. The maximum specific growth rate and degradation rate of Alcaligenes sp. SY1 were 0.17 h(-1) and 0.63 gs gx(-1)h(-1). A possible degradation pathway is proposed, and the results suggest that Alcaligenes sp. SY1 has the potential to control odor emissions under aerobic conditions.
最近,挥发性有机硫化合物(VOSCs)的生物降解已成为一个新兴领域,越来越关注 VOSCs 的减少。VOSCs 的减少包括有机排放控制和气味控制。在此,从活性污泥中分离出 Alcaligenes sp. SY1,并发现其在无机盐培养基中以二甲基硫(DMS)为生长底物。应用响应面法(RSM)分析来优化培养条件。确定了最佳降解的以下条件:温度 27.03°C;pH 值 7.80;接种盐度 0.84%;初始 DMS 浓度 1585.39 μM。在这些条件下,DMS 在孵育 30 小时内几乎完全降解。通过气相色谱-质谱联用仪(GC-MS)检测并鉴定出两种代谢产物:二甲基二硫(DMDS)和二甲基三硫(DMTS)。通过 Haldane-Andrews 模型和拟一级模型评估了不同浓度下的 DMS 降解动力学。Alcaligenes sp. SY1 的最大比生长速率和降解速率分别为 0.17 h(-1)和 0.63 gs gx(-1)h(-1)。提出了一种可能的降解途径,结果表明 Alcaligenes sp. SY1 具有在好氧条件下控制气味排放的潜力。