机构地区:[1]兰州理工大学土木工程学院,兰州730050 [2]兰州理工大学西部土木工程防灾减灾教育部工程研究中心,兰州730050
出 处:《环境工程学报》2023年第7期2369-2379,共11页Chinese Journal of Environmental Engineering
基 金:甘肃省科技计划资助(20JR10RA145);国家自然科学基金资助项目(52160003)。
摘 要:为探究外源信号分子的群体感应效应对反硝化菌FX-4及活性污泥系统脱氮的影响,将外源AHLs(酰基高丝氨酸内酯类)的C6-HSL和C12-HSL信号分子投加至反硝化复筛培养基中,探究AHLs对反硝化菌FX-4去除NO_(3)^(−)-N的影响。结果发现,外源投加C6-HSL和C12-HSL均可有效地提高反硝化菌FX-4的NO_(3)^(−)-N去除性能,增加反硝化菌FX-4的生物量,且C12-HSL协同反硝化菌FX-4的NO_(3)^(−)-N去除效果最佳;不同浓度的C12-HSL对反硝化菌FX-4的NO_(3)^(−)-N去除效果均有提升,且50 nmol·L^(-1)的C12-HSL可较大提升菌株FX-4的NO_(3)^(−)-N去除效果。将浓度为0、5 nmol·L^(-1)、50 nmol·L^(-1)、200 nmol·L^(-1)、500 nmol·L^(-1)和1000 nmol·L^(-1)的C12-HSL和反硝化菌FX-4同时投加至SBR活性污泥系统中,考察两者协同下系统脱氮性能、信号分子浓度和微生物群落结构的变化。结果表明,两者协同作用可对NO_(3)^(−)-N去除性能产生明显影响,投加信号分子的实验组R_(1)~R_(6)相对于空白对照组R_(0)的NO_(3)^(−)-N积累量减少20~50 mg·L-1,且C12-HSL投加量为100 nmol·L^(-1)的反应器R_(3)的NO_(3)^(−)-N消耗量最多,NO_(3)^(−)-N出水质量浓度较R_(0)降低约45 mg·L-1;此外C12-HSL信号分子对TN去除产生正影响显著,且C12-HSL投加量为100 nmol·L^(-1)的反应器能更有效地提升活性污泥系统TN去除效能。信号分子浓度变化检测结果显示,外源投加C12-HSL可以刺激系统其他AHLs分泌,特别是促进系统C4-HSL的分泌。微生物群落结构分析结果显示,外源投加反硝化菌FX-4和信号分子C12-HSL可显著影响活性污泥中微生物群落组成,加快活性污泥中微生物种群演替,使Thauera、Brevundimonas等脱氮相关菌属占比升高。以上结果可为信号分子作为应急手段强化活性污泥系统生物脱氮性能提供参考。In order to explore the influence of quorum sensing effect of exogenous signal molecules on denitrifying bacteria FX-4 and denitrification of activated sludge system,C6-HSL and C12-HSL signal molecules of exogenous AHLs(acyl homoserine lactones)were added into denitrifying resieve medium to explore the effect of AHLs on denitrifying bacteria FX-4's removal of NO_(3)^(−)-N.The experimental results showed that both C6-HSL and C12-HSL could effectively improve the NO_(3)^(−)-N removal performance of denitrifying bacterium FX-4 and increase the biomass of denitrifying bacterium FX-4,and C12-HSL synergic denitrifying bacterium FX-4 had the best NO_(3)^(−)-N removal efficiency.The NO_(3)^(−)-N removal efficiency of denitrifying bacterium FX-4 was improved by different concentrations of C12-HSL,and C12-HSL of 50 nmol·L^(-1)significantly improved the NO_(3)^(−)-N removal efficiency of strain FX-4.C12-HSL at concentrations of 0,5 nmol·L^(-1),50 nmol·L^(-1),200 nmol·L^(-1),500 nmol·L^(-1),and 1000 nmol·L^(-1)were simultaneously added to the SBR activated sludge system,as well as the denitrification bacterium FX-4.The nitrogen removal performance,signal molecule concentration and microbial community structure of the system were investigated.The results showed that the synergistic effects of the two could significantly affect theNO_(3)^(−)-N removal performance of the reactor.The accumulation of NO_(3)^(−)-N in R_(1)-R_(6)treated with signal molecules decreased by 20 mg∙L−1 to 50 mg∙L−1 compared with the control group R_(0).The consumption of NO_(3)^(−)-N in R_(3)was the highest in the reactor with 100 nmol·L^(-1)C12-HSL,and the NO_(3)^(−)-N concentration in effluent was about 45 mg∙L−1 lower than that of R_(0).In addition,C12-HSL signal molecules had a significant positive effect on TN removal,and the TN removal efficiency of activated sludge system was improved more effectively with 100 nmol·L^(-1)C12-HSL dosage.Signal molecule concentration change detection results showed that exogeno
关 键 词:反硝化菌FX-4 N-十二烷酰-L-高丝氨酸内酯 群体感应 脱氮
分 类 号:X703[环境科学与工程—环境工程]
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