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691.
This study investigated 17α-ethynylestradiol(EE2) biodegradation process and primary metabolic pathways associated with community structures of microorganism during groundwater recharge using reclaimed water. The attenuation rate is 1.58 times higher in wetting and drying alternative recharge(WDAR) than in continual recharge(CR). The primary biotransformation pathways of EE2 in WDAR system began with the oxidation of C-17 on ring D to form a ketone group, and D-ring was subsequently hydroxylated and cleaved. In the CR system, the metabolic pathway changed from the oxidation of C-17 on ring D to hydroxylation of C-4 on ring A, and ring A or B subsequently cleaved; this transition was related to DO, and the microbial community structure. Four hundred fifty four pyrosequencing of 16 s r RNA genes indicated that the bacterial communities in the upper layer of the WDAR system were more diverse than those found in the bottom layer of the CR system; this result was reversed for archaea. Unweighted Uni Frac and taxonomic analyses were conducted to relate the change in bacterial community structure to the metabolic pathway. Microorganism community diversity and structure were related to the concentrations of dissolved oxygen, EE2 and its intermediates in the system. Five known bacterial classes and one known archaeal class, five major bacterial genera and one major archaeal genus might be involved in EE2 degradation. The findings of this study provide an understanding of EE2 biodegradation in groundwater recharge areas under different recharging modes and can facilitate the prediction of the fate of EE2 in underground aquifers.  相似文献   
692.
以聚丙烯酰胺、甲醛、亚硫酸氢钠、二硫化碳、氢氧化钠为原料,制备出新型重金属絮凝剂二硫代羧基化磺甲基聚丙烯酰胺(DTSPAM),考察了3种常见有机配位剂EDTA、焦磷酸钠、柠檬酸钠对DTSPAM除Cd2+性能的影响.实验结果表明,在单一含Cd2+水样中,pH值为3.0~6.0时DTSPAM对Cd2+均有较好的去除性能;在不同EDTA浓度、不同pH值下的混合水样中,EDTA对DTSPAM除Cd2+均呈抑制作用;水样pH值为5.0、6.0时,焦磷酸钠、柠檬酸钠对DTSPAM除Cd2+均表现出促进作用,而pH值为2.0~4.0时,焦磷酸钠、柠檬酸钠对DTSPAM除Cd2+均呈抑制作用.  相似文献   
693.
王刚  管映兵  李嘉  徐敏  常青 《中国环境科学》2018,38(9):3367-3372
采用聚丙烯酰胺、甲醛、氢氧化钠、巯基乙酸为原料,制备出重金属絮凝剂巯基乙酰化羟甲基聚丙烯酰胺(MAMPAM),以含Cu2+、含腐殖酸(HA)水样为考察对象,研究MAMPAM对单一和混合体系中Cu2+、HA的去除性能.结果表明,MAMPAM对单一体系中Cu2+和HA均具有一定的去除效果,且Cu2+的去除率随着水样初始pH值的增大而升高;pH值为6.0时,Cu2+的最高去除率为95.92%,HA的最高去除率为66.98%.MAMPAM处理混合水样时,Cu2+和HA的共存会相互促进彼此的去除,具有协同作用;共存的HA对MAMPAM除Cu2+性能的促进作用随着水样中HA浓度或pH值的升高而增强,共存的Cu2+对MAMPAM除HA性能的促进作用随着水样中HA浓度的升高而增强.  相似文献   
694.
张火云  孙启玲 《四川环境》2003,22(1):23-25,30
本文从菌种、原理、方法以及动力学等几个方面概述了微生物降解含氯有机化合物的研究进展。  相似文献   
695.
微生物絮凝剂及其在污水处理中的应用   总被引:10,自引:0,他引:10  
综述了微生物絮凝的种类,性质,产生条件。讨论了影响微生物絮凝剂絮凝活性的主要因素和絮凝机理的多样性;列举了徽生物絮凝剂在水处理中的应用;最后,展望了微生物絮凝剂的研究发展方向。  相似文献   
696.
污水生物处理中微生物的相互协作   总被引:2,自引:0,他引:2  
从化学、物理和遗传信息三个不同水平,系统介绍了污水生物处理中微生物的相互协作关系,阐述了各个水平的协作机制、应用研究进展以及存在问题  相似文献   
697.

Agricultural pharmaceuticals are a major environmental concern because of their hazardous effects on human and wildlife. This study analyzed phospholipid ester-linked fatty acids (PLFAs) and quinones to investigate the effects of a steroid (17β-estradiol) and agricultural antibiotics (chlortetracycline and tylosin) on soil microbes in the laboratory. Two different types of soil were used: Sequatchie loam (0.8% organic matter) and LaDelle silt loam (9.2% organic matter). The soils were spiked with 17β-estradiol and antibiotics, alone or in combination. In Sequatchie loam, 17β-estradiol significantly increased the microbial biomass, especially the biomarkers for beta proteobacteria (16:1ω7c, 18:1ω7c, Cy17:0, and UQ-8). The coexistence of antibiotics decreased the stimulatory effect of 17β-estradiol on the microbial community. In LaDelle silt loam, there were no significant differences in total microbial biomass and their microbial community structure among the treatments. Overall, 17β-estradiol changed the microbial community of soil and the presence of antibiotics nullified the effect of 17β-estradiol. However, the effects of 17β-estradiol and antibiotics on soil microbes were sensitive to the soil properties, as seen in the LaDelle silt loam.  相似文献   
698.
新型高分子螯合-絮凝剂制备条件的响应面法优化   总被引:3,自引:0,他引:3  
以壳聚糖为原料,采用化学合成法将二硫代羧基引入到其高分子链上,制备出一种新型高分子螯合-絮凝剂二硫代羧基化壳聚糖(R′-N-(C=S)-SNa,简称DTCTS).以水样中Cd(Ⅱ)的去除率为考察对象,在单因素实验法的基础上,选取了制备DTCTS的主要影响因素,并采用中心复合设计实验和响应面分析法对DTCTS制备条件进行了优化.结果表明,建立的二次多项式模型回归性显著而失拟项不显著,决定系数R2为0.9829,模型拟合性良好;DTCTS最佳制备条件为:反应物CTS/CS2/NaOH摩尔比1:1.5:2、预反应时间30min、主反应温度60℃,此条件下制备的DTCTS对Cd(Ⅱ)的去除率可达99.52%,与模型预测值相对偏差为0.05%,模型可靠.  相似文献   
699.
BFA-60微生物絮凝剂絮凝效果实验研究   总被引:3,自引:0,他引:3  
从土壤中分离筛选得到一株产絮凝剂的菌株A-60,以其发酵液作为絮凝剂,取名为BFA-60.实验表明,BFA-60对各种菌悬液和固体悬浊液都有良好的净化效果.通过实际废水絮凝实验发现,该絮凝剂在污水处理行业及发酵工业的固液分离中具有较好的运用前景.  相似文献   
700.
• UASB reactor can work efficiently with high COD/SO42- ratios when SDBS exists. • Outcome of the competition between SRB and MPA was affected by SDBS. • Presence of SDBS makes methanogens with H2/CO2 as a substrate dominant. • Microbial diversity decreases in the presence of SDBS. In this study, the effects of organic sulfur on anaerobic biological processes were investigated by operating two up-flow anaerobic sludge blanket (UASB) reactors with sodium dodecylbenzene sulfonate (SDBS) as a representative of organic sulfur. The results indicated that the specific methanogenic activity (SMA) and chemical oxygen demand (COD) removal efficiency of R2 (with SDBS added) were higher than those of R1 (without SDBS) when the COD/SO42 ratio was above 5.0. However, when the COD/SO42 ratio was lower than 5.0, the sulfate reduction efficiency of R2 was higher than that of R1. These results and the observed SDBS transformation efficiency in anaerobic reactors indicate that low concentrations of SDBS accelerate methane production and the continuous accumulation of SDBS does not weaken the reduction of sulfate. Similarly, the calculated electron flux for a COD/SO42 ratio of 1.0 indicates that the utilization intensity of electrons by sulfate-reducing bacteria (SRB) in R2 was 36.48% higher than that of SRB in R1 and exceeded that of methane-producing archaea (MPA) under identical working conditions. Moreover, the addition of SDBS in R2 made sulfidogenesis the dominant reaction at low COD/SO42, and Methanobacterium and Methanobrevibacter with H2/CO2 as the substrate and Desulfomicrobium were the dominant MPA and SRB, respectively. However, methanogenesis was still the dominant reaction in R1, and Methanosaeta with acetic acid as the substrate and Desulfovibrio were the dominant MPA and SRB, respectively.  相似文献   
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