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1.
Phenol, like many other organic solvents, is toxic to micro-organisms even at low concentrations. However, some micro-organisms can withstand this toxicity to a certain concentration. To observe the uptake mechanism of phenol, bacteria were isolatedfrom a petroleum refinery effluent and identified. Study was carried out to understand the effect of varying sub-lethal concentrations of phenol, on all the isolated individual bacterial cultures. Out of the bacteria isolated, Serratia liquefaciens was found to tolerate phenol concentration up to 1500 mg l-1. A microbial consortium of the isolated bacteriawas formulated and immobilized. Individual cultures were also immobilized and uptake of phenol by the immobilized micro-organisms was observed in a nutrient-rich and nutrient-stressed medium containing phenol as a sole source of carbon. A time-dependent uptake of phenol was exhibited by the micro-organismsin nutrient-stressed medium, after which a sudden increase in phenol concentration occurred in the extracellular medium, till it reached back to the initial concentration. This was attributedto an active efflux mechanism adopted by the micro-organisms to withstand the toxic shock.  相似文献   
2.
研究投加聚氨酯泡沫微生物固定化载体的SBBR脱氮除磷效果及机理.在SBR中填充聚氨酯泡沫微生物固定化载体,形成序批式生物膜反应器(SBBR).SBBR以实际生活污水为处理对象,在A/O运行工况下对微生物进行培养驯化,并在SBBR运行稳定时研究其脱氮除磷效果.研究结果表明,SBBR中的聚氨酯泡沫微生物固定化载体在空间上形...  相似文献   
3.
以低温域(0~15 ℃)下黄菖蒲(Iris pseudacorus)、菖蒲(Acorus calamus)和香蒲(Typha orientalis)3种湿地植物为研究对象,分别取其根际土壤测定硝化强度,并采用FISH(荧光原位杂交)技术,考察植物根际AOB(氨氧化细菌)、AOA(氨氧化古菌)的数量变化规律. 结果表明:低温条件下,香蒲根际土壤的硝化强度最高,平均值为1.40 mg/(kg·h),黄菖蒲和菖蒲的平均值均为0.96 mg/(kg·h). 湿地植物根际土壤中的细菌数量(数量级为1010)远高于古菌(数量级为108),其中AOB为优势菌种,3种湿地植物的AOA数量分别约占总古菌数量的46.0%、47.9%和49.7%. 3种湿地植物根际AOB的数量(以湿土计,下同)排序为香蒲(2.57×109 g-1)>黄菖蒲(1.23×109 g-1)≈菖蒲(1.14×109 g-1),AOA的数量(以湿土计)排序为黄菖蒲(2.78×108 g-1)>香蒲(2.57×108 g-1)>菖蒲(1.15×108 g-1). 微生物分布特性和硝化作用效果均表明,不同植物根际氨氧化过程的主要作用微生物具有一定差异,AOA和AOB对于湿地土壤氮转化均具有不可忽视的作用,并与植物本体、土壤硝化过程微环境之间有一定的耦合关系.   相似文献   
4.
FeCl3絮凝除As效率影响因素的初步研究   总被引:1,自引:0,他引:1  
研究了FeCl3与As的含量比、pH值、三种常见无机盐组分对于FeCl3除As效率的影响,以及在厌氧微生物存在条件下,溶液中pH的变化,Fe和As各价态还原转化之间的关系.研究结果表明,在中性条件下,As的去除效率随着FeCl3浓度的增加而提高,FeCl3去除As的最佳pH值为6-9.NO-3和低浓度的SO2-4对Fe...  相似文献   
5.
论述了低温微生物生态及主要类群,探讨了低温微生物的冷适应机理,并对其在环境工程领域的应用进行了介绍。  相似文献   
6.
固定化活性污泥实现短程硝化反硝化处理畜禽废水   总被引:4,自引:1,他引:3  
以畜禽废水为处理对象,通过分别控制水力停留时间(HRT)、溶解氧(DO)、pH值、温度和碳氮比(C/N)等影响亚硝化的主要单因子,以使固定化活性污泥颗粒实现短程硝化反硝化反应,在连续流运行模式下进行废水脱氮实验,实验结果表明,单因子HRT为10 h,溶解氧为4 mg/L,pH值为8.5,温度为30℃,碳氮比为10时,对TN和COD的去除率分别为81.98%、93.79%;87.32%、98.35%;83.82%、93.93%;85%、97%;85.37%、97.28%,达到了理想的去除效果。  相似文献   
7.
Studies of adsorption of cadmium by free bacterial and free actinomycete cells, alginate beads and immobilised bacterial or actinomycete cells in alginate beads were performed in ultrapure water. The immobilisation in alginate beads allows the survival of the microorganisms in non-ideal conditions. Here, we found the following affinity for the cadmium ion: R25 free cells<alginate beads<R25 immobilised cells<ZAN 044 immobilised cells<ZAN 044 free cells, obtained with the b Langmuir parameter. The maximum uptakes gave the series: ZAN 044 free cells<ZAN 044 immobilised cells<R25 free cells<alginate beads<R25 immobilised cells.  相似文献   
8.
通过培养和驯化酸化污泥、好氧污泥,对乙醇胺废水中的COD和氨氮进行降解试验,考察微生物降解乙醇胺废水中的COD和氨氮效果。  相似文献   
9.
牛粪堆肥腐殖质的动态变化研究   总被引:1,自引:0,他引:1  
牛粪堆肥实质是有机物质分解的同时形成腐殖质的过程。本研究通过向牛粪中接种发酵微生物进行堆肥,研究分析了总有机碳含量、总腐殖酸、游离腐殖酸和水溶性腐殖酸等的腐殖质物质含量的动态变化。研究结果表明:在牛粪发酵过程中,总有机碳含量呈明显降低趋势,发酵微生物处理下的下降幅度明显大于不接种发酵微生物的处理;总腐殖酸、游离腐殖酸和水溶性腐殖酸含量在发酵前期呈明显的降低趋势,但至发酵腐熟期又逐渐升高。发酵前期,外源微生物的处理,使其下降幅度明显大于不接种外源微生物的处理,但在发酵腐熟期变化不大。  相似文献   
10.
The Potential Use of Chicken-Drop Micro-Organisms for Oil Spill Remediation   总被引:2,自引:0,他引:2  
An examination of chicken-drop micro-organisms for oil spill remediation is presented in this work. The chicken droppings contained aerobic heterotrophs (1.2×108 CFU g–1), total fungi (3.4×104 CFU g–1) and crude oil (transniger pipeline crude, TNP) degrading bacteria (1.5×106 CFU g–1). The crude oil degraders were identified as species of Micrococcus, Bacillus, Pseudomonas, Enterobacter, Proteus, Klebsiella, Aspergillus, Rhizopus, and Penicillium. Pseudomonas aeruginosa CDB-06 and species of Bacillus CDB-08 and Penicillium CDF-10 degraded the crude oil at exceedingly high rates. Pseuedomonas aeruginosa CDB-06 degraded 65.5 percent of the crude oil after 16 days, while Bacillus sp. CDB-08, and Penicillium sp. CDF-10 degraded 65.3 percent, and 53.3 percent, respectively of the crude oil over the same period. The chicken droppings also had a pH 7.3, 18.5 percent moisture content, 2.3 percent total nitrogen, and 0.5 percent available phosphorus. Addition of oil polluted soil (10 percent (v/w) pollution level) with chicken droppings enhanced degradation of the crude oil in the soil. 68.2 percent of the crude oil was degraded in the soil amended with chicken droppings, whereas only 50.7 percent of the crude oil was degraded in the unamended soil after 16 days. The amendment raised the acidic reaction (pH 5.7) of the oil-polluted soil to alkaline (pH 7.2) within 16 days. Chicken droppings could, therefore, be used in an integrated oil pollution abatement program.  相似文献   
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