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111.
李媛  沈耀良 《环境科技》2008,21(1):74-78
结合近年来国内外学者关于好氧污泥颗粒化的研究成果,对影响好氧污泥颗粒化的影响因素进行了较为深入系统的分析,提出了适宜的运行控制条件及所需注意的问题。  相似文献   
112.
Laboratory batch experiments have been performed with sediment and groundwater obtained from two sites in Denmark to study the aerobic biodegradation of vinyl chloride (VC) and cis-1,2-dichloroethylene (c-1,2-DCE) to assess the natural aerobic biodegradation potential at two sites. The experiments revealed that VC was degraded to below the detection limit within 204 and 57 days at the two sites. c-1,2-DCE was also degraded in the experiments but not completely. At the two sites 50% and 35% was removed by the end of the experimental period of 204 and 274 days. The removal of c-1,2-DCE seems to occur concomitantly with VC indicating that the biodegradation of c-1,2-DCE may depend on the biodegradation of VC. However, in both cases natural groundwater was mixed with sediment and consequently there may be other compounds (e.g. ammonium, natural organic compound etc.) that serves as primary substrates for the co-metabolic biodegradation of c-1,2-DCE. At one of the sites methane was supplied to try to enhance the biodegradation of VC and c-1,2-DCE. That was successful since the time for complete biodegradation of VC decreased from 204 days in the absence of methane to 84 days in the presence of methane. For c-1,2-DCE the amount that was biodegraded after 204 days increased from 50% to 90% as a result of the addition of methane. It seems like a potential for natural biodegradation exists at least for VC at these two sites and also to some degree for c-1,2-DCE.  相似文献   
113.
To investigate the effect of air-exposed biocathode(AEB) on the performance of singlechamber microbial fuel cell(SCMFC), wastewater quality, bioelectrochemical characteristics and the electrode biofilms were researched. It was demonstrated that exposing the biocathode to air was beneficial to nitrogen removal and current generation. In Test 1 of 95%AEB, removal rates of ammonia, total nitrogen(TN) and chemical oxygen demand(COD)reached 99.34% ± 0.11%, 99.34% ± 0.10% and 90.79% ± 0.12%, respectively. The nitrogen removal loading rates were 36.38 g N/m~3/day. Meanwhile, current density and power density obtained at 0.7 A/m3 and 104 m W/m~3 respectively. Further experiments on opencircuit(Test 2) and carbon source(Test 3) indicated that this high performance could be attributed to simultaneous biological nitrification/denitrification and aerobic denitrification, as well as bioelectrochemical denitrification. Results of community analysis demonstrated that both microbial community structures on the surface of the cathode and in the liquid of the chamber were different. The percentage of Thauera, identified as denitrifying bacteria, maintained at a high level of over 50% in water, but decreased gradually in the AEB. Moreover, the genus Nitrosomonas, Alishewanella, Arcobacter and Rheinheimera were significantly enriched in the AEB, which might contribute to both enhancement of nitrogen removal and electricity generation.  相似文献   
114.
Biodegradation of nonylphenol in sewage sludge   总被引:18,自引:0,他引:18  
Chang BV  Chiang F  Yuan SY 《Chemosphere》2005,60(11):1652-1659
We investigated the effects of various factors on the aerobic degradation of nonylphenol (NP) in sewage sludge. NP (5 mg/kg) degradation rate constants (k1) calculated were 0.148 and 0.224 day−1 for the batch experiment and the bioreactor experiment, respectively, and half-lives (t1/2) were 4.7 and 3.1 days, respectively. The optimal pH value for NP degradation in sludge was 7.0 and the degradation rate was enhanced when the temperature was increased and when yeast extract (5 mg/l) and surfactants such as brij 30 or brij 35 (55 or 91 μM) were added. The addition of aluminum sulfate (200 mg/l) and hydrogen peroxide (1 mg/l) inhibited NP degradation within 28 days of incubation. Of the microorganism strains isolated from the sludge samples, we found that strain CT7 (identified as Bacillus sphaericus) manifested the best degrading ability.  相似文献   
115.
苯酚厌氧降解的厌氧污泥驯化方法研究   总被引:1,自引:0,他引:1  
在厌氧法处理含酚废水时,苯酚厌氧降解的厌氧污泥的培养与积累十分重要。本文通过混合厌氧污泥驯化、单一厌氧污泥驯化、好氧污泥转兼性驯化三组对比试验,探讨了合适的苯酚厌氧降解的厌氧污泥的驯化方法。研究表明:好氧污泥转兼性法驯化历时最短,处理效果好。静态培养时,微生物经过2个多月的驯化,日均降解苯酚的速率达100mg/(L·d)  相似文献   
116.
厌氧酸化—好氧法处理高浓度洗毛废水尾浆试验研究   总被引:2,自引:0,他引:2  
采用厌氧酸化-好氧工艺对高浓度洗毛废水尾浆进行处理。试验结果表明,对于COD为25000mg/L的原废水,经1d的厌氧酸化和1d的二段串联的间歇活性污泥法好氧曝气处理,COD和BOD5的总去除率分别达到92%和99%以上,生化处理出水COD为1500~2000mg/L,BOD5<60mg/L。  相似文献   
117.
王劲松  胡勇有 《环境科学学报》2005,25(12):1615-1618
研究了间歇投加微生物絮凝剂MBF21和阳离子PAM对厌氧污泥颗粒化的作用规律在此基础上考察了污泥的比生物絮凝因子与厌氧污泥的粒径间的关系.研究表明,污泥的比生物絮凝因子与污泥的粒径呈正相关微生物絮凝剂组、阳离子PAM组及对照组中厌氧污泥的比生物絮凝因子BF/BF0分别增加至42.65、40.45、21.89;与对照组相比,微生物絮凝剂组和阳离子PAM组污泥的BF/BF0分别提高了94.8%和84.8%.相应的污泥平均粒径分别增加至1.04、1.13、0.63mm;与对照组相比,微生物絮凝剂组和阳离子PAM组的污泥平均粒径分别增加了65.1%和79.4%.  相似文献   
118.
累托石-粉煤灰颗粒吸附剂的制备及除铜性能   总被引:1,自引:0,他引:1  
研究了累托石-粉煤灰颗粒吸附剂制备工艺条件及其去除铜冶炼废水中Cu(Ⅱ)的条件。实验结果表明:累托石与粉煤灰的比例为7∶3,另加入15%的添加剂(St)和50%的水,焙烧温度为500℃时,制成的颗粒吸附剂不仅吸附效果最佳,而且其散失率较低。在不调节铜冶炼工业废水pH值的条件下,颗粒吸附剂用量为0·01g/mL,作用时间为60min,温度为25℃(常温)时,Cu(Ⅱ)的去除率达99·5%,处理后的水符合国家污水综合排放标准(GB8978-1996)一级标准。  相似文献   
119.
配制模拟番茄酱废水,在高径比为10的SBR反应器中,考察连续曝气条件下好氧颗粒污泥(AGS)的除污性能和微生物特性的变化。建立流体动力学模型,模拟反应器中气〖CD*2〗液〖CD*2〗污泥三相流的流态,以了解其对污泥颗粒化的影响机理。结果表明:污泥完全颗粒化后,对番茄酱废水中COD、NH3-N和PO3-4-P的去除率分别为94.37%、93.55%和9092%;绿弯菌门(Chloroflexi)、拟杆菌门(Bacteroidetes)和厚壁菌门(Firmicutes)丰度显著提高,假丝酵母菌(Candidatus saccharibacteria)为除磷功能微生物;反应器内的流态结构呈环流和旋涡流,水力剪切力的大小与颗粒粒径呈正相关,颗粒形态与流态分布有关。  相似文献   
120.
制备了一种矿物基多孔颗粒吸附材料(MPGM),用于净化富含重金属离子的石英纯化废水.通过BET、SEM及FT-IR等技术分析表明,MPGM具有多孔径分布、大比表面积、低散失率等优良特性;N2吸附-脱附等温线为Ⅲ型,且存在H4型回滞环;官能团以层状硅酸盐矿物的基团为主.研究了吸附剂用量、初始p H值及时间对MPGM吸附Fe、Zn、Mn、As的影响,结果表明,4种金属离子浓度分别由77.760、3.700、2.789和0.963 mg·L-1吸附净化为3.421、0.574、0.126和0.034mg·L-1.对使用过的吸附材料利用1.0 mol·L-1的Na Cl脱附12 h,重复利用5次后仍维持理想的吸附水平.吸附机制研究表明,吸附体系均符合Langmuir吸附等温线模型及准一级动力学模型/准二级动力学模型;ΔGθ0、ΔHθ0、ΔSθ0,说明吸附过程为吸热反应,且在15~45℃温度下有利于反应顺利自发进行.  相似文献   
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