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991.
WPSTM-TEOMTM-MOUDITM的对比及大气气溶胶密度研究   总被引:2,自引:1,他引:1  
高健  周杨  王进  王韬  王文兴 《环境科学》2007,28(9):1929-1934
通过对2005年夏季上海、北京地区大气气溶胶观测中3种不同原理气溶胶分析及采样仪的对比,考察了颗粒物个数浓度粒径分布仪(WPSTM)、锥形元件振荡微量天平(TEOMTMTM)在运行中所得数据的可比性.其中TEOMTM测量PM2.5质量浓度与WPSTM计算PM2.5质量浓度数据的相关系数分别为0.77和0.79,并发现在粗粒子颗粒物比例较高的时段二者相关性分别提高为0.91和0.84.MOUDITM分级质量浓度与WPSTM计算分级质量浓度数据对比显示,除最小粒径分级外其他分级均有较好相关性(R分布在0.76~0.92).应用2组不同对比数据推测了上海和北京观测点PM2.5颗粒物密度,研究发现上海采样点颗粒物密度约为1.70 g·cm-3,而北京采样点颗粒物密度约为1.50 g·cm-3.  相似文献   
992.
好氧颗粒污泥膜生物反应器污泥性状研究   总被引:3,自引:2,他引:1  
王景峰  王暄  季民  卢姗  刘卫华  杨造燕 《环境科学》2007,28(5):1033-1038
采用厌氧-好氧运行方式的颗粒污泥膜生物反应器(GMBR),连续运行近120 d表现出良好的有机物去除及同步硝化反硝化能力.对GMBR中污泥粒径分布变化研究表明,GMBR中污泥浓度的增加主要是由于粒径0.18~0.45 mm的小颗粒污泥及小于0.18 mm的絮状污泥的增加造成的,粒径大于0.45 mm的颗粒污泥能够基本稳定维持其颗粒形态,反应器运行末期,GMBR中颗粒污泥(粒径大于0.18 mm的污泥)含量稳定在污泥总量的60%~65%以上.污泥表面电荷量随着污泥组成形态的变化电负性逐渐增加,80 d后稳定在-0.42~-0.80 meq·g-1之间.污泥表面电荷的负电性增加主要是由小于0.45 mm的污泥造成的,其中小于0.18 mm的絮状污泥对其影响最大.并且,污泥粒径越大污泥表面负电荷量越少,两者具有较好的线性关系.另外,GMBR中SVI稳定在60~90 mL/g之间,并且随着污泥表面电荷负电性的增加污泥SVI值增加,两者之间具有一定的相关性.  相似文献   
993.
移动床生物膜反应器对垃圾渗滤液短程硝化研究   总被引:2,自引:0,他引:2  
杜月  陈胜  孙德智 《环境科学》2007,28(5):1039-1043
采用好氧移动床生物膜反应器(MBBR)对经过厌氧脱碳处理的垃圾渗滤液进行了深度短程硝化研究,考察了在中温(25℃)条件下DO浓度、pH值、C/N等因素对氨氮去除效果和短程硝化效果的影响.结果表明,在进水氨氮浓度为400 mg·L-1,HRT为24 h情况下,当控制DO为2 mg·L-1、pH值在8左右和C/N小于3时,氨氮去除率能达到70%以上,亚硝酸盐氮的积累率高达90%.间歇试验证明了该生物膜反应器中亚硝化菌的数量和活性要远高于硝化菌.该移动床生物膜工艺可以选择性固定和积累氨氧化细菌,从而实现较高的氨氮去除率和稳定的亚硝酸盐氮积累率.  相似文献   
994.
厌氧-好氧生物反应器填埋工艺特性研究   总被引:1,自引:0,他引:1  
基于生物反应器填埋技术,研究1种填埋场地循环操作的厌氧-好氧生物反应器填埋工艺,设计了该工艺模拟装置并研究了其运行工艺特性.厌氧阶段主要通过渗滤液回灌控制反应器工艺条件,主要试验结果为,pH值,R1在 6周后可上升至6.7~7.8,R2在17周内一直低于6.8;渗滤液COD浓度,R1在13周时下降至10?617 mg/L,R2在5周后上升至60?000 mg/L后长期趋于稳定;填埋气累计产量,R1在8周达到44%,R2几乎不产气.衡量稳定化可以分别采用渗滤液pH、COD浓度及BOD5/COD的减少率、填埋气的累计产率等指标来判断,并据此转换为好氧填埋运行.好氧阶段主要是通过强制通风来减少恶臭和水分,主要试验结果为,通风19d氨气浓度降为1.16 mg/m3,通风23d后恶臭浓度降为19;通风14d后含水率降为26%.完成此阶段的工艺指标值可依据矿化垃圾开采的最终用途确定.对主要试验数据进行了数值模拟.厌氧-好氧填埋过程的微生物演替经RISA分析,有4个优势菌群,一些兼性菌群在厌氧-好氧阶段起着重要的承前启后作用.  相似文献   
995.
城市污染河道沉积物AVS与重金属生物毒性研究   总被引:3,自引:2,他引:1  
利锋  温琰茂  朱娉婷 《环境科学》2007,28(8):1810-1815
采集珠江三角洲典型城市污染河道佛山水道表层沉积物和上覆水样品,测定了沉积物AVS,Eh,SEMPb,SEMCd,SEMCu,SEMZn,SEMNi,SEMCr,及上覆水Eh,DO.同步进行了底栖动物调查,结合调查结果分析了城市污染河道沉积物AVS与重金属生物毒性的关系.主要研究SEM-AVS判据在判断城市重污染河道重金属生物有效性方面的作用.所测AVS最大值为69.579 μmol/g,最小值为0.339 μmol/g,均值为20.283 μmol/g;各采样站位∑SEM5(SEMPb,SEMCd,SEMCu,SEMZn,SEMNi之和)最大值为23.067 μmol/g,最小值为1.062 μmol/g;底栖动物种类和数量均较少,且基本为耐污种,优势种为水丝蚓.13个采样站位中,∑SEM5-AVS<0的有9个,MDS分析结果显示:这9个站位中的7个底栖动物群落结构相似程度高.这表明重污染河道沉积物重金属的生物毒性与SEM-AVS的值关系密切,SEM-AVS判据在判断重污染区域重金属的生物毒性方面具有较大作用;同时说明重污染河流重金属生物毒性比较复杂,不能完全由SEM-AVS解释.  相似文献   
996.
Removal of inorganic nitrogen (inorganic-N) from toilet wastewater, using a pilot-scale airlift external circulation membrane bioreactor (AEC-MBR) was studied. The results showed that the use of AEC-MBR with limited addition of alkaline reagents and volumetric loading rates of inorganic-N of 0.19-0.40 kg inorganic-N/(m3·d) helped achieve the desired nitrification and denitrification. Furthermore, the effects of pH and dissolved oxygen (DO) on inorganic-N removal were examined. Under the condition of MLSS at 1.56-2.35 g/L, BOD5/ammonia nitrogen (NH/-N) at 1.0, pH at 7.0-7.5, and DO at 1.0-2.0 mg/L, the removal efficiencies of NH4 -N and inorganic-N were 91.5% and 70.0%, respectively, in the AEC-MBR. The cost of addition of alkaline reagent was approximately 0.5-1.5 RMB yuan/m3, and the energy consumption was approximately 0.72 kWh/m3 at the flux of 8 L/(m2·h).  相似文献   
997.
Alga-lysing bacteria have been paid much attention to in recent years. In this study, the alga-lysing strain P05 which was isolated from an immobilizing biosystem was immobilized by coke and elastic filler, forming two biological reactors. The removal efficiencies of algae, NH4^+-N and organic matter using the two reactors were studied. The results showed that strain P05 was an ideal algal-lysing bacteria strain because it was easy to be immobilized by coke and elastic filler which are of cheap, low biodegradability and the simple immobilization procedure. After 7 d filming, the biological film could be formed and the reactors were used to treat the eutrophic water. These two reactors were of stability and high effect with low cost and easy operation. The optimal hydraulic retention time (HRT) of each reactor was 4 h. The algae removal rates were 80.38% and 82.1% (in term of Chl-α) of coke reactor and filler reactor, respectively. And that of NH4^+-N were 52.3% and 52.7%. The removal rates of CODMn were 39.03% and 39.64%. The strain P05 was identified as Bacillus sp. by PCR amplification of the 16S rRNA gene, BLAST analysis, and comparison with sequences in the GenBank nucleotide database.  相似文献   
998.
Nutrient addition has been proved to be an effective strategy to enhance oil biodegradation in marine shorelines.To determine the optimal range of nutrient concentrations in the bioremediation of oil-polluted beaches,nitrate was added to the simulated shoreline models in the initial concentration of 1,5 and 10 mg/L.Whenever the NO3-N concentration declined to 70% of its original value, additional nutrients were supplemented to maintain a certain range.Results showed adding nutrients increased the oil biodegradation level,the counts of petroleum degrading bacteria(PDB)and heterotrophic bacteria (HB),and the promoted efficiency varied depending on the concentration of nitrate.Oil degradation level in 5 mg/L(NO_3-N)group reached as much as 84.3% accompanied with the consistently highest counts of PDB;while in 1 mg/L group oil removal efficiency was only 35.2%,and the numbers of PDB and HB were relatively low compared to the other groups supplemented with nutrients.Although counts of HB in the 10 mg/L group were remarkable,lower counts of PDB resulted in poorer oil removal efficiency (70.5%) compared to 5 mg/L group.Furthermore,it would need more NO_3-N(0.371 mg)to degrade 1 mg diesel oil in the 10 mg/L group than in the 5 mg/L group(0.197 mg).In conclusion, Nitrate concentration in 5 mg/L is superior to 1 and 10 mg/L in the enhancement of diesel oil biodegradation in simulated shorelines.  相似文献   
999.
Anaerobic treatability of synthetic sago wastewater was investigated in a laboratory anaerobic tapered fluidized bed reactor(ATFBR) with a mesoporous granular activated carbon(GAC)as a support material.The experimental protocol was defined to examine the effect of the maximum organic loading rate(OLR),hydraulic retention time(HRT),the efficiency of the reactor and to report on its steady- state performance.The reactor was subjected to a steady-state operation over a range of OLR up to 85.44 kg COD/(m~3.d).The COD removal efficiency was found to be 92% in the reactor while the biogas produced in the digester reached 25.38 m~3/(m~3·d) of the reactor. With the increase of OLR from 83.7 kg COD/(m~3.d),the COD removal efficiency decreased.Also an artificial neural network(ANN) model using multilayer perceptron(MLP)has been developed for a system of two input variable and five output dependent variables. For the training of the input-output data,the experimental values obtained have been used.The output parameters predicted have been found to be much closer to the corresponding experimental ones and the model was validated for 30% of the untrained data.The mean square error(MSE)was found to be only 0.0146.  相似文献   
1000.
利用紫外预处理加强氯苯的生物滴滤净化   总被引:6,自引:2,他引:4  
试验采用主波长为185nm的低压汞灯为紫外光源、醚型聚氨酯海绵(PU-foam)为填料的紫外-生物滴滤塔联合装置净化氯苯废气.进气氯苯浓度为600mg·m-3、停留时间分别为92、69和46s时,联合装置的平均去除率分别达到99%、95%和80%;最大去除负荷达到59.6g·(m3·h)-1;联合装置和单独生物滴滤塔生物膜形成时间分别为20d和27d;联合装置的抗冲击能力较好,停留时间缩短至30s,联合装置去除效率可达75%以上,高于单独生物滴滤塔的去除效率(25%).对紫外-生物滴滤塔联合装置机制初步探讨表明,紫外氧化氯苯形成了水溶性较好的可生物降解的物质,降低生物滴滤塔氯苯的处理负荷,同时紫外辐照过程中产生的O3能有效地控制生物滴滤塔内微生物的过量生长,从而维持整个装置的最佳运行状态.  相似文献   
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