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161.
李洪静  陈银广  顾国维 《环境科学》2007,28(8):1681-1686
2个实验室规模的序批式反应器(SBRs)在厌氧-低氧(0.15~0.45 mg·L-1)条件下运行,以比较丙酸的加入对同时生物除磷脱氮系统的影响.结果表明,无论是丙酸与乙酸的混合酸(碳摩尔比为1.5/1)作为碳源(SBR1),还是乙酸作为单独碳源(SBR2),系统都发生同步硝化反硝化和磷的去除(SNDPR),并且氨氮被全部氧化,系统中没有亚硝酸盐的大量累积.与SBR2相比,SBR1中厌氧阶段磷释放量少,聚羟基戊酸(PHV)合成量高,好氧末磷剩余量少,硝态氮累积少,因此SBR1中总氮和总磷的去除率(分别为68%和95%)比SBR2(分别为51%和92%)高,加入丙酸有助于SNDPR系统保持较好的除磷、脱氮效果.  相似文献   
162.
不同雨强条件下太湖流域典型蔬菜地土壤磷素的径流特征   总被引:28,自引:4,他引:24  
杨丽霞  杨桂山  苑韶峰  吴业 《环境科学》2007,28(8):1763-1769
以太湖流域典型区域无锡市近郊区鸿声镇的蔬菜地为研究对象,采用人工模拟降雨的方法,通过野外径流小区试验,研究了不同雨强对菜地土壤磷素径流流失的影响.结果表明,初始产流时间随雨强的增大呈幂函数减小(R2=0.99),径流量在雨强较小时,缓慢上升,但随着雨强的增大急剧上升,在雨强0.83、1.17和1.67 mm·min-1时,总磷(TP)和颗粒态磷(PP)都表现为初始流失浓度较高,随降雨历时延长略有下降,最终趋于稳定,而在大雨强2.50 mm·min-1时,TP和PP呈现波浪式起伏,没有明显的变化趋势;在整个降雨-径流过程中,溶解态磷(DP)变化比较平缓,占TP的比例为20%~32%,而PP占TP的比例为68%~80%,其变化规律与TP相一致,由此可见,PP是土壤磷素流失的主要形态;通过对比不同雨强下不同形态磷素的流失率,发现TP的流失率,大雨强2.50 mm·min-1是小雨强0.83 mm·min-1的20倍,而DP的流失率,却是33倍,这表明随着雨强的增加,加速土壤PP流失的同时,也大大促进了DP的流失,主要原因是降雨前表施磷肥,使得磷肥中大量的无机态磷溶解释放到水环境中,增加了DP的流失,从而会加重受纳水体富营养化的程度.  相似文献   
163.
内分泌干扰物4-叔丁基苯酚在水中的氯化动力学研究   总被引:1,自引:0,他引:1  
对典型内分泌干扰物4-叔丁基苯酚(4-TBP)在水中的氯化反应动力学进行了研究.结果发现,在不同HOCl初始浓度和pH条件下,4-TBP能够迅速被氯氧化,4-TBP的氯化反应符合二级反应动力学.表观速率常数kapp与pH值有关,在pH为5和9左右时,kapp分别达到最小值和最大值;对氯化反应中的每一个基元反应的反应速率常数进行了计算, HOCl与4-TBP的酸催化反应及ClO-与4-TBP反应的速率常数分别为4.99×106 L2·(mol2·min)-1和1.96×104 L·(mol·min)-1,而HOCl与4-TBP的反应及HOCl与4-TBP-的反应较慢,4-TBP-与ClO-不发生反应.水处理中氯消毒工艺对4-TBP的降解有一定的影响,在氯投加量为3 mg/L时,4-TBP的半衰期为12.1 min.  相似文献   
164.
好氧亚硝化颗粒污泥特性的研究   总被引:6,自引:4,他引:2  
对在小试曝气上流式污泥床反应器中成功培养出的好氧亚硝化颗粒污泥的特性进行了研究.工艺稳定运行时,亚硝化颗粒污泥的VSS/SS稳定在80%左右,粒径大于1.0 mm的颗粒污泥约占总数的70%,粒径大于0.8 mm的颗粒污泥的湿密度约为1?022 kg/m3.荧光原位杂交结果表明,亚硝化细菌主要分布在颗粒污泥的表层,而硝化细菌则分布在表层之下;最大可能数结果显示,亚硝化工艺稳定运行时亚硝化细菌的数量远多于硝化细菌,甚至可高于硝化细菌4个数量级以上.上述结果表明,硝化细菌(AOB和NOB)以接种的产甲烷颗粒污泥或其碎片为载体,通过在其表层附着生长,最终形成好氧亚硝化颗粒污泥.  相似文献   
165.
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   
166.
戴兴春  黄民生  徐亚同  谢冰 《环境科学》2007,28(8):1882-1888
针对石化工业废水开展沸石强化脱氮处理试验研究,通过比较沸石浓度25mg/L与空白,以及沸石浓度25 mg/L与50mg/L两阶段脱氮效果,探讨沸石促进脱氮功能的机理,结果表明,曝气池中投加沸石可明显提高氨氮和总氮的去除率,硝化细菌总数和硝化功能也得到增强。与空白对照组相比, 沸石浓度25mg/L的试验组运行稳定后,氨氮去除率提高约10%~13%,总氮去除率约提高13%,出水中NO3--N含量约提高100%,氨氮与总氮之比下降6%,内源硝化耗氧呼吸速率可提高138%,硝化细菌总数是空白对照组2.2folds。沸石浓度提高到50mg/L后,试验组的脱氮效果略有增加,但效果不明显。通过对试验结果的关联分析,认为沸石提高系统脱氮能力的原因一方面是因为沸石对NH4+及硝态氮的交换吸附,另一方面NH4+离子富集于沸石表面及内部、沸石颗粒独特的好氧-缺氧微环境,以及沸石离解出CO32- 或HCO3-增加碱度等条件,促进了硝化细菌和反硝化细菌的生长,从而提高了系统脱氮能力。  相似文献   
167.
An UASB+Anoxic/Oxic (A/O) system was introduced to treat a mature landfill leachate with low carbon-to-nitrogen ratio and high ammonia concentration. To make the best use of the biodegradable COD in the leaehate, the denitrifieation of NOx^--N in the reeireulation effluent from the elarifier was carried out in the UASB. The results showed that most biodegradable organic matters were removed by the denitrifieation in the UASB. The NH4^+-N loading rate (ALR) of A/O reactor and operational temperature was 0.28- 0.60 kg NH4^+-N/(m^3-d) and 17-29℃ during experimental period, respectively. The short-cut nitrification with nitrite accumulation efficiency of 90%-99% was stabilized during the whole experiment. The NH4^+-N removal efficiency varied between 90% and 100%. When ALR was less than 0.45 kg NH4^+-N/(m^3.d), the NH4^+-N removal efficiency was more than 98%. With the influent NH4^+-N of 1200-1800 mg/L, the effluent NH4^+-N was less than 15 mg/L. The shortcut nitrification and denitrifieation can save 40% carbon source, with a highly efficient denitrifieation taking place in the UASB. When the ratio of the feed COD to feed NH4^+-N was only 2-3, the total inorganic nitrogen (TIN) removal efficiency attained 67%-80%. Besides, the sludge samples from A/O reactor were analyzed using FISH. The FISH analysis revealed that ammonia oxidation bacteria (AOB) accounted for 4% of the total eubaeterial population, whereas nitrite oxidation bacteria (NOB) accounted only for 0.2% of the total eubaeterial population.  相似文献   
168.
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   
169.
Guanting Reservoir,one of the drinking water supply sources of Beijing,suffers from water eutrophication.It is mainly supplied by Guishui River.Thus,to investigate the reasons of phosphorus(P)loss and improve the P management strategies in Guishui River watershed are important for the safety of drinking water in this region.In this study,a Revised Field P Ranking Scheme(PRS)was developed to reflect the field vulnerability of P loss at the field scale based on the Field PRS.In this new scheme,six factors are included, and each one was assigned a relative weight and a determination method.The affecting factors were classified into transport factors and source factors,and,the standards of environmental quality on surface water and soil erosion classification and degradation of the China were used in this scheme.By the new scheme,thirty-four fields in the Guishui River were categorized as"low","medium"or"high"potential for P loss into the runoff.The results showed that the P loss risks of orchard and vegetable fields were higher than that of corn and soybean fields.The source factors were the main factors to affect P loss from the study area.In the study area,controlling P input and improving P usage efficiency are critical to decrease P loss.Based on the results,it was suggested that more attention should be paid on the fields of vegetable and orchard since they have extremely high usage rate of P and high soil test of E Compared with P surplus by field measurements,the Revised Field PRS was more suitable for reflecting the characteristics of fields,and had higher potential capacity to identify critical source areas of P loss than PRS.  相似文献   
170.
Huangpu River is about 114.5 km from upriver Dianfeng to downriver Wusong,near the estuary of the Yangtze River.It plays a key role in supplying water for production,life,shipment and irrigation.With the industrial development,the pollution of the Huangpu River has become serious recently.The biological oxygen demand (BOD),total nitrogen (TN),total phosphorus (TP),oil,phenol and suspended solids (SS) were lower in the upstream sites than in the downstream sites,indicating pollutants being input along its course. Water quality was the worst in the Yangpu site,near the center of Shanghai City.Dissolved oxygen (DO) content was less than 2 mg/L in the site of Yangpu in July.Among relations between thirteen characteristics,relations between BOD,DO,TN,TP,NH_4~ -N, NO_3~--N and the count of total bacteria or Escherichia coli were significant and interdependent.Inner relationships between these main characteristics in the Huangpu River were studied.High nutrient concentration led to growth of microorganisms,including E.coli. Degradation of organic matters and respiration of bacteria made oxygen concentration decreased in the water body,and DO was a key factor for nitrification-denitrification process of nitrogen.In the Yangpu site,DO was decreased to less than 3.0 mg/L with BOD higher than 7.5 mg/L in May and July.Low DO concentration will decrease nitrification rate.Nitrification need at higher DO value than other organic substrate oxidation.Consequently,river water contains low NO_3~--N values with high amounts of TN and NH_4~ -N there.This will block the self-purification of surface water,by decreasing the rate of nitrification-denitrification transformation process in the water body.  相似文献   
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