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321.
研究了膜生物反应器(MBR)中间歇排泥以及连续排泥条件下污泥停留时间(SRT)与污泥胞外聚合物(EPS)变化的关系。试验结果表明:在间歇排泥方式下的污泥EPS都明显高于连续排泥方式下的。随着SRT的增加,附着型EPS浓度先是稍有减少,之后快速增加,溶解性EPS则增加。  相似文献   
322.
李曜宇 《环境保护科学》2011,37(4):22-25,32
本设计以沈阳市某污水处理及中水回用设施的控制系统为研究背景,结合污水处理工艺,探讨以日本三菱公司的FX2N系列的PLC在采用膜生物反应器(MBR)工艺的小型污水处理设施中的应用,重点阐述了系统的硬件构成及系统软件的设计思路,具有自动/手动两种工作模式,根据气水比比值以及自吸泵占空比确定鼓风机曝气启动时间,鼓风机自动定时...  相似文献   
323.
以浙江某处理规模为100 m3/d垃圾焚烧发电厂渗滤液处理工程为例,介绍了氨吹脱+ABR+两级A/O的复合MBR组合工艺在生活垃圾焚烧厂渗滤液处理中的应用情况。复合MBR工艺对生活垃圾焚烧厂渗滤液的有机污染物和氨氮均有较高的去除效率,均在98%以上。经过该组合工艺处理后,出水水质可达到GB 8978—1996《污水综合排放标准》中三级排放标准。  相似文献   
324.
夏灵敏 《环境工程》2015,33(3):29-32
针对养猪废水有机物、氨氮浓度高,水质波动范围大,水力冲击负荷强,常规工艺难以处理达标等水质特点,广东某规模化猪厂采用EOM(EGSB+生物接触氧化池+MBR)工艺进行处理,调试运行结果表明:该组合工艺处理效果良好,COD、BOD、氨氮和SS去除率分别达到95.98%、91.61%、90.78%和92.02%,出水水质优于广东省地方标准DB 44/613—2009《禽畜养殖业污染物排放标准》。  相似文献   
325.
水资源供需矛盾日益突出,中水回用对于缓解供水危机具有重要意义,膜生物反应器(MBR)在中水回用中具有优越性,文章阐述了MBR工艺的原理特点以及其在中水回用工程中的应用。  相似文献   
326.
•HAAs was dominant among the DBPs of interest. •Rising time, dose, temperature and pH raised TCM and HAAs but reduced HANs and HKs. •Low time, dose and temperature and non-neutrality pH reduced toxic risks of DBPs. •The presence of EPS decelerated the production of DBPs. •EPS, particularly polysaccharides were highly resistant to chlorine. Periodic chemical cleaning with sodium hypochlorite (NaClO) is essential to restore the membrane permeability in a membrane bioreactor (MBR). However, the chlorination of membrane foulants results in the formation of disinfection by-products (DBPs), which will cause the deterioration of the MBR effluent and increase the antibiotic resistance in bacteria in the MBR tank. In this study, the formation of 14 DBPs during chemical cleaning of fouled MBR membrane modules was investigated. Together with the effects of biofilm extracellular polymeric substances (EPS), influences of reaction time, NaClO dosage, initial pH, and cleaning temperature on the DBP formation were investigated. Haloacetic acids (HAAs) and trichloromethane (TCM), composed over 90% of the DBPs, were increasingly accumulated as the NaClO cleaning time extended. By increasing the chlorine dosage, temperature, and pH, the yield of TCM and dichloroacetic acid (DCAA) was increased by up to a factor of 1‒14, whereas the yields of haloacetonitriles (HANs) and haloketones (HKs) were decreased. Either decreasing in the chlorine dosage and cleaning temperature or adjusting the pH of cleaning reagents toward acidic or alkaline could effectively reduce the toxic risks caused by DBPs. After the EPS extraction pretreatment, the formation of DBPs was accelerated in the first 12 h due to the damage of biofilm structure. Confocal laser scanning microscopy (CLSM) images showed that EPS, particularly polysaccharides, were highly resistant to chlorine and might be able to protect the cells exposed to chlorination.  相似文献   
327.
• Annual AOCs in MBR effluents were stable with small increase in warmer seasons. • Significant increase in AOC levels of tertiary effluents were observed. • Coagulation in prior to ozonation can reduce AOC formation in tertiary treatment. • ∆UV254 and SUVA can be surrogates to predict the AOC changes during ozonation. As water reuse development has increased, biological stability issues associated with reclaimed water have gained attention. This study evaluated assimilable organic carbon (AOC) in effluents from a full-scale membrane biological reactor (MBR) plant and found that they were generally stable over one year (125–216 µg/L), with slight increases in warmer seasons. After additional tertiary treatments, the largest increases in absolute and specific AOCs were detected during ozonation, followed by coagulation-ozonation and coagulation. Moreover, UV254 absorbance is known to be an effective surrogate to predict the AOC changes during ozonation. Applying coagulation prior to ozonation of MBR effluents for removal of large molecules was found to reduce the AOC formation compared with ozonation treatment alone. Finally, the results revealed that attention should be paid to seasonal variations in influent and organic fraction changes during treatment to enable sustainable water reuse.  相似文献   
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