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11.
膜生物反应器运行中的膜污染问题   总被引:9,自引:0,他引:9  
这了各国研究者针对膜生物反应器中的膜污染问题所作的工作,认为膜本身的性质以及废水组成和工艺条件都是造成膜污染的主要原因,利用反冲洗和清洗手段,可以有效地改善膜的性能,以提高膜的寿命,膜生物反应器技术的改进是避免膜污染的新思路。  相似文献   
12.
膜生物反应器中膜污染研究进展   总被引:15,自引:0,他引:15  
膜生物反应器是近年新发展起来的高效废水处理工艺。本文综述了国内外对膜污染机理研究的最新成果 ,介绍了相应的解决措施 ,展望了今后的发展前景。  相似文献   
13.
生物反应器填埋场是一种新型的垃圾卫生填埋场,可以加速填埋场的稳定及甲烷的产生。通过模拟试验探讨了加装了活性炭载体的生物反应器填埋场在不同操作条件下的产气情况及COD,pH值、挥发性脂肪酸的变化趋势。试验证明添加活性炭做载体的反应器不仅有助于垃圾降解及渗滤液中COD。浓度的降低,而且填埋气中甲烷含量也较高;但是简单的两相型反应器却不利于甲烷气体的产生和CODCr的降解,这是由于其水解速度慢,水解反应时间长引起的。  相似文献   
14.
向膜生物反应器内投加40 g·L-1粉末活性炭处理尾水,运行效果良好.排泥和水力停留时间对处理效果有很大影响,流量和曝气量在一定程度上决定了膜污染的进程,粉末活性炭吸附降解了一些易引起膜污染的有机物,改变了污泥的性质,使膜通量得到改善.气洗和反冲洗能很好的维持膜通量,离线清洗可使膜通量基本恢复.  相似文献   
15.
膜分离技术处理电镀废水的实验研究   总被引:1,自引:0,他引:1  
采用纳滤+反渗透2级处理系统浓缩回收电镀铜漂洗废水。实验结果显示:在△P=1.5MPa条件下进行浓缩.纳滤膜可以使料液浓缩近10倍。纳滤膜对Cu^2+的截留率在96%以上,对COD的截留率在57%以上。在△P=3.0MPa条件下进行浓缩,反渗透膜可以使料液浓缩近10倍。反渗透膜对Cu^2+的截留率在98%以上,对COD的截留率在67%以上。随着料液浓度的增加,纳滤膜和反渗透膜的截留率会降低。  相似文献   
16.
A recombinant human androgen receptor yeast assay was applied to investigate the occurrence of antiandrogens as well as the mechanism for their removal during gray wastewater and coking wastewater treatment. The membrane reactor (MBR) system for gray wastewater treatment could remove 88.0% of antiandrogenic activity exerted by weakly polar extracts and 97.3% of that by moderately strong polar extracts, but only 32.5% of that contributed by strong polar extracts. Biodegradation by microorganisms in the MBR contributed to 95.9% of the total removal. After the treatment, the concentration of antiandrogenic activity in the effluent was still 1.05 μg flutamide equivalence (FEQ)/L, 36.2% of which was due to strong polar extracts. In the anaerobic reactor, anoxic reactor, and membrane reactor system for coking wastewater treatment, the antiandrogenic activity of raw coking wastewater was 78.6 mg FEQ/L, and the effluent of the treatment system had only 0.34 mg FEQ/L. The antiandrogenic activity mainly existed in the medium strong polar and strong polar extracts. Biodegradation by microorganisms contributed to at least 89.2% of the total antiandrogenic activity removal in the system. Biodegradation was the main removal mechanism of antiandrogenic activity in both the wastewater treatment systems.  相似文献   
17.
The goal of this study was to compare removal efficiencies of tetrabromobisphenol A (TBBPA) using typical wastewater treatment technologies, and to identify the most significant mechanisms of removal. Two types of municipal wastewater reactors were studied: a full-scale conventional activated sludge (CAS) reactor with tertiary treatment; and three pilot-scale membrane bioreactors (MBRs) having different sludge retention times (SRTs). All four reactors were fed the same influent. A third reactor type, a membrane aerated biofilm reactor (MABR) was fed tap water, ammonia, and TBBPA. TBBPA in municipal influent ranged from 1 to 41 ng L−1 (n = 10). The CAS effluent had an average TBBPA concentration of 0.7 ± 1.3 ng L−1 (n = 3). Effluent concentrations from the MBRs were an average of 6 ± 6 ng L−1 TBBPA (n = 26). Significant TBBPA removal was observed in the MABR throughout the 5 week of study (p ? 0.05). Removal of TBBPA from wastewater treatment was found to be due to a combination of adsorption and biological degradation. Based on experimental results, nitrification is likely a key process therein. No significant relationship between removal of TBBPA and SRT was identified (p ? 0.05).  相似文献   
18.
开发了厌氧-多级好氧/缺氧-膜生物反应器复合工艺,在不同水力停留时间(HRT)下,考察了系统对污染物去除效果及其膜污染的特性.结果表明,在试验选定的HRT范围内,系统对TN和TP的去除率随着HRT的降低而升高,当HRT为8.70、6.96、4.97 h时,系统对TN和TP的平均去除率分别为73.15%、79.76%、81.98%和67.79%、80.99%、92.16%.但是,较低HRT条件下膜通量较高,会加剧膜污染进程.解决这一问题的措施是增加膜组件个数,从而在不提高膜通量的情况下使系统保持较低的HRT,保证系统高效稳定的污染物去除效果.  相似文献   
19.
When plants are observed under a low dose of ozone, some physiological and metabolic shifts occur. Barring extreme injury such as tissue damage or stomata closure, most of these disruptive changes are likely to have been initiated at the level of gene expression. The belief is oxidative products formed in ozone exposed leaves, e.g. hydrogen peroxide, are responsible for much of the biochemical adjustments. The first line of defense is a range of antioxidants, such as ascorbate and glutathione, but if this defense is overwhelmed, subsequent actions occur, similar to systemic acquired resistance or general wounding. Yet there are seemingly unrelated metabolic responses which are also triggered, such as early senescence. We discuss here the current understanding of gene control and signal transduction/control in order to increase our comprehension of how ozone alters the basic metabolism of plants and how plants counteract or cope with ozone.  相似文献   
20.
The UF membrane fouling by down- and up-flow BAC effluents were compared. Up-flow BAC effluent fouled the membrane faster than down-flow BAC effluent. The combined effects dominated irreversible fouling. The extent of fouling exacerbated by inorganic particles was higher. The TMP, permeate flux, and normalized membrane flux during 21 days of UF of DBAC and UBAC effluents. Fouling during ultrafiltration of down- and up-flow biological activated carbon effluents was investigated to determine the roles of polysaccharides, proteins, and inorganic particles in ultrafiltration membrane fouling. During ultrafiltration of down- flow biological activated carbon effluent, the trans-membrane pressure was≤26 kPa and the permeate flux was steady at 46.7 L?m2?h1. However, during ultrafiltration of up-flow biological activated carbon effluent, the highest trans-membrane pressure was almost 40 kPa and the permeate flux continuously decreased to 30 L?m2?h1. At the end of the filtration period, the normalized membrane fluxes were 0.88 and 0.62 for down- and up-flow biological activated carbon effluents, respectively. The membrane removed the turbidity and polysaccharides content by 47.4% and 30.2% in down- flow biological activated effluent and 82.5% and 22.4% in up-flow biological activated carbon effluent, respectively, but retained few proteins. The retention of polysaccharides was higher on the membrane that filtered the down- flow biological activated effluent compared with that on the membrane that filtered the up-flow biological activated carbon effluent. The polysaccharides on the membranes fouled by up-flow biological activated carbon and down- flow biological activated effluents were spread continuously and clustered, respectively. These demonstrated that the up-flow biological activated carbon effluent fouled the membrane faster. Membrane fouling was associated with a portion of the polysaccharides (not the proteins) and inorganic particles in the feed water. When there was little difference in the polysaccharide concentrations between the feed waters, the fouling extent was exacerbated more by inorganic particles than by polysaccharides.  相似文献   
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