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981.
利用自来水厂铝盐混凝污泥为主要原料开发出一种新型轻质陶粒滤料(LCFM),评价了LCFM在静态吸附及动态过滤条件下对污染物的去除效果。结果表明,在静态吸附温度为(25.0±1.0)℃、p H=7,t_(吸附)=24 h条件下,LCFM对氨氮、总磷和有机物具有良好的吸附效果。在过滤系统中控制进水p H=7.0~8.0,过滤周期约10 h时,系统对氨氮、总磷和COD等污染物的去除效果较好,去除率分别为80%、95%和70%。比表面积分析仪分析显示,LCFM中的孔道以中微孔为主,集中分布在60.0 nm左右,比表面积为71.47 m~2/g,同时,LCFM中含有的金属离子在吸附过程中与污染物可能存在的交换反应或沉淀反应(x PO_4~(3-)+3M~(x+)=M_3(PO_4)_x)强化了LCFM对污染物的吸附效果。  相似文献   
982.
Recently, air pollution has attracted a substantial amount of attention in China, which can be influenced by a variety of factors, but the association between air pollution and human activity is not quite clear. Based on real-time online data (January 1, 2014, to December 31, 2014) of air pollution and meteorology reported by official sites, and demographic, economic, and environmental reform data in a statistical yearbook, the influences of meteorological factors (temperature, relative humidity, precipitation intensity, and wind force) and human activities on PM2.5 pollution were explored. After correlation analysis, logistic regression analysis, and a nonparametric test, weak negative correlations between temperature and PM2.5 pollution were found. In most cases, festival and morning peak hours were protection and risk factors of PM2.5 pollution, respectively. In addition, government actions, such as an afforestation project and increasing financial expenditure for energy saving and environmental protection, could greatly contribute to alleviating pollution of PM2.5. The findings could help officials formulate effective laws and regulations, and then PM2.5 pollution related to the pattern of human activity would be ameliorated.

Implications: Most of the time, festival and morning peak hours are protection and risk factors for PM2.5 pollution, respectively. Increasing the percentage of afforestation area and financial expenditure for energy saving and environmental protection could significantly reduce PM2.5 pollution. The findings can help officials formulate effective laws and regulations, and then PM2.5 pollution related to the pattern of human activity, especially government action, will be ameliorated.  相似文献   

983.
Short-term hydrodynamic fluctuations caused by extreme weather events are expected to increase worldwide because of global climate change, and such fluctuations can strongly influence cyanobacterial blooms. In this study, the cyanobacterial bloom disappearance and reappearance in Lake Taihu, China, in response to short-term hydrodynamic fluctuations, was investigated by field sampling, long-term ecological records, high-frequency sensors and MODIS satellite images. The horizontal drift caused by the dominant easterly wind during the phytoplankton growth season was mainly responsible for cyanobacterial biomass accumulation in the western and northern regions of the lake and subsequent bloom formation over relatively long time scales. The cyanobacterial bloom changed slowly under calm or gentle wind conditions. In contrast, the short-term bloom events within a day were mainly caused by entrainment and disentrainment of cyanobacterial colonies by wind-induced hydrodynamics. Observation of a westerly event in Lake Taihu revealed that when the 30 min mean wind speed (flow speed) exceeded the threshold value of 6 m/s (5.7 cm/s), cyanobacteria in colonies were entrained by the wind-induced hydrodynamics. Subsequently, the vertical migration of cyanobacterial colonies was controlled by hydrodynamics, resulting in thorough mixing of algal biomass throughout the water depth and the eventual disappearance of surface blooms. Moreover, the intense mixing can also increase the chance for forming larger and more cyanobacterial colonies, namely, aggregation. Subsequently, when the hydrodynamics became weak, the cyanobacterial colonies continuously float upward without effective buoyancy regulation, and cause cyanobacterial bloom explosive expansion after the westerly. Furthermore, the results of this study indicate that the strong wind happening frequently during April and October can be an important cause of the formation and expansion of cyanobacterial blooms in Lake Taihu.  相似文献   
984.
四氢呋喃是一种应用非常广泛的工业有机溶剂和中间体,但因其高水溶性和难生物降解性,使得四氢呋喃极容易进入水体和土壤中,造成环境污染。由于水具有流动性,污染物易随水体扩散,因此考察四氢呋喃对于水质的影响更显紧迫。选择了杭州市饮用水源——贴沙河作为考察对象,测定不同浓度四氢呋喃引起的贴沙河水短期和长期pH、溶解氧及可培养微生物数量这3个重要水质指标的变化,研究四氢呋喃对水体可能造成的影响。结果经过统计分析发现,四氢呋喃的添加使得水体pH随其浓度增加而显著上升;与空白对照相比,四氢呋喃使水体中微生物数量显著下降,但在实验设定不同浓度之间差异性不显著;四氢呋喃对河水溶解氧的影响不显著。  相似文献   
985.
构建了潮汐流-潜流组合和潜流-潮汐流组合人工湿地对污水进行处理,分别研究2种组合人工湿地对污水的净化效果。结果表明,在平均进水COD浓度为214.28mg/L、NH4+-N浓度为10.57mg/L、PO34--P浓度为5.44mg/L、TN浓度为10.25mg/L,水力负荷为o.2m3/(m2·d)的条件下,潮汐流-潜流组合人工湿地对COD、PO34--P的去除率分别为58.28%和46.99%,与潜流-潮汐流组合人工湿地处理效果相近;对NH4+-N、TN,潮汐流-潜流组合人工湿地的去除率分别为69.93%和71.03%,比潜流-潮汐流组合人工湿地分别高15%和33%。潮汐流-潜流人工湿地的组合,在系统内实现了硝化-反硝化的组合,强化了系统对TN的净化效果,其对TN的净化效果比-般的潜流和表面流人工湿地组合提高20%~30%。总体上,潮汐流-潜流组合人工湿地具有更好的净化效果。  相似文献   
986.
利用植物载体丝瓜瓤对肠杆菌(Enterobactor sp.S8)进行固定,并对活性黑5进行脱色研究.探讨了固定化菌体的菌龄、菌量、pH、温度对染料脱色的影响.研究了该固定化菌体的重复利用和动力学实验.结果表明,最佳脱色条件为:菌龄3d、接菌量2%、温度30℃、pH 6.0.该固定化菌体对不同初始浓度活性黑5的脱色符合二级反应动力学方程.经9次重复利用后的该固定化菌体,其脱色率仍达76.8%.在优化实验条件下,根据降解3d前后的紫外-可见光谱图分析可知,活性黑5并非完全被降解为CO2和H2O,而是生成一些小分子有机中间体.  相似文献   
987.
赤泥与石灰粉(CaO和Ca(OH)2)按不同比例混合制成复合赤泥,通过投加实验考察了复合赤泥的除磷效果。结果证明,对于磷酸盐浓度为45 000 mg/L左右(以P计)的酸性工业废水,复合赤泥(赤泥与Ca(OH)2按质量比1:1混合)投加量为240 g/L,去除率为99.97%;对于10 mg/L左右的含磷废水,赤泥的最佳投加浓度为15 g/L,上清液磷浓度可降至0.30 mg/L,出水低于0.5 mg/L的排放标准。根据以上研究结果,提出了对高浓度酸性磷酸盐废水的处理宜采用复合赤泥再加原状赤泥的二级处理方法。  相似文献   
988.
以制药废水实验了50 m3螺旋式厌氧反应器(SPAC反应器)的稳定性。采用Augmented Dickey-Fuller(ADF)单位根检验表明,螺旋式反应器具有良好的启动和运行稳定性。负荷冲击实验显示,SPAC反应器具有较好的耐浓度冲击能力和耐水力冲击能力,所能耐受的最大浓度冲击强度大于60 000 (mg·h)/L(进水浓度提升2倍),所能耐受的最大水力冲击强度为300(m3·h)/d(进水流量提升50%)。SPAC反应器还具备受扰恢复能力。在反应液pH低于5.74,出水浓度、COD去除率和容积COD去除速率(VRR)分别为3 500 mg/L、22.30%和2.52 kg/(m3·d)的工况下,经过30 d恢复,出水浓度、COD去除率和VRR的恢复程度达到80%~90%。  相似文献   
989.
为了研究灭活厌氧污泥和活性厌氧污泥对间二氯苯 (m-DCB)的吸附,考察了吸附平衡时间、吸附动力学、吸附等温线、吸附热力学、污泥投加量和pH对吸附m-DCB的影响。结果表明,2种污泥对m-DCB的吸附在1 h内达到平衡。应用伪一级、伪二级反应动力学对实验数据进行验证,表明厌氧污泥吸附m-DCB更符合伪二级反应动力学模型。2种污泥对m-DCB的吸附都可以用Langmuir和Freundlich吸附模型拟合,但Langmuir吸附模型的拟合结果要好于Freundlich模型,且活性厌氧污泥的吸附性能显著高于灭活厌氧污泥。从吸附热力学上看,该吸附为放热反应,低温有利于吸附反应的进行。pH值对2种污泥吸附m-DCB的影响很小。  相似文献   
990.
Zhou J  Jiang W  Ding J  Zhang X  Gao S 《Chemosphere》2007,70(2):172-177
The environmental safety of decabromodiphenyl ether (BDE-209), a widely used flame retardant, has been the topic of controversial discussions during the past several years. Degradation of BDE-209 into lower brominated diphenyl ether congeners, exhibiting a higher bioaccumulation potential, has been a critical issue. White rot fungi are known to degrade a wide variety of recalcitrant pollutants. In this work, white rot fungi were used to degrade BDE-209 in liquid culture medium, and the effects of Tween 80 and beta-cyclodextrin on BDE-209 degradation by white rot fungi were evaluated. On the basis of these results, it appears that BDE-209 could be degraded by white rot fungi, and Tween 80 and beta-cyclodextrin can both increase the biodegradation. The best result in Tween 80 experiments was obtained at a Tween 80 concentration of 500mgl(-1) within 10d, which showed 96.5% (w/w) BDE-209 transformed. Tween 80 at a high concentration will restrain the fungal growth and the degradation of BDE-209. However, beta-cyclodextrin had positive effects both on the BDE-209 degradation and the fungal growth.  相似文献   
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