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501.
地下水污染程度评价是地下水研究领域的研究热点。以场地浅层地下水为研究对象,基于目前国内工业场地有无防渗措施的分类原则,综合考虑污染源和场地包气带特征因子,构建了地下水污染源强分级评价指标体系。将修正的内梅罗污染指数法应用于污染源危害性分级,并将改进后的DRTAS模型应用于包气带阻控性分级,利用矩阵法构建两方面多因素耦合模型,最后形成了适合典型工业场地的地下水污染源强分级评价的方法。选择4个典型污染场地对评价方法进行实地验证,分析结果表明,对于已建的或拟建的有防渗措施的项目,污染源危害性是造成场地地下水污染的主因;对于已建的无防渗措施项目,污染源危害性和包气带阻控性共同决定地下水污染源强。场地评价结果与水质监测报告结论相符,说明本研究建立的分级评价方法对于地下水污染的预防和控制具有借鉴意义。 相似文献
502.
Xiao-song Zha Yan Liu Xiang Liu Qiang Zhang Rui-hua Dai Ling-wen Ying Jin Wu Jing-ting Wang Luming Ma 《Environmental science and pollution research international》2014,21(4):2714-2723
This study aims to investigate the influence of the coexistence of halogen ions (bromide/iodide) and biological source matters on the speciation and yield of trihalomethanes (THMs), haloacetic acids (HAAs), and N-nitrosodimethylamine (NDMA) during the ozonation and subsequent chlorination of water. The results show that the concentrations of brominated THMs and iodinated THMs increased with increasing bromide and iodide concentration. These results may be attributed to the higher reactivity of hypobromous acid and hypoiodous acid generated from the ozonation and subsequent chlorination in the presence of bromide or iodide ions. The presence of bromide increased the species of brominated HAAs. There was a shift from chlorinated HAAs to brominated HAAs after increasing the concentration of bromide. The effect of iodide on HAA formation was more complex than bromide. For most samples, the concentration of total HAAs (T-HAAs) increased to the maximum and then decreased with increasing iodide concentration. The components of the organic precursors also significantly influenced the formation of brominated and iodinated disinfection by-products (Br-DBPs and I-DBPs). Humic acids produced more CHBr3 (596.60 μg/L) than other organic materials. Microcystis aeruginosa cells produced the most tribromoacetic acid (TBAA, 84.16 μg/L). Furthermore, the yield of NDMA decreased with increasing bromide concentration, indicating that the formation of NDMA was inhibited by the high concentration of bromide. 相似文献
503.
基于2种传统管式混合器的特点,研究了苏尔士-凯尼斯(S-K)新型组合管式混合器在预氧化-微絮凝高速过滤技术中的应用,对苏尔士(Sulzer)管式混合器、凯尼斯(Kenics)管式混合器及s-K型管式混合器高速过滤出水水质进行了对比分析,结果表明,S-K型微絮凝方式对浊度、COD及TP的平均去除率比其他2种混合器混合方式的去除效果提高了5%~10%,分别为80.3%、64.76%和51.15%。S-K型混合器过滤形成的絮体能够充分利用深层滤料,延长过滤周期。 相似文献
504.
采用电沉积法制备铈修饰的PbO2/C电极,通过SEM、XRD、XPS及循环伏安对PbO2/C、Ce-PbO2/C电极进行表征,结果表明,Ce-PbO2/C电极比PbO2/C颗粒细小,表面均匀致密,电化学氧化能力较强,修饰电极中Ce以CeO2的形态存在。以Ce-PbO2/C为工作电极,电解浓度为1 000 mg/L的高盐酸性红B模拟活性染料废水,考察了电压、pH、电解质浓度、极间距对脱色率、氨氮去除率及COD去除率的影响。确定适宜工艺条件为:初始酸性红B溶液浓度为1 000 mg/L,pH值为6,电压10 V,电解时间1 h,电极间距1.5 cm,该条件下脱色率、氨氮去除率和COD去除率分别为99.98%、97.23%和90.17%。通过UV-Vis及GC-MS初步分析了降解过程可能存在的中间产物及降解途径。 相似文献
505.
山羊粪污颗粒静态好氧堆肥过程的生物强化 总被引:1,自引:0,他引:1
对山羊粪便颗粒进行了理化表征,发现其外表致密内芯多孔的结构特点,且其总体C/N比为25.69~27.88,适合直接堆肥,提出采用生物接种破坏表层,强化堆肥进程的思路。研究结果表明,生物接种可以大大强化堆肥过程中的生化反应进程,缩短堆肥发酵周期。产物中N、P含量随着生物接种量的增加而增大。当以VT-1000菌剂按10 mL/kg干物质接种时,堆体温度在2 d内就达到50℃,在高温期50~60℃维持7 d以上,其堆肥腐熟后物料TN、TP分别增加0.70%和1.59%,其C/N<15,更趋于稳定化,且最终产物中粪大肠菌群数<3个/g,未检验出蛔虫卵,实现了无害化处理。 相似文献
506.
2009年3月~2010年4月采用干漏斗法和手捡法对南京方山生态公园针阔混交林、茶园、农田等3种典型人工植被生境的土壤动物群落结构及其季节变化进行初步调查。共采得土壤动物样本3 164个,27个类群隶属于5门12纲23目。结果表明:近孔寡毛目(Plesiopora)、弹尾纲(Collembola)和蜱螨目(Acarina)为常年优势类群;双翅目(Diptera)、同翅目(Homoptera)、膜翅目(Hymenoptera)、等足目(Isopoda)、后孔寡毛目(Opisthopora)和鞘翅目(Coleoptera)则为常年常见类群。土壤动物群落类群数和个体数量的季节消长规律分别是夏季>冬季>秋季>春季和夏季>秋季>冬季>春季。不同植被生境的土壤动物个体数量总数依次为茶园>混交林>农田;不同季节、不同人工植被类型以及不同季节和不同人工植被类型之间土壤动物群落的组成具有较大变化,不同类群之间个体数量差异显著。多样性分析表明,土壤动物类群多样性和均匀性指数在夏季时最高;茶园和混交林多样性指数和丰富度指数均高于农田。不同植被类型土壤动物垂直分布特征均表现为具有明显的表聚性,土壤动物的类群垂直分布差异明显,类群数随土层向下逐步减少 相似文献
507.
Cadmium, lead, zinc, Chromium, copper, nickel and manganese in sediments and in aquatic organisms were collected from the aquaculture pond ecosystem of the Pearl River Delta (PRD), China and analyzed to evaluate bioaccumulation and trophic transfer in food chains, as well as the potential health risk of exposure to the Hong Kong residents via dietary intake of these aquatic products. The results revealed that based on the biota–sediment accumulation factor, omnivorous fish and zooplankton accumulated more trace metals from sediment than carnivorous fish. Concentrations of seven trace metals in aquaculture pond of PRD significantly decreased with increasing trophic levels, showing that these trace metals were trophically diluted in predatory and omnivorous food chains. The hazard index values of all fish species were smaller than 1 for adults and children, indicating there was no health risk from the multiple metals via ingestion of the freshwater fish for the inhabitants. 相似文献
508.
沉淀——吸附法处理果胶工艺废水 总被引:1,自引:0,他引:1
利用果胶废水中的Al(Ⅲ)和石灰乳沉淀,并用炉渣、活性碳脱色的方法,处理盐板法提取果胶的工艺废水。通过正效实验,研究了最佳工艺条件。该工艺处理后的废水,Al(Ⅲ)去除率96.8%,CODCr去除率为92.7%,SO4^2-去除率为61.5%,且废渣产出量少。 相似文献
509.
Evaluating Controlling Factors to Ali/(Ca + Mg) Molar Ratio in Acidic Soil Water, Southern and Southwestern China: Multivariate Approach 总被引:2,自引:0,他引:2
Guo JH Zhang XS Vogt RD Xiao JS Zhao DW Xiang RJ Luo JH 《Environmental monitoring and assessment》2007,129(1-3):321-329
Ali/(Ca + Mg) molar ratio in soil water has been used as an indicator to the effects of acid deposition on terrestrial ecosystems.
However, the main factors controlling this ratio have not been well documented in southern and southwestern China. In this
study, we presented the variation in inorganic aluminum (Ali) and Ali/(Ca + Mg) molar ratio in different sites and soil horizons based on two to three years monitoring data, and evaluated the
main factors controlling Ali/(Ca + Mg) molar ratio using principle component analysis (PCA) and partial least square (PLS) regression. Monitoring data
showed although Ali/(Ca + Mg) molar ratios in most soil water were lower than assumed critical 1.0, higher molar ratios were found in some soil
water at TSP and LXH site. Besides acid loading, both soil properties and soil water chemistry affected the value of Ali/(Ca + Mg) molar ratio in soil water. Partial least square (PLS) indicated that they had different relative importance in
different soil horizons. In A-horizon, soil aluminum saturation (AlS) had higher influence on Ali/(Ca + Mg) molar ratio than soil water chemistry did; higher soil aluminum saturation (AlS) led to higher Ali/(Ca + Mg) molar ratio in soil water. In the deeper horizons (i.e., B1-, B2- and BC-horizon), inorganic aluminum (Ali) in soil water had more and more important role in regulating Ali/(Ca + Mg) molar ratio. On regional scale, soil aluminum saturation (AlS) as well as cation exchange capacity (CEC) was the
dominant factor controlling Ali/(Ca + Mg) molar ratio. This should be paid enough attention on when making regional acid rain control policy in China. 相似文献
510.