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181.
This paper presented the characteristics of nitrogen and phosphorus pollution in Beijing surface water during the survey. A significant difference was found out in concentration distribution of various parameters of nitrogen and phosphorus. Most water bodies in five water systems were polluted by total nitrogen with the content even up to 120 mg/L which was higher than exceeded the fifth class standard of national surface water quality standard GB3838-2002 except for several segments of Chaobaihe and Yongdinghe. Ammonia and phosphorus showed a similar tendency of distribution with higher content in Daqinghe, Beiyunhe and Jiyunhe water systems, but with relatively low concentrations in Chaobaihe and Yongdinghe water systems. Meanwhile, nitrate was found at comparatively low content (mostly less than 10 mg/L) and could fit for corresponding water quality requirements. Totally, the water quality of Daqinghe, Jiyunhe and Beiyunhe river systems as well as the lower reaches of Yongdinghe and Chaobaihe was contaminated seriously with high content of total nitrogen and phosphorus. Through multivariate statistical approaches, it can be concluded that total nitrogen, ammonia and total phosphorus was highly correlated to chemical oxygen demand, biochemical oxygen demand, dissolved oxygen and electrical conductivity,which explained the same pollution source from anthropogenic activities. 相似文献
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研究了位于北京郊区的北运河中游9个断面的沉积物对磷的吸附行为,分析了沉积物组成及其理化性质与磷吸附特征的关系.实验结果表明,不同断面沉积物对磷的最大吸附量在0.11 ~9.45 mg/g之间,而各断面沉积物的临界平衡磷浓度(EPC0)范围在0.33~ 1.85 mg/L之间,统计分析显示EPC0与河水中的总磷和可溶性无机磷呈显著负相关,但与沉积物中的金属和有机质含量相关性较差;根据临界平衡磷浓度定义的推断,新华大街桥、玉带桥、运河大街桥、六环路桥、宋梁路桥、湿地和甘棠橡胶坝7个断面的沉积物表现为磷的“汇”,而丰子沟和减运沟2个点表现为磷的“源”,并且各点沉积物释放和吸附磷的趋势较大. 相似文献
187.
通过吸附实验考察连续流间歇生物反应器(CIBR)中污泥对有机物的吸附效果及吸附类型,分析好氧、缺氧和厌氧环境对污泥吸附有机物能力的影响,进而探讨污泥的吸附能力在CIBR实现有机物高效去除中的作用.实验结果表明,污泥对有机物的吸附主要是物理吸附.好氧/缺氧/厌氧环境对活性污泥及其灭活污泥吸附有机物能力影响不大,各环境下平均吸附率分别达到54.09%和48.62%.污泥良好的吸附能力及其先吸附后生物降解的特性,保证了CIBR混合液中COD值始终低于30 mg/L. 相似文献
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1 IntroductionMunicipalsolidwastes(MSWs)polluteenvironment,occupylotsoflandandcostmuchmoneyfordisposal.Toprotecttheenvironment,itisurgenttosearchforagoodwayofMSWdisposal.Atpresent,therearemanymethodssuchaslandfill,incineration,compost,hightemperatur… 相似文献
189.
Removal of polycyclic aromatic hydrocarbons (PAHs) from different soil fractions of contaminated soil was investigated by using activated persulfate oxidation remediation in our research. The results showed that the light fraction, which accounted for only 10% of the soil, contained 30% of the PAHs at a concentration of 4352?mg/kg. The heavy fraction contained more high-molecular-weight PAHs, and the total PAH concentration was 625?mg/kg. After being oxidized, the removal rate of PAHs was 39% in the light fraction and nearly 90% in the heavy fraction. Among the different fractions of the heavy fraction, humic acid contained the highest concentration of PAHs, and consequently, the highest removal efficiency of PAHs was also in humic acid. Compared with the light fraction, the heavy fraction has more aromatic compounds and those compounds were broken down during the oxidation process, which may be the removal mechanism involved in the oxidation of high-ring PAHs. Similarly, the enhancement of C = C bonds after oxidation can also explain the poor removal of high-ring PAHs in the light fraction. These results imply that different fractions of soil vary in composition and structure, leading to differences in the distribution and oxidation efficiencies of PAHs. 相似文献
190.
Xiaolong Li Congcong Ding Jiali Liao Liang Du Qun Sun Jijun Yang Yuanyou Yang Dong Zhang Jun Tang Ning Liu 《环境科学学报(英文版)》2017,29(3):9-15
The microbial reduction of U(VI) by Bacillus sp. dwc-2, isolated from soil in Southwest China, was explored using transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS) and X-ray absorption near edge spectroscopy (XANES). Our studies indicated that approximately 16.0% of U(VI) at an initial concentration of 100 mg/L uranium nitrate could be reduced by Bacillus sp. dwc-2 at pH 8.2 under anaerobic conditions at room temperature. Additionally, natural organic matter (NOM) played an important role in enhancing the bioreduction of U(VI) by Bacillus sp. dwc-2. XPS results demonstrated that the uranium presented mixed valence states (U(VI) and U(IV)) after bioreduction, which was subsequently confirmed by XANES. Furthermore, the TEM and high resolution transmission electron microscopy (HRTEM) analysis suggested that the reduced uranium was bioaccumulated mainly within the cell and as a crystalline structure on the cell wall. These observations implied that the reduction of uranium may have a significant effect on its fate in the soil environment in which these bacterial strains occur. 相似文献