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991.
Environmental Science and Pollution Research - Poverty is a significant global ongoing issue that influences a substantial amount of people despite all efforts to eliminate or lessen it. Although...  相似文献   
992.
Environmental Science and Pollution Research - In this study, the performance of the Sequential Gaussian Simulation (SGS) approach was studied with the aim of accurately determining local health...  相似文献   
993.
Environmental Science and Pollution Research - The recycling of scrap tires has become an important issue in the area of environmental protection in the past 20 years. In recent years, tire strips...  相似文献   
994.
• Ceramic membrane filtration showed high performance for surface water treatment. • PTC pre-coagulation could enhance ceramic membrane filtration performance. • Ceramic membrane fouling was investigated by four varied mathematical models. • PTC pre-coagulation was high-effective for ceramic membrane fouling control. Application of ceramic membrane (CM) with outstanding characteristics, such as high flux and chemical-resistance, is inevitably restricted by membrane fouling. Coagulation was an economical and effective technology for membrane fouling control. This study investigated the filtration performance of ceramic membrane enhanced by the emerging titanium-based coagulant (polytitanium chloride, PTC). Particular attention was paid to the simulation of ceramic membrane fouling using four widely used mathematical models. Results show that filtration of the PTC-coagulated effluent using flat-sheet ceramic membrane achieved the removal of organic matter up to 78.0%. Permeate flux of ceramic membrane filtration reached 600 L/(m2·h), which was 10-fold higher than that observed with conventional polyaluminum chloride (PAC) case. For PTC, fouling of the ceramic membrane was attributed to the formation of cake layer, whereas for PAC, standard filtration/intermediate filtration (blocking of membrane pores) was also a key fouling mechanism. To sum up, cross-flow filtration with flat-sheet ceramic membranes could be significantly enhanced by titanium-based coagulation to produce both high-quality filtrate and high-permeation flux.  相似文献   
995.

Semi-coking wastewater contains a rich source of toxic and refractory compounds. Three-dimensional electro-Fenton (3D/EF) process used CuFe2O4 as heterocatalyst and activated carbon (AC) as particle electrode was constructed for degrading semi-coking wastewater greenly and efficiently. CuFe2O4 nanoparticles were prepared by coprecipitation method and characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), and energy disperse spectroscopy (EDS). Factors like dosage of CuFe2O4, applied voltage, dosage of AC and pH, which effect COD removal rate of semi-coking waste water were studied. The results showed that COD removal rate reached to 80.9% by 3D/EF process at the optimum condition: 4 V, 0.3 g of CuFe2O4, 1 g of AC and pH?=?3. Trapping experiment suggesting that hydroxyl radical (?OH) is the main active radical. The surface composition and chemical states of the fresh and used CuFe2O4 were analyzed by XPS indicating that Fe, Cu, and O species are involved into the 3D/EF process. Additionally, anode oxidation and the adsorption and catalysis of AC are also contributed to the bleaching of semi-coking waste water. The possible mechanisms of 3D/EF for degrading semi-coking waste water by CuFe2O4 heterocatalyst were proposed.

  相似文献   
996.
Environmental Science and Pollution Research - In this study, experimental studies on atomization process and dust reduction performance of four swirl nozzles with different inlet/outlet diameter...  相似文献   
997.
Journal of Material Cycles and Waste Management - The valorization of manufactured sand tailings (MST) with annual production of 4 billion tons is crucial to the healthy development of manufactured...  相似文献   
998.
Wang  Yu  Wu  Yue  Cong  Hailin  Wang  Song  Shen  Youqing  Yu  Bing 《Journal of Polymers and the Environment》2022,30(1):385-400
Journal of Polymers and the Environment - Adsorption is a common method to treat organic dye pollution in industrial wastewater. Selective adsorption and reuse can greatly reduce the waste of...  相似文献   
999.
针对目前国家对绿色矿山建设的要求和环境保护面临的新形势,结合国内油气勘探与生产业务绿色发展的相关要求,阐述了油气田绿色矿山建设的发展历程、重点内容、建设标准;总结了绿色矿山建设形成的具体成果和经验,这些经验主要包括注重依法合规、提升绿色理念、科技创新、责任落实、多部门协作等,为下一步建设指导方向,进而提升国内油气勘探与生产业务整体绿色发展水平。  相似文献   
1000.
黄家浩  吴玮  黄天寅  陈书琴  项颂  庞燕 《环境科学》2022,43(7):3562-3574
通过对骆马湖表层水和沉积物的调查检测,分析了两类介质中全氟化合物(PFASs)的组分结构和赋存特征,并运用主成分分析法对表层水中此类物质的来源进行了解析,运用风险商法评估了此类物质的潜在健康风险,结果表明,骆马湖表层沉积物中总计检出14种PFASs,而其表层水中较之前者多检出1种(PFTeA);表层水中■范围为46.09~120.34ng·L-1,沉积物中■范围为2.22~9.55ng·g-1;表层水中质量分数最高的为PFPeA,为38%,沉积物中质量分数最高的为PFBA,为61%,骆马湖多介质中PFASs组分均以短链物质为主;骆马湖表层水中PFASs的高浓度区域集中分布在北部河流入湖口,其浓度呈现由北向南递减的趋势,沉积物中PFASs的高含量区域则向南迁移;骆马湖沉积物中的∑PFASs、 PFBA和PFOS的分布情况与沉积物中TOC含量有关;主成分分析表明骆马湖表层水中PFASs主要来自纺织品阻燃、橡胶品的乳化、食品包装过程和纸类表面处理,金属电镀行业,皮革和纺织品制造行业;骆马湖表层水中PFASs处于较低健康风险水平.  相似文献   
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