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排序方式: 共有660条查询结果,搜索用时 364 毫秒
651.
Environmental Science and Pollution Research - Understanding dynamic future changes in precipitation can provide prior information for nonpoint source pollution simulations under global warming....  相似文献   
652.
• The sustainable approaches related to Fenton sludge reuse systems are summarized. • Degradation mechanism of Fenton sludge heterogeneous catalyst is deeply discussed. • The efficient utilization directions of Fenton sludge are proposed. The classical Fenton oxidation process (CFOP) is a versatile and effective application that is generally applied for recalcitrant pollutant removal. However, excess iron sludge production largely restricts its widespread application. Fenton sludge is a hazardous solid waste, which is a complex heterogeneous mixture with Fe(OH)3, organic matter, heavy metals, microorganisms, sediment impurities, and moisture. Although studies have aimed to utilize specific Fenton sludge resources based on their iron-rich characteristics, few reports have fully reviewed the utilization of Fenton sludge. As such, this review details current sustainable Fenton sludge reuse systems that are applied during wastewater treatment. Specifically, coagulant preparation, the reuse of Fenton sludge as an iron source in the Fenton process and as a synthetic heterogeneous catalyst/adsorbent, as well as the application of the Fenton sludge reuse system as a heterogeneous catalyst for resource utilization. This is the first review article to comprehensively summarize the utilization of Fenton sludge. In addition, this review suggests future research ideas to enhance the cost-effectiveness, environmental sustainability, and large-scale feasibility of Fenton sludge applications.  相似文献   
653.
Environmental Science and Pollution Research - In natural water bodies, numerous cyanobacteria have the potential to intracellularly synthesize cyanotoxins, among which microcystin (MC) is the...  相似文献   
654.
长庆低渗透油田废弃钻井液处理探讨   总被引:4,自引:1,他引:3       下载免费PDF全文
通过对长庆低渗透油田废弃钻井液性能分析,确定了固液分离-固化一体化处理思路;研究了不同破胶剂体系、破胶剂加量、絮凝剂分子量等对固液分离及出水率的影响;处理结果表明:添加20%粘土同时加入6%固化剂时固化体针入度可降至0.5mm以下,达到强度要求,又可降低成本。现场试验证实固液分离析出水和固化体浸出液均达到GB8978-1996《污水综合排放标准》二级标准。  相似文献   
655.
Environmental Science and Pollution Research - Soil acidification is a problem widely occurring worldwide, which severely threaten food security and agricultural sustainability. Calcium...  相似文献   
656.
Dan  Zeng  Zhou  Wenwu  Zhou  Peng  Che  Yuechi  Han  Zhiyong  Qiong  A  Duo  Bu  Lv  Xuebin  Zhuoma  Qiongda  Wang  Jing  Yang  Wang  Chen  Guanyi 《Environmental science and pollution research international》2022,29(5):6656-6669
Environmental Science and Pollution Research - Waste incineration is a process of full combustion reaction between waste and oxygen at high temperature. It is a new problem whether the special...  相似文献   
657.
Wang  Panlin  Zhao  Jindi  Ruan  Yongqiang  Cai  Xinyi  Li  Jin  Zhang  Lihui  Huang  He 《Journal of Polymers and the Environment》2022,30(9):3949-3958
Journal of Polymers and the Environment - In the present study, two strains of Pseudomonas aeruginosa, WZH-4 and WGH-6, were isolated based on their ability to survive with polypropylene (PP) as...  相似文献   
658.
Environmental Science and Pollution Research - As a kind of solid waste with a high silicon content, electrolytic manganese residue (EMR) can be utilized as silicon source by plants through...  相似文献   
659.

Microplastics pollution is becoming a major environmental issue, and exposure to microplastics has been associated with numerous adverse results to both the ecological system and humans. This work summarized the state-of-the-art developments in the breakdown of microplastics, including natural weathering, catalysts-assisted breakdown and biodegradation. Characterization techniques for microplastic breakdown involve scanning electron microscopy, Fourier infrared spectroscopy, X-ray photoelectron spectroscopy, etc. Bioavailability and adsorption capacity of microplastics may change after they are broken down, therefore leading to variety in microplastics toxicity. Further prospectives for should be focused on the determination and toxicity evaluation of microplastics breakdown products, as well as unraveling uncultivable microplastics degraders via cultivation-independent approaches. This work benefits researchers interested in environmental studies, particularly the removal of microplastics from environmental matrix.

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660.
Catalytic wet air oxidation (CWAO) coupled desalination technology provides a possibility for the effective and economic degradation of high salinity and high organic wastewater. Chloride widely occurs in natural and wastewaters, and its high content jeopardizes the efficacy of Advanced oxidation process (AOPs). Thus, a novel chlorine ion resistant catalyst B-site Ru doped LaFe1-xRuxO3-δ in CWAO treatment of chlorine ion wastewater was examined. Especially, LaFe0.85Ru0.15O3-δ was 45.5% better than that of the 6%RuO2@TiO2 (commercial carrier) on total organic carbon (TOC) removal. Also, doped catalysts LaFe1-xRuxO3-δ showed better activity than supported catalysts RuO2@LaFeO3 and RuO2@TiO2 with the same Ru content. Moreover, LaFe0.85Ru0.15O3-δ has novel chlorine ion resistance no matter the concentration of Cl and no Ru dissolves after the reaction. X-ray diffraction (XRD) refinement, X-ray photoelectron spectroscopy (XPS), transmission electron microscope (TEM), and X-ray absorption fine structure (XAFS) measurements verified the structure of LaFe0.85Ru0.15O3-δ. Kinetic data and density functional theory (DFT) proved that Fe is the site of acetic acid oxidation and adsorption of chloride ions. The existence of Fe in LaFe0.85Ru0.15O3-δ could adsorb chlorine ion (catalytic activity inhibitor), which can protect the Ru site and other active oxygen species to exert catalytic activity. This work is essential for the development of chloride-resistant catalyst in CWAO.
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