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571.
Journal of Polymers and the Environment - Surface modification of cellulose nanocrystals (CNC) is essential for improving their reactivity and adsorption capacity. Oxidation, as a conventional...  相似文献   
572.
Journal of Polymers and the Environment - Polypropylene carbonate (PPC)/polybutylene succinate (PBS) blends were prepared by melt-blending with terminal epoxy-based hyperbranched polymers (EHBP) as...  相似文献   
573.
建立"经济水平—交流服务—产业发展—生态文明—公共服务—科技创新"框架,以宜荆荆恩城市群为例,并与相似区域城市群对比,综合运用耦合协调度、BP神经网络模型、ArcGIS空间分析工具研究次区域城市群协同发展时空演变规律及发展趋势。结果表明:(1)宜荆荆恩城市群综合发展能力指标总体协调发展不均衡。(2)与苏锡常都市圈相比,宜荆荆恩城市群的综合协同发展水平较低,且处于波动状态。(3)在动态模拟方面,宜荆荆恩城市群2020—2025年协同水平差距将持续增大,其协同发展水平在南北方向呈倒"U"型,东西方向呈"两边低,中间高"的趋势。  相似文献   
574.
Luo  Luna  Wang  Zhen  Guo  Qin  Wei  Xipeng  Hu  Jianpeng  Luo  Yu  Jiang  Jin 《Environmental Chemistry Letters》2022,20(1):91-99

Water contamination by emerging organic pollutants is calling for advanced methods of remediation such as iron-activated sulfite-based advanced oxidation. Sulfate radical, SO4??, and hydroxyl radical, ?OH, are the primary reactive intermediates formed in the Fe(III)/sulfite system, yet the possible involvement of Fe(IV) produced from Fe(II) and persulfates is unclear. Here we explored the role of Fe(IV) in the Fe(III)/sulfite system by methyl phenyl sulfoxide (PMSO) probe assay, electron paramagnetic resonance spectra analysis, alcohol scavenging experiment, and kinetic simulation. Results show that PMSO is partially transformed into methyl phenyl sulfone (PMSO2), thus evidencing Fe(IV) formation. The remaining degradation of PMSO is due to SO4?? and ?OH. The contribution of Fe(IV) versus free radicals is progressively promoted when the Fe(III)-sulfite reaction proceeds, with an upper limit of 80–90%. The contribution of Fe(IV) versus free radicals increases with Fe(III) and sulfite dosages, and decreases with increasing pH. Overall, our findings demonstrate the involvement of Fe(IV) in the Fe-catalyzed sulfite auto-oxidation process.

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575.
Environmental Chemistry Letters - The application of natural biopolymers such as polysaccharides for the fabrication of bio-based membranes has recently attracted attention for CO2...  相似文献   
576.
Environmental Science and Pollution Research - The amount of dissolved organic matter (DOM) in a multi-source watershed is important for complete management and assessing the river basin’s...  相似文献   
577.
Environmental Science and Pollution Research - In an effort to control dust pollution in open-air environments such as pit coal mines and coal transportation systems, a new dust suppressant with a...  相似文献   
578.
Liu  Jiutan  Ma  Yuanyuan  Gao  Zongjun  Zhang  Yuqi  Sun  Zengbing  Sun  Tianzhu  Fan  Haibin  Wu  Bin  Li  Mingbo  Qian  Lili 《Environmental science and pollution research international》2022,29(23):34302-34313
Environmental Science and Pollution Research - The present study, with the aid of GIS, utilizes high-density groundwater (GW) sampling data (1398 samples) to analyze the spatial variation...  相似文献   
579.
Jiang  Dongmei  Jiang  Kunhong  Li  Rui  Zhao  Liangbin  Liu  Zile  Xiong  Bangjie  Jin  Du  Hao  Xiaoxia  Zhu  Li  Kang  Bo  Bai  Lin 《Environmental science and pollution research international》2022,29(36):54378-54390

The disposal of organic waste by the biocomposting of black soldier fly larvae (BSFL) has drawn broad attention. However, the discrepancies in heavy metal immobilization between BSFL biocomposting with different inoculation densities and aerobic composting need to be further researched. In this study, BSFL with inoculation densities of 0.08%, 0.24% and 0.40% was added to swine manure to investigate its influence on heavy metal bioaccumulation and bioavailability. The physicochemical properties, BSFL growth performance and amino acid contents were measured. The results showed that the germination index, total prepupal yield and bioavailable fraction removal rate (%) of Cr and Pb at an inoculation density of 0.40% of BSFL were the highest among all of the BSFL biocomposting groups. Although the bioaccumulation factor and heavy metal (Cd, Cr, Cu and Zn) concentrations of the BSFL body from swine manure with inoculation densities of 0.24% and 0.40% of BSFL were similar, the BSFL inoculation density of 0.40% had the best absorption effect on these heavy metals in terms of total prepupal yield. Therefore, this study provides a basis for exploring the optimal inoculation density of BSFL biocomposting to reduce the harmful effects of heavy metals in swine manure.

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580.
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