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681.
Single-chamber sediment microbial fuel cells(SSMFCs) have received considerable attention nowadays because of their unique dual-functionality of power generation and enhancement of wastewater treatment performance. Thus, scaling up or upgrading SSMFCs for enhanced and efficient performance is a highly crucial task. Therefore, in order to achieve this goal, an innovative physical technique of using interface layers with four different pore sizes embedded in the middle of SSMFCs was utilized in this study.Experimental results showed that the performance of SSMFCs employing an interface layer was improved regardless of the pore size of the interface material, compared to those without such layers. The use of an interface layer resulted in a positive and significant effect on the performance of SSMFCs because of the effective prevention of oxygen diffusion from the cathode to the anode. Nevertheless, when a smaller pore size interface was utilized, better power performance and COD degradation were observed. A maximum power density of 0.032 mW/m~2 and COD degradation of 47.3% were obtained in the case of an interface pore size of 0.28 μm. The findings in this study are of significance to promote the future practical application of SSMFCs in wastewater treatment plants.  相似文献   
682.
Efficient removal of non-biodegradable and hazardous dyes from wastewater remains a hot research topic. Herein, a rationally designed a Cu(Ⅱ)-based metal–organic gel(Cu-MOG) with a nanoporous 3 D network structure prepared via a simple one-step mixing method was successfully employed for the removal of cationic dyes. The Cu-MOG exhibited high efficiency, with an adsorption capacity of up to 650.32 mg/g, and rapid adsorption efficiency, with the ability to adsorb 80% of Neutral Red within 1 min. The high adsorption efficiency was attributed to its large specific surface area, which enabled it to massively bind cationic dyes through electrostatic interaction, and a nanoporous structure that promoted intra-pore diffusion. Remarkably, the Cu-MOG displayed size-selective adsorption, based on adsorption studies concerning dyes of different sizes as calculated by density functional theory. Additionally, the adsorption performance of the Cu-MOG still maintained removal efficiency of 100% after three regeneration cycles. These results suggested that the Cu-MOG could be expected to be a promising and competitive candidate to conveniently process wastewater.  相似文献   
683.
The impact of air masses motion on marine aerosol properties was investigated using an on-board single particle mass spectrometer(SPAMS) deployed for the determination of single particle size resolved chemical composition over Southeast China Sea. Two aerosol blooms(E1 and E2) were observed during the cruise. High average particle number count occurred in E1(7320), followed by E2(5850), which was more than 100–150 times of the average particle number count during normal periods. Particles were classified as four major sources, including continental source, shipping source, marine source, and transport source based on the mass spectral similarity. Transport source was identified as those particles with high particle number count occurred only during aerosol bloom period. Three sub-types of EC-Ca, OC-Ca, and Al-rich were classified as transport source.EC-Ca was the dominant particles of the transport source, accounting for more than 70%of the total particles in aerosol bloom events. A uni-modal size distribution in the size range of 0.1–2.0 μm was observed during normal period, while a bimodal distribution with a tiny mode(0.3 μm) and a coarse mode between 0.4 and 0.6 μm was present during aerosol bloom. The variation of aerosol source is consistent with air masses back trajectories, for the reason that most of the long-range air trajectories are from the ocean,while short air trajectories originate in the continental regions, which means that air masses have a significant impact on the aerosol physical–chemical properties along their tracks.  相似文献   
684.
为研究水生蔬菜土壤中多环芳烃(PAHs)的污染水平,以广西水生蔬菜和相邻地块陆生蔬菜土壤作为研究对象,采集表层土壤,比较16种PAHs的污染特征,分析PAHs主要来源,评价潜在的生态风险。结果表明,研究区内水生蔬菜土壤中5、6环PAHs和7种致癌性PAHs的含量显著地高于陆生蔬菜土壤,2,3环PAHs的含量低于陆生蔬菜土壤,4环PAHs的含量没有显著差异;水生蔬菜和陆生蔬菜土壤中7种致癌性芳烃∑7cPAHs的平均贡献率分别为49. 03%和37. 61%,大部分样点属于重度污染水平;三种水生蔬菜土壤PAHs的污染模式相似,以4,5环PAHs为主,其次为2,3环PAHs,6环PAHs的含量最低。通过同分异构体比值法和主要成分分析法分析,发现土壤PAHs的主要来源为机动车尾气排放和生物质不完全燃烧。水生蔬菜土壤PAHs的苯并(a)芘总毒性当量为174. 59μg/kg,显著高于陆生蔬菜土壤的105. 54μg/kg,二者均低于加拿大土壤质量指标600μg/kg,但潜在的生态风险不可忽视。  相似文献   
685.
在现代煤矿里,灾害和事故仍然是不可避免的。采取减小组织内成员的自由度来强化专业救灾机构的整体功能固然重要,但非专业化的辅助矿山救护队的建设工作更应加强。因为他们亲临现场,熟悉灾情,又处于救灾的黄金时间里。因此,对是否酿成灾害和灾害中损失的控制问题,辅助矿山救护队有更多的优势。  相似文献   
686.
生物滤池挂膜的生产实践   总被引:4,自引:0,他引:4  
  相似文献   
687.
以可持续发展理论指导社会发展综合实验区的实践   总被引:2,自引:0,他引:2  
社会发展综合实验区中中国可持续发展战略的实验基地,本文对实验区如何按可持续发展原则,结合当地的人口、资源、环境状况,制宁长远的可持续发展的生态规划做了较系统的论述。  相似文献   
688.
689.
以粉煤灰、石灰为主要原料,经混合料制备、成型、蒸压、低温焙烧、粉磨工艺制备的新型水泥既具有普通水泥的胶凝特性,又同时具有水化热低、后期强度高的特点,对过程工艺参数、物料配比对新型水泥的质量影响进行了研究,该工艺有望为粉煤灰在水泥行业的规模化利用提供技术支持。  相似文献   
690.
资源与环境信息系统是研究人口、资源与环境的重要工具。本文论述了其定义和意义,说明其在我国发展的情况,以及应用上的特点,提出其建立与应用的广阔前景。  相似文献   
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