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11.
Plants constitute a major element of constructed wetlands(CWs).In this study,a coupled system comprising an integrated vertical flow CW(IVCW) and a microbial fuel cell(MFC) for swine wastewater tre atment was developed to research the effects of macrophytes commonly employed in CWs,Canna indica,Acorus calamus,and Ipomoea aquatica,on decontamination and electricity production in the system.Because of the different root types and amounts of oxygen released by the roots,the rates of chemical oxygen demand(COD) and ammonium nitrogen(NH_4~+-N) removal from the swine wastewater differed as well.In the unplanted,Canna indica,Acorus calamus,and Ipomoea aquatica systems,the COD removal rates were 80.20%,88.07%,84.70%,and 82.20%,respectively,and the NH_4~+-N removal rates were 49.96%,75.02%,70.25%,and 68.47%,respectively.The decontamination capability of the Canna indica system was better than those of the other systems.The average output voltages were 520±42,715±20,660±27,and 752±26 mV for the unplanted,Canna indica,Acorus calamus,and Ipomoea aquatica systems,respectively,and the maximum power densities were 0.2230,0.4136,0.3614,and0.4964 W/m~3,respectively.Ipomoea aquatica had the largest effect on bioelectricity generation promotion.In addition,electrochemically active bacteria,Geobacter and Desulfuromonas,were detected in the anodic biofilm by high-throughput sequencing analysis,and Comamonas(Proteobacteria),which is widely found in MFCs,was also detected in the anodic biofilm.These results confirmed the important role of plants in IVCW-MFCs.  相似文献   
12.
Inhaled atmospheric fine particulate matter(PM_(2.5)) includes soluble and insoluble fractions,and each fraction can interact with cells and cause adverse effects.PM_(2.5) samples were collected in Jinan,China,and the soluble and insoluble fractions were separated.According to physiochemical characterization,the soluble fraction mainly contains watersoluble ions and organic acids,and the insoluble fraction mainly contains kaolinite,calcium carbonate and some organic carbon.The interaction between PM_(2.5) and model cell membranes was examined with a quartz crystal microbalance with dissipation(QCM-D) to quantify PM_(2.5) attachment on membranes and membrane disruption.The cytotoxicity of the total PM_(2.5) and the soluble and insoluble fractions,was investigated.Negatively charged PM_(2.5) can adhere to the positively charged membranes and disrupt them.PM_(2.5)also adheres to negatively charged membranes but does not cause membrane rupture.Therefore,electrostatic repulsion does not prevent PM_(2.5) attachment,but electrostatic attraction induces remarkable membrane rupture.The human lung epithelial cell line A549 was used for cytotoxicity assessment.The detected membrane leakage,cellular swelling and blebbing indicated a cell necrosis process.Moreover,the insoluble PM_(2.5) fraction caused a higher cell mortality and more serious cell membrane damage than the soluble fraction.The levels of reactive oxygen species(ROS) enhanced by the two fractions were not significantly different.The findings provide more information to better understand the mechanism of PM_(2.5) cytotoxicity and the effect of PM_(2.5) solubility on cytotoxicity.  相似文献   
13.
Changes in water quality from source water to finished water and tap water at two conventional drinking water treatment plants(DWTPs) were monitored.Beside the routine water quality testing,Caenorhabditis elegans-based toxicity assays and the fluorescence excitation–emission matrices technique were also applied.Both DWTPs supplied drinking water that met government standards.Under current test conditions,both the investigated finished water and tap water samples exhibited stronger lethal,genotoxic and reprotoxic potential than the relative source water sample,and the tap water sample was more lethal but tended to be less genotoxic than the corresponding finished water sample.Meanwhile,the nearly complete removal of tryptophan-like substances and newly generated tyrosine-like substances were observed after the treatment of drinking water,and humic-like substances were identified in the tap water.Based on these findings,toxic pollutants,including genotoxic/reproductive toxicants,are produced in the drinking water treatment and/or distribution processes.Moreover,further studies are needed to clarify the potentially important roles of tyrosine-like and humic-like substances in mediating drinking water toxicity and to identify the potential sources of these contaminants.Additionally,tryptophan-like fluorescence may be adopted as a useful parameter to monitor the treatment performance of DWTPs.Our observations provided insights into the importance of utilizing biotoxicity assays and fluorescence spectroscopy as tools to complement the routine evaluation of drinking water.  相似文献   
14.
The degradation of pharmaceutical micropollutants is an intensifying environmental problem and synthesis of efficient photocatalysts for this purpose is one of the foremost challenges worldwide. Therefore, this study was conducted to develop novel plasmonic Ag/Ag2O/BiVO4 nanocomposite photocatalysts by simple precipitation and thermal decomposition methods, which could exhibit higher photocatalytic activity for mineralized pharmaceutical micropollutants. Among the different treatments, the best performance was observed for the Ag/Ag2O/BiVO4 nanocomposites (5 wt.%; 10 min's visible light irradiation) which exhibited 6.57 times higher photodegradation rate than the pure BiVO4. Further, the effects of different influencing factors on the photodegradation system of tetracycline hydrochloride (TC-HCl) were investigated and the feasibility for its practical application was explored through the specific light sources, water source and cycle experiments. The mechanistic study demonstrated that the photogenerated holes (h+), superoxide radicals (?O2?) and hydroxyl radicals (?OH) participated in TC-HCl removal process, which is different from the pure BiVO4 reaction system. Hence, the present work can provide a new approach for the formation of novel plasmonic photocatalysts with high photoactivity and can act as effective practical application for environmental remediation.  相似文献   
15.
An effective broad-spectrum fungicide, azoxystrobin (AZ), has been widely detected in aquatic ecosystems, potentially affecting the growth of aquatic microorganisms. In the present study, the eukaryotic alga Monoraphidium sp. and the cyanobacterium Pseudanabaena sp. were exposed to AZ for 7 days. Our results showed that 0.2–0.5 mg/L concentrations of AZ slightly inhibited the growth of Monoraphidium sp. but stimulated Pseudanabaena sp. growth. Meanwhile, AZ treatment effectively increased the secretion of total organic carbon (TOC) in the culture media of the two species, and this phenomenon was also found in a freshwater microcosm experiment (containing the natural microbial community). We attempted to assess the effect of AZ on the function of aquatic microbial communities through metabolomic analysis and further explore the potential risks of this compound. The metabonomic profiles of the microcosm indicated that the most varied metabolites after AZ treatment were related to the citrate cycle (TCA), fatty acid biosynthesis and purine metabolism. We thereby inferred that the microbial community increased extracellular secretions by adjusting metabolic pathways, which might be a stress response to reduce AZ toxicity. Our results provide an important theoretical basis for further study of fungicide stress responses in aquatic microcosm microbial communities, as well as a good start for further explorations of AZ detoxification mechanisms, which will be valuable for the evaluation of AZ environmental risk.  相似文献   
16.
水稻秸秆生物炭中铜和镉的形态分布及释放特性   总被引:1,自引:0,他引:1       下载免费PDF全文
由于目前缺乏对生物质原料来源的管控办法,极有可能用产自受污染农田土壤的秸秆制备出具有高重金属含量的生物炭,因此,研究生物炭中重金属的形态分布及其释放特性对于防控生物炭应用产生的环境风险具有重要意义.基于此,分别采集江西省贵溪铜冶炼厂周边九牛岗污染区和中国科学院鹰潭红壤生态实验站清洁区种植的水稻秸秆制备生物炭(分别记为“九牛岗生物炭”和“红壤站生物炭”),分析两种生物炭中Cu、Cd的含量及其化学形态分布,考察不同固液比及pH对生物炭中Cu、Cd浸出的影响.结果表明:九牛岗生物炭中Cu、Cd的总量(以w计)分别为119.99、3.83 mg/kg,显著高于红壤站生物炭(19.50、0.96 mg/kg).尽管九牛岗生物炭中w(酸溶态Cu)、w(酸溶态Cd)显著高于红壤站生物炭,但在形态分布上,九牛岗生物炭中Cu、Cd主要为相对稳定态(可氧化态和残渣态),二者占比分别为80.3%、76.7%,高于红壤站生物炭(二者占比分别为53.2%、48.0%).高固液比和低pH可有效增加两种生物炭中Cu、Cd的浸出毒性,其中,九牛岗生物炭在固液比为1:20和1:60时,浸出液中ρ(Cu)、ρ(Cd)均超过GB/T 14848—2017《地下水质量标准》中Ⅱ类标准限值.动力学及累积释放试验表明,两种生物炭中的部分Cu、Cd可在短时间内迅速释放而后逐渐平稳并有上升趋势,且九牛岗生物炭中Cu、Cd释放量显著高于红壤站生物炭.研究显示,来自污染区水稻秸秆生物炭中的Cu、Cd活性显著高于清洁区生物炭,具有更高的环境风险.   相似文献   
17.
DEP (diethyl phthalate,邻苯二甲酸二乙酯)是一种在环境中普遍存在的具有潜在神经和生殖毒性的增塑剂,其会干扰环境生物的发育水平、运动行为及生化水平.以秀丽隐杆线虫的体长、体宽、头部摆动频率及生化指标作为测试终点,评估环境中DEP对秀丽隐杆线虫的生态毒理效应.在不同环境浓度(0、0.000 2、0.002、0.02、0.2、2 mg/L)的DEP溶液中,对秀丽隐杆线虫进行不同时间(24 h、72 h和10 d)的暴露试验.结果表明:①在不同浓度DEP溶液中暴露24 h后,秀丽隐杆线虫的发育水平均未受到显著影响(P>0.05).②在不同浓度DEP溶液中暴露72 h后,秀丽隐杆线虫的发育水平受到干扰.与对照组相比,在DEP浓度最高(2 mg/L)时,秀丽隐杆线虫体长下降了3.21%(P < 0.05);在DEP浓度为0.000 2 mg/L时,秀丽隐杆线虫的体宽呈上升趋势,且头部摆动频率明显加快了5.52%(P < 0.01),秀丽隐杆线虫的发育水平受到显著抑制.③在不同浓度DEP溶液中暴露10 d后,与对照组相比,秀丽隐杆线虫的体长、体宽和头摆频率均出现下降;在DEP浓度为2 mg/L时,秀丽隐杆线虫体内活性氧自由基、脂褐素和细胞凋亡水平累积均增长显著,出现氧化应激损伤.研究显示,不同环境浓度的DEP溶液会对秀丽隐杆线虫产生一定的毒性影响,且不同暴露时间和暴露浓度产生的毒性影响也存在一定差异.   相似文献   
18.
Mitigation and Adaptation Strategies for Global Change - Low-carbon pilot (LCP) policy aims to not only achieve economic development but also address climate change problems in China. With a...  相似文献   
19.
文章以昆明市为例,分析了昆明市地下水水质现状及变化趋势,总结了地下水污染防治工作成效和存在问题。分析表明,由于长期未受到充分重视,昆明市地下水已呈现出污染加重的趋势。近年来,昆明市地下水污染防治取得了一定的成绩,但仍然存在监管能力不足、监测网络覆盖不全的问题。在此基础上提出了开展地下水环境状况调查评估、磷石膏堆场地下水污染防控与修复试点和进一步完善地下水环境监测网络的对策建议,为昆明市和其他南方城市做好地下水污染防治工作提供借鉴。  相似文献   
20.
通过水热法合成Bi2WO6,并利用XPS,XRD,BET,UV-Vis和SEM等方法对样品进行了表征;通过光催化性能实验考察了Bi2WO6投加量,溶液pH值对普伐他汀(PR)降解效果的影响;通过自由基捕获实验及中间产物的鉴定探明了Bi2WO6光催化降解PR过程的主要活性自由基,中间产物及降解机理,并采用发光细菌急性毒性试验评估了PR降解前后的毒性.结果表明,所制备的Bi2WO6是由大量纳米片组成的正交晶系花瓣状微球,各元素物质的量比为Bi:W:O=2.5:1:6.7,比表面积为26.67m2/g,带隙能为2.74eV;光催化性能结果表明,对于10mg/L PR,当溶液pH=6.5,Bi2WO6投加量为0.4g/L时降解效果最佳,降解率可达80.6%,矿化度为40.2%;自由基捕获实验结果表明降解过程中h+起主要的氧化作用,·OH和·O2-的氧化起辅助作用.基于活性自由基和中间产物的鉴别结果提出了Bi2WO6光催化降解PR的机理,即以h+为主,·OH和·O2-为辅联合攻击PR分子中C-C键,C=C双键,酯键等化学键,进而将其分解为易降解小分子有机物.另外,毒性测试结果表明PR经光催化降解后的小分子产物与PR原液相比毒性并没有增强.  相似文献   
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