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41.
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   
42.
Ozone (O3), as a harmful air pollutant, has been of wide concern. Safe, efficient, and economical O3 removal methods urgently need to be developed. Catalytic decomposition is the most promising method for O3 removal, especially at room temperature or even subzero temperatures. Great efforts have been made to develop high-efficiency catalysts for O3 decomposition that can operate at low temperatures, high space velocity and high humidity. First, this review describes the general reaction mechanism of O3 decomposition on noble metal and transition metal oxide catalysts. Then, progress on the O3 decomposition performance of various catalysts in the past 30 years is summarized in detail. The main focus is the O3 decomposition performance of manganese oxides, which are divided into supported manganese oxides and non-supported manganese oxides. Methods to improve the activity, stability, and humidity resistance of manganese oxide catalysts for O3 decomposition are also summarized. The deactivation mechanisms of manganese oxides under dry and humid conditions are discussed. The O3 decomposition performance of monolithic catalysts is also summarized from the perspective of industrial applications. Finally, the future development directions and prospects of O3 catalytic decomposition technology are put forward.  相似文献   
43.
CuSO_4/TiO_2 catalysts with high catalytic activity and excellent resistant to SO_2 and H_2 O,were thought to be promising catalysts used in Selective catalytic reduction of nitrogen oxides by NH_3.The performance of catalysts is largely affected by calcination temperature.Here,effects of calcination temperature on physicochemical property and catalytic activity of CuSO_4/TiO_2 catalysts were investigated in depth.Catalyst samples calcined at different temperatures were prepared first and then physicochemical properties of the catalyst were characterized by N2 adsorption-desorption,X-ray diffraction,thermogravimetric analysis,Raman spectra,Fourier-transform infrared spectroscopy,X-ray photoelectron spectroscopy,temperature-pro grammed desorption of NH_3,temperature-programmed reduction of H_2 and in situ diffuse reflectance infrared Fourier transform spectroscopy.Results revealed that high calcination temperature had three main effects on the catalyst.First,sintering and anatase transform into rutile with increase of calcination temperature,causing a decrement of specific surface area.Second,decomposition of CuSO_4 under higher calcination temperature,resulting in disappears of Br(?)nsted acid sites(S-OH),which had an adverse effect on surface acidity.Third,CuO from the decomposition of CuSO_4 changed surface reducibility of the catalyst and favored the process of NH_3 oxidation to nitrogen oxides(NO_x).Thus,catalytic activity of the catalyst calcined under high temperatures(≥600℃) decreased largely.  相似文献   
44.
Tri(2-chloroethyl) phosphate (TCEP) with the initial concentration of 5 mg/L was degraded by UV/H2O2 oxidation process. The removal rate of TCEP in the UV/H2O2 system was 89.1% with the production of Cl? and PO43? of 0.23 and 0.64 mg/L. The removal rate of total organic carbon of the reaction was 48.8% and the pH reached 3.3 after the reaction. The oxidative degradation process of TCEP in the UV/H2O2 system obeyed the first order kinetic reaction with the apparent rate constant of 0.0025 min?1 (R2=0.9788). The intermediate products were isolated and identified by gas chromatography-mass spectrometer. The addition reaction of HO? and H2O and the oxidation reaction with H2O2 were found during the degradation pathway of 5 mg/L TCEP in the UV/H2O2 system. For the first time, environment risk was estimated via the “ecological structure activity relationships” program and acute and chronic toxicity changes of intermediate products were pointed out. The luminescence inhibition rate of photobacterium was used to evaluate the acute toxicity of intermediate products. The results showed that the toxicity of the intermediate products increased with the increase of reaction time, which may be due to the production of chlorine compounds. Some measures should be introduced to the UV/H2O2 system to remove the highly toxic Cl-containing compounds, such as a nanofiltration or reverse osmosis unit.  相似文献   
45.
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   
46.
达里诺尔湖水体DOM荧光特征及其来源解析   总被引:1,自引:0,他引:1       下载免费PDF全文
孙伟  胡泓  赵茜  王璐  夏瑞  王晓  卜利胜  薛婕 《环境科学研究》2020,33(9):2084-2093
达里诺尔湖(简称“达里湖”)是内蒙古自治区高原地区重要的生态屏障,探究达里湖水质状况及污染来源,对加强流域水环境治理、改善水环境质量具有十分重要的意义.于2018年9月及2019年6月对湖水进行采样,并通过三维荧光光谱结合PARAFAC(平行因子分析)模型,探究达里湖水体DOM(溶解性有机质)来源及其与水质的关系.结果表明:①达里湖水体中pH较高,ρ(DOC)(DOC为溶解性有机碳)、ρ(NH4+-N)、ρ(TP)相对较高,均超过GB 3838—2002《地表水环境质量标准》Ⅴ类水质标准限值.②水体中DOM含4种荧光组分.夏季水体DOM主要分布于河流入湖口附近,其中,类腐殖质荧光组分(紫外区类富里酸和可见区类富里酸)占总组分的62.93%,类蛋白类荧光组分(类色氨酸和类酪氨酸)占总组分的36.07%;秋季水体DOM主要分布于东南侧,其中,类腐殖质荧光组分占总组分的40.52%,类蛋白类荧光组分占总组分的59.48%.③达里湖采样点荧光参数表明,达里湖DOM自生源特征较强,腐殖化程度较低.类腐殖质荧光组分与ρ(DOC)、ρ(Chla)均呈正相关,类色氨酸荧光组分与pH呈正相关,类络氨酸与ρ(DTN)、ρ(NH4+-N)、ρ(DTP)均呈正相关.研究显示,达里湖DOM具有陆源与生物源双重特性,DOM的形成与微生物、细菌、浮游生物的生命活动密切相关.   相似文献   
47.
陈林  平巍  闫彬  吴彦  付川  黄炼旗  刘露  印茂云 《环境工程》2020,38(8):119-124
以城市剩余污泥为原料,于300,400,500,600 ℃温度条件下制备生物炭,通过单因素静态吸附实验探讨制备温度对生物炭吸附Cr(Ⅵ)的影响。结果表明:在500 ℃以内随着温度上升制备的生物炭对Cr(Ⅵ)的吸附量增加,制备温度高于500 ℃后变化不明显;扫描电镜(SEM)、比表面积(BET)、傅里叶红外光谱(FTIR)表征结果显示,热解温度对生物炭表面形貌和官能团组成有显著影响;等温模型及动力学拟合结果表明,生物炭吸附Cr(Ⅵ)为单分子层吸附、物理-化学复合吸附。热解温度对污泥制备生物炭吸附Cr(Ⅵ)的性能有显著影响,最佳制备温度为500 ℃,在此条件制备的生物炭对Cr(Ⅵ)的理论吸附量可达7.93 mg/g。  相似文献   
48.
采用碱溶液提取/火焰原子吸收法(HJ 687—2014《固体废物六价铬的测定 碱消解/火焰原子吸收分光光度法》和HJ 1082—2019《土壤和沉积物 六价铬的测定 碱溶液提取-火焰原子吸收分光光度法》)测定了固体废物和土壤样品中六价铬含量,比对和验证了2种方法实验流程、分析方法性能及不确定度评定结果。结果表明:HJ 687—2014的方法检出限相对较高,不适合测定浓度较低的土壤;HJ 1082—2019要求按照试样制备的步骤配置工作曲线,考虑了基体干扰的影响。HJ 687—2014的检出限为0.28 mg/kg,相对标准偏差为0.69%~0.93%,样品加标回收率为95.7%~97.2%;HJ 1082—2019的检出限为0.17 mg/kg,相对标准偏差为0.6%~3.0%,样品加标回收率为76.0%~83.1%。对于同一实际样品,2种方法的测定结果相近,HJ 687—2014和HJ 1082—2019的测定结果分别为(48.1±4.2),(46.6±5.4) mg/kg。比对发现,影响HJ 687—2014和HJ 1082—2019不确定度的最主要环节分别为曲线拟合和样品消解。  相似文献   
49.
为探究半干旱区地表水化学特征及物质来源,以白洋淀流域为研究对象,利用Piper三线图和Gibbs水岩模型,对地表水的主要离子组成特征及其来源进行分析。结果表明:白洋淀流域地表水pH为7.56~8.23时,呈弱碱性,且溶解性总固体(TDS,100~650 mg/L)在流域的不同空间区域表现为淀区 > 下游 > 上游。白洋淀流域地表水阳离子以Na+和Ca2+为主,离子总量占比76.60%;阴离子以HCO3-为主,约占阴离子总量61.52%。地表水的水化学类型为HCO3-Ca型(上游水体)和HCO3·SO4·Cl-Na·Ca型(下游河流和淀区)。白洋淀水文地球化学过程受到人类活动和自然作用的双重控制;自然作用下,白洋淀流域地表水中的离子来源于岩石风化(碳酸盐岩及硅酸盐岩的风化溶解),同时受到蒸发-结晶作用影响。  相似文献   
50.
目的探究密封舱室热防护效率与其内饰材料表面发射率的关系,分析内饰材料发射率对其表面温度、舱室内温度的影响规律。方法采用自行设计的小型密封舱室和加热测量装置,对内饰材料表面及舱室内温度进行测量。结果当内饰材料发射率为0.09时,内饰表面温度为141.2℃,舱室内平均温度仅为90.8℃;内饰材料发射率为0.91时,内饰表面温度为124.4℃,舱室内平均温度为109.1℃。结论试样表面温度随材料发射率的提高而降低,舱室内部空气平均温度随材料发射率的提高而升高;试样表面温度与舱室空气平均温度的温度差随材料发射率的提高而减小;同时,相同试样表面温度与舱室平均温度的温度差随加热温度的提高而增加。  相似文献   
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