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651.
全国23个城市水源水中邻苯二甲酸酯代谢物浓度调查   总被引:1,自引:0,他引:1  
采用UPLC-MS/MS方法对中国23个城市的90个自来水厂141个水源水样中5种常用PAEs的8种代谢产物进行检测.结果发现,所有自来水水源水中均检出了MPAEs,邻苯二甲酸单正丁酯(MnBP)检出浓度最高,为74.7ng/L.水源水中邻苯二甲酸单乙酯(MEP),邻苯二甲酸单异丁酯(MiBP)和MnBP浓度与邻苯二甲酸二乙酯(DEP),邻苯二甲酸二异丁酯(DiBP)和邻苯二甲酸二正丁酯(DnBP)浓度分别呈显著相关,表明两者可能是同源.邻苯二甲酸二(2-乙基己基)酯(DEHP)二级代谢产物所占DEHP一级、二级代谢产物浓度和(∑DEHP)为4.0%±5.6%,和天然水体中DEHP的微生物降解结果类似,水源水中的MPAEs可能来自PAEs在自然水体中的微生物降解.  相似文献   
652.
建立了大气细粒子中类腐殖质(HULIS)表面活性的动态表征方法,并以华北平原乡村站点冬季大气PM2.5样品为例,对PM2.5中HULIS的表面活性进行表征.HULIS碳质组分(HULIS-C)浓度为2.0~4.6μg C/m3,占水溶性有机碳和总有机碳的比例分别为31%~40%和20%~26%.浓度为88~200mg C/L的HULIS水溶液,其表面张力相对于纯水降低了18%~22%.HULIS-C浓度在低于70mg C/L时表面张力降低显著,在88~320mg C/L之间降低相对缓慢.动态表面张力随着时间变化逐渐降低,在液滴形成后200s以内表面张力下降迅速,之后趋于平缓,说明表面活性分子在液滴中扩散趋于稳定需要一定的时间,该特征时间可能影响表面活性物质在云凝结核活化时的作用.证实了在污染地区的大气PM2.5中含有一定量的表面活性物质,这些物质可能对颗粒物活化为云滴、雾滴过程产生显著影响;表面活性物质的存在可能在外界湿度变化过程中导致颗粒物发生液-液相分离现象,在颗粒物表面形成有机膜,影响活性分子摄取以及半挥发性物质的气-粒分配过程,从而影响大气非均相反应过程.  相似文献   
653.
郭政  陈爽  董平  陆玉麒 《中国环境科学》2019,39(3):1323-1335
基于2003~2015年长江三角洲(以下简称长三角)城市群26个城市工业废水和工业SO2排放数据,采用标准差椭圆、地理集中指数、工业环境绩效指数、空间形态差异指数等方法从宏观和微观视角对长三角城市群工业污染时空演化进行分析,同时采用对数平均迪氏分解(LMDI)模型对其工业污染排放主要驱动因素进行分解.研究发现:2003~2015年工业废水和工业SO2排放量分别下降了16.97%和28.79%,但占全国比重仍然较高,尤其是工业废水对生态环境胁迫较大.2种工业污染空间形态均呈现出北(偏西)-南(偏东)的空间分布形态,而2种工业污染重心移动轨迹并不一致,工业废水重心总体上朝向东(偏南)方向迁移了12.85km,而工业SO2重心总体上朝向西(偏北)方向迁移了26.89km.此外,2种工业污染主要集中分布于长江沿岸城市且污染集中度指数由高到低大致呈半圈层状向周围递减.工业发展与工业污染空间形态演变具有一致性,工业废水重心和工业SO2重心与工业发展重心距离均在逐渐缩小,而2种工业污染-环境绩效空间分布格局并不完全一致.驱动因素方面,环境规制引起的技术改善效应是工业污染排放量减少的主要原因,而由环境规制引起的产业结构效应对工业污染排放量的影响则取决于区域发展政策,经济发展效应是工业污染排放量增加的主要原因,人口规模效应对工业污染排放量的影响较小.  相似文献   
654.
选取嘉兴市秀洲区和海宁市为研究对象,以乡镇区划为研究单元,采用综合源强估算法和GIS软件,对处理设施的氨氮(NH3-N)、总磷(TP)、化学需氧量(COD)排放强度进行定量估算和空间分析.结果表明,秀洲区处理设施的NH3-N和COD排放强度高于海宁市,而TP排放强度与海宁市差不多.秀洲区内,洪合镇各污染物的排放强度均最高;海宁市内,盐官镇NH3-N排放强度最高,许村镇TP和COD排放强度最高.采用因子分析法和加权指数法计算排污权重,再结合生态敏感性评价和环境功能区划,筛选出运维和监管优先控制区.秀洲区内,洪合镇、王江泾镇、油车港镇被划分为优先控制区,该优先控制区内处理设施数量占比27.87%,排污权重占比72.42%,通过重点监管17.66%的设施,可监管秀洲区59.98%的污染物排放.海宁市内,长安镇、许村镇、海洲街道、盐官镇、袁花镇被划分为优先控制区,该优先控制区内设施数量占比69.10%,排污权重占比71.23%,通过重点监管16.85%的设施,可监管海宁市43.54%的污染物排放.研究结果可为提高设施的运维监管效率提供技术支撑.  相似文献   
655.
Low organic matter content and high heavy metal levels severely inhibit the anaerobic digestion (AD) of sewage sludge. In this study, the effect of added manganese oxide-modified biochar composite (MBC) on methane production and heavy metal fractionation during sewage sludge AD was examined. The MBC could increase the buffering capacity, enhance the methane production and degradation of intermediate acids, buffer the pH of the culture, and stabilize the sewage sludge AD process. The application of MBC positively impacted methane production and the cumulative methane yield increased up to 121.97%, as compared with the control. The MBC addition can improve metal stabilization in the digestate. An optimum MBC dose of 2.36?g was recommended, which would produce up to 121.1?L/kg volatile solids of methane. After the AD process, even though most of the metals accumulated in the residual solids, they could be transformation from the bio-available fractions to a more stable fraction. The total organic- and sulfide-bound and residual fraction content at a 3?g dose of MBC that is 0.12?g/g dry matter were 51.06% and 35.11% higher than the control, respectively. The results indicated that the application of MBC could improve the performance of AD and promote stabilization of heavy metals in sewage sludge post the AD process.  相似文献   
656.
A pilot-scale multilevel contact oxidation reactors system, coupled with saran lock carriers,was applied for the treatment of poultry farm wastewater. The removal efficiencies of CODcr, ammonia, and the total nitrogen as well as the elimination performance of CODcr and total nitrogen along the three-level contact oxidation tanks under six designed operational models were investigated. Based on the performance of the nitrogen removal of the saran lock carriers and the distribution of anoxic–aerobic interspace under the suitable operation model, the mechanism of nitrogen removal of the system was also explored. The results revealed that the intermittent aeration under parallel model is the most suitable operation model, while the removal efficiencies of CODcr, ammonia, and the total nitrogen were 86.86%, 84.04%, and 80.96%, respectively. The effluent concentration of CODcr,ammonia, and the total nitrogen were 55.6 mg/L, 8.3 mg/L, and 12.0 mg/L, which satisfy both the discharge standard of pollutants for livestock and poultry breeding industry(GB18596–2001) and the first grade of the integrated wastewater discharge standard(GB 8978–1996). Moreover, the mechanism for the nitrogen removal should be attributed to the plenty of anoxic–aerobic interspaces of the biofilm and the three-dimensional spiral structure of the saran lock carriers, where the oxygen-deficient distribution was suitable for the happening of the simultaneous nitrification and denitrification process. Therefore, the multilevel contact oxidation tanks system is an effective pathway for the treatment of the poultry farm wastewater on the strength of a suitable operation model and novel carriers.  相似文献   
657.
Traffic vehicles, many of which are powered by port fuel injection (PFI) engines, are major sources of particulate matter in the urban atmosphere. We studied particles from the emission of a commercial PFI-engine vehicle when it was running under the states of cold start, hot start, hot stabilized running, idle and acceleration, using a transmission electron microscope and an energy-dispersive X-ray detector. Results showed that the particles were mainly composed of organic, soot, and Ca-rich particles, with a small amount of S-rich and metal-containing particles, and displayed a unimodal size distribution with the peak at 600?nm. The emissions were highest under the cold start running state, followed by the hot start, hot stabilized, acceleration, and idle running states. Organic particles under the hot start and hot stabilized running states were higher than those of other running states. Soot particles were highest under the cold start running state. Under the idle running state, the relative number fraction of Ca-rich particles was high although their absolute number was low. These results indicate that PFI-engine vehicles emit substantial primary particles, which favor the formation of secondary aerosols via providing reaction sites and reaction catalysts, as well as supplying soot, organic, mineral and metal particles in the size range of the accumulation mode. In addition, the contents of Ca, P, and Zn in organic particles may serve as fingerprints for source apportionment of particles from PFI-engine vehicles.  相似文献   
658.
Pathogenic viruses in drinking water are great threats to public health. Visible-light-driven photocatalysis is a promising technology for virus inactivation. However, the existing photocatalytic antiviral research studies have mostly been carried out in single-component systems, neglecting the effect of natural organic matter, which exists widely in actual water bodies. In this paper, electrospun Cu-TiO2 nanofibers were prepared as photocatalysts, and their photocatalytic antiviral performance in the presence of humic acid (HA) was comprehensively studied for the first time. The properties of the reaction mixture were measured during the reaction. In addition, the safety, reliability and stability of photocatalytic disinfection in the mixed system were evaluated. The results showed that the virus removal efficiency decreased with the increase of the HA concentration. The type of reaction solution, such as PBS buffer solution or water, did not affect the removal efficiency noticeably. Under acidic conditions, the electrostatic forces between photocatalysts and viruses were strengthened, leading to higher virus removal efficiency. As the reaction time went on, the pH value in the solution increased first and then tended to be stable, the conductivity remained stable, and the dissolved oxygen increased first and then decreased. The safety test showed that the concentration of Cu ions released into the solution was lower than specified by the international standards. No photoreactivation was observed, and the addition of HA significantly reduced the reutilization efficiency of the photocatalysts.  相似文献   
659.
为探究肥料生产场地的NH3-N(氨氮)分布特征及环境风险,以我国某肥料生产场地为研究对象,在场地调查基础上,对场地土壤和地下水NH3-N的空间分布进行分析,并以人体健康和场地地下水为保护对象分别讨论了土壤NH3-N风险控制目标值的计算方法.结果表明:①目标场地土壤中w(NH3-N)为0.03~15 000 mg/kg,水平方向上高值区集中分布于核心生产区及原辅料堆场,垂向上总体表现为由上至下随深度增加呈先逐步升高后降低的趋势,并且富集于人工填土与原状粉质黏土交界处,粉质黏土阻碍NH3-N向下迁移,并随地层结构变化其迁移深度不同.②场地上层滞水和潜水中ρ(NH3-N)分别为19.10~3 320和0.03~219 mg/L,超标率分别为100%和57.89%,并且地下水与土壤的NH3-N在水平空间分布上具有重叠特征.③因NH3-N主要通过呼吸吸入挥发性气体产生暴露,并且仅有经呼吸暴露的毒性参数,故采用《污染场地风险评估技术导则》中经呼吸暴露途径的非致癌效应风险控制值计算模型来计算土壤NH3-N的控制目标,通过代入场地实测土壤Kd(土-水分配系数),得到居住用地下的土壤NH3-N控制目标值为9 195 mg/kg;若考虑保护地下水水质安全,据三相或两相平衡模型耦合NH3-N在包气带衰减和地下水稀释作用,当目标场地地表无积水的入渗条件下得到的控制目标值为6 203 mg/kg;当地层从上至下呈饱和含水条件时,土壤NH3-N控制目标为811 mg/kg.计算值可用作不同场地进行土壤NH3-N风险管控的参考目标,实际应用中可结合不同地块环境条件、不同受体和保护目标,选择相应的风险控制值对场地进行风险管控.此外,土壤和地下水的NH3-N污染控制均可考虑采用工程措施和制度控制来进行.   相似文献   
660.
为了解阳澄湖沉积物重金属含量空间分布及污染特征,选取阳澄湖柱状沉积物样为研究对象,采用电感耦合等离子体质谱仪(ICP-MS)、原子荧光光谱仪(AFS)和Hydra-c型全自动测汞仪于2018年2月对阳澄湖15个采样点沉积物柱状样中8种重金属Cr、Ni、Cu、Zn、As、Cd、Pb、Hg进行测定,分析重金属元素含量在水平及垂向的分布特征和污染状况.结果表明,阳澄湖表层沉积物中Cr、Ni、Cu、Zn、As、Cd、Pb、Hg平均含量分别为101.28,68.72,66.54,187.33,15.85,0.45,34.02,0.09mg/kg,是各自背景值的1.34,2.09,2.89,2.88,1.69,4.99,1.54,3.00倍.垂向上重金属的含量随着深度的增加呈现出下降的趋势.对8种重金属进行相关分析和聚类分析,除As、Ni和Hg外,不同重金属之间存在着显著相关关系(P<0.05),这说明阳澄湖沉积物重金属之间存在着一定的同源性.采用沉积物质量基准(SQG)对阳澄湖沉积物中重金属生物毒性效应进行了评价,结果表明,阳澄湖沉积物中Ni有75%以上的可能性出现生物毒害效应,Cr、Cu、Zn、As则有10%~75%的可能性产生生物毒害效应,而Cd、Pb和Hg造成的生物毒害效应的可能性较小.ERMQ评价结果表明,阳澄西湖沉积物中重金属造成生物毒害的风险较大,其余湖区发生重金属生物毒害的风险较小.  相似文献   
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