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911.
With rapid economic development and urbanization in recent decades, China has experienced the worsening of ambient air quality. For better air quality management to protect human health, Chinese government revised national ambient air quality standards(NAAQS) for particulate matter(PM) in 2012(GB3095-2012). To assess the effectiveness of current NAAQS for PM on public health in Chinese population, we conducted a metaanalysis on published studies examining the mortality risk of short-term exposure to PM with aerodynamic diameters less than 10 and 2.5 μm(PM_(10) and PM_(2.5)) in China. The reported24-hour concentrations of PM_(10) and PM_(2.5) in studies ranged from 43.5 to 150.1 μg/m~3 and 37.5 to 176.7 μg/m~3. In the pooled excess, mortality risk estimates of short-term exposure to PM.In specific, per 10 μg/m~3 increase in PM_(10), we observed increases of 0.40%(95%CI: 0.33%,0.47%), 0.57%(95%CI: 0.44%, 0.70%) and 0.49%(95%CI: 0.40%, 0.58%) in total, respiratory and cardiovascular mortality, per 10 μg/m~3 increase in PM_(2.5), we observed increases of 0.51%(95%CI: 0.38%, 0.63%), 0.62%(95%CI: 0.52%, 0.73%) and 0.75%(95%CI: 0.54%, 0.95%) in total,respiratory and cardiovascular mortality. Finally, we derived 125 μg/m~3 for PM_(10) and 62.5 μg/m~3 for PM_(2.5) as 24-hour recommendation values based on the pooled estimates. Our results indicated that current Chinese NAAQS for PM could be sufficient in mitigating the excess mortality risk from short-term exposure to ambient PM. However, future research on longterm exposure cohort studies in Chinese population is also essential in revising annual averages for PM in Chinese NAAQS.  相似文献   
912.
To investigate formation mechanisms of secondary organic carbon(SOC) in Eastern China,measurements were conducted in an urban site in Shanghai in the summer of 2015. A period of high O_3 concentrations(daily peak 120 ppb) was observed, during which daily maximum SOC concentrations exceeding 9.0 μg/(C·m~3). Diurnal variations of SOC concentration and SOC/organic carbon(OC) ratio exhibited both daytime and nighttime peaks. The SOC concentrations correlated well with O_x(= O_3+ NO_2) and relative humidity in the daytime and nighttime, respectively, suggesting that secondary organic aerosol formation in Shanghai is driven by both photochemical production and aqueous phase reactions. Single particle mass spectrometry was used to examine the formation pathways of SOC. Along with the daytime increase of SOC, the number fraction of elemental carbon(EC) particles coated with OC quickly increased from 38.1% to 61.9% in the size range of 250–2000 nm, which was likely due to gas-to-particle partitioning of photochemically generated semi-volatile organic compounds onto EC particles. In the nighttime, particles rich in OC components were highly hygroscopic, and number fraction of these particles correlated well with relative humidity and SOC/OC nocturnal peaks. Meanwhile, as an aqueous-phase SOC tracer, particles that contained oxalate-Fe(III) complex also peaked at night. These observations suggested that aqueous-phase processes had an important contribution to the SOC nighttime formation. The influence of aerosol acidity on SOC formation was studied by both bulk and single particle level measurements, suggesting that the aqueous-phase formation of SOC was enhanced by particle acidity.  相似文献   
913.
The effect of K deactivation on V_2O_5/WO_3-TiO_2 and Ce-doped V_2O_5/WO_3-TiO_2 catalysts in the selective catalytic reduction(SCR) of NOxby NH_3 was studied.Ce-doped V_2O_5/WO_3-TiO_2 showed significantly higher resistance to K deactivation than V_2O_5/WO_3-TiO_2.Ce-doped V_2O_5/WO_3-TiO_2 with K/V = 4(molar ratio) showed 90% NOxconversion at 350°C,whereas in this case V_2O_5/WO_3-TiO_2 showed no activity.The fresh and K-poisoned V_2O_5/WO_3-TiO_2 and Ce-doped V_2O_5/WO_3-TiO_2 catalysts were investigated by means of in situ diffuse reflectance infrared Fourier transform spectroscopy(DRIFTS),NH_3-temperature progress decomposition(NH_3-TPD),X-ray photoelectron spectroscopy(XPS) and H2-temperature program reduction(H_2-TPR).The effect of Ce doping on the improving resistance to K of V_2O_5/WO_3-TiO_2 were discussed.  相似文献   
914.
This work was undertaken to investigate the behaviors and kinetics of toluene adsorption and desorption on activated carbons with varying pore structure. Five kinds of activated carbon from different raw materials were selected. Adsorption isotherms and breakthrough curves for toluene were measured. Langmuir and Freundlich equations were fitted to the equilibrium data, and the Freundlich equation was more suitable for simulating toluene adsorption. The process consisted of monolayer, multilayer and partial active site adsorption types. The effect of the pore structure of the activated carbons on toluene adsorption capacity was investigated. The quasi-first-order model was more suitable for describing the process than the quasi-second-order model. The adsorption data was also modeled by the internal particle diffusion model and it was found that the adsorption process could be divided into three stages. In the external surface adsorption process, the rate depended on the specific surface area. During the particle diffusion stage, pore structure and volume were the main factors affecting adsorption rate. In the final equilibrium stage, the rate was determined by the ratio of meso-and macro-pores to total pore volume. The rate over the whole adsorption process was dominated by the toluene concentration. The desorption behavior of toluene on activated carbons was investigated,and the process was divided into heat and mass transfer parts corresponding to emission and diffusion mechanisms, respectively. Physical adsorption played the main role during the adsorption process.  相似文献   
915.
为满足三峡库区大尺度的水质预测需求,降低专业水质模型使用门槛,实现模型业务化运行,采用涵盖"模型封装-接口服务-系统集成"全过程的模型封装集成技术方法,开展了EFDC模型集成研究,并在三峡库区水质安全评估与预警系统中进行验证和应用.结果表明:①基于实例化模型建立的模型预置参数库,是模型业务化运行中参数简化的前提,可有效解决模型本地驯化及模型实例的基础数据复用问题;②依据参数识别结果,将模型参数识别为"必调参数、可调参数、默认参数"三类,并采用B/S架构对输入文件、输出文件和主控文件中的不同参数进行分类封装,达到参数简化目的;③采用半紧密型方式建立的基于Web services的EFDC模型集成接口服务及标准,可为信息系统提供通用的EFDC模型计算服务;④该方法在EFDC模型与三峡库区水质安全评估与预警系统集成中得到验证,实现了全库区干流及主要支流CODCr、总磷、总氮等污染因子的长时间序列水动力水质预测联机在线运算,满足了用户在水质影响预测预警中低修改量、高运算效率和良好用户体验等需求,实现了模型的业务化运行.   相似文献   
916.
绘出煤气化生产装置的硫元素平衡图,分析了硫化氢易中毒环节,提出防硫化氢泄漏、中毒的措施,为同行业防止硫化氢泄漏及中毒提供借鉴。  相似文献   
917.
高绝缘化工物料在包装过程中极易带电,以聚酯切片包装为研究对象,对聚酯切片在输送、包装过程物料静电起电机理进行了分析,并对聚酯切片输送包装过程中的包装袋表面电位及物料荷质比进行现场检测,探讨了聚酯切片打包过程中静电危害及预防措施。  相似文献   
918.
改性膨润土和沉水植物联合作用处理沉积物磷   总被引:1,自引:0,他引:1  
首次将改性膨润土(modified bentonite,MB)作为原位吸附材料与沉水植物苦草(Vallisneria spiralis,V.spiralis)联合处理沉积物磷.研究结果表明,MB可以促进沉水植物V.spiralis的生长, V.spiralis可能通过根系分泌作用促进溶磷或是通过促进根际微生物群落的P代谢活性增加沉积物中的生物可利用性P含量.MB与沉水植物V.spiralis对沉积物P的联合作用效果优于MB和沉水植物V.spiralis单独作用之和.厚度5cm MB和V.spiralis联合作用对沉积物TP,IP,OP,Fe/Al-P和Ca-P的去除率可达59.8%,57.1%,67.8%,66.7%和44.7%.微生物试验结果表明,厚壁菌门Erysipelotrichaceae科的菌属PSB-M-3是联合组相比单一V.spiralis组或单一MB组微生物群落P代谢功能增强的主要贡献者.本研究还首次发现了Erysipelotrichaceae科微生物可作为沉积物中潜在的除磷菌.研究结果表明MB和沉水植物联合控制沉积物磷技术可进一步应用到富营养化湖泊沉积物控制工程.  相似文献   
919.
道路雨水径流溶解性有机物与重金属结合作用分析   总被引:2,自引:0,他引:2  
为了解道路雨水径流溶解性有机物(DOM)与重金属的相互作用,采用荧光激发-发射矩阵光谱、超滤、离子选择电极法及红外光谱等技术对道路雨水径流溶解性有机物及其组分同Cu~(2+)、Pb~(2+)和Cd~(2+)的络合作用进行了研究.结果表明,道路雨水径流DOM与3种重金属离子的络合作用由强到弱依次是:Cu~(2+)Pb~(2+)Cd~(2+),4种分子量DOM组分与重金属之间均发生了络合反应,且DOM组分分子量越小,与重金属之间的络合作用越强.4个不同分子量区间的DOM组分与Cu~(2+)、Pb~(2+)和Cd~(2+)之间的络合作用由强到弱的顺序为:1 kDa组分、1~10 kDa组分、10~30kDa组分、30 kDa~0.45μm组分.  相似文献   
920.
为了降低准好氧矿化垃圾床渗滤液尾水中有机物浓度和提高体系可生化性,构建了GAC(粒状活性炭)-O_3/H_2O_2体系催化降解矿化垃圾床渗滤液尾水中有机物.同时,考察了体系O_3、GAC和H_2O_2投加量、初始pH值对GAC-O_3/H_2O_2体系处理渗滤液尾水的影响,并使用分子量分布、紫外-可见光谱和三维荧光光谱解析了难降解有机物在GAC-O_3/H_2O_2体系的转化机制.结果表明:在GAC投加量为10 g·L-1,O_3投加量为32.16 mg·min-1,H_2O_2投加量为3 m L·L-1,初始pH值为5的条件下,反应20 min后,其渗滤液尾水的COD和UV245分别从700.08 mg·L~(-1)和0.488下降到393.85 mg·L~(-1)和0.244,COD和UV254的去除率分别为43.80%和50.00%.经GAC-O_3/H_2O_2体系处理后,得益于含芳香环有机物的有效降解,渗滤液尾水中大分子有机物(大于50 k Da)明显减少,分子量小于1 k Da的有机物比例增多.与此同时,紫外区类富里酸荧光区及可见光区类富里酸荧光区峰值也大幅降低,其去除率分别为70.20%和58.69%,B/C从0.04增加到0.35,这也使得废水可生化性大幅提高.  相似文献   
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