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891.
In this study, we performed a highly time-resolved chemical characterization of nonrefractory submicron particles(NR-PM_1) in Beijing by using an Aerodyne high-resolution time-of-flight aerosol mass spectrometer(HR-ToF-AMS). The results showed the average NR-PM_1 mass concentration to be 56.4 ± 58.0 μg/m~3, with a peak at 307.4 μg/m~3. Due to the high frequency of biomass burning in autumn, submicron particles significantly increased in organic content, which accounted for 51% of NR-PM_1 on average. Secondary inorganic aerosols(sulfate + nitrate + ammonium) accounted for 46% of NR-PM_1, of which sulfate,nitrate, and ammonium contributed 15%, 20%, and 11%, respectively. To determine the intrinsic relationships between the organic and inorganic species, we used the positive matrix factorization(PMF) model to merge the high-resolution mass spectra of the organic species and NO+and NO_2~+ions. The PMF analysis separated the mixed organic and nitrate(NO+and NO_2~+) spectra into four organic factors, including hydrocarbon-like organic aerosol(HOA), oxygenated organic aerosol(OOA), cooking organic aerosol(COA), and biomass burning organic aerosol(BBOA), as well as one nitrate inorganic aerosol(NIA) factor. COA(33%) and OOA(30%) contributed the most to the total organic aerosol(OA) mass, followed by BBOA(20%) and HOA(17%). We successfully quantified the mass concentrations of the organic and inorganic nitrates by the NO+and NO2+ions signal in the organic and NIA factors. The organic nitrate mass varied from 0.01-6.8 μg/m~3, with an average of 1.0 ±1.1 μg/m~3, and organic nitrate components accounted for 10% of the total nitrate mass in this observation.  相似文献   
892.
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   
893.
Yangtze River Delta(YRD) area is one of the important economic zones in China. However,this area faces increasing environmental problems. In this study, we use ground-based multi-axis differential optical absorption spectroscopy(MAX-DOAS) network in Eastern China to retrieve variations of NO_2, SO_2, and formaldehyde(HCHO) in the YRD area. Three cities of YRD(Hefei, Nanjing, and Shanghai) were selected for long-term observations. This paper presents technical performance and characteristics of instruments, their distribution in YRD, and results of vertical column densities(VCDs) and profiles of NO_2, SO_2, and HCHO.Average diurnal variations of tropospheric NO_2 and SO_2 in different seasons over the three stations yielded minimum values at noon or in the early afternoon, whereas tropospheric HCHO reached the maximum during midday hours. Slight reduction of the pollutants in weekends occurred in all the three sites. In general trace gas concentrations gradually reduced from Shanghai to Hefei. Tropospheric VCDs of NO_2, SO_2, and HCHO were compared with those from Ozone Monitoring Instrument(OMI) satellite observations, resulting in R~2 of 0.606, 0.5432, and 0.5566, respectively. According to analysis of regional transports of pollutants, pollution process happened in YRD under the north wind with the pollution dissipating in the southeast wind. The feature is significant in exploring transport of tropospheric trace gas pollution in YRD, and provides basis for satellite and model validation.  相似文献   
894.
Zero-valent iron (ZVI) was loaded on expanded graphite (EG) to produce a composite material (EG-ZVI) for efficient removal of hexavalent chromium (Cr(VI)). EG and EG-ZVI were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), Fourier-transform infrared (FTIR) spectroscopy and Brunauer–Emmett–Teller (BET) analysis. EG-ZVI had a high specific surface area and contained sub-micron sized particles of zero-valent iron. Batch experiments were employed to evaluate the Cr(VI) removal performance. The results showed that the Cr(VI) removal rate was 98.80% for EG-ZVI, which was higher than that for both EG (10.00%) and ZVI (29.80%). Furthermore, the removal rate of Cr(VI) by EG-ZVI showed little dependence on solution pH within a pH range of 1–9. Even at pH 11, a Cr(VI) removal rate of 62.44% was obtained after reaction for 1 hr. EG-ZVI could enhance the removal of Cr(VI) via chemical reduction and physical adsorption, respectively. X-ray photoelectron spectroscopy (XPS) was used to analyze the mechanisms of Cr(VI) removal, which indicated that the ZVI loaded on the surface was oxidized, and the removed Cr(VI) was immobilized via the formation of Cr(III) hydroxide and Cr(III)–Fe(III) hydroxide/oxyhydroxide on the surface of EG-ZVI.  相似文献   
895.
介绍了中国石化齐鲁分公司胜利炼油厂第四硫黄回收装置开停工过程的安全环保优化技术:(1)使用酸性气替代克劳斯尾气对尾气加氢催化剂直接预硫化,预硫化后的尾气进硫黄尾气系统再处理;(2)采用酸性气完全燃烧后的气体替代传统瓦斯进行吹硫,吹硫烟气进入硫黄尾气系统再处理;(3)实现硫黄装置反应炉、反应器升温和尾气加氢催化剂预硫化操作同步进行,缩短硫回收装置开工周期,大幅度降低硫黄装置排放烟气中的SO_2浓度,降低装置开停工能耗。  相似文献   
896.
流行病学研究表明,空气细颗粒污染物(PM_(2.5))的暴露与过敏性疾病有一定的联系;然而,PM_(2.5)暴露与过敏性疾病之间的关系尚未完全阐明,特别是室内环境中PM_(2.5)涉及到过敏或非过敏的作用不详.为了比较研究过敏与非过敏儿童室内PM_(2.5)的细胞毒性,在武汉市洪山区10户家庭室内进行了为期3个月的采样,分别收集过敏与非过敏儿童的室内PM_(2.5).采用有机/元素碳测定仪对二者PM_(2.5)成分中的含碳组分进行了分析,并通过检测昆明小鼠巨噬细胞的形态及吞噬功能影响、细胞活力、乳酸脱氢酶(LDH)漏出率等指标,来检测PM_(2.5)暴露所致的细胞毒性.结果表明,高剂量(200μg·mL~(-1))PM_(2.5)暴露对小鼠巨噬细胞的形态及吞噬功能会产生不利的影响;与非过敏儿童的室内PM_(2.5)暴露组相比,过敏儿童的室内PM_(2.5)暴露组诱导巨噬细胞产生的毒性作用更明显.细胞体外测试结果提示:在相同PM_(2.5)暴露剂量下,引起儿童过敏症的室内PM_(2.5)成分具有重要影响.  相似文献   
897.
为研究增塑剂邻苯二甲酸二异癸酯(DIDP)对小鼠学习和记忆能力的影响,以白藜芦醇(Res)作为保护剂,将42只雄性昆明小鼠随机分为6组,每组7只,分别为:生理盐水组、1.5,15,150mg/(kg·d) DIDP组、20mg/(kg·d) Res组、150mg/(kg·d) DIDP+20mg/(kg·d) Res组.连续灌胃染毒9d,期间同时进行Morris水迷宫实验.第10d将小鼠处死,取出脑组织,检测活性氧簇(ROS)、谷胱甘肽(GSH)、丙二醛(MDA)、8-羟基脱氧鸟苷(8-OHdG)、肿瘤坏死因子(TNF-α)、白细胞介素1β(IL-1β)的含量.并对小鼠海马体切片进行H&E染色,观察病理变化.结果显示,15,150mg/(kg·d) DIDP染毒可导致小鼠的学习和记忆能力显著低于对照组,同时可诱发脑组织产生氧化应激,并促进炎症因子释放,而Res能有效减弱脑组织氧化应激水平.由上可得,DIDP致小鼠学习和记忆能力下降可能与其引起的脑组织中海马体的氧化损伤有关,同时Res可能通过降低DIDP引起的氧化应激进而减轻其对小鼠造成的学习记忆损伤.  相似文献   
898.
为有效保护环境和提高钻井液的重复利用率,苏里格气田在开发过程中形成了一套成熟的钻井液不落地处理技术。通过对现场应用效果的分析,此技术减少了修建泥浆池的工作量,实现了钻井过程中废弃钻井液的不落地处理,减少了对环境造成的影响,同时还提高了钻井液的循环利用率,节约了大量水资源,实现了环保清洁型生产的目标。  相似文献   
899.
泄压点火不同端管道内甲烷爆炸特性数值模拟   总被引:1,自引:0,他引:1  
结合气体爆炸传播机理,利用FLACS软件对泄压点火不同端两种方式(泄压口通径为25 mm和泄压口完全开放)下甲烷的爆炸过程进行数值模拟,获得了5种体积分数甲烷的爆炸特性参数,分析得出:两种不同泄压方式下,10%,9.5%,11%体积分数的甲烷爆炸特性变化趋势接近,7%,8%的甲烷较前三者有所延迟;5种甲烷在管道中心处的最大爆炸压力、最大爆炸压力上升速率、最大爆炸压力下降速率、温度峰值都随甲烷体积分数的增大而逐渐上升,在10%时达到最大,继续增加甲烷体积分数则出现下降趋势,最大爆炸压力时间变化趋势与其相反;管道中心处的爆炸产物浓度随着甲烷体积分数的增大而增大,与泄压方式无关;增大管道泄压口面积有利于爆炸压力以及爆炸高温高压气体的释放,使得各体积分数甲烷的最大爆炸压力、最大爆炸压力上升速率、最大爆炸压力下降速率、温度峰值均下降,到达最大爆炸压力的时间均增大。  相似文献   
900.
利用组合载体对太湖梅梁湾水源地水体中藻类及藻毒素的同时去除试验表明:检测水源地水体中藻量、Chl-a、TMC的含量各为(31.67~78.27)×106个.L-1、32.58~102.67μg·L-1、1.79~11.97μg·L-1.在水力停留时间为7d、组合载体的密度为13.1%的条件下,组合载体AP对藻量的平均去除率达到了59.78%,对Chl-a的平均去除率达到了80.82%,对TMC-LR、TMC-RR、EMC-LR、EMC-RR的降解率最高能达到99.73%、97.10%、100%、75.44%.对其去除机制的研究表明,组合载体AP对总细菌的富集能力达到了8.3×1011~35.6×1011cells.g-1,比湖水本底值中细菌的总数高出了8~9个数量级.对除藻及藻毒素过程中的优势菌种,经过培养、分离,考察其形态、生理生化特性,利用聚合酶链反应(PCR)、16S rRNA序列分析技术,经鉴定确认该优势菌株为假单胞菌属(Pseudomonas sp.)和芽孢杆菌(Bacillussp.).组合载体AP上富集的大量微生物,它们的协同降解作用是去除藻及藻毒素的主要作用机制.  相似文献   
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