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61.
Characterization of organic matter in total suspended particles by
thermodesorption and pyrolysis-gas chromatography-mass spectrometry 总被引:1,自引:0,他引:1
ZHAO Jinping PENG Ping’an SONG Jianzhong MA Shexi SHENG Guoying FU Jiamo 《环境科学学报(英文版)》2009,21(12):1658-1666
The organic matter in tropospheric aerosol plays an important role in atmospheric physical and chemical processes. The bulk of
organic matter, representing a significant proportion of the total suspended particulate (TSP) mass, is bound to polymeric material
whose structure and properties are largely unknown. Here we used thermodesorption gas chromatography/mass spectrometry (Td-
GC/MS) to study organic compounds of low molecular mass and pyrolysis gas chromatography/mass spectrometry (Py-GC/MS) to
characterize the chemical structure of macromolecules in TSP samples collected in di erent seasons from di erent sites in Guangzhou.
n-Alkanes, fatty acids and nitriles were the predominant compounds in the thermodesorption products, whereas aromatics, fatty acids,
nitriles and n-alkanes/alkenes were the major compounds in the pyrolysates. The results indicated that aromatics were main units in
macromolecules. The fatty acids and nitriles formed from carboxylic ammonium salts were detected in both thermodesorption products
and pyrolysates at a certain concentration, indicating the importance of these compounds in TSP formation. The TSP source mainly
determined the occurrence of compounds in samples from urban, suburban and forest sites, whereas the TSP source and formation
process maybe controlled the seasonal variation in compounds detected. High levels of nitriles in summer samples from suburban and
forest sites coincide with the release of ammonium from the land and of fatty acids from vegetation at these sites. 相似文献
62.
为有效控制流域水质污染,保证饮用水水源的水质安全,通过采集和测定流域内土壤、植物以及河流断面水体悬浮颗粒有机质(POM)在枯水期和丰水期的碳、氮稳定同位素值和C/N比值,对石头口门水库汇水流域水体POM的来源进行研究.结果表明,水体中POM主要来源于土壤有机质,其贡献为69.2%,藻类等大型水生生物和浮游植物的贡献分别为23.1%和7.7%.流域水体中POM的来源存在时空差异.丰水期,浮游植物和藻类等大型水生植物的贡献均为15.4%,而枯水期后者的贡献提高到了30.8%.水体POM主要来源于双阳河和饮马河下游的土壤有机质,说明该区域土壤侵蚀较重,易发生非点源污染;岔路河和饮马河上游支流小黄河,水体POM以浮游植物的贡献占主导,其贡献分别为86.3%和94.8%,这些区域侵蚀较弱,非点源污染发生的风险小;大中型水库区域的POM主要由藻类等大型水生植物贡献,表明悬浮颗粒物在进入水库后可能发生了明显沉积. 相似文献
63.
2007年春节期间北京大气细粒子中正构烷烃的污染特征 总被引:6,自引:4,他引:2
利用大流量颗粒物采样器分昼夜采集了2007年春节前后大气气溶胶中PM2.5样品,并采用气相色谱-质谱技术对PM2.5样品中的正构烷烃进行了检测和分析.结果表明,春节期间大气细粒子平均浓度全部超过WHO阈值,且夜间平均浓度要高于白天.细粒子中检测出C10~C33的正构烷烃,总浓度为201.7~2 715.6 ng·m-3,夜间正构烷烃的平均总浓度(943.5 ng·m-3)要高于白天(581.1 ng·m-3),除夕前的平均总浓度(1025.5 ng·m-3)要高于除夕后(536.6 ng·m-3).主峰碳为23、 24和25,CPI值为0.9~1.4,平均为1.15,表明春节期间北京大气细粒子中的正构烷烃主要由化石燃料的不完全燃烧产生,%WaxCn的结果表明生物源对气溶胶中正构烷烃的贡献率为8.5%~47%. 相似文献
64.
TianTian Xiong Annabelle Austruy Antoine Pierart Muhammad Shahi Eva Schreck Stéphane Mombo Camille Dumat 《环境科学学报(英文版)》2016,28(8):16-27
At the global scale, foliar metal transfer occurs for consumed vegetables cultivated in numerous urban or industrial areas with a polluted atmosphere. However, the kinetics of metal uptake, translocation and involved phytotoxicity was never jointly studied with vegetables exposed to micronic and sub-micronic particles (PM). Different leafy vegetables (lettuces and cabbages) cultivated in RHIZOtest® devices were, therefore, exposed in a greenhouse for 5, 10 and 15 days to various PbO PM doses. The kinetics of transfer and phytotoxicity was assessed in relation to lead concentration and exposure duration. A significant Pb accumulation in leaves (up to 7392 mg/kg dry weight (DW) in lettuce) with translocation to roots was observed. Lead foliar exposure resulted in significant phytotoxicity, lipid composition change, a decrease of plant shoot growth (up to 68.2% in lettuce) and net photosynthesis (up to 58% in lettuce). The phytotoxicity results indicated plant adaptation to Pb and a higher sensitivity of lettuce in comparison with cabbage. Air quality needs, therefore, to be considered for the health and quality of vegetables grown in polluted areas, such as certain megacities (in China, Pakistan, Europe, etc.) and furthermore, to assess the health risks associated with their consumption. 相似文献
65.
为了解西安市气象条件对霾污染天气的影响,利用西安市13个测点PM2.5逐时监测资料和气温(T)、风向(WD)、风速(WS)、相对湿度(RH)、气压(p)以及能见度(VIS)等地面气象观测数据,对西安市2013年12月16—26日发生的一次严重霾污染过程进行分析。结果表明:此次霾污染过程中,西安市PM2.5日均值浓度最高达744μg/m3,超过国家二级标准近10倍,能见度最低降至0.42 km,重霾污染期间PM2.5/PM10在64%~80%。分析认为高相对湿度、低风速和主导风向不明显以及大气层结稳定是造成本次霾污染天气的主要气象因素,其中大气能见度与风速和大气压呈正相关,其相关系数(r)分别为0.3162、0.3479,能见度与温度的相关系数r=0.0825,呈微弱正相关,能见度和相对湿度的相关系数r=-0.7465,呈显著负相关。细颗粒物对能见度的影响非常明显,二者之间的相关系数为-0.7290,细颗粒污的消光系数最高达9.2 km-1。 相似文献
66.
67.
采用过氧化氢在常温常压下对模拟含硫废水进行受控氧化,探讨了受控氧化过程对单质硫收率的影响,并对氧化过程中固相产物的形态特性进行了研究.结果表明,在过氧化氢投加量为9 m L·L-1、初始p H为6、反应时间为10min条件下,将反应体系氧化还原电位(ORP)控制在(30±5)m V时能较好实现含硫废水的受控氧化,此时单质硫收率达76.35%,当体系ORP由(-50±5)m V升高至(50±5)m V时,副产物S2O2-3收率显著下降,由26.54%下降至5.32%.X射线衍射分析表明,氧化过程中的固相产物主要为正交晶系斜方硫;扫描电子显微镜分析表明,液相中的单质硫由多个极小的颗粒聚集而成,其粒径由纳米级逐渐增大至微米级.同时,通过向反应体系中加入分散剂证明了单质硫颗粒增大的主要原因是颗粒间发生了团聚. 相似文献
68.
69.
矿物超细颗粒在自然环境中普遍存在,具有独特的环境行为和效应,对元素地球化学循环、污染物迁移转化和生态环境演变等有重要影响.矿物超细颗粒的环境行为和效应与其形成过程和结构特征密切相关.综述了物理、化学和生物过程驱动的矿物超细颗粒的形成机制,介绍了用于表征矿物超细颗粒结构特征的显微镜、光谱、质谱和同步辐射技术,分析了矿物超细颗粒在环境中的迁移转化及其与污染物的吸附、氧化还原和催化转化作用,总结了矿物超细颗粒的食物链积累、生物和生态毒性等环境效应,并对颗粒结晶路径、风险管控和微纳界面调控等重要研究方向进行了展望.超细颗粒是连接微观物质与宏观矿物晶体之间的桥梁,全面认识复杂基质中矿物颗粒的环境属性及其与污染物的微观作用机制,有助于指导矿物超细颗粒在环境污染修复中的应用,从而优化功能材料的设计,促进绿色低碳纳米技术的发展. 相似文献
70.
Jun Hu Fengkui Duan Kebin He Yongliang Ma Shuping Dong Xiande Liu 《Frontiers of Environmental Science & Engineering》2016,10(5):12
Direct individual analysis using Scanning Electron Microscopy combined with online observation was conducted to examine the S-rich particles in PM2.5 of two typical polluted haze episodes in summer and winter from 2014 to 2015 in Beijing. Four major types of S-rich particles, including secondary CaSO4 particles (mainly observed in summer), S-rich mineral particles (SRM), S-rich water droplets (SRW) and (C, O, S)-rich particles (COS) were identified.We found the different typical morphologies and element distributions of S-rich particles and considered that (C, O, S)-rich particles had two major mixing states in different seasons. On the basis of the S-rich particles’ relative abundances, S concentrations and their relationships with PM2.5 as well as the seasonal comparison, we revealed that the S-participated formation degrees of SRM and SRW would enhance with increasing PM2.5 concentration. Moreover, C-rich matter and sulfate had seasonally different but significant impacts on the formation of COS.
相似文献