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941.
Understanding the formation mechanisms of secondary air pollution is very important for the formulation of air pollution control countermeasures in China. Thus, a large-scale outdoor atmospheric simulation smog chamber was constructed at Chinese Research Academy of Environmental Sciences (the CRAES Chamber), which was designed for simulating the atmospheric photochemical processes under the conditions close to the real atmospheric environment. The chamber consisted of a 56-m3 fluorinated ethylene propylene (FEP) Teflon film reactor, an electrically-driven stainless steel alloy shield, an auxiliary system, and multiple detection instrumentations. By performing a series of characterization experiments, we obtained basic parameters of the CRAES chamber, such as the mixing ability, the background reactivity, and the wall loss rates of gaseous compounds (propene, NO, NO2, ozone) and aerosols (ammonium sulfate). Oxidation experiments were also performed to study the formation of ozone and secondary organic aerosol (SOA), including α-pinene ozonolysis, propene and 1,3,5-trimethylbenzene photooxidation. Temperature and seed effects on the vapor wall loss and SOA yields were obtained in this work: higher temperature and the presence of seed could reduce the vapor wall loss; SOA yield was found to depend inversely on temperature, and the presence of seed could increase SOA yield. The seed was suggested to be used in the chamber to reduce the interaction between the gas phase and chamber walls. The results above showed that the CRAES chamber was reliable and could meet the demands for investigating tropospheric chemistry.  相似文献   
942.
Over the recent past, fluoroquinolone antibiotics (FQs) have raised extensive attention due to their potential to induce the formation of resistance genes and “superbugs”, thus various advanced oxidation techniques have been developed to eliminate their release into the environment. In the present study, the prototype tetraamido macrocyclic ligand (FeIII-TAML)/hydrogen peroxide (H2O2) system is employed to degrade FQs (i.e., norfloxacin and ciprofloxacin) over a wide pH range (i.e., pH 6-10), and the reaction rate increases with the increase in pH level. The effect of dosage of FeIII-TAML and H2O2 on the degradation of FQs is evaluated, and the reaction rate is linearly correlated with the added amount of chemicals. Moreover, the impact of natural organic matters (NOM) on the removal of FQs is investigated, and the degradation kinetics show that both NOM type and experimental concentration exhibit negligible influence on the oxidative degradation of selected antibiotics. Based on the results of liquid chromatography-high resolution mass spectrometry and theoretical calculations, the reaction sites and pathways of FQs by FeIII-TAML/H2O2 system are further predicted and elucidated.  相似文献   
943.
This study aimed to explore the adsorption performance of sludge-based activated carbon (SBC) towards dissolved organic matters (DOMs) removal from sewage, and investigated the modification effect of different types of chemicals on the structure of synthesized SBC. Waste activated sludge (WAS) was used as a carbon source, and HCl, HNO3, and NaOH were used as different types of chemicals to modify the SBC. With the aid of chemical activation, the modified SBC showed higher adsorption performances on DOMs removal with maximum adsorption of 29.05 mg/g and second-order constant (k) of 0.1367 (L/mol/sec) due to the surface elution of ash and minerals by chemicals. The surface elemental composition of MSBC suggested that the content of C-C and C-O functional groups on the surface of modified sludge-based activated carbon (MSBC) played an important role on the adsorption capacities of MSBC towards DOMs removal in sewage. Additionally, the residual molecular weight of DOMs in sewage was investigated using a 3-dimension fluorescence excitation-emission matrix (3D-EEM) and high-performance size exclusion chromatography (HP-SEC). Results showed that the chemical modification significantly improved the adsorption capacity of MSBC on humic acids (HA) and aromatic proteins (APN), and both of NaOH-MSBC and HCl-MSBC were effective for a wide range of different AMW DOMs removal from sewage, while the HNO3-MSBC exhibited poorly on AMW organics of 2,617 Da and 409 Da due to the reducing content of macropore. In brief, this study provides reference values for the impact of the chemicals of the activation stage before the SBCs application.  相似文献   
944.
PM10 samples were collected from an urban/industrial site nearby Athens, where uncontrolled burning activities occur. PAHs, monocarboxylic, dicarboxylic, hydroxycarboxylic and aromatic acids, tracers from BVOC oxidation, biomass burning tracers and bisphenol A were determined. PAH, monocarboxylic acids, biomass burning tracers and bisphenol A were increased during autumn/winter, while BSOA tracers, dicarboxylic- and hydroxycarboxylic acids during summer. Regarding aromatic acids, different sources and formation mechanisms were indicated as benzoic, phthalic and trimellitic acids were peaked during summer whereas p-toluic, isophthalic and terephthalic were more abundant during autumn/winter. The Benzo[a]pyrene-equivalent carcinogenic power, carcinogenic and mutagenic activities were calculated showing significant (p < 0.05) increases during the colder months. Palmitic, succinic and malic acids were the most abundant monocarboxylic, dicarboxylic and hydrocarboxylic acids during the entire sampling period. Isoprene oxidation was the most significant contributor to BSOA as the isoprene-SOA compounds were two times more abundant than the pinene-SOA (13.4 ± 12.3 and 6.1 ± 2.9 ng/m3, respectively). Ozone has significant impact on the formation of many studied compounds showing significant correlations with: isoprene-SOA (r = 0.77), hydrocarboxylic acids (r = 0.69), pinene-SOA (r = 0.63),dicarboxylic acids (r = 0.58), and the sum of phthalic, benzoic and trimellitic acids (r = 0.44). PCA demonstrated five factors that could explain sources including plastic enriched waste burning (30.8%), oxidation of unsaturated fatty acids (23.0%), vehicle missions and cooking (9.2%), biomass burning (7.7%) and oxidation of VOCs (5.8%). The results highlight the significant contribution of plastic waste uncontrolled burning to the overall air quality degradation.  相似文献   
945.
目的 提高压气机叶片有机涂层的耐冲刷和防腐性能.方法 以氨基改性环氧树脂为粘接剂,通过加入高硬度Al2O3填料以及其他着色、防锈颜料,并充分分散,制备一种具有耐冲刷防腐功能的有机涂层.通过摆杆硬度测试、磨耗测试、冲刷测试、腐蚀测试及其他力学性能测试,对耐冲刷防腐有机涂层的综合性能进行评价,对比高硬度Al2O3填料含量对涂层性能的影响.结果 添加高硬度Al2O3填料,有效提高了涂层的硬度、耐磨耗性和冲刷性.当添加量为15%(质量分数)时,性能达到最优,硬度为0.92,冲刷失效时间为常温的475 s和高温的385 s,相比未添加氧化铝时,性能提高了300%以上.进一步添加氧化铝填料将对涂层形貌和粗糙度有较大劣化影响,硬度和耐冲刷性都相应降低,但耐磨耗性数据却在不断提高,涂层的摆杆硬度更能反映真实的耐冲刷能力.研制的耐冲刷有机涂层综合性能优异,相比渗铝等无机涂层工艺,该涂层还具有腐蚀防护的特性.结论 高硬度Al2O3填料的加入可以有效提高涂层的耐冲刷能力,但需控制添加量,以免影响涂层的粗糙度,有机耐冲刷涂层的腐蚀防护性能相比传统无机涂层具有明显优势.  相似文献   
946.
林旭  严仁嫦  金嘉佳  许凯儿 《环境科学》2022,43(4):1799-1807
2019年3月1日~2019年5月31日期间采用Syntech Spectras GC955在线气相色谱仪对杭州市大气环境中挥发性有机物(VOCs)进行了在线连续监测,分析了VOCs体积分数的组成特征、 PM2.5和O3协同控制的优控VOCs物种和VOCs特征污染物比值.结果表明,烷烃是VOCs体积分数中最重要的组分,贡献了62.40%. C2~C6的烷烃、苯系物、乙烯和乙炔是VOCs关键物种.烯烃和芳香烃是OFP的主要贡献组分,贡献率分别为41.35%和37.50%.芳香烃是SOA的主要贡献者,贡献率超过90%.低碳的烷烃、低碳烯烃和苯系物是OFP的关键贡献物种,控制好甲苯、间/对-二甲苯和邻-二甲苯这3种苯系物,是O3和PM2.5协同控制的关键.采样点大气中VOCs除了受机动车尾气的影响外,溶剂使用等工业排放的影响也较为显著.  相似文献   
947.
Volatile organic compounds (VOCs) with high toxicity and carcinogenicity are emitted from kinds of industries, which endanger human health and the environment. Adsorption is a promising method for the treatment of VOCs due to its low cost and high efficiency. In recent years, activated carbons, zeolites, and mesoporous materials are widely used to remove VOCs because of their high specific surface area and abundant porosity. However, the hydrophilic nature and low desorption rate of those materials limit their commercial application. Furthermore, the adsorption capacities of VOCs still need to be improved. Porous organic polymers (POPs) with extremely high porosity, structural diversity, and hydrophobic have been considered as one of the most promising candidates for VOCs adsorption. This review generalized the superiority of POPs for VOCs adsorption compared to other porous materials and summarized the studies of VOCs adsorption on different types of POPs. Moreover, the mechanism of competitive adsorption between water and VOCs on the POPs was discussed. Finally, a concise outlook for utilizing POPs for VOCs adsorption was discussed, noting areas in which further work is needed to develop the next-generation POPs for practical applications.  相似文献   
948.
结合2008年11月18~25日期间珠三角地区的二次有机气溶胶(SOA)外场观测数据,验证区域空气质量模式WRF/Chem(weather research and forecasting model with chemistry)中两种SOA化学机制——VBS(volatile basis set)和SORGAM(secondary organic aerosol model)对珠三角SOA的模拟效果.VBS机制考虑了更为广泛的SOA前体物和化学老化过程,SOA模拟值更接近观测值,能合理反映SOA观测值的逐天变化趋势,与观测值的平均绝对偏差和相关性分别是-4.88μg·m-3和0.91,而SORGAM机制的分别为-5.32μg·m-3和0.18.利用VBS机制模拟区域内SOA的时空分布,结果显示SOA浓度具有显著的昼夜变化特征,浓度峰值出现在中午时段.受到输送和臭氧区域分布的影响,各城市SOA浓度差异显著,下风向的城市(如中山、珠海、江门)SOA浓度较高.  相似文献   
949.
以锦州市W污水处理厂为研究对象,利用三维荧光光谱分析技术和荧光区域积分(FRI)方法考察了城市污水处理过程中溶解性有机物及荧光物质的去除状况.利用XAD树脂将DOM分为5个部分:疏水性有机酸(HPO-A)、疏水性中性有机物(HPO-N)、过渡亲水性有机酸(TPIA)、过渡亲水性中性有机物(TPI-N)和亲水性有机物(HPI).结果表明,HPO-A和HPI是该污水处理厂进水中的主要DOM组分,并且DOM中的荧光物质主要为类芳香族蛋白质荧光物质和类富里酸荧光物质.在该污水处理厂内,生物降解作用是TPI-A和HPI的主要去除机制,HPO-N和TPI-N主要是由深度处理工艺(絮凝-沉淀-过滤)去除的,生物处理工艺和深度处理工艺对HPO-A的去除能力接近,而生物处理工艺和深度处理工艺对TPI-N的去除效果均较差.生物处理工艺对HPO-A、TPI-A和HPI中的荧光物质有较强的去除能力,而对HPO-N和TPI-N中荧光物质的去除效果较差.深度处理工艺能够有效去除HPO-A和HPO-N中的荧光物质,而对TPI-A、TPI-N和HPI中的荧光物质无明显去除作用.  相似文献   
950.
依据1998—2006年18个航次13个站的调查资料,简要描述和分析了大鹏湾表层沉积物中包括碳、氮、磷的多项生物地球化学要素多年的平均空间分布和年际变化,并依据TOC/TN原子比探讨沉积物中有机质的来源.结果表明,大鹏湾的水动力条件对沉积物中各生物地球化学要素的分布变化影响不大,TOC、TN和TP含量分别为(17600±4600) mg·kg-1、(1738±446) mg·kg-1和(562±89) mg·kg-1,比珠江口和大亚湾高.9年调查期间,TOC、TC、TN和TP含量的年际变化趋势都是上升的,表明随着周边地区经济的迅速发展和人口的不断增加,产生的大量有机质通过小河流和地表径流排放入海,使大鹏湾中沉积物的环境逐渐恶化.TOC/TN原子比为12.4±2.5,介于海洋浮游生物源和陆生高等植物源之间,反映了大鹏湾表层沉积物中有机质是陆源和水生2种来源的混合输入.TOC/TN原子比呈逐年上升趋势,表明大鹏湾接受陆源有机质与水生有机质的比例逐渐增加.  相似文献   
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