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21.
Methylglyoxal(CH_3COCHO,MG),which is one of the most abundant α-dicarbonyl compounds in the atmosphere,has been reported as a major source of secondary organic aerosol(SOA).In this work,the reaction of MG with hydroxyl radicals was studied in a 500 L smog chamber at(293±3) K,atmospheric pressure,(18±2)% relative humidity,and under different NOx and SO_2.Particle size distribution was measured by using a scanning mobility particle sizer(SMPS) and the results showed that the addition of SO_2 can promote SOA formation,while different NOx concentrations have different influences on SOA production.High NOx suppressed the SOA formation,whereas the particle mass concentration,particle number concentration and particle geometric mean diameter increased with the increasing NOx concentration at low NOx concentration in the presence of SO_2.In addition,the products of the OH-initiated oxidation of MG and the functional groups of the particle phase in the MG/OH/SO_2 and MG/OH/NOx/SO_2 reaction systems were detected by gas chromatography mass spectrometry(GC-MS) and attenuated total reflection fourier transformed infrared spectroscopy(ATR-FTIR) analysis.Two products,glyoxylic acid and oxalic acid,were detected by GC-MS.The mechanism of the reaction of MG and OH radicals that follows two main pathways,H atom abstraction and hydration,is proposed.Evidence is provided for the formation of organic nitrates and organic sulfate in particle phase from IR spectra.Incorporation of NOx and SO_2 influence suggested that SOA formation from anthropogenic hydrocarbons may be more efficient in polluted environment.  相似文献   
22.
In the present work we compared the biological activity of DCF, 4′-OHDCF and 5-OHDCF as molecules of most biodegradation pathways of DCF and selected transformation products (2-hydroxyphenylacetic acid; 2,5-dihydroxyphenylacetic acid and 2,6-dichloroaniline) which are produced during AOPs, such as ozonation and UV/H2O2. We also examined the interaction of DCF with chlorogenic acid (CGA). CGA is commonly used in human diet and entering the environment along with waste mainly from the processing and brewing of coffee and it can be toxic for microorganisms included in activated sludge. In the present experiment the evaluation of following parameters was performed: E. coli K-12 cells viability, growth inhibition of E. coli K-12 culture, LC50 and mortality of Chironomus aprilinus, genotoxicity, sodA promoter induction and ROS generation. In addition the reactivity of E. coli SM recA:luxCDABE biosensor strain in wastewater matrices was measured. The results showed the influence of DCF, 4′-OHDCF and 5-OHDCF on E. coli K-12 cells viability and bacteria growth, comparable to AOPs by-products. The highest toxicity was observed for selected, tested AOPs by-products, in comparison to the DCF, 4′-OHDCF and 5-OHDCF. Genotoxicity assay indicated that 2,6-dichloroaniline (AOPs by-product) had the highest toxic effect. The oxidative stress assays revealed that the highest level of ROS generation and sodA promoter induction were obtained for DCF, 4′-OHDCF and 5-OHDCF, compared to other tested compounds. We have also found that there is an interaction between chlorogenic acid and DCF, which resulted in increased toxicity of the mixture of the both compounds to E. coli K-12, comparable to parent chemicals. The strongest response of E. coli SM biosensor strain with recA:luxCDABE genetic construct in filtered treated wastewaters, comparable to control sample was noticed. It indicates, that E. coli SM recA:luxCDABE biosensor strains is a good tool for bacteria monitoring in wastewater environment. Due to toxicity and biological activity of tested DCF transformation products, there is a need to use additional wastewater treatment systems for wastewater contaminated with pharmaceutical residues.  相似文献   
23.
Ozone (O3), as a harmful air pollutant, has been of wide concern. Safe, efficient, and economical O3 removal methods urgently need to be developed. Catalytic decomposition is the most promising method for O3 removal, especially at room temperature or even subzero temperatures. Great efforts have been made to develop high-efficiency catalysts for O3 decomposition that can operate at low temperatures, high space velocity and high humidity. First, this review describes the general reaction mechanism of O3 decomposition on noble metal and transition metal oxide catalysts. Then, progress on the O3 decomposition performance of various catalysts in the past 30 years is summarized in detail. The main focus is the O3 decomposition performance of manganese oxides, which are divided into supported manganese oxides and non-supported manganese oxides. Methods to improve the activity, stability, and humidity resistance of manganese oxide catalysts for O3 decomposition are also summarized. The deactivation mechanisms of manganese oxides under dry and humid conditions are discussed. The O3 decomposition performance of monolithic catalysts is also summarized from the perspective of industrial applications. Finally, the future development directions and prospects of O3 catalytic decomposition technology are put forward.  相似文献   
24.
In this work, a series of Cu-ZSM-5 catalysts with different SiO2/Al2O3 ratios (25, 50, 100 and 200) were synthesized and investigated in n-butylamine catalytic degradation. The n-butylamine can be completely catalytic degradation at 350°C over all Cu-ZSM-5 catalysts. Moreover, Cu-ZSM-5 (25) exhibited the highest selectivity to N2, exceeding 90% at 350°C. These samples were investigated in detail by several characterizations to illuminate the dependence of the catalytic performance on redox properties, Cu species, and acidity. The characterization results proved that the redox properties and chemisorption oxygen primarily affect n-butylamine conversion. N2 selectivity was impacted by the Brønsted acidity and the isolated Cu2+ species. Meanwhile, the surface acid sites over Cu-ZSM-5 catalysts could influence the formation of Cu species. Furthermore, in situ diffuse reflectance infrared Fourier transform spectra was adopted to explore the reaction mechanism. The Cu-ZSM-5 catalysts are the most prospective catalysts for nitrogen-containing volatile organic compounds removal, and the results in this study could provide new insights into catalysts design for VOC catalytic oxidation.  相似文献   
25.
朱媛媛  高愈霄  汪巍  鲁宁  许荣  刘冰  李健军 《环境科学》2020,41(10):4402-4412
为评估京津冀及周边区域重污染过程期间应急减排措施的效果,基于情景模拟的方法,采用NAQPMS模式和多种观测资料,分析了2019年10~12月期间京津冀及周边区域环境空气质量、重污染过程和气象条件概况,评估了模式24、72和144 h的PM2.5预报效果,并对应急减排措施的效果和不确定性进行了讨论.结果表明,2019年10~12月京津冀及周边"2+26"城市PM2.5平均浓度64 μg ·m-3,同比降低了10 μg ·m-3;区域性重污染过程4次,受影响城市重污染过程期间PM2.5平均浓度156 μg ·m-3."2+26"城市PM2.5气象条件评估指数(EMI)变化值范围为-15.6%~16.8%,EMI显示北京、天津和石家庄等12个城市气象条件与同期相比变差,变差程度范围为3.2%~16.8%.减排情景模拟分析显示应急减排措施有效减少了区域性重污染过程的发生,污染物峰值浓度降幅明显,未出现区域性严重污染过程.典型重污染期间,北京、石家庄、保定和唐山等城市PM2.5日均浓度削减2%~9%.区域应急减排措施促使"2+26"城市PM2.5季度均值分别降低1~3 μg ·m-3左右,区域性减排效果明显.  相似文献   
26.
德州市夏季臭氧敏感性特征及减排方案   总被引:9,自引:9,他引:0  
严茹莎 《环境科学》2020,41(9):3961-3968
近年来德州市臭氧污染频发,2018年夏季(6~8月),德州市发生了严重臭氧污染事件,臭氧日最大8 h浓度值超标天数达60 d,超标率65%,3个月平均值为176 μg ·m-3,最高达262 μg ·m-3.本研究利用WRF-CAMx耦合的HDDM模块,分析期间德州臭氧敏感性特征及减排方案.结果表明,在空间上,德州市中心城区为VOCs控制区,而郊区为NOx与VOCs协同控制区.在时间上,VOCs敏感值每日为正值,但dO3_V50在6月(城区18.7 μg ·m-3,郊区19.7 μg ·m-3)和8月(城区15.3 μg ·m-3,郊区16.4 μg ·m-3)高于7月(城区13.0 μg ·m-3,郊区11.8 μg ·m-3),NOx敏感值城区呈正负交错,郊区大部分为正值,并与VOCs敏感值接近.对于城区减排方案应考虑以仅VOCs削减为优先,而郊区由于NOx和VOCs对臭氧减排效果相当,建议以NOx:VOCs=1:1为优.  相似文献   
27.
张宣娇  孙羽  刘明  郝书敏  杨涛  张磊  白金  韩蛟 《中国环境科学》2020,40(10):4330-4334
采用水热法、沉淀法和溶胶凝胶法制备了3种不同形貌的CeO2催化材料,并将其用于湿式空气氧化苯酚水溶液过程中,探讨了CeO2形貌结构对催化湿式氧化苯酚水溶液性能的影响.采用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线衍射(XRD)、程序升温还原(TPR)等手段对CeO2催化材料进行了表征.结果表明,水热法制备的CeO2催化材料表现出较好催化性能,主要原因是水热法合成的CeO2呈现交错的纳米棒状结构,主要暴露(220)晶面,且沿着(220)晶向生长.在反应温度为200℃、空气压力为2MPa、苯酚初始浓度500mg/L的条件下,最终(240min)COD的去除率为95.5%.  相似文献   
28.
以VPO为活性组分,N掺杂TiO 2为载体,采用浸渍法制备了VPO/TiN催化剂,基于单因素实验研究了其对NO的选择性催化氧化(SCO)性能以及抗硫抗水性能。研究表明:当P/V为1/5、N/Ti为1、活性组分负载量为10%、焙烧温度为350℃时,催化剂的SCO活性最好,NO氧化率达到61%;光致发光光谱(PL)表征显示N掺杂TiO 2在催化剂表面形成的氧空位可增强催化剂对O 2的吸附;VPO/TiN催化剂抗硫抗水性能较强,反应后的催化剂表面未发现硫酸根的特征峰,水蒸气主要通过与NO竞争吸附占据活性位点来抑制催化剂的SCO活性。  相似文献   
29.
目的研究高温受热条件下纳米复合隔热材料的结构转变特征及热稳定性。方法采用扫描电镜、X射线衍射仪、红外光谱仪及热重仪等检测方法。结果纤维增强气凝胶材料从室温到650℃存在连续的质量损失,从室温到放热前,质量损失为1.66%;365℃开始出现放热,温度升至398℃时达到峰值,整个放热过程对应质量损失约为1.3%;从435℃放热结束开始到650℃的质量损失为1.46%。经过400℃热处理后,试样比表面积从268m~2/g增加到437m~2/g;当试样热处理温度达到600℃时,试样的比表面积明显随之降低至198m~2/g。结论 SiO_2气凝胶复合材料以无定形结构为主,存在少量的二氧化钛晶体。在400℃左右,SiO_2气凝胶结构中硅甲基Si—CH_3发生氧化,产生明显的放热峰,之后硅羟基Si—OH之间发生缩聚反应,使600℃热处理后气凝胶中Si—O—Si网络骨架强度有所提高。未处理的纤维增强气凝胶材料试样上气凝胶纳米颗粒构成的块体较为良好地包裹在玻璃纤维表面,而经过600℃的高温热处理1 h后,块体气凝胶脱离了光滑的纤维表面,气凝胶纳米粒子发生收缩,致使材料比表面积下降。  相似文献   
30.
研究对比了邻苯二甲酸二丁酯(DBP)在不同降解过程(水解、UV/H2O2光解、直接光解、过硫酸钾光氧化)中的碳、氢同位素组成变化、分馏特征及二维同位素(Δδ2H-Δδ13C)的相关性.水解反应中DBP分子产生了显著的碳同位素分馏,未发现氢同位素分馏,而且碳同位素富集因子εC为(-2.7±0.4)‰,表明DBP水解时发生C-O键断裂,氢原子不参与反应.而UV/H2O2光解和直接光解反应(pH值分别为2、7和10)中,DBP分子呈现了相似的二维同位素相关性Λ值[(9±2)~(11±2)],推测经历了相同的反应过程.过硫酸钾光氧化降解时,明显偏大的Λ值(31±3)说明反应可能发生C-H键断裂.结果表明:二维单体同位素分析(2D-CSIA)技术可以有效区分DBP的水解、光解、光氧化3种不同类型的降解过程,有助于分析其降解路径.  相似文献   
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