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61.
北京市典型餐饮企业油烟中醛酮类化合物污染特征   总被引:16,自引:8,他引:8  
程婧晨  崔彤  何万清  聂磊  王军玲  潘涛 《环境科学》2015,36(8):2743-2749
醛酮类化合物作为餐饮油烟的组成物质之一,是挥发性有机物(volatile organic compounds,VOCs)中化学反应活性较强的一类物质.但目前国内还没有针对餐饮源醛酮类化合物的排放特征进行较为系统的研究.为进一步明确餐饮源醛酮类化合物排放水平和控制现状,获取城市群餐饮源VOCs排放控制决策依据,本研究选取北京市8家不同类型的餐饮企业,采用涂布2,4-二硝基苯肼(DNPH)的硅胶采样管进行油烟样品采集,用超高效液相色谱(UPLC)对油烟样品中的醛酮类化合物进行测定.结果表明按基准风量折算后,8家餐饮企业排放的油烟中醛酮类化合物浓度高低依次是:烤鸭中式烧烤家常菜西式快餐学校食堂中式快餐川菜淮扬菜.餐饮企业油烟中醛酮类化合物(C1~C9)浓度水平范围为115.47~1 035.99μg·m-3.不同类型餐饮企业油烟中醛酮类化合物组分构成存在较为明显的差异,中式餐饮企业醛酮类化合物C1~C3物质所占比例均在40%以上.快餐类餐饮企业醛酮类化合物C4~C9所占比例明显高于其他类型餐饮企业.从醛酮类化合物控制现状来看,北京市目前主流高压静电式油烟净化器对醛酮类化合物的去除效果十分有限.  相似文献   
62.
通过批量吸附实验考查了7种芳香族化合物在XAD-4上的吸附热力学行为.结果表明,在实验条件下,Freundlich方程能很好地拟合这7种化合物在XAD-4上的等温吸附数据,且都为优惠吸附,吸附能力均随着温度的升高而降低.结合7种化合物的分子结构描述符和Freundlich方程的吸附平衡常数,建立了QSPR模型,较高的可决系数R2(0.991)、去一法交互检验可决系数R2CV(0.985)和外部预测集交互检验系数Q2ext(0.994)表明,该模型具有较高的稳定性能和预测能力.模型结果表明,水杨酸等7种芳香族化合物在XAD-4上的Freundlich吸附平衡常数与溶质疏水性能呈正比关系,与温度、溶质分子极性和溶质分子的氢键酸度常数呈反比关系.  相似文献   
63.
Carbonyl compounds are important intermediates in atmospheric photochemistry, but their primary sources are still not understood well. In this work, carbonyls, hydrocarbons, and alkyl nitrates were continuously measured during November 2011 at a rural site in the Yangtze River Delta region of China. Mixing ratios of carbonyls and hydrocarbons showed large fluctuations during the entire measurement. The average level for total measured volatile organic compounds during the pollution episode from 25th to 27th November, 2011 was 91.6 ppb, about 7 times the value for the clean period of 7th-8th, November, 2011. To preliminarily identify toluene sources at this site, the emission ratio of toluene to benzene (T/B) during the pollution episode was determined based on photochemical ages derived from the relationship of alkyl nitrates to their parent alkanes. The calculated T/B was 5.8 ppb/ppb, significantly higher than the values of 0.2-1.7 ppb/ppb for vehicular exhaust and other combustion sources, indicating the dominant influence of industrial emissions on ambient toluene. The contributions of industrial sources to ambient carbonyls were then calculated using a multiple linear regression fit model that used toluene and alkyl nitrates as respective tracers for industrial emission and secondary production. During the pollution episode, 18.5%, 69.0%, and 52.9% of measured formaldehyde, acetaldehyde, and acetone were considered to be attributable to industrial emissions. The emission ratios relative to toluene for formaldehyde, acetaldehyde, and acetone were determined to be 0.10, 0.20 and 0.40 ppb/ppb, respectively. More research on industrial carbonyl emission characteristics is needed to understand carbonyl sources better.  相似文献   
64.
65.
High-surface-area mesoprous powders of γ-Al2O3 doped with Cu2 +, Cr3 +, and V3 + ions were prepared via a modified sol–gel method and were investigated as catalysts for the oxidation of chlorinated organic compounds. The composites retained high surface areas and pore volumes comparable with those of undoped γ-Al2O3 and the presence of the transition metal ions enhanced their surface acidic properties. The catalytic activity of the prepared catalysts in the oxidation of 1,2-dichloroethane (DCE) was studied in the temperature range of 250–400°C. The catalytic activity and product selectivity were strongly dependent on the presence and the type of dopant ion. While Cu2 +- and Cr3 +-containing catalysts showed 100% conversion at 300°C and 350°C, V3 +-containing catalyst showed considerably lower conversion. Furthermore, while the major products of the reactions over γ-alumina were vinyl chloride (C2H3Cl) and hydrogen chloride (HCl) at all temperatures, Cu- and Cr-doped catalysts showed significantly stronger capability for deep oxidation to CO2.  相似文献   
66.
Apportioning aldehydes: Quantifying industrial sources of carbonyls   总被引:1,自引:0,他引:1  
<正>In their recent Journal of Environmental Sciences publication,Wang and colleagues provide field evidence that industrial activities can contribute substantially to atmospheric carbonyl concentrations(Wang et al.,2015).These results may helpto explain underestimations of carbonyl emissions in currently available emission inventories,and highlight the need for an improved understanding of industrial sources of this class of compounds.In the atmosphere,carbonyl compounds photolyze to yield  相似文献   
67.
Cu–Mn, Cu–Mn–Ce, and Cu–Ce mixed-oxide catalysts were prepared by a citric acid sol–gel method and then characterized by XRD, BET, H2-TPR and XPS analyses. Their catalytic properties were investigated in the toluene combustion reaction. Results showed that the Cu–Mn–Ce ternary mixed-oxide catalyst with 1:2:4 mole ratios had the highest catalytic activity, and 99% toluene conversion was achieved at temperatures below 220°C. In the Cu–Mn–Ce catalyst, a portion of Cu and Mn species entered into the CeO2 fluorite lattice, which led to the formation of a ceria-based solid solution. Excess Cu and Mn oxides existed on the surface of the ceria-based solid solution. The coexistence of Cu–Mn mixed oxides and the ceria-based solid solution resulted in a better synergetic interaction than the Cu–Mn and Cu–Ce catalysts, which promoted catalyst reducibility, increased oxygen mobility, and enhanced the formation of abundant active oxygen species.  相似文献   
68.
采用甲醛检测仪、有机气体检测仪等测试分析了桂林市宾馆、商场、候车室、家具城、文化娱乐场等公共场所的甲醛和TVOC浓度。结果显示:候车室和文化娱乐场所的甲醛、TVOC合格率均为100%;宾馆、商场、家具城的TVOC合格率分别为98.7%、98.9%、95.0%,甲醛合格率分别为78.8%、91.1%、85.0%;皮革制品、家具板材等为主要的甲醛和TVOC污染源。  相似文献   
69.
采集太原市不同区住户的自来水和12种瓶装水,分析了水中无机离子和挥发性有机物( VOCs)成分.结果表明,无机离子和VOCs的总浓度范围分别为1.08~354.18 mg/L和0.43~13.98 μg/L;自来水中的无机离子与VOCs 含量最高,约是瓶装水中浓度的三倍.加热与过滤处理措施均可改善自来水水质,对水中无机离子和VOCs的去除效果均可达19%~100%,其中过滤可能会引发VOCs的二次污染 .根据饮用水标准,使用饮用水水质指数( DWQI)模型对水质评价结果显示,太原市饮用水水质总体较好.  相似文献   
70.
以壳聚糖/蒙脱土插层复合物为载体,吸附法制备固定化多酚氧化酶,并以此催化氧化去除水中的苯酚、4-氯苯酚和2,4-二氯苯酚.考察了固定化多酚氧化酶的制备条件,对酚类化合物的催化氧化条件、动力学特性以及固定化酶的重复使用性能.结果表明,固定化多酚氧化酶的最佳制备条件为p H 5.0,酶与载体质量比20 mg·g-1,固定化6 h,所得固定化酶的载酶量为12.12 mg·g-1,每克单位载体酶活为12.76×103U·g-1.固定化多酚氧化酶对酚类化合物的最佳去除条件为:苯酚溶液p H 7.0,温度30℃;4-氯苯酚溶液p H 5.0,温度20℃;2,4-二氯苯酚溶液p H 5.0,温度30℃.在最佳反应条件下,酶与底物质量比为20 mg·mg-1时,固定化多酚氧化酶对苯酚、4-氯苯酚和2,4-二氯苯酚溶液去除率分别为63.6%、85.8%和87.8%.苯酚、4-氯苯酚和2,4-二氯苯酚的米氏常数Km值依次减小,最大反应速率Vmax依次增大,表明固定化酶对2,4-二氯苯酚的亲和力最强,催化速度最快.固定化酶循环使用6次(24 h)后对苯酚、4-氯苯酚和2,4-二氯苯酚的去除率分别为15.7%、24.2%和27.8%.  相似文献   
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