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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:8,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   
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2,4-二硝基苯肼吸收液法测定空气中醛、酮类化合物   总被引:1,自引:0,他引:1  
应用高效液相色谱分析环境空气和废气中的醛、酮类污染物。样品经DNPH的酸溶液吸收后,用二氯甲烷/正己烷3∶7进行萃取,然后将萃取液吹干,用乙腈溶解后进行高效液相色谱分析。结果证明该测定方法具有准确率高,精密度好的特点。为制定适合于我国国情的空气和废气中醛、酮类化合物的测定方法提供依据。  相似文献   
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An enhanced dual coil 2,4-dinitrophenylhydrazine (DNPH) derivatization method (dual coil/DNPH) allowed the quantitative determination of formaldehyde (HCHO) in ambient air. In this method, traceable HCHO was collected using a coil sampler connected in series and lacking a long sampling tube. It was then analyzed using liquid chromatography followed by UV detection of the DNPH derivatives. The method is based on the reaction of formaldehyde with DNPH to produce 2,4-dinitrophenylhydrazone. The detection limits (3σ) were 0.10–0.40 ppbv with a precision ranging from 0.84 to 4.09% RSD. The results of dual coil/DNPH and conventional DNPH cartridge methods were generally well correlated: HCHO (dual coil/DNPH) = 0.97 (±0.13) vs. HCHO (DNPH Cartridge) + 0.33 (±0.33), r = 0.82. The dual coil/DNPH method was used to measure gaseous HCHO in the atmosphere of Metropolitan Seoul during the summer 2000 and 2001, and in Gwangju during the fall of 2001 and 2002. The daytime mean concentration of HCHO was 4.52 (±5.69) and 3.21 (±1.27) ppbv in Metropolitan Seoul for 10–12 August 2000 and 29–31 May 2001, respectively, and 1.73 (±0.98), 3.04 (±2.25), 2.70 (±1.70), and 2.01 (±2.28) ppbv in Gwangju City during 22–27 September 2001, 17–24 October 2001, 9–13 October 2002, and 28 October to 2 November 2002, respectively. The HCHO in Seoul from 10–12 August 2000 was mainly the result of photochemical processes, while direct emissions from vehicles and long-range transport of air from China contributed during 29–31 May 2001. During 22–27 September 2001, 17–24 October 2001, and 9–13 October 2002 in Gwangju, the HCHO came primarily from photochemical processes, although some air affected by biomass burning admixed in the late afternoon. The increase in the HCHO concentration on 20 October 2001 and from 28 October to 2 November 2002 was attributed mainly to direct emissions from biomass burning in farmland near the measurement site.  相似文献   
4.
建立了2,4-二硝基苯肼固相吸附/高效液相色谱同时测定车内空气中4种醛酮类物质的方法,研究了固相吸附采样和前处理方法,优化了试验条件。4种醛酮类物质在一定质量范围内工作曲线线性良好,甲醛、乙醛、丙烯醛、丙酮的检出限分别为0.075μg/m^3、0.207μg/m^3、0.715μg/m^3、0.159μg/m^3(按采样体积12L计),实际样品测定的RSD为7.5%-9.7%。  相似文献   
5.
利用2,4-二硝基苯肼(DNPH)作为衍生化试剂,高效液相色谱/紫外检测法(HPLC/UV)定量检测上海市大气PM2.5中单羰基和二羰基化合物,共检测出5种单羰基化合物和2种二羰基化合物(乙二醛和甲基乙二醛).单羰基化合物中浓度最高的是甲醛和乙醛,其年平均浓度分别为(1579.47±672.81)ng/m3和(572.02±470.58)ng/m3;二羰基化合物乙二醛和甲基乙二醛的年平均浓度分别为(63.74±54.27)ng/m3和(97.28±39.62)ng/m3.研究发现上海市大气PM2.5中一些羰基化合物具有明显的日变化和季节变化规律:日变化表现为早晚高峰,而季节性变化单羰基化合物是冬天>夏天,二羰基化合物则是夏季>冬季.此外,PM2.5中羰基化合物的浓度还与温度、湿度、质量浓度具有一定的关系.  相似文献   
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