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石油炼化无组织VOCs的排放特征及臭氧生成潜力分析 被引量:44
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作者 李勤勤 张志娟 +4 位作者 李杨 龚道程 高洁 张春林 王伯光 《中国环境科学》 EI CAS CSCD 北大核心 2016年第5期1323-1331,共9页
选取我国光化学活跃的珠江三角洲地区(PRD)典型石油炼化工艺的炼油装置、化工装置和污水处理装置,采用离线和在线的多种先进仪器监测其VOCs的无组织排放特征,并采用间、对-二甲苯/苯(X/B)、甲苯/苯(T/B)、乙苯/苯(E/B)比值分析其VOCs的... 选取我国光化学活跃的珠江三角洲地区(PRD)典型石油炼化工艺的炼油装置、化工装置和污水处理装置,采用离线和在线的多种先进仪器监测其VOCs的无组织排放特征,并采用间、对-二甲苯/苯(X/B)、甲苯/苯(T/B)、乙苯/苯(E/B)比值分析其VOCs的老化特征,采用最大增量反应活性法(MIR)、等效丙烯浓度法和OH自由基反应速率法(LOH)_3种方法综合评价其VOCs的化学反应活性及臭氧生成潜势(OFP).研究发现,炼油装置区和化工装置区总挥发性有机物(TVOC)浓度早晚高,中午低;污水处理区呈双峰趋势.3个装置区无组织排放的VOCs中烷烃浓度均占比最高,同一装置区内的不同装置VOCs排放特征不同.石化企业X/B、T/B和E/B值较城区和郊区的高,化工装置区的压缩碱洗装置区(CAW)T/B值最大.石化企业VOCs的活性较城区和郊区的强,其平均OH消耗速率常数为15.22×10^(-12)cm^3/(mol?s),最大增量反应活性为4.21mol(O_3)/mol(VOC).化工装置区对石化企业OFP总量的贡献最高,为84.83%;其次是污水处理区,12.95%;炼油装置区最低,为2.22%.化工装置区的CAW对石化企业OFP贡献率最高,为34.26%;污水处理区的浮选池(FT)贡献率最低,为0.36%. 展开更多
关键词 石油炼化 挥发性有机物(vocs) 无组织排放特征 化学反应活性 臭氧生成潜势(OFP)
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Characteristics of ozone and ozone precursors(VOCs and NOx) around a petroleum refinery in Beijing, China 被引量:38
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作者 Wei Wei Shuiyuan Cheng +2 位作者 Guohao Li Gang Wang Haiyang Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第2期332-342,共11页
A field measurement campaign for ozone and ozone precursors (VOCs and NOx) was conducted in summer 2011 around a petroleum refinery in the Beijing rural region. Three observation sites were arranged, one at southwes... A field measurement campaign for ozone and ozone precursors (VOCs and NOx) was conducted in summer 2011 around a petroleum refinery in the Beijing rural region. Three observation sites were arranged, one at southwest of the refinery as the background, and two at northeast of the refinery as the downwind receptors. Monitoring data revealed the presence of serious surface 03 pollution with the characteristics of high average daily mean and maximum concentrations (64.0 and 145.4 ppbV in no-rain days, respectively) and multi-peak diurnal variation. For NOx, the average hourly concentrations of NO2 and NO were in the range of 20.546.1 and 1.8-6.4 ppbV, respectively. For VOC measurement, a total of 51 compounds were detected. Normally, TVOCs at the background site was only dozens of ppbC, while TVOCs at the downwind sites reached several hundreds of ppbC. By subtracting the VOC concentrations at background, chemical profiles of VOC emission from the refinery were obtained, mainly including alkanes (60.0% ± 4.3%), alkenes (21.1% ± 5.5%) and aromatics (18.9% ±3.9%). Moreover, some differences in chemical profiles for the same measurement hours were observed between the downwind sites; the volume ratios of alkanes with low reactivity and those of alkenes with high reactivity respectively showed an increasing trend and a decreasing trend. Finally, based on temporal and spatial variations of VOC mixing ratios, their photochemical degradations and dispersion degradations were estimated to be 0.15-0.27 and 0.42-0.62, respectively, by the photochemical age calculation method, indicating stronger photochemical reactions around the refinery. 展开更多
关键词 ozone volatile organic compounds (vocs photochemical degradations petroleum refinery
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