Ecology and Environment ›› 2022, Vol. 31 ›› Issue (3): 504-511.DOI: 10.16258/j.cnki.1674-5906.2022.03.009
• Research Articles • Previous Articles Next Articles
LI Yinghui1(), GUO Qianjin3, YAN Yulong2,*(
), HU Dongmei2, DENG Mengjie2, PENG Lin2
Received:
2020-01-21
Online:
2022-03-18
Published:
2022-05-25
Contact:
YAN Yulong
李颖慧1(), 郭前进3, 闫雨龙2,*(
), 胡冬梅2, 邓萌杰2, 彭林2
通讯作者:
闫雨龙
作者简介:
李颖慧(1986 年生),女,博士,研究方向为大气环境化学。E-mail: liyinghui2008@hotmail.com;
基金资助:
CLC Number:
LI Yinghui, GUO Qianjin, YAN Yulong, HU Dongmei, DENG Mengjie, PENG Lin. Variation Characteristics and Source Apportionment of Ambient BTEX in Jincheng City[J]. Ecology and Environment, 2022, 31(3): 504-511.
李颖慧, 郭前进, 闫雨龙, 胡冬梅, 邓萌杰, 彭林. 晋城市环境空气中BTEX变化特征及来源[J]. 生态环境学报, 2022, 31(3): 504-511.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.jeesci.com/EN/10.16258/j.cnki.1674-5906.2022.03.009
Figure 2 Concentration of BTEX in ambient air during sampling period of summer and winter in Jincheng city Black bullets indicate average value. The long horizontal line in each box indicates the median of the ratio, whereas the upper quartile (75%) and lower quartile (25%) are represented by upper and lower ends of the boxes
城市 City | 苯 Benzene | 甲苯Toluene | 乙苯 Ethylbenzene | 间,对-二甲苯m, p-Xylene | 邻-二甲苯o-Xylene | ∑BTEX | 文献 Literature |
---|---|---|---|---|---|---|---|
哈尔滨 Haerbin | 2.93 | 2.78 | 0.75 | 1.23 | 0.48 | 8.17 | 张振江等, |
天津 Tianjin | 3.96 | 2.21 | 1.27 | 1.58 | 0.62 | 9.64 | 姚青等, |
长春 Changchun | 4.59 | 3.65 | 1.5 | 2.02 | 0.75 | 12.51 | 张振江等, |
济南 Ji'nan | 2.42 | 4.33 | 1.28 | 4.61 | 12.64 | Liu et al., | |
北京 Beijing | 8.9 | 12.4 | 4 | 3.5 | 2.7 | 31.7 | 孙杰等, |
南京 Nanjing | 11.81 | 12.06 | 9.73 | 5.14 | 38.72 | 张玉欣等, | |
晋城 Jincheng | 6.92 | 5.42 | 1.24 | 2.50 | 0.98 | 17.07 | 本研究 |
Table 1 Comparison of the average concentration of BTEX in ambient air between Jincheng city and other cities μg∙m-3
城市 City | 苯 Benzene | 甲苯Toluene | 乙苯 Ethylbenzene | 间,对-二甲苯m, p-Xylene | 邻-二甲苯o-Xylene | ∑BTEX | 文献 Literature |
---|---|---|---|---|---|---|---|
哈尔滨 Haerbin | 2.93 | 2.78 | 0.75 | 1.23 | 0.48 | 8.17 | 张振江等, |
天津 Tianjin | 3.96 | 2.21 | 1.27 | 1.58 | 0.62 | 9.64 | 姚青等, |
长春 Changchun | 4.59 | 3.65 | 1.5 | 2.02 | 0.75 | 12.51 | 张振江等, |
济南 Ji'nan | 2.42 | 4.33 | 1.28 | 4.61 | 12.64 | Liu et al., | |
北京 Beijing | 8.9 | 12.4 | 4 | 3.5 | 2.7 | 31.7 | 孙杰等, |
南京 Nanjing | 11.81 | 12.06 | 9.73 | 5.14 | 38.72 | 张玉欣等, | |
晋城 Jincheng | 6.92 | 5.42 | 1.24 | 2.50 | 0.98 | 17.07 | 本研究 |
化合物 Compounds | 太原 Taiyuan | 长治 Changzhi | 本研究 Jincheng | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
夏季 Summer | 冬季 Winter | 均值 Average | 夏季 Summer | 冬季 Winter | 均值 Average | 夏季 Summer | 冬季 Winter | 均值 Average | |||
苯 Benzene | 4.22 | 11.30 | 7.76 | 2.21 | 3.94 | 3.08 | 3.66 | 10.19 | 6.92 | ||
甲苯 Toluene | 2.07 | 6.32 | 4.20 | 1.51 | 1.48 | 1.49 | 3.87 | 6.97 | 5.42 | ||
乙苯 Ethylbenzene | 1.53 | 4.9 | 3.22 | 0.61 | 0.49 | 0.55 | 0.88 | 1.6 | 1.24 | ||
间,对-二甲苯 m, p-Xylene | 2.34 | 11.03 | 6.69 | 1.15 | 1.09 | 1.13 | 1.61 | 3.39 | 2.50 | ||
邻-二甲苯 o-Xylene | 0.57 | 4.08 | 2.33 | 0.33 | 0.37 | 0.35 | 0.50 | 1.45 | 0.98 | ||
∑BTEX | 10.72 | 37.63 | 24.17 | 5.81 | 7.37 | 6.59 | 10.52 | 23.60 | 17.07 |
Table 2 Comparison of BTEX concentration in the cities of Taiyuan, Changzhi and Jincheng in Shanxi Province μg·m-3
化合物 Compounds | 太原 Taiyuan | 长治 Changzhi | 本研究 Jincheng | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
夏季 Summer | 冬季 Winter | 均值 Average | 夏季 Summer | 冬季 Winter | 均值 Average | 夏季 Summer | 冬季 Winter | 均值 Average | |||
苯 Benzene | 4.22 | 11.30 | 7.76 | 2.21 | 3.94 | 3.08 | 3.66 | 10.19 | 6.92 | ||
甲苯 Toluene | 2.07 | 6.32 | 4.20 | 1.51 | 1.48 | 1.49 | 3.87 | 6.97 | 5.42 | ||
乙苯 Ethylbenzene | 1.53 | 4.9 | 3.22 | 0.61 | 0.49 | 0.55 | 0.88 | 1.6 | 1.24 | ||
间,对-二甲苯 m, p-Xylene | 2.34 | 11.03 | 6.69 | 1.15 | 1.09 | 1.13 | 1.61 | 3.39 | 2.50 | ||
邻-二甲苯 o-Xylene | 0.57 | 4.08 | 2.33 | 0.33 | 0.37 | 0.35 | 0.50 | 1.45 | 0.98 | ||
∑BTEX | 10.72 | 37.63 | 24.17 | 5.81 | 7.37 | 6.59 | 10.52 | 23.60 | 17.07 |
季节 Season | 化合物 Compounds | 苯 Benzene | 甲苯 Toluene | 乙苯 Ethylbenzene | 间,对-二甲苯 m, p-Xylene | 邻-二甲苯 o-Xylene |
---|---|---|---|---|---|---|
夏季 Summer | 苯 | 1 | ||||
甲苯 | 0.39 | 1 | ||||
乙苯 | 0.47 | 0.75 | 1 | |||
间,对-二甲苯 | 0.46 | 0.66 | 0.90 | 1 | ||
邻-二甲苯 | 0.47 | 0.61 | 0.81 | 0.93 | 1 | |
冬季 Winter | 苯 | 1 | ||||
甲苯 | 0.74 | 1 | ||||
乙苯 | 0.75 | 0.93 | 1 | |||
间,对-二甲苯 | 0.75 | 0.89 | 0.82 | 1 | ||
邻-二甲苯 | 0.81 | 0.90 | 0.93 | 0.94 | 1 |
Table 3 Correlation analysis of BTEX compounds in ambient air of Jincheng city during sampling period
季节 Season | 化合物 Compounds | 苯 Benzene | 甲苯 Toluene | 乙苯 Ethylbenzene | 间,对-二甲苯 m, p-Xylene | 邻-二甲苯 o-Xylene |
---|---|---|---|---|---|---|
夏季 Summer | 苯 | 1 | ||||
甲苯 | 0.39 | 1 | ||||
乙苯 | 0.47 | 0.75 | 1 | |||
间,对-二甲苯 | 0.46 | 0.66 | 0.90 | 1 | ||
邻-二甲苯 | 0.47 | 0.61 | 0.81 | 0.93 | 1 | |
冬季 Winter | 苯 | 1 | ||||
甲苯 | 0.74 | 1 | ||||
乙苯 | 0.75 | 0.93 | 1 | |||
间,对-二甲苯 | 0.75 | 0.89 | 0.82 | 1 | ||
邻-二甲苯 | 0.81 | 0.90 | 0.93 | 0.94 | 1 |
化合物 Compounds | 生成 系数 F/% | 反应 分数 Fr/% | 最大增量 反应活性 系数 M | 质量浓度 ρ/(μg∙m-3) | 二次有机气溶胶生成潜势 ρ(SOAp)/(μg∙m-3) | 臭氧生成潜势 ρ(OFP)/(μg∙m-3) | |||||
---|---|---|---|---|---|---|---|---|---|---|---|
夏季 Summer | 冬季 Winter | 夏季 Summer | 冬季 Winter | 夏季 Summer | 冬季 Winter | ||||||
苯 Benzene | 2.0 | 10 | 0.7 | 3.66 | 10.19 | 0.08 | 0.22 | 2.56 | 7.14 | ||
甲苯 Toluene | 5.4 | 12 | 4.0 | 3.87 | 6.97 | 0.24 | 0.43 | 15.48 | 27.89 | ||
乙苯 Ethylbenzene | 5.4 | 15 | 3.0 | 0.88 | 1.60 | 0.05 | 0.10 | 2.63 | 4.81 | ||
间,对-二甲苯 m, p-Xylene | 5.0 | 26 | 9.8 | 1.61 | 3.39 | 0.34 | 0.24 | 47.51 | 33.26 | ||
邻-二甲苯 o-Xylene | 4.7 | 34 | 7.6 | 0.50 | 1.45 | 0.20 | 0.10 | 3.82 | 11.04 | ||
∑BTEX | 10.52 | 23.6 | 0.92 | 1.09 | 71.99 | 84.14 |
Table 4 The potential formation of BTEX to SOA and O3 in Jincheng
化合物 Compounds | 生成 系数 F/% | 反应 分数 Fr/% | 最大增量 反应活性 系数 M | 质量浓度 ρ/(μg∙m-3) | 二次有机气溶胶生成潜势 ρ(SOAp)/(μg∙m-3) | 臭氧生成潜势 ρ(OFP)/(μg∙m-3) | |||||
---|---|---|---|---|---|---|---|---|---|---|---|
夏季 Summer | 冬季 Winter | 夏季 Summer | 冬季 Winter | 夏季 Summer | 冬季 Winter | ||||||
苯 Benzene | 2.0 | 10 | 0.7 | 3.66 | 10.19 | 0.08 | 0.22 | 2.56 | 7.14 | ||
甲苯 Toluene | 5.4 | 12 | 4.0 | 3.87 | 6.97 | 0.24 | 0.43 | 15.48 | 27.89 | ||
乙苯 Ethylbenzene | 5.4 | 15 | 3.0 | 0.88 | 1.60 | 0.05 | 0.10 | 2.63 | 4.81 | ||
间,对-二甲苯 m, p-Xylene | 5.0 | 26 | 9.8 | 1.61 | 3.39 | 0.34 | 0.24 | 47.51 | 33.26 | ||
邻-二甲苯 o-Xylene | 4.7 | 34 | 7.6 | 0.50 | 1.45 | 0.20 | 0.10 | 3.82 | 11.04 | ||
∑BTEX | 10.52 | 23.6 | 0.92 | 1.09 | 71.99 | 84.14 |
[1] |
BARLETTA B, MEINARDI S, SIMPSON I J, et al., 2008. Ambient mixing ratios of nonmethane hydrocarbons (NMHCs) in two major urban centers of the Pearl River Delta (PRD) region: Guangzhou and Dongguan[J]. Atmospheric Environment, 42(18): 4393-4408.
DOI URL |
[2] | CARTER W P L, 1994. Development of ozone reactivity scales for volatile organic compounds[J]. Air & Waste, 44(7): 881-899. |
[3] |
LI Y H, YAN Y L, HU D M, et al., 2020. Source apportionment of atmospheric volatile aromatic compounds (BTEX) by stable carbon isotope analysis: A case study during heating period in Taiyuan, northern China[J]. Atmospheric Environment, DOI: 10.1016/j.atmosenv.2020.117369.
DOI |
[4] |
LIU Y, SHAO M, ZHANG J, et al., 2005. Distributions and source apportionment of ambient volatile organic compounds in Beijing city, China[J]. Journal of Environmental Science and Health, Part A, 40(10): 1843-1860.
DOI URL |
[5] |
LIU Z C, LI N, WANG N, 2016. Characterization and source identification of ambient VOCs in Jinan, China[J]. Air Quality, Atmosphere and Health, 9(3): 285-291.
DOI URL |
[6] |
LYU X P, CHEN N, GUO H, et al., 2016. Ambient volatile organic compounds and their effect on ozone production in Wuhan, central China[J]. Science of the Total Environment, 541: 200-209.
DOI URL |
[7] |
YAN Y L, PENG L, LI R M, et al., 2017. Concentration, ozone formation potential and source analysis of volatile organic compounds (VOCs) in a thermal power station centralized area: A study in Shuozhou, China[J]. Environmental Pollution, 223: 295-304.
DOI URL |
[8] | 程曦, 张利慧, 李红, 等, 2019. 首届 “一带一路” 会议期间北京市典型城区空气中VOCs的污染特征及健康风险评价[J]. 环境科学学报, 39(9): 2839-2851. |
CHENG X, ZHANG L H, LI H, et al., 2019. Atmospheric VOCs in a typical urban area of Beijing: Pollution characterization and health risk during the period of the first forum on Belt and Road Initiatives[J]. Acta Scientiae Circumstantiae, 39(9): 2839-2851. | |
[9] | 戈云飞, 2018. 晋城市环境空气中挥发性有机物的污染特征及来源分析[D]. 北京: 华北电力大学: 13-14. |
GE Y F, 2018. Pollution characteristics and sources analysis of volatile organic compounds in Jincheng[D]. Beijing: North China Electric Power University: 13-14. | |
[10] | 李如梅, 武媛媛, 彭林, 等, 2017. 朔州市夏季环境空气中VOCs的污染特征及来源解析[J]. 环境化学, 36(5): 984-993. |
LI R M, WU Y Y, PENG L, et al., 2017. Characteristics and sources apportionment of ambient volatile organic compounds (VOCs) in summer in Shuozhou[J]. Environmental Chemistry, 36(5): 984-993. | |
[11] | 李如梅, 闫雨龙, 王成, 等, 2021. 太原市城区夏季VOCs来源及其对O3生成的贡献[J]. 中国环境科学, 41(6): 2515-2525. |
LI R M, YAN Y L, WANG C, et al., 2021. Source apportionment of VOCs and its contribution to O3 production during summertime in urban area of Taiyuan[J]. China Environmental Science, 41(6): 2515-2525. | |
[12] | 李颖慧, 闫雨龙, 胡冬梅, 等, 2020. 基于稳定氢同位素的太原市大气单环芳烃来源[J]. 中国环境科学, 40(1): 109-114. |
LI Y H, YAN Y L, HU D M, et al., 2020. Stable hydrogen isotope analyses and source apportionments of mono-aromatic compounds in Taiyuan, China[J]. China Environmental Science, 40(1): 109-114. | |
[13] | 林旭, 朱彬, 安俊琳, 等, 2015. 南京北郊VOCs对臭氧和二次有机气溶胶潜在贡献的研究[J]. 中国环境科学, 35(4): 976-986. |
LIN X, ZHU B, AN J L, et al., 2015. Potential contribution of secondary organic aerosols and ozone of VOCs in the Northern Suburb of Nanjing[J]. China Environmental Science, 35(4): 976-986. | |
[14] | 南淑清, 张霖琳, 张丹, 等, 2014. 郑州市环境空气中VOCs的污染特征及健康风险评价[J]. 生态环境学报, 23(9): 1438-1444. |
NAN S Q, ZHANG L L, ZHANG D, et al., 2014. Pollution condition and health risk assessment of VOCs in ambient air in Zhengzhou[J]. Ecology and Environmental Sciences, 23(9): 1438-1444. | |
[15] | 孙杰, 王跃思, 吴方堃, 2011. 北京市BTEX的污染现状及变化规律分析[J]. 环境科学, 32(12): 3531-3536. |
SUN J, WANG Y S, WU F K, 2011. Analysis on status pollution and variation of BTEX in Beijing[J]. Environmental Science, 32(12): 3531-3536. | |
[16] | 闫雨龙, 2017. 环境空气中典型异构烷烃类组成及其来源研究[D]. 太原: 太原理工大学: 28. |
YAN Y L, 2017. The composition and source analysis of typical isoalkane in ambient atmosphere[D]. Taiyuan: Taiyuan university of technology: 28. | |
[17] | 杨帆, 2019. 长治市环境空气中挥发性有机物特征及来源研究[D]. 北京: 华北电力大学: 15. |
YANG F, 2019. Characteristics and sources apportionment of ambient volatile organic compounds in Changzhi[D]. Beijing: North China Electric Power University: 15. | |
[18] | 杨帆, 闫雨龙, 戈云飞, 等, 2018. 晋城市冬季环境空气中挥发性有机物的污染特征及来源解析[J]. 环境科学, 39(9): 4042-4050. |
YANG F, YAN Y L, GE Y F, et al., 2018. Characteristics and Source apportionment of ambient volatile organic compounds in winter in Jincheng[J]. Environmental Science, 39(9): 4042-4050.
DOI URL |
|
[19] | 姚青, 蔡子颖, 马志强, 等, 2017. 天津大气中BTEX的变化特征与健康风险评估[J]. 中国环境科学, 37(9): 3276-3284. |
YAO Q, CAI Z Y, MA Z Q, et al., 2017. Variation characteristics and health risk assessment of BTEX in Tianjin[J]. China Environmental Science, 37(9): 3276-3284. | |
[20] | 张超, 林伟立, 韩婷婷, 等, 2022. 北京城区大气苯系物变化特征及其环境意义[J]. 环境化学, 41(2): 460-469. |
ZHANG C, LIN W L, HAN T T, et al., 2022. Exploring the variations in ambient BTEX at urban Beijing and its environmental implications[J]. Environmental Chemistry, 41(2): 460-469. | |
[21] | 张玉欣, 安俊琳, 王健宇, 等, 2017. 南京北郊大气BTEX变化特征和健康风险评估[J]. 环境科学, 38(2): 453-460. |
ZHANG Y X, AN J L, WANG J Y, et al., 2017. Variation characteristics and health risk assessment of BTEX in the atmosphere of northern suburb of Nanjing[J]. Environmental Science, 38(2): 453-460. | |
[22] | 张振江, 韩斌, 史建武, 等, 2013. 东北地区大气BTEX的时空分布特征[J]. 中国环境监测, 29(1): 1-7. |
ZHANG Z J, HAN B, SHI J W, et al., 2013. Spatial and temporal distribution character of BTEX in the ambient air of northeast China[J]. Environmental Monitoring in China, 29(1): 1-7. | |
[23] | 朱少峰, 黄晓锋, 何凌燕, 等, 2012. 深圳大气VOCs浓度的变化特征与化学反应活性[J]. 中国环境科学, 32(12): 2140-2148. |
ZHU S F, HUANG X F, HE L Y, et al., 2012. Variation characteristics and chemical reactivity of ambient VOCs in Shenzhen[J]. China Environmental Science, 32(12): 2140-2148. |
[1] | YAN Xuejun, HAO Saimei, ZHANG Rongrong, QIN Hua, GAO Sulian, WANG Feng, JIN Xianzhong, SUN Youmin, ZHANG Guiqin. Composition Spectrum and Emission Estimation of VOCs from Furniture Malls [J]. Ecology and Environment, 2023, 32(6): 1070-1077. |
[2] | XU Xiaoyun, RAO Zhihan, JIANG Hongbin, ZHANG Wei, CHEN Chao, YANG Yongan, HU Yanli, WEI Haichuan. Pollution Characteristics and Formation Potential for O3 and SOA of Ambient VOCs in Suining Industrial Zone in Summer [J]. Ecology and Environment, 2023, 32(5): 956-968. |
[3] | WEN Lirong, JIANG Ming, HUANG Bo, YUAN Luan, ZHOU Yan, LU Weimei, ZHANG Ying, LIU Ming, ZHANG Liyun. Analysis of Ozone Pollution Causes and Source Analysis of VOCs in Typical Areas of Pearl River Delta: A Case Study of Zhongshan City [J]. Ecology and Environment, 2023, 32(3): 500-513. |
[4] | CHEN Xuequan, KONG Bin, LAN Qing, YU Zhiquan, XIE Yinsi, HUANG Junyi. Emission Characteristics and Ozone Formation Potential Assessment of Volatile Organic Compounds (VOCs) from Adhesive Manufacturing Industry [J]. Ecology and Environment, 2022, 31(4): 750-758. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
Copyright © 2021 Editorial Office of ACTA PETROLEI SINICA
Address:No. 6 Liupukang Street, Xicheng District, Beijing, P.R.China, 510650
Tel: 86-010-62067128, 86-010-62067137, 86-010-62067139
Fax: 86-10-62067130
Email: syxb@cnpc.com.cn
Support byBeijing Magtech Co.ltd, E-mail:support@magtech.com.cn