中国能源金三角某超级煤化工环境非甲烷烃及其对臭氧形成潜力的贡献

Jinxiang Wang, Jianmin Ma, Panliang Liu
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引用次数: 1

摘要

对中国能源金三角宁东能源化工基地(NECIB)的神华煤化工园区(SH)和宝丰煤化工园区(BF)的环境非甲烷烃(NMHCs)进行了调查。2016年12月22日至31日上午9点至9点30分(UTC+8)在上海和高炉使用预抽真空的2升电抛光不锈钢罐收集环境空气样本。采用气相色谱-质量选择检测器/火焰电离检测器对57种NMHCs进行分析。平均NMHCs混合比在SH为49.05±44.37 ppbv,在BF为39.31±18.77 ppbv。总体而言,烷烃所占比例最大(约60%),其次是烯烃、乙炔和芳烃。通过计算NMHCs的丙烯当量(Prop-Equiv)浓度和臭氧生成势(OFP)来评价其化学反应活性。烯烃对NMHCs的反应活性起主导作用,其中丙烯和乙烯的贡献最大。OFP值表明,烯烃和乙炔是测量到的总NMHCs的最大贡献者(60%)。乙烯、丙烯、间/对二甲苯、正丁烷、1-丁烯、丙烷和乙炔是该地区地面臭氧形成的主要前体物质,分别占BF和SH NMHCs形成臭氧总量的66%和62%。本研究确定工业活动是NMHCs的主要来源,苯与甲苯的高比率(B/T = 2.23)证实了这一点。因此,鉴于这些有机污染物的高毒性,应进一步对其进行监测。
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Ambient non-methane hydrocarbons and their contribution to ozone formation potential in a super coal chemical industry in China’s Energy Golden Triangle
Ambient non-methane hydrocarbons (NMHCs) were investigated at Shenhua coal chemical industrial park (SH), and Baofeng coal chemical industrial park (BF) in Ningdong Energy and Chemical Industrial Base (NECIB) in China’s Energy Golden Triangle (EGT). Ambient air samples were collected using pre-evacuated 2-L electro-polished stainless steel canisters at SH and BF from 9:00 a.m. to 9:30 a.m. (UTC+8) from 22 to 31 December 2016. Fifty-seven NMHCs were analyzed using gas chromatography-mass selective detector/flame ionization detector. The average NMHCs mixing ratios were 49.05 ± 44.37 ppbv in SH, and 39.31 ± 18.77 ppbv in BF. Overall, alkanes took up the largest proportion (>60%), followed by alkenes, acetylene, and aromatics. The propylene-equivalent (Prop-Equiv) concentration and the ozone formation potential (OFP) of NMHCs were calculated to estimate their chemical reactivities. Alkenes played a predominant role in NMHCs reactivity, among which propylene and ethylene were the largest contributors. OFP values show that alkenes and acetylene were the largest contributors (60%) to measured total NMHCs. Ethylene, propylene, m/p-xylene, n-butane, 1-butene, propane and acetylene were the major precursors in ground-level ozone formation in this region, which accounted for 66% and 62% of the total ozone formed by NMHCs at BF and SH, respectively. This study identified that industrial activities were the primary sources of NMHCs, confirmed by the high ratios of benzene to toluene (B/T = 2.23). Therefore, these organic pollutants should be monitored further based on their high toxicities.
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