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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Estimate of anthropogenic halocarbon emission based on measured ratio relative to CO in the Pearl River Delta region, China
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Estimate of anthropogenic halocarbon emission based on measured ratio relative to CO in the Pearl River Delta region, China

机译:中国珠江三角洲地区有限公司基于测量比率的人为卤代碳排放估计

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Using a GC/FID/MS system, we analyzed the mixing ratio of 16 halocarbon species in more than 100 air samples collected in 2004 from the Pearl River Delta (PRD) region of southern China. The results revealed that there are elevated mixing ratios for most of halocarbons, especially for HClC = CCl2 (trichloroethylene, TCE), CH2Cl2 (dichloromethane, DCM), CH3 Br (bromomethane), HCFC-22, CHCl3 (trichloromethane), CCl4 (tetrachloromethane), Cl2C = CCl2 (perchloroethylene, PCE), CH3CCl3 (methyl chloroform, MCF), and CFC-12. Comparisons were done with the data from TRACE-P and ALE/GAGE/AGAGE experiments, we found that the large variability in mixing ratios (relative standard deviation ranged from 9.31 % to 96.55 %) of the halocarbons suggested substantial local emissions from the PRD region in 2004. Correlations between the mixing ratio of each species and carbon monoxide (CO) was examined, and then the emission of each halocarbon was quantified based on scaling the optimized CO emission inventory with the slope of the regression line fitted to each species relative to CO. The calculated results revealed that mass of CH2Cl2 (7.0 Gg), CH3CCl3 (6.7 Gg), and Cl2C = CCl2 (2.3 Gg) accounted for about 62.9 % of total halocarbon emissions, it suggested a significant contribution from solvent use in the PRD region. Emissions of HCFC-22 (3.5 Gg), an alternative refrigerant to chlorofluorocarbons (CFCs), were about 2.3 times greater than those of CFC-12 (1.6 Gg). CFC-12 and HCFC-22 accounted for 21.5 % of total emissions of halocarbons, so that the refrigerant would be the second largest source of halocarbons. However, the ratio approach found only minor emissions of CFCs, such as CFC-11, and the emission of CFC-114 and CFC-113 were close to zero. Emissions of other anthropogenic halocarbons, such as CCl4, CHCl3, CH3Br, and CH3Cl, were also estimated. Where possible, the emissions estimated from the measured ratios were compared with results from source inventory techniques, we found that both approaches gave emissions at similar magnitude for most of the halocarbons, except CFC-11. The comparison suggested that the ratio method may be a useful tool for assessing regional halocarbon emissions, and emission uncertainty could be further reduced by incorporating both longer-term and higher-frequency observations, as well as improving the accuracy of the CO inventory.
机译:使用GC / FID / MS系统,我们分析了来自南方珠江三角洲(PRD)地区2004年收集的100多个空气样本中16个卤素种类的混合比。结果表明,对于大多数卤烃,特别是对于HCLC = CCl2(三氯乙烯,TCE),CH3 Br(溴甲烷),HCFC-22,CHCl 3(三氯甲烷),CCl4(四氯甲烷),Cl2C = CCl 2(全氯乙烯,PCE),CH 3 Cl 3(甲基氯仿,MCF)和CFC-12。使用来自痕量P和ALE / Gage /静态实验的数据进行比较,我们发现混合比(相对标准偏差为9.31%至96.55%)的较大可变性,卤化物建议了PRD区域的大量局部排放在2004年,检查了每种物种和一氧化碳(CO)的混合比之间的相关性,然后基于将优化的CO排放清单进行缩放,随着每个物种的回归线的斜率缩放优化的CO排放清单,量化了每种卤代碳的发射。 CO。计算结果显示,CH 2 Cl 2(7.0gg),CCl3(6.7g)和Cl2C = CCl2(2.3 Gg)的质量占卤代碳排放总量的约62.9%,提出了溶剂在普遍用途的显着贡献地区。 HCFC-22(3.5Gg)的排放,替代制冷剂到氯氟烃(CFC),比CFC-12(1.6 Gg)的约2.3倍。 CFC-12和HCFC-22占卤碳总排放量的21.5%,因此制冷剂将是卤素的第二大来源。然而,该比率方法仅发现CFC的次要发射,例如CFC-11,CFC-114和CFC-113的发射接近零。还估计了其他人为卤素的排放,例如CCL4,CHCL3,CH3BR和CH3Cl。在可能的情况下,将从测量比率估计的排放量与来自源库存技术的结果进行了比较,我们发现两种方法在除CFC-11之外的大多数卤素中都会产生类似幅度的排放。比较表明,比率方法可以是用于评估区域卤代烃排放的有用工具,并且通过掺入长期和更高频率的观察以及提高CO库存的准确性,可以进一步降低排放不确定性。

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