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Long-term record of aerosol optical properties and chemical composition from a high-altitude site (Manora Peak) in Central Himalaya

机译:喜马拉雅市中心高空部位(Manora Peak)的气溶胶光学性质和化学成分的长期记录

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A long-term study, conducted from February 2005 to July 2008, involving chemical composition and optical properties of ambient aerosols from a high-altitude site (Manora Peak: 29.4° N, 79.5° E, ~1950 m a.s.l.) in the central Himalaya is reported here. The total suspended particulate (TSP) mass concentration varied from 13 to 272 μg m?3 over a span of 42 months. Aerosol optical depth (AOD) and TSP increase significantly during the summer (April–June) due to increase in the concentration of mineral dust associated with the long-range transport from desert regions (from the middle-East and Thar Desert in western India). The seasonal variability in the carbonaceous species (EC, OC) is also significantly pronounced, with lower concentrations during the summer and monsoon (July–August) and relatively high during the post-monsoon (September–November) and winter (December–March). On average, total carbonaceous aerosols (TCA) and water-soluble inorganic species (WSIS) contribute nearly 25 and 10% of the TSP mass, respectively. The WSOC/OC ratios range from 0.36 to 0.83 (average: 0.55 0.15), compared to lower ratios in the Indo-Gangetic Plain (range: 0.35–0.40), and provide evidence for the enhanced contribution from secondary organic aerosols. The mass fraction of absorbing EC ranged from less than a percent (during the summer) to as high as 7.6% (during the winter) and absorption coefficient (babs, at 678 nm) varied between 0.9 to 33.9 Mm?1 (1 Mm?1=106 m1). A significant linear relationship between babs and EC (μgC m3) yields a slope of 12.2 ( 2.3) m2 g?1, which is used as a measure of the mass absorption efficiency (abs) of EC.
机译:从2005年2月至2008年7月进行的长期研究,涉及来自Himalaya中部的高空部位(Manora Peak:29.4°N,79.5°E,〜1950米ASL)的环境气溶胶的化学成分和光学性质据报道。总悬浮颗粒(TSP)质量浓度在42个月的跨度范围内变化13至272μgm≤3。由于与来自沙漠地区的远程运输(来自印度西部的中东和塔尔沙漠相关的矿物粉尘的浓度增加,气溶胶光学深度(AOD)和TSP增加显着增加。碳质物种(EC,OC)的季节性变异性也显着明显,夏季和季风(八月)在季风(9月至11月)和冬季(12月至3月)期间较低的浓度。平均来,总碳质气溶胶(TCA)和水溶性无机物质(WSIS)分别有近25%和10%的TSP质量。与印刷平原(范围:0.35-0.40)的较低比率相比,WSOC / OC比率范围为0.36至0.83(平均:0.55 0.15),并为二次有机气溶胶提供增强贡献的证据。吸收欧的质量分数从少于百分比(夏季)到高达7.6%(冬季)(在冬季)和吸收系数(Babs,678nm)之间的变化在0.9至33.9mm?1(1mm? 1 = 106 m1)。 Babs和EC(μGCM3)之间的显着线性关系产生12.2(2.3)M2g≤1的斜率,其用作EC的质量吸收效率(ABS)的量度。

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