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Simulation of the Radiative Effect of Black Carbon Aerosols and the Regional Climate Responses over China 被引量:21
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作者 吴涧 蒋维楣 +3 位作者 符淙斌 苏炳凯 刘红年 汤剑平 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2004年第4期637-649,共13页
As part of the development work of the Chinese new regional climate model (RIEMS), the radiative process of black carbon (BC) aerosols has been introduced into the original radiative procedures of RIEMS, and the trans... As part of the development work of the Chinese new regional climate model (RIEMS), the radiative process of black carbon (BC) aerosols has been introduced into the original radiative procedures of RIEMS, and the transport model of BC aerosols has also been established and combined with the RIEMS model. Using the new model system, the distribution of black carbon aerosols and their radiative effect over the China region are investigated. The influences of BC aerosole on the atmospheric radiative transfer and on the air temperature, land surface temperature, and total rainfall are analyzed. It is found that BC aerosols induce a positive radiative forcing at the top of the atmosphere (TOA), which is dominated by shortwave radiative forcing. The maximum radiative forcing occurs in North China in July and in South China in April. At the same time, negative radiative forcing is observed on the surface. Based on the radiative forcing comparison between clear sky and cloudy sky, it is found that cloud can enforce the TOA positive radiative forcing and decrease the negative surface radiative forcing. The responses of the climate system in July to the radiative forcing due to BC aerosols are the decrease in the air temperature in the middle and lower reaches of the Changjiang River and Huaihe area and most areas of South China, and the weak increase or decrease in air temperature over North China. The total rainfall in the middle and lower reaches of the Changjiang River area is increased, but it decreased in North China in July. 展开更多
关键词 black carbon aerosols radiative effect Climate responses RIEMS model
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Determining the environmental and atmospheric effects of coronavirus disease 2019(COVID-19)quarantining by studying the total aerosol optical depth,black carbon,organic matter,and sulfate in Blida City of Algeria 被引量:1
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作者 Foued Chabane Ali Arif 《Global Health Journal》 2021年第1期37-43,共7页
Background:To study,estimate and discuss the variations of the aerosol optical depth(AOD),black carbon,sulfate and organic matter,in the atmosphere in Blida City of Algeria,which was greatly affected by COVID-19 pande... Background:To study,estimate and discuss the variations of the aerosol optical depth(AOD),black carbon,sulfate and organic matter,in the atmosphere in Blida City of Algeria,which was greatly affected by COVID-19 pandemic.Methods:We analyzed the effects of changes in the total AOD,black carbon,sulfate,and organic matter in the atmosphere(λ=550 nm)in the same period of 2019 and 2020,following the COVID-19 epidemic in Blida City,which was the most-affected city in Algeria.Results:The quarantine that was enacted to limit the spread of COVID-19 resulted in side effects that were identifiable in the total AOD and in some of its atmospheric components.Comparing these variables in 2019 and 2020(in the months during the quarantine)revealed that in April,the BCAOD values were much lower in 2020than in 2019.Conclusion:Based on the effects of the emerging COVID-19,the research listed the changes received from the AOD,and is considered as a comparative study and represents a significant side effect of the quarantine that was mainly designed to limit COVID-19. 展开更多
关键词 Coronavirus disease 2019(COVID-19) aerosol optical depth(AOD) black carbon Organic matter SULFATE Blida City Algeria
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On board measurement of black carbon aerosols over the Arctic Ocean in summer
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作者 TANG Jie BIAN Lingen +2 位作者 YAN Peng LAI Xin LU Changgui 《Advances in Polar Science》 2011年第4期253-259,共7页
This paper presents aerosol black carbon (BC) concentrations measured at deck level on board the R/V XUE LONG icebreaker. The vessel cruised the Arctic Ocean carrying an in situ aethalometer during the summers of 20... This paper presents aerosol black carbon (BC) concentrations measured at deck level on board the R/V XUE LONG icebreaker. The vessel cruised the Arctic Ocean carrying an in situ aethalometer during the summers of 2008 and 2010. The courses of the third Chinese National Arctic Research Expedition (3rd CHINARE- Arctic, August 2008) and fourth Chinese National Arctic Research Expedition (4th CHINARE-Aretic, from late July to August 2010) were bounded by 173°W-143°W and 178°E-150°W, with northernmost points 85°25′N and 88°26′N, respectively. Results show low surface BC concentrations over the ocean throughout the courses, with means (standard error) of 6.0 (:t_4.7) ng.m-a for 3rd CHINARE-Arctic, and 8.4(±7.1) ng.m^-3 for 4th CHINARE- Arctic. It is clear that these onboard BC concentrations are similar to reported data from coastal stations in the Arctic region. The latitude-average BC concentration varied from 3.0-26.2 ng.m-3 for 3rd CHINARE-Arctic, to 4.2-20.5 ng-m-a for 4th CHINARE-Arctic. At latitudes higher than 72°N for 3rd CHINARE-Arctic and 75°N for 4th CHINARE-Arctic, BC concentrations were lower and had negligible latitudinal gradients. Analysis indicates that the presence of the Arctic front isolates the lower atmosphere of the high-latitude Arctic Ocean from low-latitude terrestrial transport. This maintains the very low BC concentrations and negligible concentration gradients at high latitudes of the Arctic Ocean during summer. Calculated airmass backward trajectories for the two expeditions show that the Arctic front in 2010 was further north than in 2008, which caused different latitudinal variation of BC concentration in the two years. 展开更多
关键词 Chinese National Arctic Research Expedition black carbon aerosol OBSERVATION
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Black Carbon Particles in the Urban Atmosphere in Beijing 被引量:11
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作者 王庚辰 白建辉 +1 位作者 孔琴心 Alexander EMILENKO 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2005年第5期640-646,共7页
A study of the concentration of black carbon particles and its variation in the urban atmosphere has been carried out since 1996 in the Beijing area. The measurements were done in the late autumn and early winter each... A study of the concentration of black carbon particles and its variation in the urban atmosphere has been carried out since 1996 in the Beijing area. The measurements were done in the late autumn and early winter each year, the period before and after domestic heating activities begin. The results show the presence of black carbon particles at the high level that vary over a large range in the urban atmosphere in Beijing. The mean value of daily average concentration for the whole observation period of 1996-2004 is 20.0 μgm^-3. An evident decrease of black carbon particle concentration in the Beijing area is observed after 2000, and the daily average concentration of black carbon particles is estimated to be 16.0 μgm^-3 with a variation range of 2.10-50.50 μgm^-3 for the period of 2000-2004. The observation method and main variation behavior characteristics of black carbon particles in the urban atmosphere in the Beijing area are given and discussed. 展开更多
关键词 black carbon particles urban atmosphere aerosolS BEIJING
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A Modeling Study of the Climate Effects of Sulfate and Carbonaceous Aerosols over China 被引量:9
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作者 刘红年 张力 吴涧 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2010年第6期1276-1288,共13页
In this paper, the RIEMS 2.0 model is used to simulate the distribution of sulfate, black carbon, and organic carbon aerosols over China (16.2°-44.1°N, 93.4°-132.4°E) in 1998. The climate effects... In this paper, the RIEMS 2.0 model is used to simulate the distribution of sulfate, black carbon, and organic carbon aerosols over China (16.2°-44.1°N, 93.4°-132.4°E) in 1998. The climate effects of these three anthropogenic aerosols are also simulated. The results are summarized as follows: (1) The regional average column burdens of sulfate, BC, OC, and SOC were 5.9, 0.24, 2.4, and 0.49 mg m-2, with maxima of 33.9, 1.48, 7.3, and 1.1 mg m-2, respectively. The column burden and surface concentration of secondary organic carbon accounted for about 20% and 7%, respectively, of the total organic carbon in eastern China. (2) The radiative forcings of sulfate, organic carbon, and black carbon at the top of the atmosphere were -1.24, -0.6, and 0.16 W m 2 respectively, with extremes of -5.25, -2.6, and 0.91 W m-2. (3) The surface air temperature changes caused by sulfate, organic carbon, and black carbon were -0.07, -0.04, and 0.01 K, respectively. The air temperature increase caused by black carbon at 850 hPa was higher than that at the surface. The net effect of the three kinds of anthropogenic aerosols together decreased the annual average temperature by -0.075 K; the maximum value was -0.3 K. (4) Black carbon can reduce the precipitation in arid and semi-arid areas of northern China and increase the precipitation in wet and semi-wet areas of southern China. The average precipitation increase caused by black carbon in China was 0.003 mm d^-1. The net effect of the three kinds of anthropogenic aerosols was to decrease the precipitation over China by 0.008 mmd ^-1. 展开更多
关键词 black carbon organic carbon SULFATE aerosol climate effect RIEMS2.0
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Characteristics of Anthropogenic Sulfate and Carbonaceous Aerosols over East Asia: Regional Modeling and Observation 被引量:2
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作者 Yan HUANG William L. CHAMEIDES +1 位作者 Qian TAN Robert E. DICKINSON 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2008年第6期946-959,共14页
The authors present spatial and temporal characteristics of anthropogenic sulfate and carbonaceous aerosols over East Asia using a 3-D coupled regional climate-chemistry-aerosol model, and compare the simulation with ... The authors present spatial and temporal characteristics of anthropogenic sulfate and carbonaceous aerosols over East Asia using a 3-D coupled regional climate-chemistry-aerosol model, and compare the simulation with the limited aerosol observations over the region. The aerosol module consists of SO2, SO4^2-, hydrophobic and hydrophilic black carbon (BC) and organic carbon compounds (OC), including emission, advections, dry and wet deposition, and chemical production and conversion. The simulated patterns of SO2 are closely tied to its emission rate, with sharp gradients between the highly polluted regions and more rural areas. Chemical conversion (especially in the aqueous phase) and dry deposition remove 60% and 30% of the total SO2 emission, respectively. The SO4^2- shows less horizontal gradient and seasonality than SO2, with wet deposition (60%) and export (27%) being two major sinks. Carbonaceous aerosols are spatially smoother than sulfur species. The aging process transforms more than 80% of hydrophobic BC and OC to hydrophilic components, which are removed by wet deposition (60%) and export (30%). The simulated spatial and seasonal SO4^2-, BC and OC aerosol concentrations and total aerosol optical depth are generally consistent with the observations in rural areas over East Asia, with lower bias in simulated OC aerosols, likely due to the underestimation of anthropogenic OC emissions and missing treatment of secondary organic carbon. The results suggest that our model is a useful tool for characterizing the anthropogenic aerosol cycle and for assessing its potential climatic and environmental effects in future studies. 展开更多
关键词 regional climate modeling anthropogenic emission sulfate aerosol black carbon and organic carbon East Asia
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Characterization of Black Carbon in the Ambient Air of Agra,India:Seasonal Variation and Meteorological Influence 被引量:2
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作者 Pratima GUPTA Shalendra Pratap SINGH +1 位作者 Ashok JANGID Ranjit KUMAR 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2017年第9期1082-1094,共13页
This study characterizes the black carbon in Agra, India home to the Taj Mahal--and situated in the lndo-Gangetic basin. The mean black carbon concentration is 9.5 μg m-3 and, owing to excessive biomass/fossil fuel c... This study characterizes the black carbon in Agra, India home to the Taj Mahal--and situated in the lndo-Gangetic basin. The mean black carbon concentration is 9.5 μg m-3 and, owing to excessive biomass/fossil fuel combustion and automobile emissions, the concentration varies considerably. Seasonally, the black carbon mass concentration is highest in winter, probably due to the increased fossil fuel consumption for heating and cooking, apart from a low boundary layer. The nocturnal peak rises prominently in winter, when the use of domestic heating is excessive. Meanwhile, the concentration is lowest during the monsoon season because of the turbulent atmospheric conditions and the process of washout by precipitation. The ratio of black carbon to brown carbon is less than unity during the entire study period, except in winter (December). This may be because that biomass combustion and diesel exhaust are major black carbon contributors in this region, while a higher ratio in winter may be due to the increased consumption of fossil fuel and wood for heating purposes. ANOVA reveals significant monthly variation in the concentration of black carbon; plus, it is negatively correlated with wind speed and temperature. A high black carbon mass concentration is observed at moderate (1-2 m s-1) wind speed, as compared to calm or turbulent atmospheric conditions. 展开更多
关键词 black carbon aerosol seasonal variation diurnal variation meteorological parameter
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Role of the Radiative Effect of Black Carbon in Simulated PM_(2.5) Concentrations during a Haze Event in China 被引量:4
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作者 LIAO Li LIAO Hong 《Atmospheric and Oceanic Science Letters》 CSCD 2014年第5期434-440,共7页
The authors quantify the radiative effect of black carbon (BC) on simulated aerosol concentrations during the heavily polluted haze event of 11-14 January 2013 in northern China using the chemistry version of the We... The authors quantify the radiative effect of black carbon (BC) on simulated aerosol concentrations during the heavily polluted haze event of 11-14 January 2013 in northern China using the chemistry version of the Weather Research and Forecasting Model (WRF-Chem). As a result of the stable synoptic conditions, simulated concentrations of BC and PM2.5 averaged over the study period were about 8-16 μg m-3 and 80-100 μg m-3, respectively, in the control simulation (CTRL). When BC emissions were doubled (2BC), tripled (3BC), and quad- rupled (4BC) relative to the CTRL run, the simulated concentrations of aerosols in different regions showed distinct changes. The radiative effect of BC was simulated to increase concentrations of aerosols over Tianjin (Doml) and southern Henan (Dora3), but to decrease in southern Hebei (Dora2). Relative to the CTRL simulation, concen- trations of PM2s over Doml, Dom2, and Dom3 were simulated in 4BC to change by +18.6 1μg m-3 (+32.3%), -5.7 μg m 3 (-7.3%), and +7.2 μg m3 (+12.6%), respec- tively. The BC-induced increases in aerosol concentra- tions corresponded mainly to the reductions in planetary boundary layer height over Doml and Dom3. The reduc- tions of aerosol concentrations in Dora2 were mainly caused by the weakened wind convergence at 850 hPa and reduced concentrations of sulfate and nitrate associ- ated with the reduced surface-layer ozone levels and rela- tive humidity. 展开更多
关键词 aerosol black carbon PM2.5
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Modeled Influence of East Asian Black Carbon on Inter-Decadal Shifts in East China Summer Rainfall 被引量:4
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作者 Rashed MAHMOOD LI Shuang-Lin 《Atmospheric and Oceanic Science Letters》 2011年第6期349-355,共7页
Two inter-decadal shifts in East China summer rainfall during the last three decades of the 20th century have been identified.One shift occurred in the late 1970s and featured more rainfall in the Yangtze River valley... Two inter-decadal shifts in East China summer rainfall during the last three decades of the 20th century have been identified.One shift occurred in the late 1970s and featured more rainfall in the Yangtze River valley and prolonged drought in North China.The other shift occurred in the early 1990s and featured increased rainfall in South China.The role of black carbon(BC) aerosol in the first shift event is controversial,and it has not been documented for the second event.In this study,the authors used Geophysical Fluid Dynamics Laboratory's(GFDL's) atmospheric general circulation model known as Atmosphere and Land Model(AM2.1) ,which has been shown to capture East Asian climate variability well,to investigate these issues by conducting sensitive experiments with or without historical BC in East Asia. The results suggest that the model reproduces the first shift well,including intensified rainfall in the Yangtze River and weakened monsoonal circulation.However,the model captures only a fraction of the observed variations for the second shift event.Thus,the role of BC in modulating the two shift events is different,and its impact is relatively less important for the early 1990s event. 展开更多
关键词 black carbon aerosol inter-decadal climate variability East China summer rainfall
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Measurement of Atmospheric Black Carbon Concentration in Rural and Urban Environments: Cases of Lamto and Abidjan
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作者 Adjon A. Kouassi Madina Doumbia +5 位作者 Siélé Silue Eric M. Yao Alima Dajuma Marcellin Adon N'datchoh E. Touré Véronique Yoboue 《Journal of Environmental Protection》 2021年第11期855-872,共18页
Black carbon is one of the primary aerosols directly emitted from biomass known to have strong absorbing properties. The INDAAF and PASMU observational field campaigns which took place (2018) in Abidjan (urban area) a... Black carbon is one of the primary aerosols directly emitted from biomass known to have strong absorbing properties. The INDAAF and PASMU observational field campaigns which took place (2018) in Abidjan (urban area) and Lamto (rural area) allow the analysis of Black carbon concentration at different time scales through real-time measurements using an analyzer named Aethalometer AE-33. Results presented here show at Lamto: 1) for the diurnal scale an average of 1.71 ± 0.3 μg⋅m<sup>-3</sup> (0.34 ± 0.09 μg⋅m<sup>-3</sup>) in the dry (wet) season;2) for the monthly scale an average of 1.14 ± 0.84 μg⋅m<sup>-3</sup>;3) on the seasonal scale, an average of 2.2 ± 0.02 μg⋅m<sup>-3</sup> (0.6 ± 0.19 μg⋅m<sup>-3</sup>) in the dry (wet) season. The black carbon variation at Lamto is seasonal with an amplification factor of 85.6. Regarding the urban area of Abidjan, due to sampling issues, our analyses were limited to daily, diurnal and weekly time scales. We observed: a) at a daily scale an average of 5.31.± 2.5 μg⋅m<sup>-3</sup>, b) diurnal scale, an average ranging from 6.87 to 13.92 μg⋅m<sup>-3</sup>. The analysis indicated that emissions from urban areas are more related to social and economic activities, with weekday concentrations (7.24 μg⋅m<sup>-3</sup>) higher than concentrations over the weekend (e.g. Saturday 6.59 μg⋅m<sup>-3</sup> and Sunday 6.00 μg⋅m<sup>-3</sup>). Moreover, BC concentration in Abidjan is quite noticeable compared to that of rural areas (Lamto). The ratio between the maximum values of the two areas is of the order of 5.86. In addition, concentrations in some urban areas are slightly above the daily threshold set by the WHO (10 μg⋅m<sup>-3</sup>). Therefore, the levels of urban BC concentrations are alarming whilst rural BC concentrations remain below daily WHO thresholds and are of the same magnitude as those of West African megacities. This study underlies that BC concentrations at Lamto are mainly related to biomass combustion sources while those from urban areas are related to traffic sources. The latter is permanently active, unlike those in rural Lamto, which is seasonal. 展开更多
关键词 carbonaceous aerosols black carbon Source Apportionment Fossil Fuel Biomass Burning
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Brown carbon in the cryosphere: Current knowledge and perspective 被引量:4
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作者 WU Guang-Ming CONG Zhi-Yuan +6 位作者 KANG Shi-Chang Kimitaka KAWAMURA FU Ping-Qing ZHANG Yu-Lan WAN Xin GAO Shao-Peng LIU Bin 《Advances in Climate Change Research》 SCIE CSCD 2016年第1期82-89,共8页
Recently, the light-absorbing organic carbon, i.e., brown carbon(Br C), has received an increasing attention, because they could significantly absorb the solar radiation in the range of short wavelengths rather than t... Recently, the light-absorbing organic carbon, i.e., brown carbon(Br C), has received an increasing attention, because they could significantly absorb the solar radiation in the range of short wavelengths rather than the purely scattering effect. Br C is ubiquitous in the troposphere. It could undergo long range transport within the atmospheric circulation. After the deposition on the surface of snow or ice in the cryospheric region, as the major light absorbing impurities with black carbon and dust, Br C could reduce the snow albedo and accelerate the glacier melting. In this context, this paper summarized the current knowledge of Br C(in aerosols and snow) in the cryospheric regions including the Arctic, Antarctic,and Alpines. Although some works have been conducted in those region, the current dataset on the optical properties of Br C like Absorption?ngstr€om Exponent(AAE) and Mass Absorption Efficiency(MAE) is still limited, which hampers stimulating an accurate evaluation of its climate effects. Especially in the Himalayas and Tibetan Plateau, where very limited information concerning Br C is available. Considering biomass burning as a dominant source of Br C, a large amount of emissions from biomass burning in South Asia could reach the Himalayas and Tibetan Plateau, where the climate effect of Br C merits more investigation in the future. 展开更多
关键词 Brown carbon black carbon Atmospheric aerosol SNOW GLACIER
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THE DIRECT EFFECTS OF AEROSOLS AND DECADAL VARIATION OF GLOBAL SEA SURFACE TEMPERATURE ON THE EAST ASIAN SUMMER PRECIPITATION IN CAM3.0 被引量:2
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作者 刘超 胡海波 +1 位作者 张媛 杨修群 《Journal of Tropical Meteorology》 SCIE 2017年第2期217-228,共12页
Using the CAM3.0 model, we investigated the respective effects of aerosol concentration increasing and decadal variation of global sea surface temperature(SST) around year 1976/77 on the East Asian precipitation in bo... Using the CAM3.0 model, we investigated the respective effects of aerosol concentration increasing and decadal variation of global sea surface temperature(SST) around year 1976/77 on the East Asian precipitation in boreal summer. By doubling the concentration of the sulfate aerosol and black carbon aerosol separately and synchronously in East Asia(100-150 °E, 20-50 °N), the climate effects of these aerosols are specifically investigated. The results show that both the decadal SST changing and aerosol concentration increasing could lead to rainfall decreasing in the center of East Asia, but increasing in the regions along southeast coast areas of China. However, the different patterns of rainfall over ocean and lower wind field over Asian continent between aerosol experiments and SST experiments in CAM3.0 indicate the presence of different mechanisms. In the increased aerosol concentration experiments, scattering effect is the main climate effect for both sulfate and black carbon aerosols in the Eastern Asian summer. Especially in the increased sulfate aerosol concentration experiment, the climate scattering effect of aerosol leads to the most significant temperature decreasing, sinking convection anomalies and decreased rainfall in the troposphere over the central part of East Asia. However, in an increased black carbon aerosol concentration experiment, weakened sinking convection anomalies exist at the southerly position. This weakened sinking and its compensating rising convection anomalies in the south lead to the heavy rainfall over southeast coast areas of China. When concentrations of both sulfate and black carbon aerosols increase synchronously, the anomalous rainfall distribution is somewhat like that in the increased black carbon concentration aerosol experiment but with less intensity. 展开更多
关键词 black carbon aerosol sulfate aerosol global decadal change of SST East Asian summer monsoon precipitation southern flood and northern drought
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Influence of South Asian Biomass Burning on Ozone and Aerosol Concentrations Over the Tibetan Plateau 被引量:2
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作者 Junhua YANG Shichang KANG +2 位作者 Yuling HU Xintong CHEN Mukesh RAI 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2022年第7期1184-1197,I0002-I0013,共26页
In this work,the influence of South Asian biomass burning emissions on O_(3) and PM_(2.5)concentrations over the Tibetan Plateau(TP)is investigated by using the regional climate chemistry transport model WRF-Chem.The ... In this work,the influence of South Asian biomass burning emissions on O_(3) and PM_(2.5)concentrations over the Tibetan Plateau(TP)is investigated by using the regional climate chemistry transport model WRF-Chem.The simulation is validated by comparing meteorological fields and pollutant concentrations against in situ observations and gridded datasets,providing a clear perspective on the spatiotemporal variations of O_(3) and PM_(2.5)concentrations across the Indian subcontinent,including the Tibetan Plateau.Further sensitivity simulations and analyses show that emissions from South Asian biomass burning mainly affect local O_(3) concentrations.For example,contribution ratios were up to 20%in the Indo-Gangetic Plain during the pre-monsoon season but below 1%over the TP throughout the year 2016.In contrast,South Asian biomass burning emissions contributed more than 60%of PM_(2.5)concentration over the TP during the pre-monsoon season via significant contribution of primary PM_(2.5)components(black carbon and organic carbon)in western India that were lofted to the TP by westerly winds.Therefore,it is suggested that cutting emissions from South Asian biomass burning is necessary to alleviate aerosol pollution over the TP,especially during the pre-monsoon season. 展开更多
关键词 South Asian biomass burning OZONE aerosol black carbon Tibetan Plateau
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Spatial Variability and Radiative Impact of Aerosol along the Brahmaputra River Valley in India: Results from a Campaign 被引量:1
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作者 Shyam Sundar Kundu Arup Borgohain +2 位作者 Nilamoni Barman Meenakshi Devi P. L. N. Raju 《Journal of Environmental Protection》 2018年第4期405-430,共26页
The first ever land campaign to study the spatial variability of the aerosol characteristics along the Brahmaputra river valley (BRV) in Assam, North-Eastern India, was conducted during 2011. Measurements were made ov... The first ever land campaign to study the spatial variability of the aerosol characteristics along the Brahmaputra river valley (BRV) in Assam, North-Eastern India, was conducted during 2011. Measurements were made over 13 locations for Aerosol Optical Depth (AOD), scattering coefficient, particulate matter, black carbon (BC) concentration and meteorological parameters. The BRV is divided into three sectors longitudinally viz western sector (WS), central sector (CS), and eastern sector (ES). Significant Spatial heterogeneity in AOD and BC concentration was observed (p < 0.05) with the highest values over WS and a continual decrease from WS to ES with aerosol dominance in PM2.5 category along the entire valley. The Angstrom coefficient measured using different wavelength pairs showed spatial variability indicating dominance of fine particles over WS and coarse particles in ES with a probable bimodal distribution. The scattering and absorption coefficient shows dominance of both types of aerosol over WS than other areas. The shortwave radiative forcing was higher over the WS than CS and ES of the valley. The campaign revealed that under favorable wind conditions, the BRV is loaded with significant amount of natural and anthropogenic aerosol during local winter and is influenced by the long-range transport of aerosols from the Indo-Gangetic plain. 展开更多
关键词 Brahmaputra VALLEY aerosol RADIATIVE FORCING Land CAMPAIGN black carbon
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THE RADIATIVE EFFECTS OF ANTHROPOGENIC AEROSOLS OVER CHINA AND THEIR SENSITIVITY TO SOURCE EMISSION
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作者 马星星 刘红年 +1 位作者 王学远 张仁健 《Journal of Tropical Meteorology》 SCIE 2016年第1期94-108,共15页
In this paper,the RIEMS 2.0 model,source emission in 2006 and 2010 are used to simulate the distributions and radiative effects of different anthropogenic aerosols over China.The comparison between the results forced ... In this paper,the RIEMS 2.0 model,source emission in 2006 and 2010 are used to simulate the distributions and radiative effects of different anthropogenic aerosols over China.The comparison between the results forced by source emissions in 2006 and 2010 also reveals the sensitivity of the radiative effects to source emission.The results are shown as follows:(1) Compared with those in 2006,the annual average surface concentration of sulfate in 2010 decreased over central and eastern China with a range of-5 to 0 μg/m^3;the decrease of annual average aerosol optical depth of sulfate over East China varied from 0.04 to 0.08;the annual average surface concentrations of BC,OC and nitrate increased over central and eastern China with maximums of 10.90,11.52 and 12.50μg/m^3,respectively;the annual aerosol optical depths of BC,OC and nitrate increased over some areas of East China with extremes of 0.006,0.007 and 0.008,respectively.(2)For the regional average results in 2010,the radiative forcings of sulfate,BC,OC,nitrate and their total net radiative forcing at the top of the atmosphere over central and eastern China were-0.64,0.29,-0.41,-0.33 and-1.1 W/m^2,respectively.Compared with those in 2006,the radiative forcings of BC and OC in 2010 were both enhanced,while that of sulfate and the net radiative forcing were both weakened over East China mostly.(3)The reduction of the cooling effect of sulfate in 2010 produced a warmer surface air temperature over central and eastern China;the maximum value was 0.25 K.The cooling effect of nitrate was also slightly weakened.The warming effect of BC was enhanced over most of the areas in China,while the cooling effect of OC was enhanced over the similar area,particularly the area between Yangtze and Huanghe Rivers.The net radiative effect of the four anthropogenic aerosols generated the annual average reduction and the maximum reduction were-0.096 and-0.285 K,respectively,for the surface temperature in 2006,while in 2010 they were-0.063 and-0.256 K,respectively.In summary,the change in source emission lowered the cooling effect of anthropogenic aerosols,mainly because of the enhanced warming effect of BC and weakened cooling effect of scattering aerosols. 展开更多
关键词 aerosol radiative effect radiative forcings SULFATE NITRATE organic carbon black carbon
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Aerosol Properties over Ranchi Measured from Aethalometer
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作者 Manoj Kumar Kumari Lipi +1 位作者 S Sureshbabu N C Mahanti 《Atmospheric and Climate Sciences》 2011年第3期91-94,共4页
Continuous and near-real-time measurements of the mass concentration of Aerosol Black Carbon (BC) were carried out 1st to 31st July 2010 of rainy season and compare with data of July-2010 to March-2011 using an Aethal... Continuous and near-real-time measurements of the mass concentration of Aerosol Black Carbon (BC) were carried out 1st to 31st July 2010 of rainy season and compare with data of July-2010 to March-2011 using an Aethalometer (model AE-31 of Magee Scientific, USA). The principle of the Aethalometer is to measure the attenuation of a beam of light transmitted through a filter, while the filter is continuously collecting an aero-sol sample. This measurement is made at successive regular intervals of a time base period has been. the BC mass concentration is estimated by measuring the change in the transmittance of a quartz filter tape, on to which the particles impinge. The instrument was operated at a time base of 5 min, round the clock with a flow rate of 4-liter min–1, to study the impact of rainy season on black carbon concentrations over a typical urban environment namely Ranchi, India. BC concentrations were high during morning (0600 to 0900 h) and evening hours (1900 to 2300 h) compared to afternoon hours. During early morning hours, high values of BC are attributed to the turbulence set-in by the solar heating which breaks the night-time stable layer and aero-sols in the nocturnal residual layer are mixed up with those near the surface. 展开更多
关键词 black carbon (bc) AETHALOMETER aerosol
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内蒙古典型草原2010~2021年黑碳气溶胶浓度变化及影响因素分析 被引量:1
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作者 王慧清 裴浩 孙玉 《中国环境科学》 EI CAS CSCD 北大核心 2024年第1期83-92,共10页
分析了2010~2021年内蒙古锡林浩特国家气候观象台大气成分观测站黑碳气溶胶浓度观测数据,阐明了黑碳气溶胶浓度时间变化规律,并初步讨论了其与气象要素的关系,以期为大气黑碳气溶胶污染防治工作提供科学依据.结果表明:不同季节、不同风... 分析了2010~2021年内蒙古锡林浩特国家气候观象台大气成分观测站黑碳气溶胶浓度观测数据,阐明了黑碳气溶胶浓度时间变化规律,并初步讨论了其与气象要素的关系,以期为大气黑碳气溶胶污染防治工作提供科学依据.结果表明:不同季节、不同风速下,几乎均在南偏西风向时黑碳气溶胶浓度增大且最高,而在东北风向时其浓度几乎不变甚至略减少且最低;黑碳气溶胶浓度日变化整体呈现出明显的四季均为“单峰型”变化特征,冬季峰值出现时间较其他三个季节晚,四季谷值出现时间一致;季节变化总体上呈现出浓度及其标准差均为秋冬季高于春夏季的特征,说明观测点黑碳气溶胶浓度在高值期间的秋冬季,其变化幅度也较大;由于能源结构的改变及节能减排措施的成效,近10年观测点黑碳气溶胶浓度呈明显下降趋势,其变化与气温、降水呈极显著负相关,与相对湿度呈极显著正相关. 展开更多
关键词 黑碳气溶胶 半干旱区 典型草原 时间动态 影响因素
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老化黑碳颗粒诱导人神经母细胞瘤细胞SH-SY5Y炎症反应及机制
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作者 黄津 王田田 +2 位作者 安静 钟玉芳 尚羽 《上海大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第2期218-228,共11页
以人神经母细胞瘤细胞SH-SY5Y为研究对象,分析被臭氧氧化的黑碳(oxidized black carbon,OBC)颗粒引起的炎症反应以及核因子-κB(nuclear factor-κB,NF-κB)和磷脂酰肌醇3激酶(phosphatidylin-ositol-3-kinase,PI3K)/蛋白激酶B(protein ... 以人神经母细胞瘤细胞SH-SY5Y为研究对象,分析被臭氧氧化的黑碳(oxidized black carbon,OBC)颗粒引起的炎症反应以及核因子-κB(nuclear factor-κB,NF-κB)和磷脂酰肌醇3激酶(phosphatidylin-ositol-3-kinase,PI3K)/蛋白激酶B(protein kinase B,PKB,又称Akt)信号通路的作用.结果显示:随着OBC颗粒染毒质量浓度的增加(5、10、20、40µg/mL),细胞内线粒体跨膜电位(mitochondrial membrane potential,MMP)水平逐渐下降,DNA损伤程度逐渐升高,呈现质量浓度和时间依赖性;细胞外泌白细胞介素-4(interleukin-4,IL-4)水平升高和细胞内肿瘤坏死因子-α(tumor necrosis factor-α,TNF-α)基因高表达,说明OBC颗粒会促进SH-SY5Y细胞发生炎症反应;细胞内活性氧(reactive oxygen species,ROS)水平升高,超氧化物歧化酶(superoxide dismutase,SOD)、血红素加氧酶-1(heme oxygenase-1,HO-1)基因表达量升高,且HO-1蛋白水平升高,说明细胞发生氧化应激;胞内NF-κB和PI3K/Akt通路相关蛋白显著变化,表明OBC颗粒激活了NF-κB和PI3K/Akt信号通路.综上,OBC颗粒可诱导SH-SY5Y细胞发生氧化应激造成DNA损伤,促进炎症反应,且对NF-κB和PI3K/Akt信号通路有重要调控作用. 展开更多
关键词 黑碳颗粒 SH-SY5Y细胞 炎症反应 核因子-ΚB
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霾过程黑碳对气溶胶散射吸湿增长的影响
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作者 佟景哲 米家媛 +4 位作者 涂朝勇 李娜 李宗昊 邓也 倪长健 《中国环境科学》 EI CAS CSCD 北大核心 2024年第9期4835-4843,共9页
利用成都市2017年10~12月逐时的“干”气溶胶散射系数、吸收系数和环境气象监测资料,结合同时次气溶胶粒径吸湿增长因子(Gf)的反演数据,分析了4类霾强度条件下黑碳浓度(C_(BC))的变化特征,并基于广义可加模型(GAM)探讨了C_(BC)对气溶胶... 利用成都市2017年10~12月逐时的“干”气溶胶散射系数、吸收系数和环境气象监测资料,结合同时次气溶胶粒径吸湿增长因子(Gf)的反演数据,分析了4类霾强度条件下黑碳浓度(C_(BC))的变化特征,并基于广义可加模型(GAM)探讨了C_(BC)对气溶胶散射吸湿增长因子(f)的影响机制.结果表明:(1)轻微、轻度、中度和重度霾强度条件下的C_(BC)均服从对数正态分布,其均值随霾强度的增加而增大,变差系数则随霾强度的增加而减小.(2) C_(BC)与Gf之间呈现非线性负相关,C_(BC)与C_(PM2.5/PM10)(细颗粒物质量浓度与粗颗粒物质量浓度之比)之间则呈现非线性正相关(均通过了α=0.01的显著性检验);随着霾的渐近演化,Gf随C_(BC)增加而减小的趋势持续增强,C_(PM2.5/PM10)随C_(BC)增加而增大的趋势则持续减弱.(3) Gf与C_(PM2.5/PM10)之间存在显著的交互作用(通过了α=0.001的显著性检验),以Gf与C_(PM 2.5/PM10)为双变量的GAM模型能更好地表征f的变化特征. 展开更多
关键词 气溶胶 散射吸湿增长因子 黑碳 霾过程 GAM模型
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黑碳气溶胶自周边地区向青藏高原输送季节差异的数值模拟
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作者 周云祥 马晓燕 +1 位作者 李力 李俊 《气象科学》 2024年第5期907-916,共10页
基于中尺度气象—化学模式WRF-Chem,研究了黑碳气溶胶自周边地区向青藏高原输送的季节性差异,并分析了其可能原因。结果表明:青藏高原近地面平均黑碳气溶胶浓度夏季最低,春季最高。青藏高原当地黑碳气溶胶主要来自于南亚地区,其次是东... 基于中尺度气象—化学模式WRF-Chem,研究了黑碳气溶胶自周边地区向青藏高原输送的季节性差异,并分析了其可能原因。结果表明:青藏高原近地面平均黑碳气溶胶浓度夏季最低,春季最高。青藏高原当地黑碳气溶胶主要来自于南亚地区,其次是东南亚地区,我国贡献相对较小。春季南亚地区的黑碳气溶胶主要通过干沉降输送至高原,夏季仅有少量的黑碳气溶胶通过湿沉降的方式从我国输送至青藏高原的东北部地区,冬季青藏高原近地面的黑碳气溶胶均通过干沉降从南亚地区输送而来。 展开更多
关键词 WRF-Chem模式 青藏高原 黑碳气溶胶 输送
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