A REVIEW OF BLACK CARBON STUDY: HISTORY AND CURRENT STATUS
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摘要: 黑碳是目前在全球变化研究中备受关注的焦点问题之一。介绍了国内外黑碳气溶胶和沉积物黑碳的研究现状,在黑碳气溶胶方面,重点归纳了其在气候效应方面的作用:黑碳气溶胶吸收太阳辐射,在大气顶产生正辐射强迫,在地表产生负辐射强迫,被认为是导致温室效应仅次于二氧化碳的第二大成分;在沉积物黑碳方面,概括了不同研究者利用提取的黑碳浓度记录,推算化石燃料的使用历史,重建古火灾时间序列,在冰期间冰期尺度上估计气候冷暖干湿变化和黑碳浓度的关系;在黑碳浓度测量方面,概括了目前黑碳研究中几种常用的测量方法:光学方法是用黑碳测量仪进行实时监测,化学氧化、热氧化和热光反射等方法是在化学预处理的基础上获取黑碳浓度估计值。Abstract: Black carbon is an attentive research topic in the field of global change. In this paper, the recent research on black carbon aerosol and sediment black carbon is reviewed. As we know, black carbon aerosol plays an important role in climate change and has become the second important component in green house effect. The top-of-the atmosphere (TOA)forcing is positive and the surface forcing is negative due to black carbon absorbing solar radiation. With regard to soil and sediment black carbon, scientists, according to black carbon records, have calculated the history of using fossil fuel, rebuilt fire events and estimated the relation between paleoclimate change and black carbon concentration in glacial and interglacial stages. The measuring methods of black carbon concentration are also summarized in this paper. Optical method is about a real-time measurement using aethalometer. And chemothermal oxidation methods and thermal/optical reflectance method are used for black carbon concentration based on chemical pretreatment.
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Key words:
- black carbon /
- radiative forcing /
- greenhouse gases /
- paleofire /
- mass sedimentation rates
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[1] 秦世广, 汤洁, 温玉璞. 黑碳气溶胶及其在气候变化研究中的意义[J]. 气象, 2001, 27(11):3-7.
[QIN Shiguang, TANG Jie, WEN Yupu. Black carbon and its importance in climate change studies[J]. Meteorology, 2001, 27(11):3-7.]
[2] 王旭, 于赤灵, 彭平安,等. 沉积物中黑碳的提取和测定方法:误差分析和回收率实验[J]. 地球化学,2001, 30(5):439-444.
[WANG Xu, YU Chiling, PENG Ping'an, et al. Extraction and determination of black carbon in sediments:error analysis and recovery ratio experiment[J]. Geochimica, 2001, 30(5):439-444.]
[3] 明镜, 秦大河, 效存德. 雪冰中的黑碳记录研究的历史回顾[J]. 冰川冻土, 2005, 27(4):539-544.
[MING Jing, QIN Dahe, XIAO Cunde. Black carbon in snow and Ice:a review[J]. Journal of Glaciology and Geocryology, 2005,27(4):539-544.]
[4] 王志立,郭品文,张华.黑碳气溶胶直接辐射强迫及其对中国夏季降水影响的模拟研究[J]. 气候与环境研究, 2009, 14(2):161-171.
[WANG Zhili, GUO Pinwen, ZHANG Hua. A numerical study of direct radiative forcing due to black carbon and its effects on the summer precipitation in China[J]. Advances in Climate Change Research, 2009. 14(2):161-171.]
[5] 曹国良, 张小曳, 王亚强,等. 中国大陆黑碳气溶胶排放清单[J]. 气候变化研究进展, 2006, 2(6):259-265.
[CAO Guoliang, ZHANG Xiaoye, WANG Yaqiang. Inventory of black carbon emission from China[J]. Advances in Climate Change Research, 2006, 2(6):259-265.]
[6] 贾国东,彭平安,盛国英,等.南沙海区末次冰期以来黑碳的沉积记录[J]. 科学通报,2000,45(6):646-650.
[JIA Guodong, PENG Pingan, SHENG Guoying, et al. Sediment records of black carbon in southern south China since the last glacial period[J]. Chinese Science Bulletin, 2000, 45(6):646-650.]
[7] 杨基峰,应光国,赵建亮,等. 黑碳对污染物环境地球化学过程的影响[J]. 生态环境,2008, 17(4):1685-1689.
[YANG Jifeng, YING Guoguang, ZHAO Jianliang, et al. Advance in research on the influence of black carbon on the environmental geochemistry processes of environmental contaminants[J]. Ecology and Environment, 2008,17(4):1685-1689.]
[8] Streets G D, Gupta S, Waldhoffa T S. Black carbon emissions in China[J]. Atmospheric Environment, 2001,35:4281-4296
[9] Schmidt M W I, Noack A G. Black carbon in soils and sediments:analysis, distribution, implications, and current challenges[J]. Global Biogeochemical Cycles, 2000, 14(3), 777-793.
[10] Liousse C,Penner J E, Chuang C, et al. A global three-dimensional model study of carbonaceous aerosols[J]. Journal of Geophysical Research, 1996, 101:19411-19432.
[11] Badarinath K V S, Latha M K. Direct radiative forcing from black carbon aerosols over urban environment[J]. Advances in Space Research, 2006, 37:2183-2188.
[12] 赵敬德, 亢燕铭. 黑碳气溶胶浓度测量的研究进展[J]. 能源与环境, 2007,3:92-94.[ZHAO Jingde, KANG Yanming. Progress of black carbon aerosol concentration research[J]. Energy and Environment, 2007
, 3:92-94.]
[13] 张美根, 徐永福, 张仁健,等.东亚地区春季黑碳气溶胶源排放及其浓度分布[J].地球物理学报,2005,48(1):46-51.
[ZHANG Meigen, XU Yongfu, ZHANG Renjian, et al. Emission and concentration distribution of black carbon aerosol in East Asia during spring time[J]. Chinese Journal of Geophys,2005, 48(1):46-51.]
[14] Verardo D J, Ruddiman W F. Late Pleistocene charcoal in tropical Atlantic deep-sea sediments:Climatic and geochemical significance[J]. Geology, 1996, 24(9):855-857.
[15] Sander van der Kaars, Wang X, Peter K, et al. A Late Quaternary palaeoecological record from the Banda Sea, Indonesia:patterns of vegetation, climate and biomass burning in Indonesia and northern Australia[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2000, 155:135-153.
[16] Clarky D A, None J K. Soot in the Arctic snowpack:a cause for perturbations in radiative transfer[J]. Atmospheric Environment, 1985,19(12):2045-2053.
[17] Warren G S, Clarky D A. Soot in the Atmosphere and Snow Surface of Antarctica[J]. Journal of Geophysical Research, 1990, 95(2):1811-1816.
[18] Cachier H, Pertuisot M H. Particulate carbon in Arctic ice[J]. Analusis, 1994, 22:34-37.
[19] Sun X S, Peng P, Song J Z, et al. Sedimentary record of black carbon in the Pearl River estuary and adjacent northern South China Sea[J].Geochemistry, 2008, 23:3464-3472.
[20] Simpson J M, Hatcher G P. Overestimates of black carbon in soils and sediments[J]. Naturwissenschaften, 2004, 91:436-440.
[21] Kuhlbusch T A J, Crutzen P J. Toward a global estimate of black carbon in residues of vegetation fires representing a sink of atmospheric CO2 and a source of O2[J]. Global Biogeochemical Cycles, 1995, 9(4):491-501.
[22] 李杨, 曹军骥, 张小曳,等. 2003年秋季西安大气中黑碳气溶胶的演化特征及其来源解析[J].气候与环境研究, 2005, 10(2):229-237.
[LI Yang, CAO Junji, ZHANG Xiaoye. The variability and source apportionment of black carbon aerosol in Xi'an atmosphere during the autumn of 2003[J]. Climatic and Environmental Research, 2005, 10(2):229-237.]
[23] 郑安桥, 苏亚欣, 赵敬德. 黑碳气溶胶研究现状[J]. 能源环境保护, 2007, 21(5):4-9.
[ZHENG Anqiao, SU Yaxin, ZHAO Jingde. Review on black carbon aerosol[J]. Energy Environmental Protection, 2007, 21(5):4-9.]
[24] Novakov T, Ramanathan V, Hansen J E, et al. Large historical changes of fossil-fuel black carbon aerosols[M]. Ernest Orlando Lawrence Berkeley National Laboratory, 2002:1-17.
[25] 许黎,王亚强, 陈振林,等. 黑碳气溶胶研究进展I:排放、清除和浓度[J]. 地球科学进展, 2006, 21(4):352-360.
[XU Li, WANG Yaqiang, CHEN Zhenlin, et al. Progress of black carbon aerosol research I:Emission,removal and concentration[J]. Advances in Earth Science, 2006,21(4):352-360.]
[26] Ogren J A, Charls R J. Elemental carbon in the atmosphere:cycle and lifetime[J].Tellus, 1983, 35B:2412-254.
[27] Dai X, Boutton T W, Glaser B, et al. Black carbon in a temperate mixed-grass savanna[J]. Soil Biology and Biochemistry, 2005, 37:1879-1881.
[28] Gustafsson ö, Geschwend P M,. The flux of black carbon to surface sediments on the New England continental shelf[J]. Geochimica et Cosmochimica Acta, 1998, 62:465-472.
[29] 白建辉, 王庚辰. 黑碳气溶胶的研究新进展[J]. 科学技术与工程, 2005, 5(9):585-592.
[BAI Jianhui, WANG Gengchen. The advance in black carbon aerosol[J]. Science Technology and Engineering, 2005, 5(9):585-592.]
[30] 章秋英,牛生杰,沈建国,等.半干旱区冬春季黑碳气溶胶吸收特性的观测研究[J]. 中国沙漠, 2009, 29(1):183-188.
[ZHANG Qiuying, NIU Shengjie, SHEN Jianguo, et al. Observational study on aerosol absorption properties in winter and spring in semiarid area[J]. Journal of Desert Research, 2009,29(1):183-188.]
[31] Liu L, Mishchenko M I, Menona S, et al. The effect of black carbon on scattering and absorption of solar radiation by cloud droplets[J]. Journal of Quantitative Spectroscopy & Radiative Transfer, 2002, 74:195-204.
[32] 马井会, 郑有飞, 张华. 黑碳气溶胶光学厚度的全球分布及分析[J].气象科学,2007,27(5):549-556.
[MA Jinghui, ZHENG Youfei, ZHANG Hua. The optical depth global distribution of black carbon aerosol and its possible reason analysia[J]. Scientia Meteorologica Sinica, 2007, 27(5):549-556.]
[33] 章澄昌,周文贤. 大气气溶胶教程[M]. 北京:气象出版社,1995:276-317.[ZHANG Chengchang, ZHOU Wenxian. Atmospheric Aerosol Course[M]. Beijing:China Meteorological Press, 1995:276
-317.]
[34] 李建云, 张杰, 田密. 中国地区黑碳气溶胶直接辐射效应的数值模拟研究[J]. 气象与减灾研究, 2009,32(1):15-24.
[LI Jianyun, ZHANG Jie, TIAN Mi. Simulation of the direct radioactive effects of black carbon aerosol in China[J]. Meteorology and Disaster Reduction research, 2009, 32(1):15-24.]
[35] Satheesh K S, Ramanathan V, et al. A model for the natural and anthropogenic aerosols over the tropical Indian Ocean derived from Indian Ocean Experiment data[J]. Journal of Geophysical Research, 1999, 104:27,421-27,440.
[36] 张华, 马井会, 郑有飞. 黑碳气溶胶辐射强迫全球分布的模拟研究[J]. 大气科学, 2008, 32(5):1147-1158.
[ZHANG Hua, MA Jinghui, ZHENG Youfei. The study of global radiative forcing due to black carbon aerosol[J]. Chinese Journal of Atmospheric Sciences, 2008, 32(5):1147-1158.]
[37] 张杰,张强,郭铌,等. 应用EOS-MODIS卫星资料反演西北干旱绿洲的地表反照率[J]. 大气科学, 2005, 29(4):510-517.
[ZHANG Jie, ZHANG Qiang, GUO Ni, et al. Retrieval of the land surface albedo over arid Oasis of northwest China from EOS-MODIS data[J]. Chinese Journal of Atmospheric Sciences, 2005, 29(4):510-517.]
[38] 杨娟,陈洪滨,王开存,等. 利用MODI S卫星资料分析北京地区地表反照率时空分布及变化特征[J]. 遥感技术与应用, 2006, 21(5):403-407.
[YANG Juan, CHEN Hongbin, WANG Kaicun, et al. Analysis of the surface albedo distribution and variation in Beijing region by using the MODIS data[J]. Remote Sensing Technology and Application, 2006, 21(5):403-407.]
[39] Jacobson M Z. Strong radiative heating due to the mixing state of black carbon in atmospheric aerosols[J]. Nature, 2001:695-697.
[40] Jacobson M Z. Control of fossil-fuel particulate black carbon or organic matter, possibly the effective method of slowing global warming[J]. Journal of Geophysical Research, 2002, 107.
[41] Flanner M G, Zender C S, Randerson J T, et al. Present-day forcing and response from black carbon in snow[J]. Journal of Geophysical Research, 2007, 112.
[42] Ramanathan V, Carmichael G. Global and regional climate changes due to black carbon[J]. Nature, 2008:221-227.
[43] Haywood J M, Ramaswamy V. Global sensitivity studies of the direct radiative forcing due to anthropogenic sulfate and black carbon aerosols[J]. Journal of Geophysical Research, 1998, 103(D6):6043-6058.
[44] Highwood E J, Kinnersley R P. When smoke gets in our eyes:the multiple impacts of atmospheric black carbon on climate, air quality and health[J]. Environment International, 2006, 32:560-566.
[45] Jacobson M Z. A physically-based treatment of elemental carbon optics:Implications for global direct forcing of aerosols[J]. Journal of Geophysical Research, 2000, 27(2):217-220.
[46] IPCC. Climate Change 2007:The Physical Science Basis、Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change[M]. Cambridge, UK and New York, USA:Cambridge University Press,2007.
[47] Chung C E, Ramanathan V, Kim D, et al. Global anthropogenic aerosol direct forcing derived from satellite and ground-based observations[J]. Journal of Geophysical Research, 2005, 110:1-17.
[48] Schmidt W I M, Skjemstad O J, Czimczik I C, et al. Comparative analysis of black carbon in soil[J]. Global Biogeo Chemical Cycles, 2001, 15(1):163-167.
[49] 许黎, 王亚强, 罗勇,等. 黑碳气溶胶的气候效应和拓展的研究领域[J]. 气候变化研究进展, 2007, 3(6):328-333.
[XU Li, WANG Yaqiang, LUO Yong, et al. Research progress in climate effects of black carbon aerosol and its expanding fields[J]. Advances in Climate Change Research, 2007, 3(6):328-333.]
[50] Chung S H, Seinfeld J H. Climate response of direct radiative forcing of anthropogenic black carbon[J]. Journal of Geophysical Research, 2005, 110:1-25.
[51] Jacobson M Z. Climate response of fossil fuel and biofuel soot, accounting for soot's feedback to snow and sea ice albedo and emissivity[J]. Journal of Geophysical Research, 2004, 109:1-15.
[52] 肖红,张保森,魏云慧. 灰霾天气的危害与预防途径[J].湖北气象,2006(3):44.[XIAO Hong, ZHANG Baosen, WEI Yunhui. Injury and prevention of the haze weather[J]. Hubei Weather, 2006(3
):44.]
[53] Scholes M, Andreae M O. Biogenic and pyrogenic emission from Africa and their impact on the global atmosphere[J]. Ambio, 2000,29:23-29.
[54] Ramanathan V, Crutzen J P, Lelieveld J, et al. Indian Ocean experiment:An integrated analysis of the climate forcing and effects of the great Indo-Asian haze[J]. Journal of Geophysical Research, 2001, 106:28371-28398.
[55] Haywood J M, Osborne R S, Francis N P, et al. The mean physical and optical properties of regional haze dominated by biomass burning aerosol measured from the C-130 aircraft during SAFARI 2000[J]. Journal of Geophysical Research, 2003, 108:1-14.
[56] Andreae O M, Jones D C, Cox M P. Strong present-day aerosol cooling implies a hot future[J]. Nature, 2005,435(30):1187-1190.
[57] 孙家仁, 刘煜. 中国区域气溶胶对东亚夏季风的可能影响(Ⅱ):黑碳气溶胶及其与硫酸盐气溶胶的综合影响[J]. 气候变化研究进展,2008,4(3):161-166.
[SUN Jiaren, LIU Yu. Possible effect of aerosols over China on east Asian summer monsoon(Ⅱ):black carbon and its joint effects with sulfate aerosols[J]. Advances in Climate Change Research, 2008,4(3):161-166.]
[58] Schult I. Effect of black carbon and sulfat aerosols on the Global Radiation Budget[J]. Journal of Geophysical Research, 1997,102(D25):30107-30117.
[59] 张瑛, 高庆先. 硫酸盐和碳黑气溶胶辐射效应的研究[J]. 应用气象学报, 1997, 8(Suppl):87-91.[ZHANG Ying, GAO Qingxian. A study on the radiative effect of sulfate and soot aerosol[J]. Quarterly Journal of Applied Meteorology, 1997
, 8(,Suppl):87-91.]
[60] Menon S, Hansen J, Nazarenko L, et al. Climate effects of black carbon aerosols in China and India[J].Science,2002, 297:2250-2253.
[61] 张靖,银燕.黑碳气溶胶对我国区域气候影响的数值模拟[J].南京气象学院学报,2008,31(6):852-859.
[ZHANG jing, YIN yan. Numerical simulations of effect of black carbon aerosol on regional climate in China[J]. Journal of Nanjing Institute of Meteorology, 2008, 31(6):852-859.]
[62] Lim B, Cachier H. Determination of black carbon by chemical oxidation and thermal treatment in recent marine and lake sediments and Cretaceous-Tertiary clays[J]. Chemical Geology, 131(1996):143-154.
[63] Masiello C A, Druffel E R M. Black carbon in deep-sea sediments[J]. Science, 1998, 280(5371):1911-1913.
[64] Masiello C A. New directions in black carbon organic geochemistry[J]. Marine Chemistry, 2004, 92:201-213.
[65] Dickens A F, Ge linas Y, Masiello C A, et al. Reburial of fossil organic carbon in marine sediments[J]. Nature, 2004, 427:336-339.
[66] Kim S K, Benner R, Hatcher P G. Hydrogen deficient molecules in natural riverine water samples-evidence for existence for black carbon in DOM[J]. Marine Chemistry, 2004, 92:225-234.
[67] Wang X, Peng P A, Ding Z L. Black carbon records in Chinese Loess Plateau over the last two glacial cycles and implications for paleofires[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2005,223:9-19.
[68] 刘东生. 黄土与环境[M]. 北京:科学出版, 1985.[LIU Tungsheng. Loess and the Environment[M]. Beijing:Science Press, 1985.]
[69] Goldberg E D, Hodge V, Griffin J J, et al. Impact of fossil fuel combustion on the sediments of Lake Michigan[J]. Environmental Science and Technology, 1981, 15:466-471.
[70] Muri G, Cermel J B, Faganeli J, et al. Black carbon in Slovenian alpine lacustrine sediments[J]. Chemosphere, 2002, 46:1225-1234.
[71] Johnson T C, Evans J E. Total organic carbon in Lake Superior sediments:comparisons with hemipelagic and pelagic marine environments[J]. Limnology Oceanography, 1982, 27:481-491.
[72] Rose N L, Juggins S. A spatial relationship between carbonaceous particles in lake sediments and sulphur deposition[J]. Atmospheric Environment, 1994, 28:177-183.
[73] Wik M, Natkanski J. British and Scandinavian lake sediment records of carbonaceous particles from fossil fuel combustion[J]. Philosophical Transactions of the Royal Society, London, 1990, 327:319-323.
[74] Planinsek A. Air pollution in Slovenia[J]. Hydrometeorological Institute of Slovenia, Ljubljana. 19.
[75] 明镜, 效存德, 秦大河. 雪冰黑碳的气候效应研究[J]. 气候变化研究进展, 2006, 2(5):1673-1719.
[MING Jing, XIAO Cunde, QIN Dahe. Black carbon in snow and ice:a review[J]. Advances in Climate Change Research, 2006, 2(5):1673-1719.]
[76] Lavanchy V M H, Gaggler H W, Schot terer U, et al. Historical record of carbonaceous particle concent rations from a European high-alpine glacier (Colle Gnifetti, Switzerland)[J]. Journal of Geophysical Research, 1999, 104:21,227-21,236.
[77] G linas Y, Prentice M K, Baldock A J, et al. An improved thermal oxidation method for the quantification of soot/graphitic black carbon in sediments and soils[J]. Environmental Science Technology, 2001, 35(17):3519-3525.
[78] Middelburg J J, Nieuwenhuize J, Breugel V P. Black carbon in marine sediments[J]. Marine Chemistry, 1999, 65:245-252.
[79] Trumbore S E, Chadwick O A, Amundson R. Rapid exchange between soil carbon and atmospheric carbon dioxide driven by temperature change[J]. Science, 1996, 272:392-396.
[80] Poot A, Quik J T K, Veld H, et al. Quantification methods of black carbon:comparison of Rock-Eval analysis with traditional methods[J]. Journal of Chromatography, 2009, 12(16):613-622.
[81] 韩永明, 曹军骥. 环境中的黑碳及其全球生物地球化学循环[J]. 海洋地质与第四纪地质, 2005, 25(1):125-132.
[HAN Yongming, CAO Junji. Black carbon in the environment and its global biogeochemical cycle[J]. Marine Geology and Quaternary Geology, 2005, 25(1):125-132.]
[82] Kuhlbusch T A J. Black carbon in soil, sediments, and ice cores[M]. In:Meyers, R.A. (Ed.). New York:The Encyclopeadia of Environmental Analysis and Remediation. Wiley, 1998.
[83] Kuhlbusch TAJ, Crutzen P J. Black carbon, the global carbon cycle, and atmospheric carbon dioxide[C]//Biomass Burning and Global Change. MIT Press, Cambridge MA, 1,1996:160-169.
[84] Goldberg E D. Black carbon in the environment:properties and distribution[M]. John Wiley & Sons, New York, 1984.
[85] 武华. 土壤黑碳的初步研究[M]. 长春:吉林农业大学. 2008.[WU Hua. Initial research of soil black carbon[M]. Chang Chun:Jilin Agricultural University. 2008.]
[86] Elmquist M, Gustafsson, Andersson P. Quantification of sedimentary black carbon using the chemothermal oxidation method:an evaluation of ex-situ pretreatments and standard additions approaches[J]. Limnology and Oceanography.:Methods, 2004:417-427.
[87] Lavanchy H V M, Gaggeler W H, Nyeki S, et al. Elemental carbon (EC) and black carbon (BC) measurements with a thermal method and an aethalometer at the high-alpine research station Jungfraujoch[J]. Atmospheric Environment, 1999, 33:2759-2769
[88] Wang G C, Bai J H, Kong Q X, et al. Black carbon particles in the urban atmosphere in Beijing[J]. Advances in Atmospheric Sciences, 2005, 22(5):640-646.
[89] Saha A, Despiau S. Seasonal and diurnal variations of black carbon aerosols over a Mediterranean coastal zone[J]. Atmospheric Research, 2009, 92:27-41.
[90] Hansen A D A, Rosen H, Novakov T. The aethalometer-an instrument for the real-time measurement of optical absorption by aerosol particles[J]. The Science of the Total Environment, 1984, 36:191-196.
[91] 汤洁, 温玉璞, 周凌晞,等. 中国西部大气清洁地区黑碳气溶胶的观测研究[J]. 应用气象学报, 1999,10(2):159-170.
[YANG Jie, WEN Yupu, ZHOU Lingxi, et al. Observational study of black carbon in clean air area of western China[J]. Quarterly Journal of Applied Meteorology, 1999, 10(2):159-170.]
[92] Hsieh Y P, Bugna G C. Analysis of black carbon in sediments and soils using multi-element scanning thermal analysis (MESTA)[J]. Organic Geochemistry, 2008, 39:1562-1571.
[93] 邱敬, 高人, 杨玉盛,等. 土壤黑碳的研究进展[J]. 亚热带资源与环境学报, 2009,4(1):88-94.
[QIU Jing, GAO Ren, YANG Yusheng, et al. Advances on research of black carbon in soil[J]. Journal of Subtropical Resources and Environment, 2009, 4(1):88-94.]
[94] Hummes K, Schmidt M, Smernik J R, et al. Comparison of quantification methods to measure fire-derived (black/elemental) carbon in soils and sediments using reference materials from soil, water, sediment and the atmosphere[J]. Global Biogeochemical Cycles, 2007, 21:1-18.
[95] Han Y M, Cao J J, Posmentier E S, et al. The effect of acidification on the determination of elemental carbon, char-, and soot-elemental carbon in soils and sediments[J]. Chemosphere, 2008:1-8.
[96] Rumpel C, Alexis M, Chabbi A, et al. Black carbon contribution to soil organic matter composition in tropical sloping land under slash and burn agriculture[J]. Geoderma, 2006, 130:35-46.
[97] Nguyen H T, Brown A R, Ball P W. An evaluation of thermal resistance as a measure of black carbon content in diesel soot, wood char, and sediment[J]. Organic Geochemistry, 2004, 35:217-234.
[98] Han Y M, Cao J J, An Z S, et al. Evaluation of the thermal/optical reflectance method for quantification of elemental carbon in sediments[J]. Chemosphere, 2007, 69:526-533.
[99] Han Y M, Cao J J, Judith C, et al. Evaluation of the thermal/optical reflectance method for discrimination between char-and soot-EC[J]. Chemosphere, 2007, 69:569-574.
[100] Chow J C, Watson J G, Pritchett L C, et al. The DRI thermal/optical reflectance carbon analysis system:description, evaluation and applications in U.S. air quality studies[J]. Atmospheric Environment, 1993, 27:1185-1201.
[101] Cao J J, Lee S C, Ho K F, et al. Characteristics of carbonaceous aerosol in Pearl River Delta Region, China during 2001 winter period[J]. Atmospheric Environment, 2003, 37:1451-1460.
[102] 黄虹,李顺诚,曹军骥. 大气气溶胶中有机碳和元素碳监测方法的进展[J]. 分析科学学报, 2006, 22(2):225-229.
[HUANG Hong, LI Shuncheng, CAO Junji. Progress of sampling and analysis of aerosol organic and elemental carbon[J]. Journal of Analytical Science, 2006, (2):225-229.]
[103] 张旭东, 梁超, 诸葛玉平,等. 黑碳在土壤有机碳生物地球化学循环中的作用[J]. 土壤通报, 2003, 34(4):349-355.
[ZHANG Xudong, LIANG Chao, ZHUGE Yuping, et al. Roles of black carbon in the biogeochemical cycles of soil organic carbon[J]. Chinese Journal of Soil Science, 2003, 34(4):349-355.]
[104] Glaser B, Haumaier L, Guggenberger G, et al. Black carbon in soils:the use of benzene carboxylic acids as specific markers[J]. Organic Geochemistry, 1998, 29(4):811-819.
[105] Brodowski S, Rodionov A, Haumaier L, et al. Revised black carbon assessment using benzene polycarboxylic acids[J]. Organic Geochemistry, 2005, 36:1299-1310.
[106] Scott A C, Moore J, Brayshay B. Introduction to fire and the palaeoenvironment[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2000, 164:Vii Xi.
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