[1] IPCC.Intergovernmental Panel on Climate Change,Climate Change[M].Cambridge:Cambridge University Press,2007.
[2] Jacobson M Z.Strong Radiative Heating Due to the Mixing State of Black Carbon in Atmospheric Aerosols[J].Nature,2001,409:695-697.
[3] Menon S,Hansen J,Nazarenko L,et al.Climate Effects of Black Carbon Aerosols in China and India[J].Science,2002,297:2250-2253.
[4] Venkataraman C,Habib G,Eiguren-Fernandez A,et al.Residential Biofuels in South Asia:Carbonaceous Aerosol Emissions and Climate Impacts[J].Science,2005,307:1454-1456.
[5] Gustafsson Ö,Krusa M,Zencak Z,et al.Brown Clouds over South Asia:Biomass or Fossil Fuel Combustion?[J].Science,2009,323:495-498.
[6] Wolbach W S,Gilmour I,Anders E,et al.Global Fire at the Cretaceous:Tertiary Boundary[J].Nature,1988,334:665-669.
[7] Cope M J,Chaloner W G.Fossil Charcoal as Evidence of Past Atmospheric Composition[J].Nature,1980,283:647-649.
[8] Belcher C M,McElwain J C.Limits for Combustion in Low O2 Redefine Paleoatmospheric Predictions for the Mesozoic[J].Science,2008,321:1197-1200.
[9] Kuhlbusch T A J.Ocean Chemistry:Black Carbon and the Carbon Cycle[J].Science,1998,280:1903-1904.
[10] Masiello C A,Druffel E R.Black Carbon in Deep-sea Sedi-ments[J].Science,1998,280:1911-1913.
[11] Masiello C A.New Directions in Black Carbon Organic Geochemistry[J].Marine Chemistry,2004,92(1/2):201-213.
[12] Hammes K,Schmidt M W I,Smernik R J,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(GB3016).DOI:10.1029/2006GB002914.
[13] Lynch A H,Beringer J,Kershaw P,et al.Using the Paleorecord to Evaluate Climate and Fire Interactions in Australia[J].Annual Review of Earth and Planetary Sciences,2007,35:215-239.
[14] DeLuca T H,Aplet G H.Charcoal and Carbon Storage in Forest Soils of the Rocky Mountain West[J].Frontiers in Ecology and the Environment,2008,6(1):18-24.
[15] Goldberg E.Black Carbon in the Environment[M].New York:John Wiley and Sons,1985.
[16] Hedges J I,Eglinton G,Hatcher P G,et al.The Molecularly-uncharacterized Component of Nonliving Organic Matter in Natural Environments[J].Organic Geochemistry,2000,31(10):945-958.
[17] Liang B Q,Lehmann J,Solomon D,et al.Stability of Biomass-derived Black Carbon in Soils[J].Geochimica et Cosmochimica Acta,2008,72(24):6069-6078.
[18] Streets D G,Gupta S,Waldhoff S T,et al.Black Carbon Emissions in China[J].Atmospheric Environment,2001,35(25):4281-4296.
[19] Chameides W L,Bergin M.Climate Change:Soot Takes Center Stage[J].Science,2002,297:2214-2215.
[20] Gelencsér A.Carbonaceous Aerosol[M].New York:Springer-Verlag,2005.
[21] Schmidt M W.Biogeochemistry:Carbon Budget in the Black[J].Nature,2004,427:305-307.
[22] Czimczik C I,Schmidt M W I,Schulze E D.Effects of Increasing Fire Frequency on Black Carbon and Organic Matter in Podzols of Siberian Scots Pine Forests[J].European Journal of Soil Science,2005,56(3):417-428.
[23] Middelburg J J,Nieuwenhuize J,VanBreugel P.Black Carbon in Marine Sediments[J].Marine Chemistry,1999,65(3/4):245-252.
[24] Bird M I,Moyo C,Veenendaal E M,et al.Stability of Elemental Carbon in a Savanna Soil[J].Global Biogeochemical Cycles,1999,13(4):923-932.
[25] Mannino A,Harvey H R.Black Carbon in Estuarine and Coastal Ocean Dissolved Organic Matter[J].Limnology and Oceanography,2004,49(3):735-740.
[26] Baldock J A,Smernik R J.Chemical Composition and Bio-availability of Thermally Altered Pinus Resinosa(Red Pine)Wood[J].Organic Geochemistry,2002,33(9):1093-1109.
[27] Seiler W,Crutzen P J.Estimates of Gross and Net Fluxes of Carbon Between the Biosphere and the Atmosphere from Biomass Burning[J].Climatic Change,1980,2(3):207-247.
[28] Crutzen P J,Andreae M O.Biomass Burning in the Tropics:Impact on Atmospheric Chemistry and Biogeochemical Cycles[J].Science,1990,250:1669-1678.
[29] 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.
[30] Preston C M.Biogeochemistry:Fire's Black Legacy[J].Nature Geoscience,2009,2(10):674-675.
[31] Druffel E R M.Comments on the Importance of Black Carbon in the Global Carbon Cycle[J].Marine Chemistry,2004,92(1/2):197-200.
[32] Dickens A F,Gélinas Y,Masiello C A,et al.Reburial of Fossil Organic Carbon in Marine Sediments[J].Nature,2004,427:336-339.
[33] 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.
[34] Hockaday W C.The Organic Geochemistry of Charcoal Black Carbon in the Soils of the University of Michigan Biological Station[D].Columbus:The Ohio State University,2006.
[35] Ackerman A S,Toon O B,Stevens D E,et al.Reduction of Tropical Cloudiness by Soot[J].Science,2000,288:1042-1047.
[36] Ramanathan V,Carmichael G.Global and Regional Climate Changes Due to Black Carbon[J].Nature Geoscience,2008,1(4):221-227.
[37] Wang C.A Modeling Study on the Climate Impacts of Black Carbon Aerosols[J].Journal of Geophysical Research,2004,109(D03106).DOI:10.1029/2003JD004084.
[38] Jacobson M Z.Control of Fossil-fuel Particulate Black Carbon and Organic Matter,Possibly the Most Effective Method of Slowing Global Warming[J].Journal of Geophysical Research,2002,107(4410).DOI:10.1029/2001JD001376.
[39] Sander M,Pignatello J J.Characterization of Charcoal Ad-sorption Sites for Aromatic Compounds:Insights Drawn from Single-solute and Bi-solute Competitive Experiments[J].Environment Science Technology,2005,39(6):1606-1615.
[40] Czimczik C I,Preston C M,Schmidt M W I,et al.How Surface Fire in Siberian Scots Pine Forests Affects Soil Organic Carbon in the Forest Floor:Stocks,Molecular Structure,and Conversion to Black Carbon[J].Global Biogeochemical Cycles,2003,17.DOI:10.1029/2002GB001956.
[41] Piccolo A,Spaccini R,Nieder R,et al.Sequestration of a Biologically Labile Organic Carbon in Soils by Humified Organic Matter[J].Climatic Change,2004,67(2/3):329-343.
[42] Marris E.Putting the Carbon Back:Black Is the New Green[J].Nature,2006,442:624-626.
[43] Smith D M,Griffin J J,Goldberg E D.Elemental Carbon in Marine Sediments:a Baseline for Burning[J].Science,1973,241:268-270.
[44] Verardo D J,Ruddiman W F.Late Pleistocene Charcoal in Tropical Atlantic Deep-sea Sediments:Climatic and Geochemi-cal Significance[J].Geology,1996,24(9):855-857.
[45] Bird M I,Cali J A.A Million-year Record of Fire in Sub-Saharan Africa[J].Nature,1998,394:767-769.
[46] Jia G D,Peng P A,Zhao Q H,et al.Changes in Terrestrial Ecosystem Since 30 Ma in East Asia:Stable Isotope Evidence from Black Carbon in the South China Sea[J].Geology,2003,31(12):1093-1096.
[47] 刘东生.黄土与环境[M].北京:科学出版社,1985.
[48] An Z S.The History and Variability of the East Asian Paleomonsoon Climate[J].Quaternary Science Reviews,2000,19(1/2):171-187.
[49] An Z S,Kutzbach J E,Prell W L,et al.Evolution of Asian Monsoons and Phased Uplift of the Himalaya-Tibetan Plateau Since Late Miocene Times[J].Nature,2001,411:62-66.
[50] Yang Y,Shen C D,Yi W X,et al.The Elemental Carbon Record in Weinan Loess Section Since the Last 21 ka[J].Chinese Science Bulletin,2001,46(18):1541-1543.
[51] 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(1/2):9-19.
[52] Zhou B,Shen C D,Sun W D,et al.Elemental Carbon Record of Paleofire History on the Chinese Loess Plateau During the Last 420 ka and Its Response to Environmental and Climate Changes[J].Palaeogeography,Palaeoclimatology,Palaeoecology,2007,252(3/4):617-625.
[53] Long C J,Whitlock C,Bartlein P J,et al.A 9000-year Fire History from the Oregon Coast Range,Based on a High-resolution Charcoal Study[J].Canadian Journal of Forest Research,1998,28(5):774-787.
[54] Muri G,Cermelj B,Faganeli J,et al.Black Carbon in Slovenian Alpine Lacustrine Sediments[J].Chemosphere,2002,46(8):1225-1234.
[55] 韩永明,曹军骥,金章东,等.岱海与太湖沉积物焦碳和烟炱最近200年历史对比研究[J].第四纪研究,2010,30(3):550-558.
[56] Clarke A D,Noone K J.Soot in the Arctic Snowpack:a Cause for Perturbations in Radiative Transfer[J].Atmospheric Environment,1985,19(12):2045-2053.
[57] Cachier H,Pertuisot M H.Particulate Carbon in Arctic Ice:Ice Archives in Antarctica and Greenland[J].Analusis,1994,22(7):34-37.
[58] Chylek P,Johnson B,Damiano P A,et al.Biomass Burning Record and Black Carbon in the GISP2 Ice Core[J].Geophysical Research Letters,1995,22(2):89-92.
[59] Lavanchy V M H,Gäggeler H W,Schotterer U,et al.Historical Record of Carbonaceous Particle Concentrations from a European High-alpine Glacier(Colle Gnifetti,Switzerland)[J].Journal of Geophysical Research,1999,104(D17):21227-21236.
[60] McConnell J R,Edwards R,Kok G L,et al.20th-century Industrial Black Carbon Emissions Altered Arctic Climate Forcing[J].Science,2007,317:1381-1384.
[61] Ming J,Cachier H,Xiao C,et al.Black Carbon Record Based on a Shallow Himalayan Ice Core and Its Climatic Implications[J].Atmospheric Chemistry and Physics,2008,8(5):1343-1352.
[62] Xu B Q,Cao J J,Hansen J,et al.Black Soot and the Survival of Tibetan Glaciers[J].Proceedings of the National Academy of Sciences,2009,106(52):22114-22118.
[1]文丽敏,张骏.铁锰氧化物对苯酚氧化降解的实验研究[J].地球科学与环境学报,2011,33(02):191.
WEN Li-min,ZHANG Jun.Study on Oxidative Degradation of Phenol by Iron and Manganese Oxides[J].Journal of Earth Sciences and Environment,2011,33(02):191.
[2]唐祥祥,王茉,徐柏青.青藏高原大气和雪冰黑碳的空间分布特征[J].地球科学与环境学报,2017,39(05):695.
TANG Xiang-xiang,WANG Mo,XU Bai-qing.Spatial Distribution Characteristics of Atmosphere and Snow Black Carbons in Qinghai-Tibet Plateau[J].Journal of Earth Sciences and Environment,2017,39(02):695.