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  1.Xing W, Bao K, Gallego-Sala A V, et al. Climate controls on carbon accumulation in peatlands of Northeast China[J]. Quaternary Science Reviews, 2015, 115:78–88.  

  2.Xing W, Bao K, Guo W, et al. Peatland initiation and carbon dynamics in northeast China: links to Holocene climate variability[J]. Boreas, 2015, 44:575-587. 

  3.Wang G, Yu X, Bao K, et al. Effect of fire on phosphorus forms in Sphagnum moss and peat soils of ombrotrophic bogs.[J]. Chemosphere, 2015, 119:1329–1334. 

  4.Zhao H, Tong D Q, Gao C, et al. Effect of dramatic land use change on gaseous pollutant emissions from biomass burning in Northeastern China[J]. Atmospheric Research, 2015, 153:429–436. 

  5.Zhang Z, Xing W, Wang G, et al. The peatlands developing history in the Sanjiang Plain, NE China, and its response to East Asian monsoon variation[J]. Scientific reports, 2015, 5. 

  6.Zhang Z, Zhong J, Lv X, et al. Climate, vegetation, and human influences on late-Holocene fire regimes in the Sanjiang plain, northeastern China[J]. Palaeogeography Palaeoclimatology Palaeoecology, 2015, 438:1–8. 

  7.Wang C, Zhao H, Wang G. Vegetation Development and Water Level Changes in Shenjiadian Peatland in Sanjiang Plain,Northeast China[J]. Chinese Geographical Science, 2015, 25. 

  8.Gao C, Lin Q, Zhang S, et al. Historical trends of atmospheric black carbon on Sanjiang Plain as reconstructed from a 150-year peat record.[J]. Scientific Reports, 2014, 4:5723-5723. 

  9.Gao C, Lin Q, Bao K, et al. Historical variation and recent ecological risk of heavy metals in wetland sediments along Wusuli River, Northeast China[J]. Environmental Earth Sciences, 2014, 72(11): 4345-4355. 

  10.Gao C, Bao K, Lin Q, et al. Characterizing trace and major elemental distribution in late Holocene in Sanjiang Plain, Northeast China: Paleoenvironmental implications[J]. Quaternary International, 2014, 349: 376-383. 

  11.Yu X, Grace M, Zou Y, et al. Surface Sediments in the Marsh-Sandy Land Transitional Area: Sandification in the Western Songnen Plain, China[J]. Plos One, 2014, 9(6):e99715. 

  12.Zhang Z, Xing W, Lv X, et al. The grain-size depositional process in wetlands of the Sanjiang Plain and its links with the East Asian monsoon variations during the Holocene[J]. Quaternary International, 2014, 349:245–251. 

  13.Zhang Z Q, Wang G P, Lv X G, et al. The sharp decline of East Asian summer monsoon at mid-Holocene indicated by the lake-wetland transition in the Sanjiang Plain, northeastern China[J]. Climate of the Past Discussions, 2014, 10(6):4595-4622. 

  14.Bao K, Wang G, Xing W, et al. Accumulation of organic carbon over the past 200 years in alpine peatlands, northeast China[J]. Environmental Earth Sciences, 2014:1-15. 

  15.Bao K, Shen J, Zhang Y, et al. A 200-year record of polycyclic aromatic hydrocarbons contamination in an ombrotrophic peatland in Great Hinggan Mountain, northeast China[J]. Journal of Mountain Science, 2014, 11(5): 1085-1096. 

  16.Zhang Y, Liu X, Lin Q, et al. Vegetation and climate change over the past 800years in the monsoon margin of northeastern China reconstructed from n-alkanes from the Great Hinggan Mountain ombrotrophic peat bog[J]. Organic Geochemistry, 2014, 76: 128-135. 

  17.Wang X, Lin Q, Wang J, et al. Effect of wetland reclamation and tillage conversion on accumulation and distribution of phthalate esters residues in soils[J]. Ecological Engineering, 2013, 51(1):10–15. 

  18.Bao K, Wei X, Yu X, et al. Recent atmospheric dust deposition in an ombrotrophic peat bog in Great Hinggan Mountain, Northeast China.[J]. Science of the Total Environment, 2012, 431(5):33-45. 

  19.Zhao H, Tong D Q, Lin Q, et al. Effect of fires on soil organic carbon pool and mineralization in a Northeastern China wetland[J]. Geoderma, 2012, s 189–190(6):532–539. 

  20.Wang G, Bao K, Yu X, et al. Forms and accumulation of soil P in a subalpine peatland of Mt. Changbai in Northeast China[J]. Catena, 2012, 92(3):22–29. 

  21.Yu X, Zou Y, Jiang M, et al. Response of soil constituents to freeze–thaw cycles in wetland soil solution[J]. Soil Biology & Biochemistry, 2011, 43(6):1308–1320. 

  22.Yu X, Zhang Y X, Zou Y C, et al. Adsorption and Desorption of Ammonium in Wetland Soils Subject to Freeze-Thaw Cycles[J]. Pedosphere, 2011, 02(2):251-258. 

  23.Wang G P, Yu X F, Wang J, et al. Dominants and accumulation of rare earth elements in sediments derived from riparian and depressional marshes[J]. Environmental Geology, 2011, 62(1):207-216. 

  24.Zhao H, Bao K, Tong D Q, et al. Ecophysilogical influences of prescribed burning on weland plants:a case study in sanjiang plain wetlands,northeast china [J]. Fresenius EnvironmentalBulletin, 2011, 20(11): 2932-2938. 

  25.Zhang Z, Sun J. Palynological evidence for Neogene environmental change in the foreland basin of the southern Tianshan range, northwestern China[J]. Global & Planetary Change, 2011, 75(1-2):56–66. 

  26.Bao K, Zhao H, Xing W, et al. Carbon accumulation in temperate wetlands of Sanjiang Plain, Northeast China[J]. Soil Science Society of America Journal, 2011, 75(6): 2386-2397. 

  27.Yu X, Wang G, Zou Y, et al. Effects of Pipeline Construction on Wetland Ecosystems: Russia-ChinaOil Pipeline Project (Mohe-Daqing Section)[J]. Ambio, 2010, 39(5-6):447-450(4). 

  28.Yu X, Zhang Y, Zhao H, et al. Freeze-thaw effects on sorption/desorption of dissolved organic carbon in wetland soils[J]. Chinese Geographical Science, 2010, 20(3): 209-217. 

  29.Wang G P, Zhai Z L, Liu J S, et al. Forms and profile distribution of soil phosphorus in four wetlands across gradients of sand desertification in Northeast China[J]. Geoderma, 2008, 145(1):50–59. 

  30.Wang G P, Liu J S, Zhao H Y, et al. Phosphorus sorption by freeze–thaw treated wetland soils derived from a winter-cold zone (Sanjiang Plain, Northeast China)[J]. Geoderma, 2007, 138(1):153–161. 

  31.Wang G P, Liu J S, Wang J D, et al. Soil phosphorus forms and their variations in depressional and riparian freshwater wetlands (Sanjiang Plain, Northeast China)[J]. Geoderma, 2006, 132(1):59–74. 

  32.Wang G P, Liua J S, Tang J. Long-term nutrient accumulation with respect to anthropogenic impacts in the sediments from two freshwater marshes (Xianghai Wetlands, Northeast China)[J]. Water Research, 2004, 38(20):4462–4474.