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Australian Journal of Earth Sciences
An International Geoscience Journal of the Geological Society of Australia
Volume 71, 2024 - Issue 3
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Research Article

Assessment of two grainsize methods for peat sediments and their paleoenvironmental significance: the Yueliangwan Peatland in northeast Asia

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Pages 411-422 | Received 20 Jun 2023, Accepted 08 Dec 2023, Published online: 01 Feb 2024

References

  • An, Z. (2000). The history and variability of the East Asian paleomonsoon climate. Quaternary Science Reviews, 19(1-5), 171–187. https://doi.org/10.1016/S0277-3791(99)00060-8
  • Bao, K., Wang, G., & Shen, J. (2021). Atmospheric dust deposition history over the past 150 a recorded by mountain peatlands in northeast China. Acta Geographica Sinica, 76, 2283–2296. https://doi.org/10.11821/dlxb202109017
  • Blaauw, M., & Christen, J. A. (2011). Flexible paleoclimate age-depth models using an autoregressive gamma process. Bayesian Analysis, 6(3), 457–474. https://doi.org/10.1214/ba/1339616472
  • Bondevik, S., Svendsen, J. I., & Mangerud, J. (1997). Tsunami sedimentary facies deposited by the Storegga tsunami in shallow marine basins and coastal lakes, western Norway. Sedimentology, 44(6), 1115–1131. https://doi.org/10.1046/j.1365-3091.1997.d01-63.x
  • Chen, J., Nan, Q., Li, T., Sun, R., Sun, H., & Lu, J. (2019). Variations in the East Asian winter monsoon from 3500 to 1300 cal. Yr BP in northern China and their possible societal impacts. Journal of Asian Earth Sciences, 181, 103912. https://doi.org/10.1016/j.jseaes.2019.103912
  • Chevalier, M., & Chase, B. M. (2015). Southeast African records reveal a coherent shift from high- to low-latitude forcing mechanisms along the east African margin across last glacial–interglacial transition. Quaternary Science Reviews, 125, 117–130. https://doi.org/10.1016/j.quascirev.2015.07.009
  • Conroy, J. L., Overpeck, J. T., Cole, J. E., Shanahan, T. M., & Steinitz-Kannan, M. (2008). Holocene changes in eastern tropical Pacific climate inferred from a Galápagos lake sediment record. Quaternary Science Reviews, 27(11-12), 1166–1180. https://doi.org/10.1016/j.quascirev.2008.02.015
  • Ding, Y., Sun, Y., Wang, Z., Zhu, Y., & Song, Y. (2009). Inter‐decadal variation of the summer precipitation in China and its association with decreasing Asian summer monsoon. Part II: Possible causes. International Journal of Climatology, 29(13), 1926–1944. https://doi.org/10.1002/joc.1759
  • Ding, Y., Wang, Z., & Sun, Y. (2008). Inter-decadal variation of the summer precipitation in East China and its association with decreasing Asian summer monsoon. Part I: Observed evidences. International Journal of Climatology, 28(9), 1139–1161. https://doi.org/10.1002/joc.1615
  • Ding, Z., Yu, Z., Rutter, N. W., & Liu, T. (1994). Towards an orbital time scale for Chinese loess deposits. Quaternary Science Reviews, 13(1), 39–70. https://doi.org/10.1016/0277-3791(94)90124-4
  • Folk, R. L., & Ward, W. C. (1957). Brazos River bar: A study in the significance of grain size parameters. Journal of Sedimentary Research, 27(1), 3–26. https://doi.org/10.1306/74D70646-2B21-11D7-8648000102C1865D
  • Guo, Z. T., Sun, B., Zhang, Z. S., Peng, S. Z., Xiao, G. Q., Ge, J. Y., Hao, Q. Z., Qiao, Y. S., Liang, M. Y., Liu, J. F., Yin, Q. Z., & Wei, J. J. (2008). A major reorganization of Asian climate by the early Miocene. Climate of the Past, 4(3), 153–174. https://doi.org/10.5194/cp-4-153-2008
  • Hao, T., Liu, X., Ogg, J., Liang, Z., Xiang, R., Zhang, X., Zhang, D., Zhang, C., Liu, Q., & Li, X. (2017). Intensified episodes of East Asian Winter Monsoon during the middle through late Holocene driven by North Atlantic cooling events: High-resolution lignin records from the South Yellow Sea, China. Earth and Planetary Science Letters, 479, 144–155. https://doi.org/10.1016/j.epsl.2017.09.031
  • Huang, J., Li, A., & Wan, S. (2011). Sensitive grain-size records of Holocene East Asian summer monsoon in sediments of northern South China Sea slope. Quaternary Research, 75(3), 734–744. https://doi.org/10.1016/j.yqres.2011.03.002
  • Humphries, M. S., Benitez-Nelson, C. R., Bizimis, M., & Finch, J. M. (2017). An aeolian sediment reconstruction of regional wind intensity and links to larger scale climate variability since the last deglaciation from the east coast of southern Africa. Global and Planetary Change, 156, 59–67. https://doi.org/10.1016/j.gloplacha.2017.08.002
  • Jie, D., & Hu, K. (2005). 东北地区沙尘暴粉尘气溶胶的成分组成与来源分析[Study on element combination of sand dust storm and source in Northeast district]. In The Progress of the Scientific and Technological Research of the Atmosphere in the Eighth National and the Second Strait of the Two Straits (pp. 139–144).
  • Jie, D., Hu, K., & Chen, B. (2010). 东北地区尘暴研究 [Dust Storms in Northeast China]. Geology Press.
  • Jie, D-m., Hu, K., Huo, X-j., Li, J., & Lü, J-f. (2004). 东北地区2002年春季沙尘暴的物质特征和成因分析 [The material character of sand dust and analysis on the cause of formation of the sand-dust storm in northeast district in spring of 2002]. Huanjing Kexue, 25(2), 27–31. https://doi.org/10.13227/j.hjkx.2004.02.006
  • Kaboth-Bahr, S., Bahr, A., Zeeden, C., Yamoah, K. A., Lone, M. A., Chuang, C-K., Löwemark, L., & Wei, K-Y. (2021). A tale of shifting relations: East Asian summer and winter monsoon variability during the Holocene. Scientific Reports, 11(1), Article 1. https://doi.org/10.1038/s41598-021-85444-7
  • Kinnard, C., Zdanowicz, C. M., Fisher, D. A., Isaksson, E., de Vernal, A., & Thompson, L. G. (2011). Reconstructed changes in Arctic sea ice over the past 1,450 years. Nature, 479(7374), 509–512. https://doi.org/10.1038/nature10581
  • Krumbein, W. C., & Pettijohn, F. J. (1938). Manual of Sedimentary Petrology. Appleton Century Crofts.
  • Leng, C. C. (2019). 晚冰期以来孤山屯泥炭地高分辨率气候变化的植硅体记录 [Phytolith record of high resolution climate change in Gushantun peatland since Late Glacial Age] [unpublished Master’s thesis]. Northeast Normal University.
  • Li, F., & Wang, H. (2012). Predictability of the East Asian winter monsoon interannual variability as indicated by the DEMETER CGCMS. Advances in Atmospheric Sciences, 29(3), 441–454. https://doi.org/10.1007/s00376-011-1115-3
  • Li, N., Chambers, F. M., Yang, J., Jie, D., Liu, L., Liu, H., Gao, G., Gao, Z., Li, D., Shi, J., Feng, Y., & Qiao, Z. (2017). Records of East Asian monsoon activities in Northeastern China since 15.6 ka, based on grain size analysis of peaty sediments in the Changbai Mountains. Quaternary International, 447, 158–169. https://doi.org/10.1016/j.quaint.2017.03.064
  • Li, N., Jie, D., Yang, J., Chen, X., Chen, Y., Hu, C., & Qiao, Z. (2014). 长白山西麓泥炭灰分粒度特征及其环境意义 [Grain-size characteristics and environmental significance of peat ash in the west foothill of Changbai Mountain]. Acta Sedimentologica Sinica, 32(5), 873–883. https://doi.org/10.14027/j.cnki.cjxb.2014.05.031
  • Li, N., Sharifi, A., Chambers, F. M., Ge, Y., Dubois, N., Gao, G., Li, D., Liu, L., Liu, H., Wang, J., Niu, H., Meng, M., Liu, Y., Zhang, G., & Jie, D. (2021). Linking Holocene East Asian monsoon variability to solar forcing and ENSO activity: Multi-proxy evidence from a peatland in northeastern China. The Holocene, 31(6), 966–982. https://doi.org/10.1177/0959683621994662
  • Liu, H., Gu, Y., Qin, Y., Yu, Z., Huang, X., Xie, S., Zheng, M., Zhang, Z., & Cheng, S. (2021). The elemental enrichments at Dajiuhu Peatland in the Middle Yangtze Valley in response to changes in East Asian monsoon and human activity since 20,000 cal yr BP. The Science of the Total Environment, 757, 143990. https://doi.org/10.1016/j.scitotenv.2020.143990
  • Liu, L., Bu, Z., Liu, S., Chen, Y., Feng, L., Fu, B., Yang, Y., & Wang, S. (2019). 沙尘沉降可能阻滞泥炭地植被的自发演替 [Sand and dust deposition may retard the autogenic vegetation succession of peatlands]. Scientia Geographica Sinica, 39(2), 351–358. https://doi.org/10.13249/j.cnki.sgs.2019.02.020
  • Lu, H., & An, Z. (1997). 前处理方法对黄土沉积物粒度测量影响的实验研究 [Experimental study on the effect of pretreatment methods on particle size measurement of loess sediments]. Chinese Science Bulletin, 42(23), 2535–2538.
  • Lu, H., Miao, X., & Sun, Y. (2002). 前处理步骤与方法对风成红粘土粒度测量的影响 [Pretreatment methods and their influences on grain-size measurement of aeolian “red clay” in north China]. Marine Geology & Quaternary Geology, 22(3), 129–135. https://doi.org/10.16562/j.cnki.0256-1492.2002.03.021
  • Maher, B. A. (1998). Magnetic properties of modern soils and Quaternary loessic paleosols: Paleoclimatic implications. Palaeogeography, Palaeoclimatology, Palaeoecology, 137(1-2), 25–54. https://doi.org/10.1016/S0031-0182(97)00103-X
  • Mayewski, P. A., Rohling, E. E., Curt Stager, J., Karlén, W., Maasch, K. A., David Meeker, L., Meyerson, E. A., Gasse, F., van Kreveld, S., Holmgren, K., Lee-Thorp, J., Rosqvist, G., Rack, F., Staubwasser, M., Schneider, R. R., & Steig, E. J. (2004). Holocene climate variability. Quaternary Research, 62(3), 243–255. https://doi.org/10.1016/j.yqres.2004.07.001
  • Moskalewicz, D., Szczuciński, W., Mroczek, P., & Vaikutienė, G. (2020). Sedimentary record of historical extreme storm surges on the Gulf of Gdańsk coast, Baltic Sea. Marine Geology, 420, 106084. https://doi.org/10.1016/j.margeo.2019.106084
  • Patterson, E. M., & Gillette, D. A. (1977). Commonalities in measured size distributions for aerosols having a soil-derived component. Journal of Geophysical Research, 82(15), 2074–2082. https://doi.org/10.1029/JC082i015p02074
  • Peng, Y., Xiao, J., Nakamura, T., Liu, B., & Inouchi, Y. (2005). Holocene East Asian monsoonal precipitation pattern revealed by grain-size distribution of core sediments of Daihai Lake in Inner Mongolia of north-central China. Earth and Planetary Science Letters, 233(3-4), 467–479. https://doi.org/10.1016/j.epsl.2005.02.022
  • Porter, S. C. (2001). Chinese loess record of monsoon climate during the last glacial–interglacial cycle. Earth-Science Reviews, 54(1-3), 115–128. https://doi.org/10.1016/S0012-8252(01)00043-5
  • Porter, S. C., & Zhisheng, A. (1995). Correlation between climate events in the North Atlantic and China during the last glaciation. Nature, 375(6529), 305–308. https://doi.org/10.1038/375305a0
  • Pratte, S., Bao, K., Sapkota, A., Zhang, W., Shen, J., Le Roux, G., & De Vleeschouwer, F. (2020). 14 kyr of atmospheric mineral dust deposition in north-eastern China: A record of palaeoclimatic and palaeoenvironmental changes in the Chinese dust source regions. The Holocene, 30(4), 492–506. https://doi.org/10.1177/0959683619892661
  • Pye, K. (2015). Aeolian Dust and Dust Deposits. Elsevier.
  • Rea, D. K. (1994). The paleoclimatic record provided by eolian deposition in the deep sea: The geologic history of wind. Reviews of Geophysics, 32(2), 159–195. https://doi.org/10.1029/93RG03257
  • Reimer, P. J., Austin, W. E. N., Bard, E., Bayliss, A., Blackwell, P. G., Bronk Ramsey, C., Butzin, M., Cheng, H., Edwards, R. L., Friedrich, M., Grootes, P. M., Guilderson, T. P., Hajdas, I., Heaton, T. J., Hogg, A. G., Hughen, K. A., Kromer, B., Manning, S. W., Muscheler, R., … Talamo, S. (2020). The IntCal20 Northern Hemisphere Radiocarbon Age Calibration Curve (0–55 cal kBP). Radiocarbon, 62(4), 725–757. https://doi.org/10.1017/RDC.2020.41
  • Shanxi Team of Chengdu College of Geology (1978). 沉积岩(物)粒度分析及其应用 [Grain size analysis of sedimentary rocks and its application]. Geology Press.
  • Shi, X. F., Chen, C. F., Liu, Y. G., Ren, H., & Wang, H. Y. (2002). Trend analysis of sediment grain size and sedimentary process in the central South Yellow Sea. Chinese Science Bulletin, 47(14), 1202–1207. https://doi.org/10.1360/02tb9269
  • Shi, Z. (2016). Response of Asian summer monsoon duration to orbital forcing under glacial and interglacial conditions: Implication for precipitation variability in geological records. Quaternary Science Reviews, 139, 30–42. https://doi.org/10.1016/j.quascirev.2016.03.008
  • Stebich, M., Rehfeld, K., Schlütz, F., Tarasov, P. E., Liu, J., & Mingram, J. (2015). Holocene vegetation and climate dynamics of NE China based on the pollen record from Sihailongwan Maar Lake. Quaternary Science Reviews, 124, 275–289. https://doi.org/10.1016/j.quascirev.2015.07.021
  • Steinhilber, F., Beer, J., & Fröhlich, C. (2009). Total solar irradiance during the Holocene. Geophysical Research Letters, 36(19), L19704. https://doi.org/10.1029/2009GL040142
  • Sun, D., Bloemendal, J., Rea, D. K., Vandenberghe, J., Jiang, F., An, Z., & Su, R. (2002). Grain-size distribution function of polymodal sediments in hydraulic and aeolian environments, and numerical partitioning of the sedimentary components. Sedimentary Geology, 152(3-4), 263–277. https://doi.org/10.1016/S0037-0738(02)00082-9
  • Sun, Y., Clemens, S. C., An, Z., & Yu, Z. (2006). Astronomical timescale and palaeoclimatic implication of stacked 3.6-Myr monsoon records from the Chinese Loess Plateau. Quaternary Science Reviews, 25(1-2), 33–48. https://doi.org/10.1016/j.quascirev.2005.07.005
  • Sun, Y., Gao, S., & Lu, H. (2001). 前处理方法对北黄海沉积物粒度的影响[Influence of different pretreatment procedures on the particle-size distribution of surficial sediments in the northern Yellow Sea]. Oceanologia et. Limnologia Sinica, 32(6), 665–671.
  • Vandel, E., Vaasma, T., & Sugita, S. (2020). Application of image analysis technique for measurement of sand grains in sediments. MethodsX, 7, 100981. https://doi.org/10.1016/j.mex.2020.100981
  • Vandenberghe, J., Sun, Y., Wang, X., Abels, H. A., & Liu, X. (2018). Grain-size characterization of reworked fine-grained aeolian deposits. Earth-Science Reviews, 177, 43–52. https://doi.org/10.1016/j.earscirev.2017.11.005
  • Wang, H. J. (2001). The weakening of the Asian monsoon circulation after the end of 1970’s. Advances in Atmospheric Sciences, 18(3), 376–386.
  • Wang, J., Li, A., Xu, K., Zheng, X., & Huang, J. (2015). Clay mineral and grain size studies of sediment provenances and paleoenvironment evolution in the middle Okinawa Trough since 17ka. Marine Geology, 366, 49–61. https://doi.org/10.1016/j.margeo.2015.04.007
  • Wang, L., Li, X., Hong, B., Zhao, N., & Li, L. (2018). 前处理方法对马兰黄土粒度测量影响的实验研究 [Experimental study on the effect of pretreating method on grain size distribution of Malan loess]. Earth and Environment, 46(02), 210–217. https://doi.org/10.14050/j.cnki.1672-9250.2018.46.027
  • Wang, L., Sarnthein, M., Erlenkeuser, H., Grimalt, J., Grootes, P., Heilig, S., Ivanova, E., Kienast, M., Pelejero, C., & Pflaumann, U. (1999). East Asian monsoon climate during the Late Pleistocene: High-resolution sediment records from the South China Sea. Marine Geology, 156(1-4), 245–284. https://doi.org/10.1016/S0025-3227(98)00182-0
  • Wang, L-Z., Feng, L., Bu, Z-J., Sundberg, S., Zhang, M., Chen, X., Yang, Y-H., Yu, X-Y., & Liu, W-J. (2020). Sphagnumspore banks in two montane peatlands at different elevations. Wetlands Ecology and Management, 28(5), 825–835. https://doi.org/10.1007/s11273-020-09752-x
  • Wang, Y., Cheng, H., Edwards, R. L., He, Y., Kong, X., An, Z., Wu, J., Kelly, M. J., Dykoski, C. A., & Li, X. (2005). The Holocene Asian Monsoon: Links to solar changes and North Atlantic climate. Science, 308(5723), 854–857. https://doi.org/10.1126/science.1106296
  • Wang, Z., Li, Y., Cao, Y., Wang, Y., Yang, T., & Zhao, B. (2017). 渤海湾盆地东营凹陷永北地区沙河街组三段砂砾岩粒度概率累积曲线特征及沉积环境意义 [Probability cumulative grain-size distribution curves and their implications for sedimentary environment identification of coarse clastic rocks of the Es3 in Yongbei area, the Dongying Sag, Bohai Bay Basin]. Oil & Gas Geology, 38(2), 11.
  • Wu, B., & Huang, R. (2011). 冬季北大西洋涛动极端异常变化与东亚冬季风 [Effects of the extremes in the North Atlantic Oscillation on East Asia Winter Monsoon]. Chinese Journal of Atmospheric Sciences, 23(6), 641–651.
  • Xian, B. E., C., & Xu, N. (2021). 基于不同前处理方法的土壤粒度测试及其环境指示意义分析——以共和盆地草甸土与荒漠土为例 [Analysis of soil particle size testing and its environmental indication meaning based on different pretreatment methods-take meadow soil and desert soil in Gonghe basin as examples]. Journal of Qinghai Environment, 31(02), 82–87.
  • Xiao, C., & Li, Z. (2006). 粒度分析及其在沉积学中应用研究 [The research summary of grain size analysis and its application in sedimentation]. Journal of Xinjiang Normal University (Natural Science Edition), 25(03), 118–123.
  • Yang, J., & Neelin, J. D. (1997). Sea‐ice interaction and the stability of the thermohaline circulation. Atmosphere-Ocean, 35(4), 433–469. https://doi.org/10.1080/07055900.1997.9649599
  • Yang, L., Shi, Z., Sun, H., Xie, X., Liu, X., & An, Z. (2021). Distinct effects of winter monsoon and westerly circulation on dust aerosol transport over East Asia. Theoretical and Applied Climatology, 144(3-4), 1031–1042. https://doi.org/10.1007/s00704-021-03579-z
  • Yang, L., Wang, T., Zhou, J., Lai, Z., & Long, H. (2012). OSL chronology and possible forcing mechanisms of dune evolution in the Horqin dunefield in northern China since the Last Glacial Maximum. Quaternary Research, 78(2), 185–196. https://doi.org/10.1016/j.yqres.2012.05.002
  • Yang, X., Zhang, L., Xian, Z., Liu, Y., Xu, S., & Zhang, C. (2018). Characteristics of sand-dust events and their relationship with atmospheric circulation in spring in Northeast China. Journal of Meteorology and Environment, 34(4), 75–83. In Chinese with English abstract).
  • Yi, X. L., Lu, H. Y., Wu, Y. X., Li, W. H., Meng, Q. G., Cheng, J. W., Tang, Y., Liu, Y., & Bai, X. Z. (2013). Inflammatory myofibroblastic tumor with extensive involvement of the bladder in an adolescent: A case report. World Journal of Surgical Oncology, 11(1), 206. https://doi.org/10.1186/1477-7819-11-206
  • Yu, C., Luo, Y., & Sun, X. (2008). A high-resolution pollen records from Hani Lake, Jilin, Northeast China showing climate change between 13.1–4.5 cal. Ka B. P. Quaternary Sciences, 28(5), 929–938.
  • Zhang, K., Gao, H., Zhang, R., Zhu, Y., & Wang, Y. (2005). 我国沙尘的来源、移动路径及对东部海域的影响 [Sources and movement routes of sand-dust aerosols and their impact probabilities on China seas in 2000–2002]. Advances in Earth Science, 20(6), 627–636. In Chinese with English abstract).
  • Zhang, R., Liu, T., & Li, B. (2011). 不同前处理方法和测量时间对泥炭中无机矿物颗粒粒度的影响 [Influence of different pretreatment procedures and measuring time on the mineral particle size of peaty sediments in the Yangtze Estuary]. Acta Sedimentologica Sinica, 29(2), 374–380. https://doi.org/10.14027/j.cnki.cjxb.2011.02.014
  • Zhang, M., Bu, Z., Li, H., Liu, S., Chen, J., & Cui, Y. (2021a). Hydrological variation recorded in a subalpine peatland of Northeast Asia since the Little Ice Age and its possible driving mechanisms. The Science of the Total Environment, 772, 144923. https://doi.org/10.1016/j.scitotenv.2020.144923
  • Zhang, M., Bu, Z., Liu, S., Chen, J., & Cui, Y. (2021b). Mid–late Holocene peatland vegetation and hydrological variations in Northeast Asia and their responses to solar and ENSO activity. CATENA, 203, 105339. https://doi.org/10.1016/j.catena.2021.105339
  • Zhang, M., Bu, Z., Wang, S., & Jiang, M. (2020). Moisture changes in Northeast China since the last deglaciation: Spatiotemporal out-of-phase patterns and possible forcing mechanisms. Earth-Science Reviews, 201, 102984. https://doi.org/10.1016/j.earscirev.2019.102984
  • Zhang, M., Smol, J. P., & Wang, L. (2023). Carbon accumulation dynamics and development processes of peatland established after the Changbaishan Millennium eruption. Soil and Tillage Research, 232, 105762. https://doi.org/10.1016/j.still.2023.105762
  • Zhang, Z., & Shen, J. (2017). 沉积物粒度测量前处理方法研究 [Study of pre-processing methods for sediment particle size measurement]. City Geography, 4, 116.
  • Zhang, Z., Wang, G., Jiang, M., Lu, X., & Liu, X. (2016). The impact of Holocene climate changes on Honghe wetland in NE China. Ecological Engineering, 96, 72–78. https://doi.org/10.1016/j.ecoleng.2016.05.040
  • Zhang, Z., Yao, Q., Bianchette, T. A., Liu, K., & Wang, G. (2019). A multi-proxy quantitative record of Holocene hydrological regime on the Heixiazi Island (NE China): Indications for the evolution of East Asian summer monsoon. Climate Dynamics, 52(11), 6773–6786. https://doi.org/10.1007/s00382-018-4544-1
  • Zhao, L., Satoh, M., & Inoue, K. (1997). Clay mineralogy and pedogenesis of volcanic ash soils influenced by tropospheric eolian bust in Changbaishan, Sanjiaolongwan, and Wudalianchi, Northeast China. Soil Science and Plant Nutrition, 43(1), 85–98. https://doi.org/10.1080/00380768.1997.10414717
  • Zhao, Y., Yu, Z., Tang, Y., Li, H., Yang, B., Li, F., Zhao, W., Sun, J., Chen, J., Li, Q., & Zhou, A. (2014). Peatland initiation and carbon accumulation in China over the last 50,000 years. Earth-Science Reviews, 128, 139–146. https://doi.org/10.1016/j.earscirev.2013.11.003
  • Zhou, T-J., & Yu, R-C. (2005). Atmospheric water vapor transport associated with typical anomalous summer rainfall patterns in China. Journal of Geophysical Research: Atmospheres, 110, D08104. https://doi.org/10.1029/2004JD005413

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