参考文献/References:
[1] HELLER F, LIU TungSheng. Magnetism of Chinese loess deposits [J]. Geophysical Journal of the Royal Astronomical Society, 1984, 77(1): 125-141. DOI: 10.1111/j.1365-246X.1984.tb01928.x
[2] 刘东生. 黄土与环境[M]. 北京:科学出版社, 1985: 1-499. [LIU Tungsheng. Loess and environment [M]. Beijing: Science Press, 1985: 1-499]
[3] THOMPSON R, OLDFIELD F. Environmental magnetism [M]. London: Allen & Unwin, 1986: 1-227.
[4] AN Zhisheng, KUKLA G J, PORTER S C, et al. Magnetic susceptibility evidence of monsoon variation on the Loess Plateau of central China during the last 130,000 years [J]. Quaternary Research, 1991, 36: 29-36. DOI: 10.1016/0033-5894(91)90015-W
[5] GUO Z T, RUDDIMAN W F, HAO Q Z, et al. Onset of Asian desertification by 22 Myr ago inferred from loess deposits in China [J]. Nature, 2002,416(6877): 159-163. DOI: 10.1038/416159a
[6] 邓成龙, 刘青松, 潘永信,等. 中国黄土环境磁学[J]. 第四纪研究, 2007, 27(2): 193-209. [DENG Chenglong, LIU Qingsong, PAN Yougxin et al. Environmental magnetism of Chinese loess-paleosol sequences [J]. Quaternary Sciences, 2007, 27(2): 193-209] DOI: 10.3321/j.issn: 1001-7410.2007.02.005
[7] MAHER B A. Palaeoclimatic records of the loess/palaeosol sequences of the Chinese Loess Plateau [J]. Quaternary Science Reviews, 2016, 154: 23-84. DOI: 10.1016/j.quascirev.2016.08.004
[8] BALSAM W, JI Junfeng, CHEN Jun. Climatic interpretation of the Luochuan and Lingtai loess sections, China, based on changing iron oxide mineralogy and magnetic susceptibility [J]. Earth and Planetary Science Letters, 2004, 223(3-4): 335-348. DOI: 10.1016/j.epsl.2004.04.023
[9] KUKLA G, AN ZhiSheng. Loess stratigraphy in central China [J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 1989, 72: 203-225. DOI: 10.1016/0031-0182(89)90143-0
[10] GUO Zhengtang, BERGER A, YIN Qiuzhen, et al. Strong asymmetry of hemispheric climates during MIS-13 inferred from correlating China loess and Antarctica ice records [J]. Climate of the Past, 2009, 5: 21-31. DOI: 10.5194/cp-5-21-2009
[11] SUN Yunbin, AN Zhisheng, CLEMENS S C, et al. Seven million years of wind and precipitation variability on the Chinese Loess Plateau [J]. Earth and Planetary Science Letters, 2010, 297(3-4): 525-535. DOI: 10.1016/j.epsl.2010.07.004
[12] GEISS C E, EGLI R, ZANNER C W. Direct estimates of pedogenic magnetite as a tool to reconstruct past climates from buried soils [J]. Journal of Geophysical Research Solid Earth, 2008, 113: B11102. DOI: 10.1029/2008JB005669
[13] JIA Jia, XIA Dunsheng, WANG Bo. et al. Magnetic investigation of Late Quaternary loess deposition, Ili area, China [J]. Quaternary International. 2011, 250: 84-92. DOI: 10.1016/j.quaint.2011.06.018
[14] BEGET J E, STONE D B, HAWKINS D B. Paleoclimatic forcing of magnetic susceptibility variations in Alaskan loess during the late Quaternary [J]. Geology, 1990, 18(1): 40-43. DOI: 10.1130/0091-7613(1990)018<0040: PFOMSV>2.3.CO; 2
[15] PILLANS B, WRIGHT I. 500000-Year paleomagnetic record from New Zealand loess [J]. Quaternary Research, 1990, 33(2): 178-187. DOI: 10.1016/0033-5894(90)90017-F
[16] ORGEIRA M J, WALTHER A M, VASQUEZ C A. Mineral magnetic record of paleoclimate variation in loess and paleosol from the Buenos Aires formation(Buenos Aires, Argentina)[J]. Journal of South American Earth Sciences, 1998, 11(6): 561-570. DOI: 10.1016/S0895-9811(98)00038-8
[17] MATASOVA G, PETROVSKY E, JORDANOVA N, et al. Magnetic study of Late Pleistocene loess/palaeosol sections from Siberia: Palaeoenvironmental implications [J]. Geophysical Journal of the Royal Astronomical Society, 2001, 147(2): 367-380. DOI: 10.1046/j.0956-540x.2001.01544.x
[18] 夏敦胜,陈发虎,马剑英,等. 新疆伊犁地区典型黄土磁学特征及其环境意义初探[J]. 第四纪研究, 2010, 30(5): 902-910. [XIA Dunsheng, CHEN Fahu, MA Jianying, et al. Magnetic characteristics of loess in the IIi area and their environmental implication [J]. Quaternary Sciences, 2010, 30(5): 902-910] DOI: 10.3969/j.issn.1001-7410.2010.05.07
[19] LE BORGNE E. Susceptibilité magnétique anormale du sol superficiel [J]. Annales de Geophysique, 1955, 11: 399-419.
[20] LE BORGNE E. Influence du feu sur les propriétés magnétiques du sol et sur celles du schiste et du granite [J]. Annales De Geophysique, 1960, 16: 159.
[21] SINGER M J. FINE P. Pedogenic factors affecting magnetic susceptibility of northern California soils [J]. Soil Science Society of America Journal, 1989, 53(4): 1119-1127. DOI: 10.2136/sssaj1989.03615995005300040023x
[22] MAHER B A, TAYLOR R M. Formation of ultrafine-grained magnetite in soils [J]. Nature, 1988, 336(6197): 368-370. DOI: 10.1038/336368a0
[23] KUKLA G, HELLER F, MING L X, et al. Pleistocene climates in China dated by magnetic susceptibility. Geology, 1988, 16(9): 811-814. DOI: 10.1130/0091-7613(1988)016<0811: PCICDB>2.3.CO; 2
[24] DEARING J A, HAY K L, BABAN S M J, et al. Magnetic susceptibility of soil: An evaluation of conflicting theories using a national data set [J]. Geophysical Journal International, 1996, 127(3): 728-734. DOI: 10.1111/j.1365-246X.1996.tb04051.x
[25] EVANS M E, HELLER F. Environmental magnetism: Principles and applications of enviromagnetics [M]. Amsterdam: Academic Press, 2003: 1-299. DOI: 10.1029/2004EO200009
[26] BLOEMENDAL J, LIU Xiuming. Rock magnetism and geochemistry of two plio-pleistocene Chinese loess-palaeosol sequences: Implications for quantitative palaeoprecipitation reconstruction [J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2005, 226(2): 149-166. DOI: 10.1016/j.palaeo.2005.05.008
[27] MICHEL F M, BARRON V, TORRENT J, et al. Ordered ferrimagnetic form of ferrihydrite reveals links among structure, composition, and magnetism [J]. Proceedings of the National Academy of Sciences of the United States of America, 2010, 107(7): 2787-2792. DOI: 10.1073/pnas.0910170107
[28] ZHOU Liping, OLDFIELD F, WINTLE A G, et al. Partly pedogenic origin of magnetic variations in Chinese loess [J]. Nature, 1990, 346: 737-739. DOI: 10.1038/346737a0
[29] MAHER B A, THOMPSON R. Paleorainfall reconstructions from pedogenic magnetic susceptibility variations in the Chinese loess and paleosols [J]. Quaternary Research, 1995, 44(3): 383-391. DOI: 10.1006/qres.1995.1083
[30] SINGER M J, VEROSUB K L, FINE P, et al. A conceptual model for the enhancement of magnetic susceptibility in soils [J]. Quaternary International, 1996, 34-36: 243-248. DOI: 10.1016/1040-6182(95)00089-5
[31] CORNELL R M, SCHWERTMANN U. The iron oxides: Structure, properties, reactions, occurrences and uses( Second Edition)[M]. 2004.
[32] 王建民, 潘保田. 青藏高原东部黄土沉积的基本特征及其环境[J]. 中国沙漠, 1997, 17(4): 395-402. [WANG Jianmin, PAN Baotian. Loess deposit in eastern part of Qinghai-Xizang plateau: Its characteristics and environment [J]. Journal of Desert Research, 1997, 17(4): 395-402]
[33] 方小敏, 陈富斌, 施雅风, 等. 甘孜黄土与青藏高原冰冻圈演化[J]. 科学通报, 1996, 41(20): 1865-1867. [FANG Xiaomin, CHEN Fubin, SHI Yafeng et al. Garze loess and the evolution of the cryosphere on the Tibetan Plateau [J]. Chinese Science Bulletin, 1996, 41(20): 1865-1867]
[34] 潘保田, 王建民. 末次间冰期以来青藏原东部季风演化的黄土沉积记录[J]. 第四纪研究, 1999, 4: 330-335. [PAN Baotian, WANG Jianmin. Loess record of Qinghai-Xizang plateau monsoon variations in the eastern part of the plateau since the last interglacial [J]. Quaternary Sciences, 1999, 4: 330-335]
[35] YANG Shengli, FANG Xiaomin, SHI Zhengtao, et al. Timing and provenance of loess in the Sichuan Basin, southwestern China [J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2010, 292(1-2): 144-154. DOI: 10.1016/j.palaeo.2010.03.039
[36] 颜茂都, 方小敏, 陈诗越, 等. 青藏高原更新世黄土磁化率和磁性地层与高原重大气候变化事件[J]. 中国科学D辑, 2001, 31(S1): 182-186. [YAN Maodu, FANG Xiaomin, CHEN Shiyue, et al. Pleistocenne magnetic susceptibility and paleomagnetism of the Tibetan loess and its implications on large climatic change events [J]. Science in China(Series D), 2001, 31(S1): 182-186] DOI: 10.1360/zd2001-31-S1-182
[37] 欧先交, 曾兰华, 周尚哲, 等. 四川西部黄土沉积与环境演变研究综述[J]. 地球环境学报, 2012, 3(1): 692-704. [OU Xianjiao, ZENG Lanhua, ZHOU Shangzhe, et al. A review on research of loess and environmental change in west Sichuan Plateau of the eastern Qinghai-Tibetan Plateau [J]. Journal of Earth Environment, 2012, 3(1): 692-704]
[38] 汪阳春, 柴宗新, 刘淑珍, 等. 横断山地区的黄土及意义[J]. 山地学报. 1999, 17(4): 300-305. [WANG Yangchun, CHAI Zongxin, LIU Shuzhen, et al. The loess in Hengduan Moutains and its significance [J]. Mountain Research, 1999, 17(4): 300-305] DOI: 10.16089/j.cnki.1008-2786.1999.04.003
[39] 乔彦松, 刘冬雁, 李朝柱, 等. 川西甘孜地区黄土的磁性地层学研究[J]. 地质力学学报, 2007, 13(4): 289-296. [QIAO Yansong, LIU Dongyan, LI Chaozhu, et al. Magnetostratigraphy of a loess-soil sequence in the garzê area, western Sichuan [J]. Journal of Geomechanics, 2007, 13(4): 289-296] DOI: 10.3969/j.issn.1006-6616.2007.04.001
[40] 蒋复初, 吴锡浩, 肖华国, 等. 川西高原甘孜黄土地层学[J]. 地球学报, 1997, 18(4): 413-420. [JIANG Fuchu, WU Xihao, XIAO Huaguo, et al. The Ganzi loess stratigraphy in the west Sichuan Plateau [J]. Acta Geoscientica Sinica, 1997, 18(4): 413-420]
[41] 陈富斌, 高生怀, 陈继良, 等. 甘孜黄土剖面磁性地层初步研究[J]. 科学通报, 1990, 35(20): 1600. [CHEN Fubin, GAO Shenghuai, CHEN Jiliang, et al. A preliminary study on Ganzi loess magnetostratigraphy [J]. Chinese Science Bulletin, 1990, 35(20): 1600]
[42] 方小敏. 青藏高原东部边缘及邻区马兰黄土成因与来源的初步研究[J]. 中国科学(B辑), 1994, 24(5): 539-546. [FANG Xiaomin. The origin and provenance of Malan loess along eastern margin of Qinghai-Xizang(Tibetan)Plateau and its adjacent area [J]. Science in China(Series B), 1994, 24(5): 539-546] DOI: 10.1360/zb1994-24-5-539
[43] 乔彦松, 赵志中, 王燕, 等. 川西甘孜黄土磁性地层学研究及其古气候意义[J]. 第四纪研究, 2006, 26(2): 250-256. [QIAO Yansong, ZHAO Zhizhong, WANG Yan, et al. Magnetostratigraphy and its paleoclimatic significance of a loess-soil sequence from Ganzi area, west Sichuan plateau [J]. Quaternary Sciences, 2006, 26(2): 250-256] DOI: 10.3321/j.issn: 1001-7410.2006.02.013
[44] 王书兵. 川西中部晚更新世地层与环境[D]. 北京: 中国地质科学院, 2005. [WANG Shubing. Study on the strata and environment of the Late Pleistocene in the central western Sichuan area [D]. Beijing: Chinese Academy of Geological Sciences, 2005]
[45] 李名则. 川西甘孜黄土地层与古气候变化[D]. 北京: 中国地质科学院. 2008. [LI Mingze. Garze loess strata and its implication to paleoclimatic change in the western Sichuan [D]. Beijing: Chinese Academy of Geological Sciences, 2008]
[46] 文星跃, 吴勇, 黄成敏, 等. 岷江上游晚更新世黄土粒度与元素组成特征及其物源指示意义[J]. 山地学报, 2019, 37(4): 488-498. [WEN Xingyue, WU Yong, HUANG Chengmin, et al. Grain size & elements composition characteristics and their implications for provenance of the Late Pleistocene loess in the upper reaches of the Minjiang River, China [J]. Mountain Research, 2019, 37(4): 488-498] DOI: 10.16089/j.cnki.1008-2786.000441
[47] 陈国英, 孙淑荣,方小敏. 青藏高原及邻区马兰黄土重矿物特征与黄土来源的研究[J]. 沉积学报, 1997, 15(4): 134-142. [CHEN Guoying, SUN Shurong, FANG Xiaomin, et al. Heavy minerals and provenance of the Malan loess on the Qinghai-Xizang(Tibet)Plateau and its adjacent area [J]. Acta Sedimentologica Sinica, 1997, 15(4): 132-142] DOI: 10.14027/j.cki.cjxb.1997.04.023
[48] HU Pengxiang, LIU Qingsong, HESLOP D, et al. Soil moisture balance and magnetic enhancement in loess-paleosol sequences from the Tibetan Plateau and Chinese Loess Plateau [J]. Earth and Planetary Science Letters, 2015, 409: 120-132. DOI: 10.1016/j.epsl.2014.10.035
[49] 梁敏豪, 杨胜利, 成婷, 等. 青藏高原东部黄土沉积元素地球化学示踪[J]. 沉积学报, 2018, 36(5): 927-936. [LIANG Minhao, YANG Shengli, CHENG Ting, et al. Geochemical evidence for the provenance of loess deposits in the eastern Tibetan Plateau [J]. Aata Sedimentologica Sinica, 2018, 36(5): 927-936] DOI: 10.14027/j.issn.1000-0550.2018.065
[50] 王书兵, 蒋复初, 田国强. 理县黄土地层与环境记录[J]. 海洋地质与第四纪地质, 2006, 26(3): 115-119. [WANG Shubing, JIANG Fuchu, TIAN Guoqiang. Loess stratigraphy and environment records in Lixian county, Sichuan province [J]. Marine Geology & Quaternary Geology, 2006, 26(3): 115-119]
[51] QIAO Yansong, QI Lin, LIU Zongxiu, et al. Intensification of aridity in the eastern margin of the Tibetan Plateau since 300 ka BP inferred from loess-soil sequences, western Sichuan province, southwest China [J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2014, 414: 192-199. DOI: 10.1016/j.palaeo.2014.08.025
[52] 王玲. 川西高原甘孜黄土A剖面的粒度及元素地球化学特征[D]. 青岛: 中国海洋大学, 2010. [WANG Ling. Characteristics of grain size and element geochemistry of Carzê A section on west Sichuan Plateau [D]. Qingdao: Ocean University of China, 2010]
[53] 刘冬雁, 彭莎莎, 乔彦松, 等. 青藏高原东南缘甘孜黄土磁化率揭示的西南季风演化[J]. 海洋地质与第四纪地质, 2009, 29(5): 115-121. [LIU Dongyan, PENG Shasha, QIAO Yansong, et al. Evolution of the southwest monsoon on orbital time-scale revealed by a loess-paleosol sequence on the southeastern margin of the Qinghai-Tibetan Plateau for the last 1.16 Ma [J]. Marine Geology and Quaternary Geology, 2009, 29(5): 115-121] DOI: 10.3724/SP.J.1140.2009.05115
[54] 刘冬雁, 李巍然, 乔彦松, 等. 基于EMD分解的甘孜黄土磁化率记录的西南季风演化周期性[J]. 地球科学(中国地质大学学报), 2010, 35(4): 533-541. [LIU Dongyan, LI Weiran, QIAO Yansong, et al. The periodicity of the southwest monsoon revealed by the magnetic susceptibility of the Carzê A loess-paleosol sequence using EMD method [J]. Earth Science(Journal of China University of Geosciences), 2010, 35(4): 533-541] DOI: 10.3799/dqkx.2010.069
[55] 刘维明, 杨胜利, 方小敏. 川西高原黄土记录的末次冰期气候变化[J]. 吉林大学学报(地球科学版), 2013, 43(3): 974-982. [LIU Weiming, YANG Shengli, FANG Xiaomin. Loess recorded climate change during the last glaciation on the eastern Tibetan Plateau, western Sichuan [J]. Journal of Jilin University(Earth Science Edition), 2013, 43(3): 974-982]
[56] 陈诗越, 方小敏, 王苏民. 川西高原甘孜黄土与印度季风演化关系[J]. 海洋地质与第四纪地质, 2002, 22(3): 41-46. [CHEN Shiyue, FANG Xiaomin, WANG Sumin. Relation between the loess stratigraphy on the eastern Tibetan Plateau and Indian monsoon [J]. Marine Geology & Quaternary Geology, 2002, 22(3): 41-46]
[57] 杨文光, 朱利东, 罗虹, 等. 川西漳腊黄土地层与气候变化[J]. 华南地质与矿产, 2011, 27(3): 231-237. [YANG Wenguang, ZHU Lidong, LUO Hong, et al. Stratigraphy of Zhangla loess in western Sichuan plateau and its paleoclimatic change record [J]. Geology and Mineral Resources of South China, 2011, 27(3): 231-237] DOI: 10.3969/j.issn.1007-3701.2011.03.009
[58] 刘冬雁. 川西高原甘孜黄土记录的早更新世晚期以来的古气候变化[D].青岛: 中国海洋大学, 2009. [LIU Dongyan. Paleo climate evolution since the Late Early Pleistocene: An evidence from a loess record, Garze, west Sichuan plateau [D]. Qingdao: Ocean University of China, 2009]
[59] 刘维明. 川西高原黄土记录的末次冰期气候变化[D]. 兰州: 兰州大学, 2008. [LIU Weiming. Loess recorded climate change during the last glaciation on the eastern Tibetan Plateau, western Sichuan [D]. Lanzhou: Lanzhou University, 2008]
[60] HAN Yongxiang, FANG Xiaomin, KANG Shichang, et al. Shifts of dust source regions over central Asia and the Tibetan Plateau: Connections with the Arctic oscillation and the westerly jet [J]. Atmospheric Environment, 2008, 42(10): 2358-2368. DOI: 10.1016/j.atmosenv.2007.12.025
[61] QIAO Yansong, WANG Yan, YAO Haitao, et al. Magnetostratigraphy of a loess-paleosol sequence from higher terrace of the Daduhe River in the eastern margin of the Tibetan Plateau and its geological significance [J]. Acta Geologica Sinica, 2015, 89(1): 316-317. DOI: 10.1111/1755-6724.12421
[62] 陈梓炫, 吕镔, 郑兴芬, 等. 川西地区表土磁学性质及其环境意义[J]. 土壤学报, 2019, 56(3): 661-671. [CHEN Zixuan, LYU Bin, ZHENG Xingfen, et al. Topsoil magnetic properties and its environmental significance in west Sichuan [J]. Acta Pedologica Sinica. 2019, 56(3): 661-671] DOI: 10.11766/trxb201806040188
[63] 陈梓炫. 川西高原黄土环境磁学研究[D]. 福州: 福建师范大学, 2019. [CHEN Zixuan. Environmental magnetism of loess in west Sichuan [D]. Fuzhou: Fujian Normal University, 2019]
[64] 陈慧, 杨胜利, 成婷, 等. 青藏高原东部表土磁化率特征与环境意义[J]. 冰川冻土, 2018, 40(6): 1187-1194.[CHEN Hui, YANG Shengli, CHENG Ting, et al. The magnetic susceptibility of top soil in the eastern Tibetan Plateau: Features and environmental implications [J]. Journal of Glaciology and Geocryology, 2018, 40(6): 1187-1194.] DOI: 10.7522/j.issn.1000-0240.2018.0507
[65] 马兴悦, 吕镔, 赵国永, 等. 川西高原理县黄土磁学特征及其影响因素[J]. 第四纪研究, 2019, 39(5): 1307-1319. [MA Xingyue, LYU Bin, ZHAO Guoyong, et al. Magnetic properties and their influence factors of Lixian loess in western Sichuan Plateau [J]. Quaternary Science, 2019, 39(5): 1307-1319] DOI: 10.11928/j.issn.1001-7410.2019.05.22
[66] 宋扬, 郝青振, 葛俊逸, 等. 黄土高原表土磁化率与气候要素的定量关系研究[J]. 第四纪研究, 2012, 32(4): 679-689. [SONG Yang, HAO Qingzhen, GE Junyi, et al. Quantitative relationships between modern soil magnetic susceptibility and climatic variables of the Chinese Loess Plateau [J]. Quaternary Sciences, 2012, 32(4): 679-689] DOI: 10.3969/j.issn.1001-7410.2012.04.13
[67] 王书兵, 蒋复初, 田国强, 等. 四川金川黄土地层[J]. 地球学报, 2005, 26(4): 355-358. [WANG Shubing, JIANG Fuchu, TIAN Guoqiang, et al. The Jinchuan loess stratigraphy in western Sichuan Plateau [J]. Acta Geoscientica Sinica. 2005, 26(4): 355-358]
[68] SCHWERTMANN U. Occurrence and formation of iron oxides in various pedoenvironments [G]// STUCKI J W, et al. Iron in Soils and Clay Minerals. Dordrecht: D. Reidel Publishing Company, 1988: 267-308.
[69] 胡鹏翔, 刘青松. 磁性矿物在成土过程中的生成转化机制及其气候意义[J]. 第四纪研究, 2014, 34(3): 458-473. [HU Pengxiang, LIU Qingsong. The production and transformation of magnetic minerals during pedogenesis and its paleoclimate significance [J]. Quaternary Sciences, 2014, 34(3): 458-473] DOI: 10.3969/j.issn.1001-7410.2014.03.02
[70] SRIVASTAVA P, SANGODE S J, TORRENT J. Mineral magnetic and diffuse reflectance spectroscopy characteristics of the Deccan volcanic bole beds: Implications to genesis and transformations of iron oxides [J]. Geoderma, 2015, 239-240: 317-330. DOI: 10.1016/j.geoderma.2014.11.010
[71] LONG Xiaoyong, JI Junfeng, BALSAM W. Rainfall-dependent transformations of iron oxides in a tropical saprolite transect of Hainan Island, south China: Spectral and magnetic measurements [J]. Journal of Geophysical Research, 2011, 116: F03015. DOI: 10.1029/2010JF001712
[72] 季峻峰, 陈骏, BALSAM W, 等. 黄土剖面中赤铁矿和针铁矿的定量分析与气候干湿变化研究[J]. 第四纪研究, 2007, 27(2): 221-229. [JI Junfeng, CHEN Jun, BALSM W, et al. Quantitative analysis of hematite and goethite in the Chinese loess-paleosol sequences and its implication for dry and humid variability [J]. Quaternary Sciences, 2007, 27(2): 221-229] DOI: 10.3321/j.issn: 1001-7410.2007.02.007
[73] 姜兆霞, 刘青松. 赤铁矿的定量化及其气候意义[J]. 第四纪研究, 2016, 36(3): 676-689. [JIANG Zhaoxia, LIU Qingsong. Quantification of hematite and its climatic significances [J]. Quaternary Sciences, 2016, 36(3): 676-689] DOI: 10.11928/j.issn.1001-7410.2016.03.17
[74] LIU Qingsong, ROBERTS A P, TORRENT J, et al. What do the HIRM and S-ratio really measure in environmental magnetism? [J]. Geochemistry, Geophysis, Geosystems, 2007, 8(9): Q09011. DOI: 10.1029/2007GC001717
[75] LIU Qingsong, ROBERTS A P, LARRASOANA J C, et al. Environmental magnetism: Principles and applications [J]. Reviews of Geophysics, 2012, 50(4): RG4002. DOI: 10.1029/2012RG000393
[76] 夏敦胜, 马剑英, 王冠, 等. 环境磁学及其在西北干旱区环境研究中的问题[J]. 地学前缘, 2006, 13(3): 172-183. [XIA Dunsheng, MA Jianying, WANG Guan, et al. Environmental magnetism concepts and their applications to environmental studies in arid region, northwest China [J]. Earth Science Frontiers, 2006, 13(3): 168-179]
[77] HUNT C P, BANERJEE S K, HAN J M, et al. Rock-magnetic proxies of climate change in the loess-palaeosol sequences of the western Loess Plateau of China [J]. Geophysical Journal International, 1995, 123(1): 232-244. DOI: 10.1111/j.1365-246X.1995.tb06672.x
[78] DENG Chenglong, ZHU Rixiang, JACKSON M J, et al. Variability of the temperature-dependent susceptibility of the Holocene eolian deposits in the Chinese Loess Plateau: A pedogenesis indicator [J]. Physics and Chemistry of the Earth Part A: Solid Earth and Geodesy, 2001, 26(11-12): 873-878. DOI: 10.1016/S1464-1895(01)00135-1
[79] 卢升高. 中国土壤磁性与环境[M]. 北京: 高等教育出版社, 2003. [LU Shenggao. Chinese soil magnetism and environment [M]. Beijing: Higher Education Press, 2003]
[80] MAXBAUER D P, FEINBERG J M, FOX D L. Magnetic mineral assemblages in soils and paleosols as the basis for paleoprecipitation proxies: A review of magnetic methods and challenges [J]. Earth-Science Reviews, 2016, 155: 28-48. DOI: 10.1016/j.earscirev.2016.01.014
[81] CHEN Jun, LI Gaojun, YANG Jiedong, et al. Nd and Sr isotopic characteristics of Chinese deserts: Implications for the provenances of Asian dust [J]. Geochimica et Cosmochimica Acta, 2007, 71(15): 3904-3914. DOI: 10.1016/j.gca.2007.04.033
[82] SUN Youbin, TADA R, CHEN Jun, et al. Tracing the provenance of fine-grained dust deposited on the central Chinese Loess Plateau [J]. Geophysical Research Letters, 2008, 35(1): L01804. DOI: 10.1029/2007GL031672
[83] LIU Qingsong, DENG Chenglong, TORRENT J, et al. Review of recent developments in mineral magnetism of the Chinese loess [J]. Quaternary Science Reviews, 2007, 26(3): 368-385. DOI: 10.1016/j.quascirev.2006.08.004
[84] HAN Yongxiang, FANG Xiaomin, KANG Shichang, et al. Shifts of dust source regions over central Asia and the Tibetan Plateau: Connections with the Arctic oscillation and the westerly jet [J]. Atmospheric Environment, 2008, 42(10): 2358-2368. DOI: 10.1016/j.atmosenv.2007.12.025
[85] 吕镔, 刘秀铭, 陈渠, 等. CBD方法对天然样品磁性矿物影响[J]. 地球物理学报, 2012, 55(9): 3077-3087. [LYU Bin, LIU Xiuming, CHEN Qu, et al. Effects of CBD treatment on magnetic minerals of natural samples [J]. Chinese Journal of Geophysics, 2012, 55(9): 3077-3087] DOI: 10.6038/j.issn.0001-5733.2012.09.025
[86] 胡雪峰, 鹿化煜. 黄土高原古土壤成土过程的特异性及发生学意义[J]. 土壤学报, 2004, 41(5): 669-675. [HU Xuefeng, LU Huayu. Peculiarities in soil-forming processes of paleosols in the Loess Plateau and their pedogenic implication [J]. Aata Pedologica Sinica, 2004, 41(5): 669-675] DOI: 10.11766/trxb200310200502
[87] SUN Jimin, DING Zhongli, LIU Tungsheng. Desert distribution during the glacial maximum and climatic optimum: Example of China [J]. Episodes, 1998, 21: 28-31. DOI: 10.18814/epiiugs/1998/v21i1/005
[88] PYE K. The nature, origin and accumulation of loess [J]. Quantary Science Reviews. 1995, 14: 653-667. DOI: 10.1016/0277-3791(95)00047-X
[89] DIXON J L, HARTSHORN A S, HEIMSATH A M, et al. Chemical weathering response to tectonic forcing: A soils perspective from the San Gabriel Mountains, California [J]. Earth and Planetary Science Letters, 2012, 323-324: 40-49. DOI: 10.1016/j.epsl.2012.01.010
[90] 刘志锋, 刘青松. 陕西延安两个坡度不同土壤剖面磁学性质及其在古降雨量重建中的意义[J]. 中国科学: 地球科学, 2013, 43(12): 2037-2048. [LIU Zhifeng, LIU Qingsong. Magnetic properties of two soil profiles from Yan'an, Shaanxi province and their implications for paleorainfall reconstruction [J]. Science China: Earth Sciences, 2013, 43(12): 2037-2048] DOI: 10.1360/zd-2013-43-12-2037
[91] TORRENT J, BARRON V, LIU Qingsong. Magnetic enhancement is linked to and precedes hematite formation in aerobic soil [J]. Geophysical Research Letters, 2006, 33(2): L02401. DOI: 10.1029/2005GL024818
[92] TORRENT J, LIU Qingsong, BLOEMENDAL J, et al. Magnetic enhancement and iron oxides in the upper Luochuan loess-paleosol sequence, Chinese Loess Plateau [J]. Soil Science Society of America Journal, 2007, 71(5): 1570-1578. DOI: 10.2136/sssaj2006.0328
[93] HAN Jiamao, LYU Houyuan, WU Naiqin, et al. The magnetic susceptibility of modern soils in China and its use for paleoclimate reconstruction [J]. Studia Geophysica et Geodaetica, 1996, 40(3): 262-275. DOI: 10.1007/BF02300742
[94] BLUNDELL A, DEARING J A, BOYLE J F, et al. Controlling factors for the spatial variability of soil magnetic susceptibility across England and Wales [J]. Earth-Science Reviews, 2009, 95(3-4): 158-188. DOI: 10.1016/j.earscirev.2009.05.001
[95] LIU Zhifeng, LIU Qingsong, TORRENT J, et al. Testing the magnetic proxy χfd/HIRM for quantifying paleoprecipitation in modern soil profiles from Shaanxi province, China [J]. Global and Planetary Change, 2013, 110: 368-378. DOI: 10.1016/j.gloplacha.2013.04.013
[96] 刘秀铭, 刘植, 吕镔, 等. 塞尔维亚黄土的磁学性质及其环境意义[J]. 科学通报, 2012, 57(33): 3173-3184. [LIU Xiuming, LIU Zhi, LYU Bin, et al. The magnetic properties of Serbian loess and its environmental significance [J]. Chinese Science Bulletin, 2012, 57(33): 3173-3184] DOI: 10.1007/s11783-011-0280-z
[97] ORGEIRA M, EGLI R, COMPAGNUCCI R H. A quantitative model of magnetic enhancement in loessic soils [J]. The Earth's Magnetic Interior, 2011, 1: 361-397. DOI: 10.1007/978-94-007-0323-0_25
[98] 何梅菊, 吕 镔, 王姗姗, 等. 武夷山脉土壤磁学特征及环境意义[J]. 山地学报, 2019, 37(5): 649-661. [HE Meiju, LYU Bin, WANG Shanshan, et al. Magnetism characteristics of soils in the Wuyi Mountains and their environmental significances [J]. Mountain Research, 2019, 37(5): 649-661] DOI: 10.16089/j.cnki.1008-2786.000456
[99] 曾杰熙. 土地利用方式及土壤类型对水稻土磁化率变化的影响研究[D]. 成都: 四川农业大学, 2019. [ZENG Jiexi. Effects of land use and soil types on the change of magnetic susceptibility of paddy soil [D]. Chengdu: Sichuan Agricultural University, 2019]
[100] AYOUBI S, AHMADI M, ABDI M R, et al. Relationships of 137Cs inventory with magnetic measures of calcareous soils of hilly region in Iran [J]. Journal of Environmental Radioactivity, 2012, 112: 45-51. DOI: 10.1016/j.jenvrad.2012.03.012
[101] 沈小晓. 川西地区风成沉积物上土壤发生学特征及环境意义[D]. 南充: 西华师范大学, 2019. [SHEN Xiaoxiao. Soil pedogenesis and environmental significance based on aeolian parent materials in western Sichuan [D]. Nanchong: China West Normal University, 2019]
[102] YANG Pingguo, BYRNE J M, YANG Miao. Spatial variability of soil magnetic susceptibility, organic carbon and total nitrogen from farmland in northern China [J]. Catena, 2016, 145: 92-98. DOI: 10.1016/j.catena.2016.05.025
[103] LU Huoyuan, LIU Tungsheng, GU Zhaoyan, et al. Effect of burning C3 and C4 plants on the magnetic susceptibility signal in soils [J]. Geophysical Research Letters, 2000, 27(13): 2013-2016. DOI: 10.1029/2000GL011459