Magnetic susceptibility of soils as an ambiguous climate proxy for paleoclimate reconstructions

被引:4
作者
Alekseev, Andrey O. [1 ]
Shary, Peter A. [1 ]
Malyshev, Vlad V. [1 ]
机构
[1] Russian Acad Sci, Inst Physicochem & Biol Problems Soil Sci, Inst Skaya Str 2, Pushchino 142290, Moscow Region, Russia
基金
俄罗斯基础研究基金会;
关键词
Climate change; Steppe soils; Magnetism; Iron oxides; Magnetic climofunctions; Paleoclimate reconstruction; EAST EUROPEAN PLAIN; CHINESE LOESS; LATE HOLOCENE; QUANTITATIVE RELATIONSHIPS; RUSSIAN STEPPE; ENHANCEMENT; MINERALOGY; PALEOSOLS; PLATEAU; SOUTH;
D O I
10.1016/j.quaint.2023.04.002
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
In soils of the temperate zone, there is an increase in the magnetic susceptibility. of an upper layer compared to chi(C) of parent rocks. The difference between chi and chi(C) characterizes the magnetic "enhancement"Delta chi, which is usually considered as associated with mean annual precipitation (MAP), allowing the reconstruction of MAP of the past from Delta chi values of paleosols. which is widely enough used. However, in regions with a wide MAP range, non-monotonic dependence of Delta chi on MAP is observed, making this reconstruction ambiguous. To construct climatic functions for reconstructing the past climate, we subdivided the south of European Russia into three regions, where climatic functions such as MAP(Delta chi) of modern soils are monotonic and close to linear. These regions are relatively dry, humid, and semi-humid cold. We considered an extended set of climatic features including potential evapotranspiration (PET), actual evapotranspiration (AET), water deficit (WD = PET-AET), moisture index (MI = MAP/PET), an index of De Martonne (IDM = MAP/(MAT+10), where MAT is the mean annual temperature). The links of Delta chi with MAP were positive in dry and negative in humid and semi-humid cold where they are weaker, but there were closer links with temperature-dependent WD and PET. Reliable (with R-2 > 0.7) climatic functions were constructed for dry and semi-humid cold, but such reliable functions were absent in humid part. Since the differences in soil - forming material, it is necessary to identify some parameter to characterize lithological factors. For this reason, we include in consideration median grain sizes (lgSz) in soil profiles and total iron (Fet) to obtain some explanations for the results. Although the use of Delta chi, lgSz and Fe-t together made the climatic functions more reliable (R-2 similar to 0.8), but.. played the main role, while lgSz and Fe-t were not always significant. Based on the obtained data, it appears possible to provide a more detailed subdivision of paleoecological periods in the Late Holocene for the steppe and forest-steppe zones of the Eastern Europe. Taking into account the diversity of soil conditions in different regions, equations using soil profile MS enhancement to reconstruct rainfall should be used locally and regionally, taking into account the identified limitations and eliminating the possible ambiguity of reconstructions.
引用
收藏
页码:10 / 21
页数:12
相关论文
共 50 条
[41]   Magnetic mineral assemblages in gills and paleosols as the basis for paleoprecipitation proxies: A review of magnetic methods and challenges [J].
Maxbauer, Daniel P. ;
Feinberg, Joshua M. ;
Fox, David L. .
EARTH-SCIENCE REVIEWS, 2016, 155 :28-48
[42]   Quantitative relationships between climate and magnetic susceptibility of soils on the Backa Loess Plateau (Vojvodina, Serbia) [J].
Radakovic, Milica G. ;
Gavrilov, Milivoj B. ;
Hambach, Ulrich ;
Schaetzl, Randall J. ;
Tosic, Ivana ;
Ninkov, Jordana ;
Vasin, Jovica ;
Markovic, Slobodan B. .
QUATERNARY INTERNATIONAL, 2019, 502 :85-94
[43]  
Ryskov Y.G., 2006, MODERN PROBLEMS ARID, P108
[44]  
[Шарый П.А. Shary P.A.], 2020, [Современные проблемы дистанционного зондирования Земли из космоса, Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa], V17, P154, DOI 10.21046/2070-7401-2020-17-4-154-163
[45]   Statistical evaluation of the relationships between spatial variability in the organic carbon content in gray forest soils, soil density, concentrations of heavy metals, and topography [J].
Shary, P. A. ;
Pinskii, D. L. .
EURASIAN SOIL SCIENCE, 2013, 46 (11) :1076-1087
[46]   Hourly potential evapotranspiration at 0.1° resolution for the global land surface from 1981-present [J].
Singer, Michael Bliss ;
Asfaw, Dagmawi Teklu ;
Rosolem, Rafael ;
Cuthbert, Mark O. ;
Miralles, Diego G. ;
MacLeod, David ;
Quichimbo, Edisson Andres ;
Michaelides, Katerina .
SCIENTIFIC DATA, 2021, 8 (01)
[47]   Quantitative relationships between magnetic enhancement of modern soils and climatic variables over the Chinese Loess Plateau [J].
Song, Yang ;
Hao, Qingzhen ;
Ge, Junyi ;
Zhao, De'ai ;
Zhang, Yan ;
Li, Qin ;
Zuo, Xinxin ;
Lu, Yanwu ;
Wang, Pan .
QUATERNARY INTERNATIONAL, 2014, 334 :119-131
[48]  
van Reeuwijk L.P., 2002, Procedures for soil analysis, V6th
[49]  
Velichko A.A., 2005, GEOL SOC AM BULL, DOI [10.1130/SPE382, DOI 10.1130/SPE382]
[50]  
Zavarzina DG, 2003, EURASIAN SOIL SCI+, V36, P1085