The effects of freeze-thaw cycles at different initial soil water contents on soil erodibility in Chinese Mollisol region

CATENA - Tập 193 - Trang 104615 - 2020
Lei Wang1, Xiaofeng Zuo1, Fenli Zheng1,2, Glenn V. Wilson3, Xunchang J. Zhang4, Yifei Wang1, Han Fu1
1State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau, Institute of Soil and Water Conservation, Northwest A&F University, Yangling, 712100, Shaanxi, PR China
2Institute of Soil and Water Conservation, CAS & MWR, Yangling, 712100, Shaanxi, PR China
3USDA-ARS National Sedimentation Laboratory, Oxford 38655, MS, USA
4USDA-ARS Grazinglands Research Laboratory, El Reno 73036, OK, USA

Tài liệu tham khảo

Arthur, 2013, Density and permeability of a loess soil: Long-term organic matter effect and the response to compressive stress, Geoderma, 193, 236, 10.1016/j.geoderma.2012.09.001 Bajracharya, 1992, Seasonal soil loss and erodibility variation on a Miamian silt loam soil, Soil Sci. Soc. Am. J., 56, 1560, 10.2136/sssaj1992.03615995005600050037x Ban, 2017, Comparative study of erosion processes of thawed and non-frozen soil by concentrated meltwater flow, Catena, 148, 153, 10.1016/j.catena.2016.06.019 Bissonnais, 1996, Aggregate stability and assessment of soil crustability and erodibility: I. Theory and methodology, Eur. J. Soil Sci. 47, 4, 425, 10.1111/j.1365-2389.1996.tb01843.x Chamberlain, 1979, Effect of freezing and thawing on the permeability and structure of soils, Eng. Geol., 13, 73, 10.1016/0013-7952(79)90022-X Coote, 1988, Seasonal variations of erodibility indices based on shear strength and aggregate stability in some Ontario soils, Can. J. Soil Sci., 68, 405, 10.4141/cjss88-037 Cruse, 1977, Effect of soil shear strength on soil detachment due to raindrop impact1, Soil Sci. Soc. Am. J., 41, 777, 10.2136/sssaj1977.03615995004100040034x Dagesse, 2010, Freezing-induced bulk soil volume changes, Can. J. Soil Sci., 90, 389, 10.4141/CJSS09054 Dagesse, 2011, Effect of freeze-drying on soil aggregate stability, Soil Sci. Soc. Am. J., 75, 2111, 10.2136/sssaj2010.0287 Edwards, 2013, The effects of soil freeze-thaw on soil aggregate breakdown and concomitant sediment flow in Prince Edward Island: A review, Can. J. Soil Sci., 93, 459, 10.4141/cjss2012-059 Eigenbrod, 1996, Effects of cyclic freezing and thawing on volume changes and permeabilities of soft fine-gained soils, Can. Geotech. J., 33, 529, 10.1139/t96-079-301 Emerson, 1967, A classification of soil aggregates based on their coherence in water, Aust. J. Soil Res., 5, 47, 10.1071/SR9670047 Fajardo, 2016, Soil slaking assessment using image recognition, Soil Tillage Res., 163, 119, 10.1016/j.still.2016.05.018 Feng, 2018, Impacts of mollic epipedon thickness and overloaded sediment deposition on corn yield in the Chinese Mollisol region. Agric, Ecosyst. Environ., 257, 175, 10.1016/j.agee.2018.02.010 Ferrick, 2005, Quantifying the effect of a freeze-thaw cycle on soil erosion: Laboratory experiments, Earth Surf. Process. Landf., 30, 1305, 10.1002/esp.1209 Formanek, 1984, Freeze-thaw and consolidation effects on strength of a wet silt loam, Trans. ASAE, 27, 1749, 10.13031/2013.33040 Froese, 1991, Erosion mechanics of soils with an impermeable subsurface layer, Soil Sci. Soc. Am. J., 63, 1836, 10.2136/sssaj1999.6361836x GB/T 50123-1999. Standard for soil test method. Ministry of water resources, P.R. China (in Chinese). Ghazavi, 2010, The influence of freeze-thaw cycles on the unconfined compressive strength of fiber-reinforced clay, Cold Reg. Sci. Technol., 61, 125, 10.1016/j.coldregions.2009.12.005 Greenland, 1977, Soil damage by intensive arable cultivation: temporary or permanent?, Philos. Trans. R. Soc. Lond. B., 281, 193, 10.1098/rstb.1977.0133 Hayashi, 2013, The cold vadose zone: Hydrological and ecological significance of frozen-soil processes, Vadose Zone J., 12, 1, 10.2136/vzj2013.03.0064 Kirby, 1987, The seasonal variation of soil erosion by water in southwestern Quebec, Can. J. Soil Sci., 67, 55, 10.4141/cjss87-005 Klaveren, 2010, Freeze-thaw and water tension effects on soil detachment, Soil Sci. Soc. Am. J., 74, 1327, 10.2136/sssaj2009.0360 Lehrsch, 1991, Freezing effects on aggregate stability affected by texture, mineralogy, and organic matter, Soil Sci. Soc. Am. J., 55, 1401, 10.2136/sssaj1991.03615995005500050033x Léonard, 2004, Estimation of runoff critical shear stress for soil erosion from soil shear strength, Catena, 57, 233, 10.1016/j.catena.2003.11.007 Li, 2002, Impact of freezing and thawing on energy exchange between the system and environment, J. Glaciol. Geocryol., 24, 109 Li, 2009, Experimental research on disintegration of loess, Chin. J. Rock Mech. Eng. 28, s1, 3207 Liu, 2017, Soil erosion as affected by freeze-thaw regime and initial soil moisture content, Soil Sci. Soc. Am. J., 81, 459, 10.2136/sssaj2016.08.0271 Liu, 2013, Effects of gully erosion and gully filling on soil depth and crop production in the black soil region, northeast China, Environ. Earth Sci., 68, 1723, 10.1007/s12665-012-1863-0 Liu, 2016, Influence of freeze-thaw cycles on mechanical properties of a silty sand, Eng. Geol., 210, 23, 10.1016/j.enggeo.2016.05.019 Liu, 2017, Experimental study on the effect of freezing-thawing cycles on wind erosion of black soil in Northeast China, Cold Reg. Sci. Technol., 136, 1, 10.1016/j.coldregions.2017.01.002 Liu, 2011, Soil erosion control practices in Northeast China: A mini-review, Soil Tillage Res., 117, 44, 10.1016/j.still.2011.08.005 McGreevy, 1985, Rock moisture content and frost weathering under natural and experimental conditions: A comparative discussion, Arct. Alp. Res., 17, 337, 10.2307/1551022 MWR, 2010 Oztas, 2003, Effect of freezing and thawing processes on soil aggregate stability, Catena, 52, 1, 10.1016/S0341-8162(02)00177-7 Qi, 2008, Influence of freeze-thaw on engineering properties of a silty soil, Cold Reg. Sci. Technol., 53, 397, 10.1016/j.coldregions.2007.05.010 Shen, 2019, The temporal evolution of soil erosion for corn and fallow hillslopes in the typical Mollisol region of Northeast China, Soil Tillage Res., 186, 200, 10.1016/j.still.2018.10.024 Sun, 2019, Research progress on the effects of freeze-thaw on soil physical and chemical properties and wind and water erosion, Chin. J. Appl. Ecol., 33, 337 Tang, 2018, The effect of freeze-thaw cycling on the mechanical properties of expansive soils, Cold Reg. Sci. Technol., 145, 197, 10.1016/j.coldregions.2017.10.004 USDA NRCS, 1999 Walder, 1986, The physical basis of frost weathering: toward a more fundamental and unified perspective, Arct. Alp. Res., 18, 27, 10.2307/1551211 Wang, 2010, Responses of soil structure to seasonal freezing-thawing in a typical black soil cultivated region, Chin. J. Appl. Ecol., 21, 1744 Wang, 2019, Experimental study of loess disintegration characteristics, Earth Surf. Process. Landf., 44, 1317, 10.1002/esp.4575 Wang, 2019, Shear strength behavior of coarse-grained saline soils after freeze-thaw, KSCE J. Civ. Eng., 23, 2437, 10.1007/s12205-019-0197-9 Wang, Y., Zheng, F., Zhou, X., Qin, C., Fu, H., Zuo, X., Liu, G., Zhang, J., 2019b. Soil profile temperature variation in farmlands during freeze-thaw period in the Chinese Mollisol region. Bull. Soil Water Conserv. 39 (3), 1–8 (in Chinese). https://doi.org/10.13961/j.cnki.stbctb.2019.03.010. Watson, 1986, Soil strength, slope, and rainfall intensity effects on interrill erosion, Trans. ASAE, 29, 98, 10.13031/2013.30109 Wei, 2018, The impact of freeze-thaw cycles and soil moisture content at freezing on runoff and soil loss, Land Degrad. Dev., 30, 515, 10.1002/ldr.3243 Xia, 2018, Effect of soil moisture on soil disintegration characteristics of different weathering profiles of collapsing gully in the hilly granitic region, South China. PLoS ONE, 13 Xie, 2015, Effects of freeze-thaw cycles on soil mechanical and physical properties in the Qinghai-Tibet Plateau, J. Mt. Sci., 12, 999, 10.1007/s11629-014-3384-7 Xu, 2018, Strength behaviors and meso-structural characters of loess after freeze-thaw, Cold Reg. Sci. Technol., 148, 104, 10.1016/j.coldregions.2018.01.011 Xu, 2018, Comparison of runoff and soil loss in different tillage systems in the Mollisol region of Northeast China, Soil Tillage Res., 177, 1, 10.1016/j.still.2017.10.005 Zaher, 2005, Modeling aggregate internal pressure evolution following immersion to quantify mechanisms of structural stability, Soil Sci. Soc. Am. J., 69, 1, 10.2136/sssaj2005.0001 Ze, 2019, Disintegration characteristics of a cryolithogenic clay loam with different water content: Moscow covering loam (prQIII), case study, Eng. Geol., 258, 10.1016/j.enggeo.2019.105159 Zhang, 2012, Laboratory investigation of disintegration characteristics of purple mudstone under different hydrothermal conditions, J. Mt. Sci., 9, 127, 10.1007/s11629-012-2204-1 Zhang, Z., Hong, B., Huang, Y., Liang, J., Qiu, G., 2017. Relationship between shear strength and slope erosion modulus of laterite under rainfall conditions in Yunnan Province. Bull. Soil Water Conserv. 37(1), 1–8 (in Chinese). https://doi.org/10.13961/j.cnki.stbctb.2017.01.001.