The Influences of Climatic and Lithological Factors on Weathering of Sediments in Humid Badland Areas
Authors
Xie, ChunxiaAntić, Nevena

Nadal-Romero, Estela
Yan, Luobin
Tosti, Tomislav

Đogo-Mračević, Svetlana

Tu, Xinjun
Kašanin-Grubin, Milica

Article (Published version)
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Climate variables including temperature, rainfall intensity, rainfall acidity, and lithological properties are among the most important factors affecting rock weathering. However, the relative contribution of these four factors on rock weathering, especially on chemical weathering, is still unclear. In this study, we carried out a series of weathering-leaching rainfall simulations on four types of badland sediments under controlled conditions of two levels of temperature, rainfall intensity, and rainfall acidity based on the real field data from representative weather scenarios. The main objectives are 1) to explore the progressive change of sample surface and leachate characteristics and 2) to reveal the independent effects of temperature, rainfall intensity, rainfall acidity, and lithology and their relative contribution as well, on both mechanical and chemical weathering. Qualitative analysis on crack development and fragmentation of sample surface and quantitative analysis on the l...eachate volume, pH, electrical conductivity, and total cation and anion releases of sample leachate together demonstrated that for the investigated sediments, under the conditions of temperature, intensity, and acidity of rain that can be achieved in nature, high drying temperature obviously increases mechanical disintegration by promoting the rate and magnitude of moisture variations (wetting–drying alterations), while high rainfall intensity and acid rain have no obvious effect. Impact and importance of the drying process caused by high temperature between wetting events need more attention, rather than high rainfall intensity. Low temperature, high rainfall intensity, and acid rain contributing more hydrogen ions required for cation exchanges, rock type with more soluble minerals, all promote chemical weathering, and the influence of climatic and lithological factors on chemical weathering decreases in the following order: mineral composition> rainfall intensity > temperature > rainfall acidity. Climatic variations on temperature can modify weathering processes and in that way conditioned hydro-geomorphological processes in badland areas. Such changes should be considered for direct and indirect implications on badland dynamics.
Keywords:
badlands / rainfall acidity / rainfall intensity / temperature / total ion release / weatheringSource:
Frontiers in Earth Science, 2022, 10, 900314-Publisher:
- Frontiers Media S.A.
Funding / projects:
- The National Natural ScienceFoundation of China (Grant Nos. 41771008, 51879288, and41901005
- International Program for Ph.D. Candidates,Sun Yat-Sen University.
- Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200026 (University of Belgrade, Institute of Chemistry, Technology and Metallurgy - IChTM) (RS-200026)
DOI: 10.3389/feart.2022.900314
ISSN: 2296-6463
WoS: 000829252600001
Scopus: 2-s2.0-85134515166
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IHTMTY - JOUR AU - Xie, Chunxia AU - Antić, Nevena AU - Nadal-Romero, Estela AU - Yan, Luobin AU - Tosti, Tomislav AU - Đogo-Mračević, Svetlana AU - Tu, Xinjun AU - Kašanin-Grubin, Milica PY - 2022 UR - https://cer.ihtm.bg.ac.rs/handle/123456789/5256 AB - Climate variables including temperature, rainfall intensity, rainfall acidity, and lithological properties are among the most important factors affecting rock weathering. However, the relative contribution of these four factors on rock weathering, especially on chemical weathering, is still unclear. In this study, we carried out a series of weathering-leaching rainfall simulations on four types of badland sediments under controlled conditions of two levels of temperature, rainfall intensity, and rainfall acidity based on the real field data from representative weather scenarios. The main objectives are 1) to explore the progressive change of sample surface and leachate characteristics and 2) to reveal the independent effects of temperature, rainfall intensity, rainfall acidity, and lithology and their relative contribution as well, on both mechanical and chemical weathering. Qualitative analysis on crack development and fragmentation of sample surface and quantitative analysis on the leachate volume, pH, electrical conductivity, and total cation and anion releases of sample leachate together demonstrated that for the investigated sediments, under the conditions of temperature, intensity, and acidity of rain that can be achieved in nature, high drying temperature obviously increases mechanical disintegration by promoting the rate and magnitude of moisture variations (wetting–drying alterations), while high rainfall intensity and acid rain have no obvious effect. Impact and importance of the drying process caused by high temperature between wetting events need more attention, rather than high rainfall intensity. Low temperature, high rainfall intensity, and acid rain contributing more hydrogen ions required for cation exchanges, rock type with more soluble minerals, all promote chemical weathering, and the influence of climatic and lithological factors on chemical weathering decreases in the following order: mineral composition> rainfall intensity > temperature > rainfall acidity. Climatic variations on temperature can modify weathering processes and in that way conditioned hydro-geomorphological processes in badland areas. Such changes should be considered for direct and indirect implications on badland dynamics. PB - Frontiers Media S.A. T2 - Frontiers in Earth Science T1 - The Influences of Climatic and Lithological Factors on Weathering of Sediments in Humid Badland Areas VL - 10 SP - 900314 DO - 10.3389/feart.2022.900314 ER -
@article{ author = "Xie, Chunxia and Antić, Nevena and Nadal-Romero, Estela and Yan, Luobin and Tosti, Tomislav and Đogo-Mračević, Svetlana and Tu, Xinjun and Kašanin-Grubin, Milica", year = "2022", abstract = "Climate variables including temperature, rainfall intensity, rainfall acidity, and lithological properties are among the most important factors affecting rock weathering. However, the relative contribution of these four factors on rock weathering, especially on chemical weathering, is still unclear. In this study, we carried out a series of weathering-leaching rainfall simulations on four types of badland sediments under controlled conditions of two levels of temperature, rainfall intensity, and rainfall acidity based on the real field data from representative weather scenarios. The main objectives are 1) to explore the progressive change of sample surface and leachate characteristics and 2) to reveal the independent effects of temperature, rainfall intensity, rainfall acidity, and lithology and their relative contribution as well, on both mechanical and chemical weathering. Qualitative analysis on crack development and fragmentation of sample surface and quantitative analysis on the leachate volume, pH, electrical conductivity, and total cation and anion releases of sample leachate together demonstrated that for the investigated sediments, under the conditions of temperature, intensity, and acidity of rain that can be achieved in nature, high drying temperature obviously increases mechanical disintegration by promoting the rate and magnitude of moisture variations (wetting–drying alterations), while high rainfall intensity and acid rain have no obvious effect. Impact and importance of the drying process caused by high temperature between wetting events need more attention, rather than high rainfall intensity. Low temperature, high rainfall intensity, and acid rain contributing more hydrogen ions required for cation exchanges, rock type with more soluble minerals, all promote chemical weathering, and the influence of climatic and lithological factors on chemical weathering decreases in the following order: mineral composition> rainfall intensity > temperature > rainfall acidity. Climatic variations on temperature can modify weathering processes and in that way conditioned hydro-geomorphological processes in badland areas. Such changes should be considered for direct and indirect implications on badland dynamics.", publisher = "Frontiers Media S.A.", journal = "Frontiers in Earth Science", title = "The Influences of Climatic and Lithological Factors on Weathering of Sediments in Humid Badland Areas", volume = "10", pages = "900314", doi = "10.3389/feart.2022.900314" }
Xie, C., Antić, N., Nadal-Romero, E., Yan, L., Tosti, T., Đogo-Mračević, S., Tu, X.,& Kašanin-Grubin, M.. (2022). The Influences of Climatic and Lithological Factors on Weathering of Sediments in Humid Badland Areas. in Frontiers in Earth Science Frontiers Media S.A.., 10, 900314. https://doi.org/10.3389/feart.2022.900314
Xie C, Antić N, Nadal-Romero E, Yan L, Tosti T, Đogo-Mračević S, Tu X, Kašanin-Grubin M. The Influences of Climatic and Lithological Factors on Weathering of Sediments in Humid Badland Areas. in Frontiers in Earth Science. 2022;10:900314. doi:10.3389/feart.2022.900314 .
Xie, Chunxia, Antić, Nevena, Nadal-Romero, Estela, Yan, Luobin, Tosti, Tomislav, Đogo-Mračević, Svetlana, Tu, Xinjun, Kašanin-Grubin, Milica, "The Influences of Climatic and Lithological Factors on Weathering of Sediments in Humid Badland Areas" in Frontiers in Earth Science, 10 (2022):900314, https://doi.org/10.3389/feart.2022.900314 . .