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Effect of vegetation introduction versus natural recovery on topsoil properties in the dried Aral Sea bed

Bibliographic Data

ID21647672
AuthorsGaeun Kim (0000-0003-1914-8331, Department of Environmental Science and Ecological Engineering Graduate School, Korea University Seoul Republic of Korea), Jieun Ahn (0000-0002-3871-4178, Department of Environmental Science and Ecological Engineering Graduate School, Korea University Seoul Republic of Korea), Hanna Chang (0000-0003-2627-7836, National Institute of Forest Science Seoul Republic of Korea), Jiae An (0000-0002-3116-9373, National Institute of Ecology Seocheon‐gun Republic of Korea), Asia Khamzina (0000-0001-5876-6410, Department of Environmental Science and Ecological Engineering Graduate School, Korea University Seoul Republic of Korea), Gwangeun Kim (Land & Ocean Environmental ENG. Suwon‐si Republic of Korea), Yowhan Son (0000-0001-5621-9894, Department of Environmental Science and Ecological Engineering Graduate School, Korea University Seoul Republic of Korea, corresponding author)
Year2024
Volume35
Issue13
Pages4121-4132
Publication date2024-08-15
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueLand Degradation and Development (JOURNAL)
Journal identifiersISSN: 1085-3278 • E-ISSN: 1099-145X
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ldr.5209
OpenAlexW4400055152
LanguageEN
References cited65

Desiccation of the Aral Sea has resulted in the emergence of vast saline and flat terrains, jeopardizing human health and agricultural activities because of sand and dust storms. Vegetation, mainly indigenous Haloxylon species, has been introduced to ameliorate the soil. As a critical indicator of rehabilitation, the physicochemical properties of soil after the introduction of vegetation remain poorly understood. This study examined (1) the changes in topsoil properties after vegetation establishment based on a 30‐year chronosequence and employed (2) site comparisons of topsoil properties between two cases of natural versus introduced vegetation on a dried Aral Sea bed. Twelve paired areas that were naturally or artificially vegetated during 1990, 2000, 2005, 2008, 2013, and 2017 were selected for examination. Irrespective of vegetation type, increases in organic matter and nutrients (TOC >90%, TN >143%, and P 2 O 5 >23%) were detected in the surface soil (0–10 cm) along the 30‐year chronosequence. In addition, decreases in EC e (92% and 69%), CEC (41% and 11%), Ca 2+ (38% and 12%), and TIC (81% and 11%) were observed in both natural and introduced vegetation, respectively. The introduced vegetation was associated with a slightly greater accumulation of soil K + and TN than the natural vegetation. Our results indicate vegetation‐derived nutrient and organic matter accumulation as well as the possible removal of salts by root exudates in the surface soil. Overall, vegetation contributed to soil amelioration, with similar effects observed at naturally and artificially vegetated sites

Agronomy · Biology · Chronosequence · Nutrient · Organic matter · Soil organic matter · Soil water · Topsoil · Environmental Science · Rangeland Management and Livestock Ecology · Soil and Environmental Studies · Soil erosion and sediment transport · Ecology · Geology · Soil Science

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  • Ecological restoration success is higher for natural regeneration than for active restoration in tropical forests

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  • Identifying potential vegetation establishment areas on the dried Aral Sea floor using satellite images

    Open Access•Jiwon Kim, Cholho Song et al.•Land Degradation and Development•2020

Citation velocityhistorical
Highly citedNo

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