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Acidification Alert: Understanding the Dynamics of Soil Acidity in Chinese Tea Plantations

delete2025-11-27
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PRE
AI
S
Shiqi Xi
H
Haojie Cao
N
Ning Ma
李婷 cover
李婷 (Ting Li) *
Z
Zijun Zhou
X
Xiaojing Liu
王贵胤 cover
王贵胤 (Guiyin Wang)
S
Shirong Zhang
徐小逊 cover
徐小逊 (Xiaoxun Xu)
蒲玉琳 cover
蒲玉琳 (Yulin Pu)
Y
Yongxia Jia
H
Hao Li
DOI:10.1002/ldr.70339delete
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Abstract

Abstract

En 中文
Soil acidification in tea plantations, while beneficial for tea plant growth within an optimal pH range, has become a pressing environmental issue. However, limited research has examined its spatial distribution and projected changes under global climate change. To fill this gap, we compiled a nationwide soil database through literature-based meta-analysis and developed a predictive model using a random forest algorithm to assess soil acidity patterns and their dynamics in Chinese tea plantations. The database includes 1718 topsoil (0–25 cm) pH records. Key contributors to soil pH variations include precipitation, temperature, and nitrogen application rate, although their correlations vary regionally. The predictions indicate that tea-planting soils in the southern Yangtze and southern regions are highly acidified, with 87.50% and 48.32% of the areas having pH below 4.5, respectively. Conversely, 11.99% of the tea-planting soils in the northern Yangtze region exceed pH 5.5, and 96.11% of the southwestern soils maintain optimal acidity for tea cultivation. Under increased precipitation (+20%), pH is projected to rise in the northern Yangtze and southwestern regions, but decline in the southern Yangtze and southern areas. Similarly, a temperature rise of 1.5°C and 2.5°C would raise soil pH in the southwestern, southern Yangtze, and southern regions but lower it in the northern Yangtze region. These findings highlight the urgent need for region-specific soil pH management strategies, especially in the southern Yangtze and southern regions, to combat acidification and sustain tea production in China.
Keywords:
climate change
meta-analysis
random forest
soil acidification
tea plant

Journal

Land Degradation and Development cover
Land Degradation and Development
IF:
3.7
Papers:
4.3K
Citations:
1.3W

Organization

S
soil and fertilizer institute
Scholars:
18
Papers: 9
Citations: 0
S
Sichuan Agricultural University
Scholars:
2.3W
Papers: 9.5K
Citations: 1.4W
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