贵州长期茶园土壤酸化及矿质元素含量变化研究

IF 1.2 4区 农林科学 Q4 SOIL SCIENCE Soil Research Pub Date : 2023-01-01 DOI:10.1071/sr23086
Shaoxia Lin, Xiaolan Liu, Qiuxiao Yan, Fuxiao Wei, Daoping Wang
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引用次数: 0

摘要

目的研究贵州茶园土壤酸化的发生位置,以及酸化对土壤矿质元素有效性的影响,为茶园土壤养分管理和改良提供依据。方法对不同种植年限、不同土层剖面的人工林土壤进行酸化特征研究。评价了土壤的pH缓冲能力,探讨了土壤酸化对矿质元素含量的影响。随着茶树树龄的增加,0- 20 cm土层酸化速率达到0.025pH单位/年。茶树种植40年后,土壤酸化由表层向剖面延伸,整个土层pH值均<4.5。土壤pHBC均<30mmol/kg,处于弱敏感水平。土壤中Fe、Mn、Cu、Zn、Mo和B的含量呈下降趋势,而As、Pb、Cr和Cd在地表呈富集趋势。茶园树龄和土壤深度与土壤矿质元素有效浓度呈极显著相关。结论酸性环境下,土壤酸化程度由表层向下逐渐加剧,土壤矿物质流失,酸性缓冲能力下降。结果提示,在茶园管理中应根据需要补充有机肥和微量元素,以实现品质和产量的长期稳定。
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Research on acidification and changes in mineral element concentrations in ferralsols from long-term tea plantations in Guizhou Province, China
Aims This study aimed to investigate where acidification occurred in soil profiles of Guizhou tea gardens, and the influence of acidification on the availability of soil mineral elements in order to inform soil nutrient management and improvement practices in tea gardens.Methods The acidification characteristics were investigated in soils from plantations grown for various numbers of years and across different soil layer profiles. Moreover, the pH buffering capacities (pHBC) of soils were evaluated and changes of mineral elements’ contents due to soil acidification were explored.Key results With increased tea plantation age, the acidification rate of 0–20-cm soil layers reached 0.025pH unit/year. Soil acidification extended from the surface layer downwards through profiles, while the pH of entire soil layers were <4.5 after 40years of tea plantation. The pHBC of soils were <30mmol/kg, remaining at a weak sensitive level. Fe, Mn, Cu, Zn, Mo, and B concentrations exhibited decreasing trends in soils, while As, Pb, Cr, and Cd exhibited enrichment at the surface. Tea plantation age and soil depth were significantly correlated with the available concentrations of soil mineral elements.Conclusions Soil acidification gradually increased downward from the surface and soil minerals were lost in acidic environments, while the acid buffering capacity was reduced.Implications These results suggest that organic fertilisers and trace elements should be supplemented as needed in the management of tea gardens to achieve long-term stability of quality and yields.
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来源期刊
Soil Research
Soil Research SOIL SCIENCE-
CiteScore
3.20
自引率
6.20%
发文量
35
审稿时长
4.5 months
期刊介绍: Soil Research (formerly known as Australian Journal of Soil Research) is an international journal that aims to rapidly publish high-quality, novel research about fundamental and applied aspects of soil science. As well as publishing in traditional aspects of soil biology, soil physics and soil chemistry across terrestrial ecosystems, the journal welcomes manuscripts dealing with wider interactions of soils with the environment. Soil Research is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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