2020PubMedRequires access

[Effects of Cunninghamia lanceolata stand types on the changes of aggregate-related organic carbon and nutrients in surface soil].

Yongzhen Huang, Shengqiang Wang, Shaoming Ye

Open publisher page 11 citations

Abstract

could effectively promote the formation and stability of soil aggregates, and alleviate decomposition of soil organic matter and nutrient loss in plantations.

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could effectively promote the formation and stability of soil aggregates, and alleviate decomposition of soil organic matter and nutrient loss in plantations.

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OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

could effectively promote the formation and stability of soil aggregates, and alleviate decomposition of soil organic matter and nutrient loss in plantations.

Key concepts: Cunninghamia, Nutrient, Soil fertility, Soil carbon, Organic matter, Soil organic matter, Total organic carbon, Environmental science

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[Effects of Cunninghamia lanceolata stand types on the changes of aggregate-related organic carbon and nutrients in surface soil]. — Research Paper | ScholarLens