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Variations in microbial biomass and activity within aggregate fractions can provide valuable information regarding mechanisms for enhancing carbon (C) sequestration and nutrient status in agricultural soils. The effects of different chronosequence phases on these variations in tea (Camellia sinensis L.) plantations have not yet been well documented. In this study, we assessed the relationship between...
Pool of micro-aggregate-associated carbon (C) play a highly accurate and general diagnostic role for change in soil organic C pool in response to changes in management practices. However, effects of different chronosequence phases on the pools of organic C and nutrient (nitrogen, phosphorus, and potassium) in micro-aggregates of different sizes in tea (Camellia sinensis L.) plantations have not been...
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