Can natural undisturbed revegetation restores soil organic carbon to levels under native climax vegetation under tropical semiarid climate?

植被恢复 环境科学 生物群落 土壤碳 农学 固碳 农林复合经营 土壤有机质 土壤水分 表土 生态系统 土壤科学 二氧化碳 生态学 生物 生态演替
作者
Aline Roma Tomaz,Ademir de Oliveira Ferreira,Rattan Lal,Telmo Jorge Carneiro Amado,Belchior Oliveira Trigueiro da Silva,William Ramos da Silva,Felipe José Cury Fracetto,Thiago Massao Inagaki,Maria Betânia Galvão dos Santos Freire,Elves Obede dos Santos Nunes
出处
期刊:Land Degradation & Development [Wiley]
卷期号:35 (5): 1971-1981 被引量:3
标识
DOI:10.1002/ldr.5036
摘要

Abstract Land‐use change has driven soil carbon stock losses in ecosystems worldwide. Implementing agricultural crops and exploiting forest resources trigger the breakdown of soil aggregates, thus exposing organic matter to microbial decomposition and enhancing carbon dioxide emissions, especially in biomes more susceptible to climate extremes as in the tropical semiarid regions. This study was based on the hypothesis that the undisturbed soil from the dry forest (Caatinga biome under natural revegetation in Brazilian semiarid) would have an improvement in the mass of macroaggregates and recover more than 50% of the soil C stock within 10 years. Thus, a field experiment was conducted to investigate soils from the Caatinga biome under native vegetation, “cowpea cropping” for over 30 years, and soil under natural revegetation for over 10 years, after conventional soil cultivation of maize and cowpea, to determine soil and soil‐aggregates carbon stocks and to estimate the recovery rate of these stocks. The proportional mass of aggregates of different sizes and the total stock of particulate organic carbon (POC) were also quantified. The results showed that soil under preserved native vegetation of dry forest Caatinga biome had higher total soil C stock (50.9 Mg ha −1 ) than that under cowpea cropping (23.2 Mg ha −1 ) and natural revegetation (45.1 Mg ha −1 ). The proportional mass of large macroaggregates was higher in soil under native vegetation for all depths. However, soil under cowpea cropping had lower C stocks in macroaggregates, and recovered roughly 63% of the original C stocks, while revegetation recovered 78% of the stock in 10 years. Although the conventional management system for cowpea monoculture aggravated losses in soil carbon stock by more than 50% of the original C stocks, dry forest under natural revegetation recovered 79% of this stock and almost 100% of POC stock in 10 years (~12 Mg ha −1 ). Furthermore, soil under undisturbed Caatinga dry forest achieved C stock levels equivalent to that of the global average range for semiarid tropical environments. The high recovery rate of C stock in forest soil under natural revegetation indicates the resilience potential of organisms responsible for structural protection of aggregates and the encapsulated soil organic matter content.
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