Boosting C Sequestration and Land Restoration through Forest Management in Tropical Ecosystems: A Mini-Review

IF 1.7 Q3 ECOLOGY
Ecologies Pub Date : 2022-02-15 DOI:10.3390/ecologies3010003
L. Koutika
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引用次数: 3

Abstract

Soil has a major role in sequestering atmospheric CO2. This has further benefits and potential to improve soil fertility and food production, mitigate climate change, restore land degradation, and conserve ecosystem biodiversity. However, its health is increasingly being threatened by the growing population, land degradation and climate change effects. Despite its importance, soil organic carbon (SOC) is understudied in the tropics. This paper reviews how managing forests in tropical ecosystems can benefit SOC sequestration and land restoration. Sequestered SOC has the potential to improve soil fertility, as well as to reduce both land degradation and atmospheric CO2 emissions. It further improves soil structure, aggregation and water infiltration, enhances soil faunal activity and boosts nutrient cycling (C, N, P and S). Managing forest ecosystems is crucial to boost C sequestration, mitigate climate change and restore degraded lands, besides other ecosystem services they provide. Apart from managing natural forests and planted forests, afforesting, reforesting marginal or degraded lands especially when associated with specific practices (organic residue management, introducing nitrogen-fixing species) boost C storage (in both soil and biomass) and foster co-benefits as soil health improvement, food production, land restoration and mitigation of climate change. Improved soil health as a result of sequestered C is confirmed by enhanced physical, biological and chemical soil fertility (e.g., sequestered C stability through its link to N and P cycling driven by soil biota) which foster and sustain soil health.
通过森林管理促进热带生态系统碳固存和土地恢复:综述
土壤在隔绝大气中的二氧化碳方面起着重要作用。这在改善土壤肥力和粮食生产、减缓气候变化、恢复土地退化和保护生态系统生物多样性方面具有进一步的好处和潜力。然而,它的健康正日益受到人口增长、土地退化和气候变化影响的威胁。尽管土壤有机碳(SOC)很重要,但其在热带地区的研究还不够充分。本文综述了热带生态系统中森林管理如何促进有机碳的固存和土地的恢复。封存的有机碳具有改善土壤肥力、减少土地退化和大气二氧化碳排放的潜力。它进一步改善土壤结构、团聚体和水分入渗,增强土壤动物活动,促进养分循环(碳、氮、磷和硫)。管理森林生态系统除了提供其他生态系统服务外,对促进碳固存、减缓气候变化和恢复退化土地至关重要。除了管理天然林和人工林外,造林、再造林边缘或退化土地,特别是与特定做法(有机残留物管理、引入固氮物种)相结合时,可促进(土壤和生物质)碳储存,并促进改善土壤健康、粮食生产、土地恢复和减缓气候变化等共同效益。土壤物理、生物和化学肥力的增强(例如,通过与土壤生物群驱动的氮和磷循环的联系而实现的固碳稳定性)证实了由于固碳而改善的土壤健康,从而促进和维持土壤健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.80
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0.00%
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