Literature DB >> 33250240

A systematic analysis and review of the impacts of afforestation on soil quality indicators as modified by climate zone, forest type and age.

Yang Guo1, Mohamed Abdalla2, Mikk Espenberg3, Astley Hastings2, Paul Hallett2, Pete Smith2.   

Abstract

This global systematic analysis and review investigate the impacts of previous land use system, climate zone, forest type and forest age on soil organic carbon (SOC), total nitrogen (TN), total phosphorus (TP) stock, soil bulk density (BD) and pH at soil layers 0-20, 20-60 and 60-100 cm, following afforestation. Data came from 91 publications on SOC, TN and TP stock changes, covering different countries and climate zones. Overall, afforestation significantly increased SOC by 46%, 52% and 20% at 0-20, 20-60 and 60-100 cm depths, respectively. It also significantly increased shallower TN stocks by 28% and 22% at 0-20 and 20-60 cm depths, respectively, but had no overall impacts on TP. Previous land use system had the largest influence on SOC, TN and TP stock changes, with greater accumulations on barren land compared to cropland and grassland. Climate zone influenced SOC, TN and TP stock changes, with greater accumulations for moist cool than other climate zones. Broadleaf forests were better than coniferous forests for increasing SOC, TN and TP stocks of the investigated soil profile (0-100 cm). Afforestation for <20 years accumulated SOC and TN stocks only at the soil surface (0-20 cm), whilst afforestation for >20 years accumulated SOC and TN stocks to 100 cm soil depth. Changes to SOC and TN were positively correlated at depths down to 100 cm under all age groups, demonstrating that an increase TN could offset progressive N limitation, and maintains SOC accumulation as forests age. TP stock decreased significantly in topsoil (0-20 cm) for <20-year-old forest and did not change for >20-year-old forest, suggesting that it may become a limiting factor for carbon sequestration as forests age. Following afforestation, soil BD decreased alongside significant increases in SOC and TN stocks to 100 cm depth, but had no relationship with TP.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Afforestation; Climate; Land use change; Soil nitrogen; Soil organic carbon; Soil phosphorus

Year:  2020        PMID: 33250240     DOI: 10.1016/j.scitotenv.2020.143824

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  1 in total

1.  Changes in Soil Physico-Chemical and Microbiological Properties During Natural Succession: A Case Study in Lower Subtropical China.

Authors:  Xinyu Zhao; Peiling Liu; Yingjie Feng; Weiqiang Zhang; Brian Njoroge; Fengling Long; Qing Zhou; Chao Qu; Xianhua Gan; Xiaodong Liu
Journal:  Front Plant Sci       Date:  2022-06-03       Impact factor: 6.627

  1 in total

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