印度古吉拉特南部地区不同土地利用系统中碳积累的土壤动力学

S. Bhalawe, D. Nayak, A. S. Lodhi, R. K. Thakur, S. K. Rai, A. Shrivastava
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摘要

在不同的土地利用系统中,碳积累的土壤动力学各不相同。了解有助于碳积累的土壤动力学和土地利用系统管理方法,对于设计有效的固碳战略至关重要。最近的一项研究考察了 15 种不同的土地利用系统,包括农业土地利用系统、植树造林土地利用系统和农林业土地利用系统。该研究根据树木构成的程度评估了这些土地利用系统储存碳的潜力。研究还调查了土壤的各种物理和化学特征及其对土壤碳保护的影响。结果表明,随着树木成分数量的增加,土壤 pH 值和容重分别从 6.10 降至 5.55 和 1.48 降至 1.33g/cm3。植树造林土地利用系统的土壤可用氮明显高于农业土地利用系统,而后者的土壤湿度更高。树木成分增加了土壤碳积累,农林土地利用系统满足了人类和环境平衡的要求。
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Soil Dynamics for Carbon Buildup in Different Land Use Systems in the South Region of Gujarat, India
Soil dynamics for carbon build-up vary across different land use systems. Understanding the soil dynamics and land use system management practices that contribute to carbon build-up is essential for designing effective carbon sequestration strategies. In a recent study, fifteen different land use systems were examined, including agriculture land-use systems, tree plantation land-use systems, and agroforestry land-use systems. The study assessed the potential of these land use systems to store carbon based on the extent of tree components. Various physical and chemical characteristics of the soil and their impact on soil carbon conservation were also investigated. The results showed that as the number of tree components increased, the soil pH and bulk density decreased from 6.10 to 5.55, and 1.48 to 1.33g/cm3. The available soil nitrogen was significantly higher in tree plantation land-use systems than in agriculture land use systems while soil moisture was higher in the latter. Tree components increase soil carbon build-up and agroforestry land use systems fulfill the requirement for human and environmental balance.
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