秸秆焚烧和残留物管理对土壤特性的影响:综述

Pratistha Pradhan, Abhas Kumar Sinha, Tapas Kumar Pandit
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摘要

焚烧秸秆是一种常见的农业耕作方式,由于其对土壤特性和环境可持续性的不利影响而备受关注。就地焚烧秸秆,尤其是在水稻-小麦种植系统中,会严重改变土壤的物理和化学性质,特别是表土层。造成印度焚烧作物残茬的因素包括:由于连作之间的时间限制,必须快速清理田地,以及用于残茬管理的机械化设备有限。因此,许多农民将焚烧作物残茬作为一种快速、经济有效的方法,为下一个播种季节清理田地。原地秸秆管理技术为解决这些问题和促进土壤健康提供了可持续的替代方法,因为这些曾经被丢弃的残留物已转变为培育土壤活力的战略工具。本综述全面分析了焚烧秸秆对各种土壤特性的影响,尤其是在焚烧水稻秸秆的情况下。它综合了现有文献和研究成果,阐明了焚烧秸秆与土壤健康之间的相互作用,并主要评估了焚烧秸秆对土壤肥力和生产力的长期影响。根据研究结果,焚烧作物秸秆会扰乱土壤生态系统,破坏养分循环,降低土壤肥力,损害生态系统的恢复能力,从而导致长期土壤退化,而短期影响在不同情况下仍不甚明了。
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The Effect of Stubble Burning and Residue Management on Soil Properties: A Review
Stubble burning, a common agricultural practice, has gained significant attention due to its adverse effects on soil properties and environmental sustainability. The in-situ burning of stubble, especially in the context of the rice-wheat cropping system, can significantly alter the physical and chemical properties of soil, particularly in the topsoil layer. The factors contributing to crop residue burning in India include time constraints between successive crops which necessitates the need to clear fields quickly and limited access to mechanized equipment for residue management. As a result, many farmers resort to burning crop residues as a quick and cost-effective method to clear fields for the next planting season. In situ stubble management techniques offer sustainable alternatives to address these issues and promote soil health as this once-dismissed residue transforms into a strategic tool for nurturing soil vitality. This review provides a comprehensive analysis of the impact of stubble burning on various soil properties, especially in the context of burning of rice residues. It synthesizes existing literature and research findings to elucidate the interactions between stubble burning and soil health and evaluates mainly the long-term consequences of stubble burning on soil fertility and productivity. Based on the findings, crop residue burning disrupts soil ecosystems, impairs nutrient cycling, decreases soil fertility and compromises ecosystem resilience, leading to long-term soil degradation while the short-term effects remain less understood across different contexts.
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