优化水稻-小麦系统中的钾矿开采:促进可持续土壤健康的策略--综述

S. Vijayakumar , R. Gobinath , P. Kannan , Varunseelan Murugaiyan
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引用次数: 0

摘要

印度-甘肃平原通常被称为南亚的 "菜篮子",该地区的水稻-小麦系统在过去几十年中出现了令人担忧的钾平衡趋势。这种负面趋势源于密集和过度的农业生产方式,导致该地区 79% 的土壤属于低钾至中钾可用类别。因此,高钾可用性土壤的数量也在减少。尽管人们对土壤钾充足性存在误解,但在冲积土(如印度--甘肃平原的冲积土)中,作物对钾肥的反应十分明显。然而,目前的负钾平衡超过了可接受的水平,对系统的可持续性构成了重大威胁。缺钾的土壤在没有外部钾输入的情况下无法获得最佳产出。因此,保持水稻-小麦系统内充足的钾含量对于维持农业生产率、保护土壤健康、确保粮食安全和减轻相关环境影响至关重要。为应对这些挑战,本综述全面介绍了当前的养分平衡、现有的施肥量和施肥方法,以及优化钾矿开采的各种策略。这些策略包括均衡施肥、作物秸秆回收利用、最大限度减少钾沥滤损失、使用定制肥料和钾溶解微生物、建立国家土壤数据储存库以及实施政策干预。通过使钾肥施用与作物需求同步,这些战略旨在提高钾肥使用效率,最大限度地提高投资回报,确保印度-甘地平原水稻-小麦系统的长期可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Optimizing potassium mining in rice-wheat system: Strategies for promoting sustainable soil health - A review

Optimizing potassium mining in rice-wheat system: Strategies for promoting sustainable soil health - A review

The rice-wheat system in the Indo-Gangetic Plain, often termed the ‘food basket’ of South Asia, has witnessed a concerning trend in its potassium balance over the past few decades. This negative trend stems from intensive and exhaustive agricultural practices, leading to 79% of the soil in the region falling into the low to medium potassium available category. Consequently, there has been a decline in soils with high potassium availability. Despite misconceptions about soil potassium sufficiency, abundant crop responses to potassium fertilization in alluvial soils, like those in the Indo-Gangetic Plain, have been observed. However, the current negative potassium balance exceeds acceptable levels, posing a significant threat to system sustainability. Soil deficient in potassium fails to yield optimal outputs without external potassium inputs. Thus, maintaining adequate potassium levels within the rice-wheat system is imperative for sustaining agricultural productivity, preserving soil health, ensuring food security, and mitigating associated environmental impacts. To address these challenges, this review provides a comprehensive understanding of the current nutrient balance, existing fertilizer application rates and methods, and various strategies to optimize potassium mining. These strategies include balanced fertilizer usage, crop residue recycling, minimizing potassium leaching losses, employing customized fertilizers and potassium-solubilizing microbes, establishing a national soil data repository, and implementing policy interventions. By synchronizing potassium application with crop requirements, these strategies aim to enhance potassium use efficiency and maximize return on investment, ensuring the long-term sustainability of the rice-wheat system in the Indo-Gangetic Plains.

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