植物修复:应对土壤盐碱化的可持续方法

R. Nainwal, Premchand Chaurasiya, Arun Kumar, Mohan Singh, Devendra Singh, S. K. Tewari
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摘要

土壤盐碱化是影响全球农田生产力的一个重大制约因素。这导致人们放弃在大面积土地上生产农作物。土壤盐碱化会对种子发芽和植物生长产生负面影响,并影响植物的生物活动,如光合作用、呼吸作用、植物新陈代谢、酶活性、激素调节等。因此,人们正努力通过适当的排水系统排出盐分或使用化学添加剂来改良盐碱土壤,从而使盐碱土壤得到耕种。然而,这些方法成本高昂,能源密集,难以在大面积、大规模的地区使用。在这方面,人们也正在采用具有生物成本效益的方法来改善这些退化的土地。植物修复是一种以植物为基础的改良退化土壤的方法,可能是一种合适的选择。具体做法是种植耐盐植物物种,通过根区的阳离子交换过程,去除和沥滤土壤中过量的钠盐(Na+),并增加钙盐(Ca2+)。在此过程中,土壤团聚体稳定性、根系增殖、土壤水力特性和植物养分供应等显著特性也会得到改善。这种土壤性质的改善有利于栽培耐受性较差的植物,并通过加强碳固存改善整体环境和气候条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phytoremediation: A Sustainable Approach to Combat Soil Salinity
Soil salinization is a significantconstraint affecting the productivity of agricultural land worldwide. This led to the abandoning of the production of farmcrops on colossalland. Soil salinity inversely affects seed germination and plant growth and influences the plant’s biological activities like photosynthesis, respiration, plant metabolism, enzymatic activities, hormone regulation, etc. Therefore, efforts are being made to bring the saline soil under cultivation by improving itthrough a proper drainage system to drain out the salts orapplying chemical amendments. However, these options are costly and energy-intensive for employment in large areas on a vast scale. In this direction, biologically cost-effective approaches are also being practiced to improve these degraded lands. Phytoremediation, a plant-based approach to improving degraded soil, may be an appropriate option. This is done by the plantation of salt-tolerant plant species, which can remove and leach down excess salts like sodium (Na+) from the soil and enhance calcium (Ca2+) salts through the cation exchange process from the root zone. During this process, remarkable properties like soil-aggregates stability, root proliferation, soil hydraulic properties, and nutrient availability to plants are also improved. Such improvement in soil properties facilitates the cultivation of less tolerant plants and improves the environment in general and the climatic conditions by enhancing carbon sequestration.
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