Increase Potential of Environmental Stresses and Climatic Risk of Heavy Metals in Plants and Control through Nanotechnology Advances

B. Awan, K. Mehmood, Asif Ali, H. Tahir, I. Ali, Saba Malik, Amjad Ali, Muhammad Sheeraz Javed, Muhammad Faraz Ali
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Abstract

Different heavy salts accumulated in the soil causing the soil salinity and damage the biological processing occurring in plants such as photosynthesis and light reactions. Climate changes also promote the accumulation of heavy metals by promoting the chemicals substances in the leaves and roots cells that causing the chlorosis. Coal combustion release the large amount of mercury metals that acting as toxic for the plants. There is need to design the biological and mechanical processing the removal of salts and toxic wastes from surfaces in such a way that no eruptions of plant materials occur at the surfaces. Nanotechnology employed the nanoparticles to capture the toxic metals through biological and chemical process that is more reliable and less expensive. A large variety of nanoparticles in the form of nanobased graphene oxides, graphite oxides and CNT, mesoporous silica materials have been used for controlling the pollution caused by heavy metals. These nanoparticles are compatible for the plant growth by suppressing the crop diseases by acting directly on phytopathogens. Therefore, it is reliable for controlling the risk of environmental pollution caused by heavy metals.
植物重金属环境胁迫和气候风险的潜在增加及其纳米技术控制
不同重盐在土壤中积累,造成土壤盐化,破坏植物光合作用和光反应等生物过程。气候变化还通过促进叶片和根系细胞中导致黄化的化学物质来促进重金属的积累。煤燃烧释放出大量对植物有毒的汞金属。有必要设计从表面去除盐和有毒废物的生物和机械处理方法,使表面不会发生植物物质的喷发。纳米技术利用纳米粒子通过生物和化学过程捕获有毒金属,这是更可靠和更便宜的。以纳米基氧化石墨烯、氧化石墨烯和碳纳米管、介孔二氧化硅等形式出现的各种纳米颗粒已被用于控制重金属污染。这些纳米颗粒通过直接作用于植物病原体来抑制作物病害,从而与植物生长相容。因此,对于控制重金属污染环境的风险是可靠的。
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