纳米氧化石墨烯的规模化生产与应用,满足农业需求

Q3 Agricultural and Biological Sciences
R. Jino Affrald
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引用次数: 0

摘要

农业部门的成功对整个世界的繁荣至关重要。近几十年来,减少饥饿和贫困以及加强粮食安全和营养都取得了长足进步。生产力和技术进步带来的资源效率和食品安全的提高没有得到公平分享。幸运的是,借助技术进步,可以减少当前全球粮食生产系统对环境和气候的不利影响。纳米技术可以作为“纳米农业”融入农业科学,以提供更准确地提高产量而不会对环境产生负面影响的解决方案。在一系列纳米颗粒中,氧化石墨烯(GO)在电子、光学、医学和超级电容器中有着不同的应用。由于其适应性,它在许多关键的生物学环境中也至关重要。氧化石墨烯在农业、科技和食品生产等多种行业中有着广泛的潜在用途。营养素的纳米封装、智能释放系统、新型包装、各种微生物和污染物的智能水处理系统、农药和杀虫剂检测和分析以及其他类型的检测系统都是这种多功能材料的可能应用。它也可能是肥料的一部分或用作植物生长刺激剂。在GO市场,收益率是一个主要问题。由于石墨烯备受关注,因此大量生产GO纳米颗粒至关重要。工业规模石墨烯制造的一种可能方法是石墨的氧化剥离。这篇综述概述了一些大规模生产用于农业的GO的成本效益策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-scale Production and Application of Graphene Oxide Nanoparticles to Meet Agriculture Needs
The success of the agricultural sector is crucial to the whole world's prosperity. Reducing hunger and poverty and enhancing food security and nutrition have all made great strides in recent decades. Improvements in resource efficiency and food safety brought about by productivity and technical gains have not been shared fairly. Fortunately, it is possible to reduce the adverse effects of the current global food production system on the environment and climate with the aid of technological advancements. Nanotechnology can be integrated into the agricultural sciences as "nano agriculture", to provide solutions that are more accurately boost production without negatively impacting the environment. Among a range of nanoparticles, graphene oxide (GO) has found diverse application in electronics, optics, medicine, and supercapacitors. Due to its adaptability, it is also crucial in many critical biological contexts. Graphene oxide has a range of potential uses in industries as diverse as agriculture, technology, and food production. Nanoencapsulation of nutrients, smart-release systems, novel packaging, smart water treatment systems for various kinds of microorganisms and pollutants, pesticide and insecticide detection and analysis, and other kinds of detection systems are all possible applications of this versatile material. It may also be a part of fertilizer or used as a plant growth stimulant. In the GO market, yield is a major concern. With so much focus on graphene, it is essential to produce  GO nanoparticles in large quantities. A possible method for industrial-scale graphene manufacturing is the oxidative exfoliation of graphite. This review outlines few cost effective strategies to mass-produce GO for use in agriculture.
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来源期刊
Current Applied Science and Technology
Current Applied Science and Technology Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
1.50
自引率
0.00%
发文量
51
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