Engineered nanomaterials for sustainable agricultural production, soil improvement, and stress management

粮食安全 农业 持续性 人口 农业生产力 绿色革命 生物技术 业务 工程类 环境规划 自然资源经济学 环境科学 环境卫生 生物 生态学 医学 经济
作者
. Amna,Rubina Yasmine,Javed Ahmad,Sadia Raheez Qamar,M. Irfan Qureshi
出处
期刊:Elsevier eBooks [Elsevier]
卷期号:: 1-23 被引量:5
标识
DOI:10.1016/b978-0-323-91933-3.00022-2
摘要

A rapid increase in the population across the globe has also led to an upsurge in the consumption of food. The traditional practices adopted by the farmers are incapable of satisfying the huge nutritional upsurge. Also, every year, one-third of the crops get spoiled due to natural factors like poor soil quality, microbial attacks, natural disasters, and stress factors. Hence, innovative technologies and approaches have to be adopted to get rid of these problems and fulfill the nutritional requirement of the growing population. Nanotechnology has played a dynamic role in introducing agrotechnological revolution, which has a forthcoming ability to improve the agricultural system along with addressing the issue of food security. Therefore, enhancement of modern agricultural practices is achieved by the use of nanoparticles, the new-era material. In the past decade, several engineered nanomaterials such as nanopesticides, nanofertilizer, and nanosensor have been developed for managing plant health and for enriching the sustainability of agricultural practices by producing low waste with high yield and with ease. By using these nanoparticles in numerous forms, not only the crop yield was enhanced but also the micronutrients required for host defense. With a detailed study of the plant and nanoparticle interaction, we can get through new avenues toward cultivating crop practices by increasing plant properties such as crop yield, nutrient utilization, and disease resistance.
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