Nuruzzaman Md, Rahman Mohammad Mahmudur, Liu Yanju, Naidu Ravi
Global Centre for Environmental Remediation (GCER), Faculty of Science and Technology, The University of Newcastle , , University Drive, Callaghan, NSW 2308, Australia.
Cooperative Research Centre for Contamination Assessment and Remediation of the Environment (CRC CARE), ATC Building, The University of Newcastle , Callaghan, NSW 2308, Australia.
J Agric Food Chem. 2016 Feb 24;64(7):1447-83. doi: 10.1021/acs.jafc.5b05214. Epub 2016 Feb 15.
The application of nanotechnology in pesticide delivery is relatively new and in the early stages of development. This technology aims to reduce the indiscriminate use of conventional pesticides and ensure their safe application. This critical review investigated the potential of nanotechnology, especially the nanoencapsulation process for pesticide delivery. In-depth investigation of various nanoencapsulation materials and techniques, efficacy of application, and current research trends are also presented. The focus of ongoing research was on the development of a nanoencapsulated pesticide formulation that has slow releasing properties with enhanced solubility, permeability, and stability. These properties are mainly achieved through either protecting the encapsulated active ingredients from premature degradation or increasing their pest control efficacy for a longer period. Nanoencapsulated pesticide formulation is able to reduce the dosage of pesticides and human exposure to them, which is environmentally friendly for crop protection. However, lack of knowledge of the mechanism of synthesis and lack of a cost-benefit analysis of nanoencapsulation materials hindered their application in pesticide delivery. Further investigation of these materials' behavior and their ultimate fate in the environment will help the establishment of a regulatory framework for their commercialization. The review provides fundamental and critical information for researchers and engineers in the field of nanotechnology and especially the use of nanoencapsulation techniques to deliver pesticides.
纳米技术在农药递送中的应用相对较新,尚处于发展初期。这项技术旨在减少传统农药的滥用,并确保其安全使用。本综述探讨了纳米技术的潜力,特别是用于农药递送的纳米封装工艺。文中还深入研究了各种纳米封装材料和技术、应用效果以及当前的研究趋势。目前的研究重点是开发一种具有缓释特性、溶解性、渗透性和稳定性增强的纳米封装农药制剂。这些特性主要通过保护被封装的活性成分不提前降解,或在更长时间内提高其害虫防治效果来实现。纳米封装农药制剂能够减少农药用量以及人类对其的接触,这对作物保护来说是环境友好型的。然而,对合成机制的了解不足以及对纳米封装材料缺乏成本效益分析阻碍了它们在农药递送中的应用。进一步研究这些材料在环境中的行为及其最终归宿,将有助于建立其商业化的监管框架。本综述为纳米技术领域的研究人员和工程师,特别是使用纳米封装技术递送农药的人员提供了基础且关键的信息。