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Nanotechnology in agriculture: Opportunities, toxicological implications, and occupational risks

机译:农业纳米技术:机遇,毒理学影响,职业风险

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Abstract Nanotechnology has the potential to make a beneficial impact on several agricultural, forestry, and environmental challenges, such as urbanization, energy constraints, and sustainable use of resources. However, new environmental and human health hazards may emerge from nano-enhanced applications. This raises concerns for agricultural workers who may become primarily exposed to such xenobiotics during their job tasks. The aim of this review is to discuss promising solutions that nanotechnology may provide in agricultural activities, with a specific focus on critical aspects, challenging issues, and research needs for occupational risk assessment and management in this emerging field. Eco-toxicological aspects were not the focus of the review. Nano-fertilizers, (nano-sized nutrients, nano-coated fertilizers, or engineered metal-oxide or carbon-based nanomaterials per se), and nano-pesticides, (nano-formulations of traditional active ingredients or inorganic nanomaterials), may provide a targeted/controlled release of agrochemicals, aimed to obtain their fullest biological efficacy without over-dosage. Nano-sensors and nano-remediation methods may detect and remove environmental contaminants. However, limited knowledge concerning nanomaterial biosafety, adverse effects, fate, and acquired biological reactivity once dispersed into the environment, requires further scientific efforts to assess possible nano-agricultural risks. In this perspective, toxicological research should be aimed to define nanomaterial hazards and levels of exposure along the life-cycle of nano-enabled products, and to assess those physico-chemical features affecting nanomaterial toxicity, possible interactions with agro-system co-formulants, and stressors. Overall, this review highlights the importance to define adequate risk management strategies for workers, occupational safety practices and policies, as well as to develop a responsible regulatory consensus on nanotechnology in agriculture. Highlights ? Nanotechnology can help precision farming and sustainable agriculture development. ? Nano-innovations for agriculture may impact human and environmental health. ? Workers exposed to nanomaterials may face emerging occupational risks. ? Toxicology should assess the nanomaterial impact on agrosystems and human beings. ? Toxicological research may guide effective risk assessment and management processes. ]]>
机译:摘要纳米技术有可能对几个农业,林业和环境挑战产生有益的影响,例如城市化,能源限制以及资源的可持续利用。然而,可以从纳米增强的应用中出现新的环境和人类健康危害。这会对农业工人提出令人担忧,这些工人可能在工作任务期间主要暴露于这种异卵。本综述的目的是讨论纳米技术可以在农业活动中提供的有希望的解决方案,并特别关注在这一新兴领域的职业风险评估和管理的关键方面,具有挑战性问题和研究需求。生态毒理学方面不是审查的重点。纳米肥料(纳米型营养素,纳米涂层肥料或工程化金属氧化物或碳基纳米材料),以及纳米农药(传统活性成分或无机纳米材料的纳米制剂),可提供a有针对性/控制的农用化学品的释放,旨在获得其完全生物学效果而无需过剂量。纳米传感器和纳米修复方法可以检测和去除环境污染物。然而,有关纳米材料生物安全,不利影响,命运和获得的生物反应性的有限知识,一旦分散到环境中,需要进一步的科学努力来评估可能的纳米农业风险。在这种角度来看,毒理学研究应旨在沿纳米产品的生命周期定义纳米材料危害和暴露水平,并评估影响纳米材料毒性的那些物理化学特征,与农业系统共同配方的可能相互作用,和压力源。总体而言,这一综述强调了为工人,职业安全做法和政策提供适当风险管理战略的重要性,以及在农业中纳米技术纳入的负责任的监管协商一致意见。强调 ?纳米技术有助于精确耕种和可持续农业发展。还农业纳米创新可能会影响人类和环境健康。还暴露于纳米材料的工人可能面临新兴的职业风险。还毒理学应评估对农毒国和人类的纳米材料影响。还毒理学研究可以指导有效的风险评估和管理流程。 ]]>

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