Recent advances in nanotechnology for the improvement of conventional agricultural systems: A review

Neelam Yadav , Vinod Kumar Garg , Anil Kumar Chhillar , Jogender Singh Rana
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引用次数: 5

Abstract

Agriculture provides food and raw materials for the construction, energy, textile and pharmaceutical industries. Recently, agriculture is facing several concerns including climate change, soil degradation, decreasing land holding, urbanization, unsustainable use of natural resources, excessive use of agrochemicals, biodiversity loss, air pollution etc. are some of alarming issues which demand immediate interventions. Conventional agricultural practices could not handle these challenges as they are complex, labour intensive, time-consuming, less efficient, large requirements of crop nutrients and non-targeted. Furthermore, the inefficient use of agrochemicals poses a serious threat to the ecosystem. Therefore, scientists, farmers and policymakers are constantly searching for new techniques to combat existing challenges. Nanotechnology is emerging as the new savior of sustainable agriculture. Besides precision farming, nanosensors have been employed for the detection of crop pathogens and chemically harmful analytes in agri-fields. Moreover, nanorobotics and nano-barcodes have also shown a profound impact on agriculture practices to enhance the yield of agriculture. Further, tremendous applications of nanotools in agriculture are extensively implicated in bioimaging, sensing, photocatalysis and agrochemicals delivery. This review comprehensively discusses diverse tremendous applications of nanotechnology in overcoming the challenges of conventional agronomic practices and future prospects of nanotechnology in agriculture.

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纳米技术在改善传统农业系统方面的最新进展:综述
农业为建筑、能源、纺织和制药行业提供食品和原材料。最近,农业面临着一些问题,包括气候变化、土壤退化、土地保有量减少、城市化、自然资源的不可持续利用、农用化学品的过度使用、生物多样性丧失、空气污染等,这些都是一些令人担忧的问题,需要立即采取干预措施。传统农业做法无法应对这些挑战,因为它们复杂、劳动密集、耗时、效率较低、对作物养分的需求量大且没有针对性。此外,农用化学品的低效使用对生态系统构成严重威胁。因此,科学家、农民和政策制定者不断寻找新技术来应对现有挑战。纳米技术正在成为可持续农业的新救星。除了精准农业,纳米传感器还被用于检测农田中的作物病原体和化学有害分析物。此外,纳米机器人和纳米条形码也对提高农业产量的农业实践产生了深远影响。此外,纳米工具在农业中的巨大应用广泛涉及生物成像、传感、光催化和农用化学品输送。这篇综述全面讨论了纳米技术在克服传统农艺实践挑战方面的各种巨大应用,以及纳米技术在农业中的未来前景。
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