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营养液膜技术水培系统的进展与未来展望:全面综述与文献计量分析

Advancements and future perspectives in nutrient film technique hydroponic system: a comprehensive review and bibliometric analysis.

作者信息

Palmitessa Onofrio Davide, Signore Angelo, Santamaria Pietro

机构信息

Department of Soil, Plant and Food Sciences, University of Bari "Aldo Moro", Bari, Italy.

出版信息

Front Plant Sci. 2024 Dec 18;15:1504792. doi: 10.3389/fpls.2024.1504792. eCollection 2024.

Abstract

In the context of climate change, reducing the environmental impact of agriculture has become increasingly critical. To ensure sustainable food production, it is essential to adopt cultivation techniques that maximize resource efficiency, particularly in water and nutrient usage. The Nutrient Film Technique (NFT) is one such hydroponic system, designed to optimize water and nutrient use, making it a valuable tool for sustainable agriculture. This bibliometric review examines the evolution of NFT research from 1977 to 2023, focusing on the growing interest in this method as a solution to the agricultural challenges posed by climate change. Through the analysis of 774 scientific documents, this review highlights an upward trend in NFT-related studies, with a noticeable shift from conference proceedings to peer-reviewed journal articles, particularly in recent years. has been a leading journal in this field, underscoring the significance of early conference contributions. Lettuce and tomatoes have emerged as the primary crops studied in NFT systems, demonstrating the technique's broad applicability. Research on lettuce has primarily focused on nitrate accumulation and biofortification, aiming to improve both the nutritional quality and safety of the crop. Studies on tomatoes have explored challenges related to oxygen concentration in the nutrient solution, where innovations such as the Nutrient Drip Technique (NDT) and the New Growing System (NGS) have shown promise in addressing these issues. Other key areas of NFT research include the effects of water salinity on crop growth and the integration of NFT with aquaponics systems, highlighting its potential for sustainable, water-efficient crop production. However, challenges such as nutrient imbalances and disease management persist. This review underscores the growing relevance of NFT in the pursuit of environmentally sustainable agriculture. Continued innovation and research are essential to optimizing nutrient management, refining environmental controls, and exploring new crop varieties, thereby enhancing the potential of NFT for sustainable farming systems.

摘要

在气候变化的背景下,减少农业对环境的影响变得越来越关键。为确保可持续的粮食生产,采用能最大限度提高资源利用效率的种植技术至关重要,尤其是在水和养分的使用方面。营养液膜技术(NFT)就是这样一种水培系统,旨在优化水和养分的利用,使其成为可持续农业的宝贵工具。这篇文献计量学综述考察了1977年至2023年NFT研究的发展历程,重点关注对该方法作为应对气候变化带来的农业挑战的解决方案的兴趣日益增长。通过对774篇科学文献的分析,本综述突出了与NFT相关研究的上升趋势,从会议论文集到同行评审期刊文章有明显转变,特别是近年来。 一直是该领域的领先期刊,凸显了早期会议贡献的重要性。生菜和番茄已成为NFT系统中研究的主要作物,证明了该技术的广泛适用性。对生菜的研究主要集中在硝酸盐积累和生物强化方面,旨在提高作物的营养品质和安全性。对番茄的研究探讨了与营养液中氧气浓度相关的挑战,其中诸如营养滴灌技术(NDT)和新型种植系统(NGS)等创新在解决这些问题方面显示出了前景。NFT研究的其他关键领域包括水盐度对作物生长的影响以及NFT与鱼菜共生系统的整合,突出了其在可持续、节水作物生产方面的潜力。然而,养分失衡和病害管理等挑战依然存在。本综述强调了NFT在追求环境可持续农业方面日益增长的相关性。持续创新和研究对于优化养分管理、完善环境控制以及探索新作物品种至关重要,从而增强NFT在可持续耕作系统中的潜力。

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