Intelligent fertigation improves tomato yield and quality and water and nutrient use efficiency in solar greenhouse production

IF 5.9 1区 农林科学 Q1 AGRONOMY Agricultural Water Management Pub Date : 2024-05-17 DOI:10.1016/j.agwat.2024.108873
Qunyan Wang , Yifan Jia , Zhongjun Pang , Jianbin Zhou , Kevin Emmanuel Scriber II , Bin Liang , Zhujun Chen
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Abstract

Intelligent fertigation is a sustainable solution for optimising water and fertiliser input, thus minimising environmental pollution in vegetable cultivation facilities and reducing labour costs in agricultural practices. It is important to optimise irrigation scheduling parameters to specific crops to ensure water and nutrient use efficiency. A field experiment was conducted in Shouguang, Shandong Province, to investigate the effects of irrigation scheduling with different treatments (farmer drip irrigation FI, intelligent irrigation II1, and intelligent irrigation II2) on tomato growth, irrigation water and nutrient use efficiency over two growth seasons. Intelligent irrigation II1 and II2 utilised FDR sensors to control the moisture range within 80–95% and 80–85% field capacity (FC) for automatic irrigation scheduling, respectively. Intelligent irrigation (II1 and II2 treatments) reduced irrigation rate by 24.3–63.8% in comparison with FI treatment, significantly increasing total dry matter accumulation, nutrient uptake, yield and fruit quality of tomato. II2 treatment further reduced the irrigation rate by 31.6–32.3% compared to II1 treatment, with no significant difference in tomato yield and quality. Root dry matter, root-shoot ratio, 0–2 mm diameter root length and root surface area, 0–1.5 mm diameter root tips, and >3.5 mm diameter root volume were significantly increased under intelligent irrigation treatments. Positive correlations between irrigation water productivity; nitrogen, phosphorus, and potassium use efficiency; and the indices of length, surface area, tips, and volume of roots were highly significant. Intelligent fertigation system (IFS) maintained soil moisture within a suitable range through high-frequency irrigation scheduling, promoted the growth of 0–2 mm diameter roots, which were responsible for absorbing, acquiring, and transporting water and nutrients in the soil, and reduced water loss and nutrient leakage. Taken together, the intelligent fertigation system presented herein is an effective fertigation strategy to improve irrigation water and nutrient use efficiency.

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智能施肥提高了日光温室生产中番茄的产量和质量以及水和养分的利用效率
智能灌溉是优化水肥投入的可持续解决方案,可最大限度地减少蔬菜栽培设施对环境的污染,降低农业实践中的劳动力成本。针对特定作物优化灌溉调度参数以确保水和养分的高效利用非常重要。在山东省寿光市进行了一项田间试验,研究不同处理(农户滴灌 FI、智能灌溉 II1 和智能灌溉 II2)的灌溉调度对番茄两个生长季的生长、灌溉水和养分利用效率的影响。智能灌溉 II1 和 II2 利用 FDR 传感器将湿度范围分别控制在 80-95% 和 80-85% 的田间容量(FC)范围内,以实现自动灌溉调度。与FI处理相比,智能灌溉(II1和II2处理)减少了24.3-63.8%的灌溉量,显著提高了番茄的总干物质积累、养分吸收、产量和果实品质。II2 处理与 II1 处理相比,灌溉率进一步降低了 31.6-32.3%,但番茄产量和品质没有明显差异。在智能灌溉处理下,根干物质、根芽比、0-2 毫米直径根长和根表面积、0-1.5 毫米直径根尖和 3.5 毫米直径根量均显著增加。灌溉水生产率、氮、磷、钾利用效率与根长、根表面积、根尖和根体积指数之间的正相关非常显著。智能灌溉系统(IFS)通过高频灌溉调度将土壤水分保持在适宜范围内,促进了负责吸收、获取和运输土壤中水分和养分的直径 0-2 毫米根系的生长,减少了水分流失和养分渗漏。综上所述,本文介绍的智能施肥系统是一种有效的施肥策略,可提高灌溉水和养分的利用效率。
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来源期刊
Agricultural Water Management
Agricultural Water Management 农林科学-农艺学
CiteScore
12.10
自引率
14.90%
发文量
648
审稿时长
4.9 months
期刊介绍: Agricultural Water Management publishes papers of international significance relating to the science, economics, and policy of agricultural water management. In all cases, manuscripts must address implications and provide insight regarding agricultural water management.
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