Optimizing water and nitrogen management for saline wasteland improvement: A case study on Suaeda salsa

IF 5.9 1区 农林科学 Q1 AGRONOMY Agricultural Water Management Pub Date : 2024-07-01 DOI:10.1016/j.agwat.2024.108930
Qiang Xu , Hongguang Liu , Mingsi Li , Ping Gong , Pengfei Li , Yibin Xu
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Abstract

Cultivating Suaeda salsa (S. salsa) is a promising strategy for the improvement and development of saline wastelands. However, the absence of a scientifically reasonable water and fertilizer management system has long hindered the large-scale improvement and utilization of saline wastelands. Therefore, we performed field experiments for two consecutive years to investigate the effects of water-nitrogen coupling on biomass, forage quality, salt absorption capacity, soil improvement effect, and economic benefits of S. salsa. The optimal water and nitrogen dosages for multi-objective optimization were determined using multiple regression and spatial analysis methods. Three irrigation levels were established for the experiment based on 0.35 (W1), 0.50 (W2), and 0.65 (W3) of the local ETo (Where ETo denotes the reference evapotranspiration calculated based on the FAO-56 recommended by the Food and Agriculture Organization). The three nitrogen application levels were 150 (F1), 250 (F2), and 350 (F3) kg ha−1 in the complete combination design. At the same nitrogen application level, the biomass and economic benefits of the W3 irrigation level were the highest. However, the forage quality, salt absorption capacity, salt reduction, and water productivity at the W3 irrigation level were lower than those at the W2 irrigation level, and the water productivity at the W1 irrigation level was the highest. At the same irrigation level, when the nitrogen application level was F2, the biomass, forage quality, salt absorption, salt reduction, and net profit, all reached their maximum values, and water productivity was the highest at the F3 level. The optimal amount of water and nitrogen applied for each parameter was different, so it was impossible to obtain the highest biomass, forage quality, salt absorption, salt reduction, water productivity, and net profit at the same time. Therefore, multi-objective optimization was needed, the optimal irrigation volume range was 3350.11–3485.97 m3 ha−1, and the nitrogen application rate range was 273.49–326.66 kg ha−1. These findings provide a scientific basis for the large-scale cultivation of S. salsa in extreme arid region, which is helpful for the improvement and utilization of saline-alkali land.

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优化水氮管理,改善盐碱荒地:苏阿达莎莎案例研究
改良和开发盐碱荒地,栽培苏埃达莎草(Suaeda salsa)是一项前景广阔的战略。然而,由于缺乏科学合理的水肥管理制度,长期以来阻碍了盐碱荒地的大规模改良和利用。因此,我们连续两年进行田间试验,研究水氮耦合对莎草的生物量、牧草品质、盐分吸收能力、土壤改良效果和经济效益的影响。采用多元回归和空间分析方法确定了多目标优化的最佳水氮用量。根据当地蒸散量(ETo)的 0.35(W1)、0.50(W2)和 0.65(W3)(ETo 表示根据粮食及农业组织推荐的 FAO-56 计算的参考蒸散量),试验确定了三个灌溉水平。在完全组合设计中,三个施氮水平分别为 150(F1)、250(F2)和 350(F3)千克/公顷。在相同施氮水平下,W3 灌溉水平的生物量和经济效益最高。然而,W3 灌溉水平的牧草质量、盐分吸收能力、盐分减少量和水分生产率均低于 W2 灌溉水平,而 W1 灌溉水平的水分生产率最高。在相同灌溉水平下,当施氮水平为 F2 时,生物量、牧草质量、盐分吸收能力、盐分减少量和净利润均达到最大值,F3 水平的水分生产率最高。由于各参数的最佳水氮用量不同,因此不可能同时获得最高的生物量、牧草质量、吸盐率、减盐率、水分生产率和净利润。因此,需要进行多目标优化,最佳灌水量范围为 3350.11-3485.97 立方米/公顷,最佳施氮量范围为 273.49-326.66 千克/公顷。这些研究结果为在极端干旱地区大规模种植莎草提供了科学依据,有助于盐碱地的改良和利用。
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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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