Modeling the effect of tillage and irrigation management on water and barley productivity for different soil textures

IF 6.8 1区 农林科学 Q1 SOIL SCIENCE Soil & Tillage Research Pub Date : 2025-08-01 Epub Date: 2025-02-20 DOI:10.1016/j.still.2025.106505
Saadi Sattar Shahadha , Ole Wendroth
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Abstract

In arid and semi-arid regions, crop production is still limited by water scarcity and poor field management. To overcome these challenges, it is essential to discover effective agricultural practices that make the most of limited water availability and preserve soil nutrients. This study aimed to discover the best combination of tillage practices, irrigation systems, and soil textures that could promote the sustainable productivity of irrigation water and barley crop using the Root Zone Water Quality Model (RZWQM2). To achieve the study objective, an experiment was conducted in a barley growing seasons of 2020–2021 and 2021–2022 in Baghdad, Iraq, using sprinkler and flooding irrigation systems, as well as conservation (field cultivator) and conventional (moldboard plowing) tillage practices on two types of soil textures: silty clay and sandy clay. The results indicate that, RZWQM2 satisfactorily captures the combination effects of field practices on water-barley productivity in different soil textures. The behavior of soil water-nitrate dynamics, crop development, and water consumption presented a noticeable response to the combination of experimental factors. When sprinkler irrigation was utilized, sandy clay soil was more responsive to field practices than silty clay soil by about 6–12 %. The moldboard plowing practice increased crop development and yield by about 5–10 % compared to the field cultivator practice. The combination of sandy clay soil, sprinkler irrigation, and moldboard plowing yielded more satisfactory results of water use efficiency and crop productivity. Generally, for both soil texture types, moldboard plowing tillage showed satisfactory results compared to the field cultivator tillage.
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模拟不同土壤质地下耕作和灌溉管理对水分和大麦生产力的影响
在干旱和半干旱地区,作物生产仍然受到缺水和田间管理不善的限制。为了克服这些挑战,必须发现有效的农业做法,最大限度地利用有限的可用水并保持土壤养分。本研究旨在利用根区水质模型(RZWQM2)探索促进灌溉水和大麦作物可持续生产力的耕作方式、灌溉系统和土壤质地的最佳组合。为了实现研究目标,在2020-2021年和2021-2022年的大麦生长季节,在伊拉克巴格达进行了一项试验,采用喷灌和漫灌灌溉系统,以及在粉质粘土和砂质粘土两种土壤质地上采用保护性耕作(田间耕作机)和传统耕作(板耕)方法。结果表明,RZWQM2较好地捕捉了大田实践对不同土壤质地大麦产量的组合效应。土壤水-硝态氮动态、作物发育和耗水行为对试验因子组合有显著响应。采用喷灌方式时,砂质粘土比粉质粘土对田间实践的响应高6 - 12% %。与田间耕作相比,犁板耕作使作物发育和产量提高了约5 - 10% %。砂质粘土+喷灌+犁耕组合在水分利用效率和作物产量方面取得了较为满意的效果。总的来说,对于两种土壤质地类型,犁式耕作与大田耕作相比表现出令人满意的结果。
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来源期刊
Soil & Tillage Research
Soil & Tillage Research 农林科学-土壤科学
CiteScore
13.00
自引率
6.20%
发文量
266
审稿时长
5 months
期刊介绍: Soil & Tillage Research examines the physical, chemical and biological changes in the soil caused by tillage and field traffic. Manuscripts will be considered on aspects of soil science, physics, technology, mechanization and applied engineering for a sustainable balance among productivity, environmental quality and profitability. The following are examples of suitable topics within the scope of the journal of Soil and Tillage Research: The agricultural and biosystems engineering associated with tillage (including no-tillage, reduced-tillage and direct drilling), irrigation and drainage, crops and crop rotations, fertilization, rehabilitation of mine spoils and processes used to modify soils. Soil change effects on establishment and yield of crops, growth of plants and roots, structure and erosion of soil, cycling of carbon and nutrients, greenhouse gas emissions, leaching, runoff and other processes that affect environmental quality. Characterization or modeling of tillage and field traffic responses, soil, climate, or topographic effects, soil deformation processes, tillage tools, traction devices, energy requirements, economics, surface and subsurface water quality effects, tillage effects on weed, pest and disease control, and their interactions.
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