Application of acoustic oscillations for accelerating the leaching process of saline soils

Q1 Agricultural and Biological Sciences Journal of the Saudi Society of Agricultural Sciences Pub Date : 2024-05-09 DOI:10.1016/j.jssas.2024.04.004
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Abstract

The escalating expansion of saline soils in arid and semi-arid regions presents a significant challenge to agricultural sustainability. In light of the widespread water scarcity, there has been a growing demand for innovative technologies aimed reducing water during the leaching of saline soils. This study explores the application of acoustic vibrations, particularly utilizing a seismic vibrator SV 10/100, to improve the efficiency of soil desalination. The mechanism of action of acoustic vibrations is explained by the formation of a vortex flow around soil particles oscillating within a defined amplitude and frequency range, thereby enhancing the dissolution of salts. This study specifically targets soda solonetz-solonchak soils with diverse mechanical compositions, situated in the Ararat plain of Armenia. Field experiments utilizing the lysimetric method were conducted in 2016. The primary aim was to determine optimal parameters of acoustic oscillations to expedite desalination process while assessing their impact on soil physical properties during leaching. Findings revealed that higher oscillation amplitudes (ranging from 4 to 7 mm) at frequencies of 10–70 Hz, within a 100-meter radius or 3.14-hectare area were watched. Specifically, oscillations at frequencies of 30–50 Hz for 1.0–1.5 h per leaching water portion (2500 m3/ha) effectively reduced the required leaching water volume and duration by 2 times when applied during soil leaching following acidification. It is important to note that the soil properties after leaching remained in the optimal ranges for the region (soil density 1.2–1.3 g/cm3, hydraulic conductivity 10–20 cm/day). Overall, this research underscores the efficacy of acoustic oscillations in expediting reclamation processes, reducing leaching water requirements, enhancing soil fertility, and facilitating integration into agricultural cycle. Therefore, the newly proposed method of utilizing acoustic vibrations shows potential for efficiently leaching saline soils.

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应用声波振荡加速盐碱土的沥滤过程
干旱和半干旱地区盐碱土面积的不断扩大对农业的可持续发展提出了重大挑战。由于普遍缺水,人们对旨在减少盐碱土沥滤过程中用水量的创新技术的需求日益增长。本研究探讨了声波振动的应用,特别是利用地震振动器 SV 10/100 提高土壤脱盐的效率。声波振动的作用机理可解释为,在确定的振幅和频率范围内振动的土壤颗粒周围形成涡流,从而促进盐分的溶解。本研究特别针对亚美尼亚阿拉拉特平原具有不同机械成分的苏打索隆内茨-索隆恰克土壤。2016 年利用溶解法进行了实地实验。主要目的是确定声波振荡的最佳参数,以加快脱盐过程,同时评估其在浸出过程中对土壤物理性质的影响。研究结果表明,在半径 100 米或面积 3.14 公顷的范围内,频率为 10-70 赫兹的振荡幅度较大(从 4 毫米到 7 毫米不等)。具体来说,在酸化后的土壤沥滤过程中,每份沥滤水(2500 立方米/公顷)使用频率为 30-50 赫兹的振荡 1.0-1.5 小时,可有效减少所需沥滤水量和持续时间 2 倍。值得注意的是,沥滤后的土壤性质仍保持在该地区的最佳范围内(土壤密度 1.2-1.3 克/立方厘米,导水率 10-20 厘米/天)。总之,这项研究强调了声波振荡在加快复垦进程、减少沥滤水需求、提高土壤肥力和促进农业循环一体化方面的功效。因此,新提出的利用声波振动的方法显示出有效沥滤盐碱土的潜力。
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来源期刊
Journal of the Saudi Society of Agricultural Sciences
Journal of the Saudi Society of Agricultural Sciences Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
8.70
自引率
0.00%
发文量
69
审稿时长
17 days
期刊介绍: Journal of the Saudi Society of Agricultural Sciences is an English language, peer-review scholarly publication which publishes research articles and critical reviews from every area of Agricultural sciences and plant science. Scope of the journal includes, Agricultural Engineering, Plant production, Plant protection, Animal science, Agricultural extension, Agricultural economics, Food science and technology, Soil and water sciences, Irrigation science and technology and environmental science (soil formation, biological classification, mapping and management of soil). Journal of the Saudi Society of Agricultural Sciences publishes 4 issues per year and is the official publication of the King Saud University and Saudi Society of Agricultural Sciences and is published by King Saud University in collaboration with Elsevier and is edited by an international group of eminent researchers.
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