RESEARCH AND EXPERIMENT ON EFFICIENT MIXING MODES OF DIFFERENT FORMS OF WATER AND FERTILIZER

IF 0.6 Q4 AGRICULTURAL ENGINEERING INMATEH-Agricultural Engineering Pub Date : 2023-08-17 DOI:10.35633/inmateh-70-28
Tianhua Li, Siqi Zhang, Chaofan Zhang, Guanshan Zhang, Min Wei, Hongen Guo, G. Shi
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Abstract

This paper proposes a fertilizer mixing device that combines pressure relief return and mechanical agitation to address the issues in the current water-fertilizer integration equipment related to limited fertilizer mixing methods and inconvenient irrigation pressure regulation. The device employs different mixing modes for various fertilizer forms and uses pressure relief return to adjust irrigation pressure, thereby enhancing the efficiency of water-fertilizer mixing and optimizing energy consumption. The experimental results indicate that the reflux mode is suitable for liquid-type fertilizers which are fast dissolving and easy to diffuse, and its EC value is stable at about 6.60 mS/cm, which is close to the calibrated value of 6.80 mS/cm. The stirring paddle mode compensates for the reflux mode's weak mixing effect, making it suitable for solid powder-type fertilizers' mixing operation. The EC value remains stable at approximately 8.60 mS/cm when calibrated at 8.70 mS/cm. The “stirring paddle + two-way reflux” mode demonstrates the most robust mixing effect and is suitable for mixing solid granular fertilizers. When calibrated at 8.20 mS/cm, it stabilizes at approximately the calibration value after 105 s. This research provides technical support and a theoretical basis to accomplish efficient, energy-saving, and rational application of water-fertilizer integration across diverse fertilizer forms.
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不同形态水肥高效混合模式的研究与试验
针对目前水肥一体化设备存在的混肥方式有限、灌溉压力调节不方便等问题,提出了一种减压回流与机械搅拌相结合的混肥装置。该装置对各种肥料形式采用不同的混合方式,并利用减压回流调节灌溉压力,从而提高了水肥混合的效率,优化了能耗。实验结果表明,回流模式适用于溶解快、易扩散的液态肥料,其EC值稳定在6.60mS/cm左右,接近6.80mS/cm的标定值。搅拌桨模式弥补了回流模式搅拌效果差的缺点,适用于固体粉末型肥料的搅拌操作。当以8.70 mS/cm校准时,EC值保持稳定在约8.60 mS/cm。“搅拌桨+双向回流”模式显示出最强劲的混合效果,适用于混合固体颗粒肥料。当在8.20 mS/cm下校准时,它在105秒后稳定在校准值附近。这项研究为实现不同肥料形式的高效、节能和合理应用水肥一体化提供了技术支持和理论依据。
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来源期刊
INMATEH-Agricultural Engineering
INMATEH-Agricultural Engineering AGRICULTURAL ENGINEERING-
CiteScore
1.30
自引率
57.10%
发文量
98
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