An Estimation of Corn yield losses arising from water shortage by measuring thermalized neutrons

J. Pirvali Beiranvand, M. Ghamghami, S. Teimouri
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Abstract

Droughts are one of the most significant factors disrupting crop growth and development. This study applied a nuclear technique based on thermalized neutrons to estimate maize yield losses arising from water shortages. The biomass consists of water and light hydrogen (1H), which slows down fast neutrons. Hence, thermalized neutrons can be a helpful proxy to determine crop losses. An experiment was conducted with four treatments related to various levels of water stress in three replications. At the end of the maize growing season,, wet weight of the samples was measured, and then the samples were put around an access tube of the Hydro-probe Neutron Meter to count thermalized neutrons. Thereafter, the samples were then transferred to the oven to measure dry weight and in turn, biomass water equivalent (BWE). Findings showed that the average values of the thermalized neutron count ratio were positively and negatively correlated with BWE and damage (%), respectively. The regression models estimating crop losses were cross-validated based on the leave-one-out technique. An absolute mean error equal to 15% and R 2 greater than 0.6 indicate somewhat satisfactory performance of the models. This study was a breakthrough in the feasibility of applying these instruments. Further studies are recommended for practical applications.
用测量热化中子估算缺水引起的玉米产量损失
干旱是影响作物生长发育的最重要因素之一。这项研究应用了一种基于热化中子的核技术来估计由于缺水而造成的玉米产量损失。生物质由水和使快中子减速的轻氢(1H)组成。因此,热化中子可以作为确定作物损失的有用代理。本试验采用不同水分胁迫水平的4个处理,分3个重复进行。在玉米生长季节结束时,测量样品的湿重,然后将样品放在水探针中子计的通道管周围,以计数热化中子。然后,将样品转移到烘箱中测量干重,然后测量生物质水当量(BWE)。结果表明,热化中子计数比平均值分别与BWE和损伤(%)呈正相关和负相关。基于留一技术对作物损失的回归模型进行了交叉验证。绝对平均误差等于15%,r2大于0.6,表明模型的性能比较令人满意。本研究在应用这些仪器的可行性方面取得了突破。建议进一步研究以供实际应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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