SMART 灌溉系统改善了咖啡苗(Coffea canephora)的生长状况

Q1 Agricultural and Biological Sciences
Alden Q. Gabuya , Fernando N. Mangubat , Victorino H. Patindol , Johnrel M. Paglinawan , Kent Marcial L. Catubis
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引用次数: 0

摘要

气候变化对植物造成的用水压力导致热带地区咖啡生长和产量下降。通过使用 SMART 灌溉系统高效用水为解决这一问题提供了一个很有前景的方案。因此,我们利用基于气候和土壤水分的 SMART 灌溉系统开展了一项研究,以评估与人工灌溉相比,该系统对罗布斯塔咖啡幼苗生长的影响。实验设计采用了完全区组设计(CBD)方法。此外,还测量了耗水量,以确定是否存在显著差异。在为期两个月的实验过程中(每个处理 20 个重复),观察到采用自动灌溉系统的咖啡苗(T1)在株高和叶片数方面都有显著改善,与人工灌溉的植株(T0)相比,生长率分别为 72.56% 和 65.29%。虽然自动系统的节水效果在统计上并不显著,但耗水量减少了 18.95%。这些发现凸显了利用物联网方法实现灌溉系统自动化的潜在好处,特别是在提高咖啡幼苗生产力方面。通过利用来自传感器的实时数据,SMART 灌溉系统有效地优化了用水量,提高了生长和产量。这项研究强调了实施此类技术进步的重要性,以减轻气候变化对热带地区咖啡种植的不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved growth of coffee seedlings (Coffea canephora) under SMART irrigation system

Water stress in plants due to the effects of climate change resulted in reduced growth and yield of coffee in the tropics. Efficient use of water through the use of SMART irrigation systems available provides a promising solution to address such a problem. Thus, a study utilizing a combined climate- based and soil moisture SMART irrigation system has been conducted to assess its effects on the growth of Robusta coffee seedlings compared to practiced manual irrigation. The experimental design utilized a Complete Block Design (CBD) approach. Additionally, water consumption was measured to determine any significant differences. Over the course of the two-month experiment, 20 replications per treatment, it was observed that coffee seedlings subjected to the automated irrigation system (T1) exhibited significant improvements in both plant height and number of leaves, with growth rates of 72.56% and 65.29%, respectively, compared to manually irrigated plants (T0). Although the water savings achieved under the automated system were not statistically significant, there was an 18.95% reduction in water consumption. These findings highlight the potential benefits of automating irrigation systems using an IoT approach, specifically in terms of enhancing coffee seedling productivity. By utilizing real-time data from sensors, the SMART irrigation system effectively optimized water usage and resulted in improved growth and yield. This research underscores the importance of implementing such technological advancements to mitigate the adverse effects of climate change on coffee cultivation in tropical regions.

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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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