塑料大棚反季节蔬菜滴灌和沟灌系统下作物产量和水分产量比较研究

Muhammad Asif, Muhammad Asim Rafique, Muhammad Shoaib, Muhammad Sadiq Munir, Arfan Anjum, Ali
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摘要

本研究评估了滴灌和沟灌系统对农田塑料大棚下反季节蔬菜的作物和水分生产率。本研究对辣椒、黄瓜和辣纸进行了滴灌和沟灌系统测试。建立了一个 60 × 3 × 2 米的永久性隧道。每种作物都种植在 0.8 × 0.4 米的高床上,采用滴灌和沟灌系统。水分生产率按总产量与作物总耗水量之比计算。对三种反季节蔬菜收集的数据显示,与沟灌系统相比,滴灌系统下每种作物的耗水量都较少。与沟灌系统相比,在各种灌溉系统中,辣椒的耗水量最小。此外,不同作物在滴灌条件下所有投入的使用百分比都有所减少:水减少 30%-45%,肥料减少 22%-30%,农药减少 15%-20%(因为温度和湿度降低)。与沟灌相比,不同作物的滴灌产量增加了 20%-30%,农业纯收入增加了 19%-41%。与沟灌系统相比,滴灌系统下辣椒的平均水分生产率(kg/m3)提高了 141%,黄瓜提高了 165%,报纸提高了 109%。总之,滴灌技术能有效提高作物生长和水分生产率,缓解缺水问题,同时大大减少化肥和农药的使用。这些结果主张将滴灌作为解决巴基斯坦淡水资源匮乏问题的理想技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Study of Crop and Water Productivity Under Drip and Furrow Irrigation Systems for Plastic Tunnel-Grown Off-Season Vegetables
This study evaluates crop and water productivity of drip and furrow irrigation systems for off-season vegetables under plastic tunnels on farmer’s fields. Drip and furrow irrigation systems were tested on capsicum, cucumber and hot papers in this study. A permanent tunnel of 60 × 3 × 2 m was erected. Each crop was planted on 0.8 × 0.4 m raised beds under drip and furrow irrigation systems. Water productivity was calculated as the ratio of total yield to total water consumed by the crop. Data collected for three off-season vegetables revealed that each crop consumed less water under drip irrigation as compared to the furrow irrigation system. Among crops, hot peppers consumed the least amount of water irrespective of irrigation systems in comparison to furrow irrigation system. In addition, the percent use of all inputs under drip irrigation was reduced: water by 30%-45%, fertilizers by 22%-30% and pesticides by 15%-20% (because of reduced temperature and humidity) for different crops. In comparison to furrow irrigation, yield under drip irrigation was increased by 20%-30% and net farm income by 19%-41% for different crops. Average water productivity (kg/m3) was increased by 141% for capsicum, 165% for cucumber and 109% for hot papers under drip irrigation system compared to the furrow irrigation system. In conclusion, drip irrigation technology is effective in improving crop growth and water productivity, and reducing water scarcity while considerably reducing fertilizer and pesticide use. These results advocate for drip irrigation as an ideal technology to address the issue of freshwater resource scarcity in Pakistan.
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