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在水-能源-食物-环境关联系统中利用太阳能和经处理的中水进行可持续水培生产。

Sustainable hydroponic production using solar energy and treated greywater within the water-energy-food-environment nexus.

作者信息

Abdelhamid Mahmoud A, Mahmoud Sobhy M, El-Nasr Mohamed K Abou, Zhang Zhao, Hendy Zeinab M

机构信息

Agricultural Engineering Department, Faculty of Agriculture, Ain Shams University, Cairo, 11241, Egypt.

Department of Horticulture, Faculty of Agriculture, Ain Shams University, Cairo, 11241, Egypt.

出版信息

Sci Rep. 2025 Aug 25;15(1):31200. doi: 10.1038/s41598-025-16030-4.

Abstract

Addressing the Water-Energy-Food-Environment (WEFE) nexus is critical for sustainable resource management. This study investigates a novel hydroponic system integrating photovoltaic (PV) solar energy and treated greywater (System-II), compared to a grid-powered system (System-I). Key performance indicators, including energy consumption, energy efficiency indices, and CO emissions, are evaluated for the two systems. Additionally, the morphological, physiological, and biochemical parameters of lettuce are measured. System-II achieved superior energy performance, with an energy ratio of 0.11, energy productivity of 0.16 kg/MJ, and specific energy of 6.14 MJ/kg, compared to System-I's 0.05, 0.07 kg/MJ, and 14.89 MJ/kg, respectively. Additionally, the water use efficiency values were 0.071 kg/L for System-I and 0.073 kg/L for System-II. Moreover, System-II reduced CO emissions by over 94%, emitting only 0.0861 kg CO eq/m, compared to 1.5386 kg CO eq/m from System-I. Morphological and physiological traits of lettuce irrigated with treated greywater remained optimal, showing a mean head weight of 682.9 g, head length and diameter of 17.7 cm and 18.3 cm, relative water content of 93.5%, 5.4% dry matter, and total chlorophyll content of 1.023 mg/g, comparable to those irrigated with tap water. This study highlights the potential of solar-powered hydroponics, utilizing treated greywater as a scalable and sustainable solution for efficient food production in alignment with WEFE nexus objectives. The findings provide insights into optimizing resource management in agricultural systems and contribute to the development of resilient, efficient, and sustainable food production systems in the face of global resource challenges.

摘要

解决水-能源-食物-环境(WEFE)关联问题对于可持续资源管理至关重要。本研究调查了一种将光伏(PV)太阳能与处理后的中水相结合的新型水培系统(系统二),并与电网供电系统(系统一)进行了比较。对这两个系统评估了关键性能指标,包括能源消耗、能源效率指数和二氧化碳排放量。此外,还测量了生菜的形态、生理和生化参数。与系统一的能源比0.05、能源生产率0.07千克/兆焦和比能14.89兆焦/千克相比,系统二实现了卓越的能源性能,能源比为0.11,能源生产率为0.16千克/兆焦,比能为6.14兆焦/千克。此外,系统一的水分利用效率值为0.071千克/升,系统二为0.073千克/升。此外,系统二减少了超过94%的二氧化碳排放,每平方米仅排放0.0861千克二氧化碳当量,而系统一为每平方米1.5386千克二氧化碳当量。用处理后的中水灌溉的生菜的形态和生理特征保持最佳,平均头重682.9克,头长和直径分别为17.7厘米和18.3厘米,相对含水量为93.5%,干物质含量为5.4%,总叶绿素含量为1.023毫克/克,与用自来水灌溉的生菜相当。本研究强调了太阳能水培的潜力,利用处理后的中水作为一种可扩展的可持续解决方案,以符合WEFE关联目标高效生产食物。这些发现为优化农业系统中的资源管理提供了见解,并有助于在全球资源挑战面前发展有韧性、高效和可持续的食物生产系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/302a/12378796/d1a8922b63ce/41598_2025_16030_Fig1_HTML.jpg

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