A review of hybrid solar desalination systems: structure and performance

Mohammed A. Alghassab
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Abstract

The purpose of this study is to explore the architecture and functioning of hybrid solar desalination systems and investigate their potential as a sustainable solution for water purification. The study reveals that solar-powered desalination systems offer a remarkable alternative to traditional methods, as they rely on clean solar energy and produce no noise or sound pollution. In addition, they have demonstrated cost-effectiveness in generating drinking water, especially in desert regions and inaccessible areas. Furthermore, the research highlights the significance of incorporating waste heat energy into the desalination process. Also shows that utilizing waste heat energy can significantly reduce expenses and enhance the overall effectiveness of water desalination. Through an in-depth analysis of the fundamental principles and real-world applications, this study underscores the importance and rationale for implementing hybrid solar desalination systems. By effectively utilizing solar energy, these systems provide a sustainable approach to address water scarcity and ensure the efficient management of water and energy resources. This study emphasizes the fundamental importance of the structure of hybrid solar desalination systems fueled by solar energy in the efficient management of water resources. By combining technological innovations with renewable energy sources, these systems pave the way for a sustainable future.
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混合型太阳能海水淡化系统综述:结构与性能
本研究的目的是探索混合型太阳能海水淡化系统的结构和功能,并研究其作为水净化可持续解决方案的潜力。研究显示,太阳能海水淡化系统依靠清洁的太阳能,不会产生噪音或声音污染,是传统方法的理想替代品。此外,太阳能海水淡化系统在生产饮用水方面具有成本效益,尤其是在沙漠地区和交通不便的地区。此外,研究还强调了将废热能源纳入海水淡化过程的重要性。研究还表明,利用余热能可以显著降低成本,提高海水淡化的整体效益。通过对基本原理和实际应用的深入分析,本研究强调了实施混合太阳能海水淡化系统的重要性和合理性。通过有效利用太阳能,这些系统为解决水资源短缺问题提供了一种可持续的方法,并确保了水资源和能源的有效管理。本研究强调了以太阳能为燃料的混合太阳能海水淡化系统结构在有效管理水资源方面的根本重要性。通过将技术创新与可再生能源相结合,这些系统为可持续发展的未来铺平了道路。
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