Jawed Ahmad S, Nassar Lobna, Hegab Hanaa M, van der Merwe Riaan, Al Marzooqi Faisal, Banat Fawzi, Hasan Shadi W
Center for Membranes and Advanced Water Technology (CMAT), Khalifa University of Science and Technology, PO Box, 127788, Abu Dhabi, United Arab Emirates.
Department of Chemical and Petroleum Engineering, Khalifa University of Science and Technology, PO Box, 127788, Abu Dhabi, United Arab Emirates.
Heliyon. 2024 May 22;10(11):e31656. doi: 10.1016/j.heliyon.2024.e31656. eCollection 2024 Jun 15.
The freshwater shortage continues to be one of the greatest challenges affecting our planet. Although traditional membrane distillation (MD) can produce clean water regardless of climatic conditions, the process wastes a lot of energy. The technique of solar-powered membrane distillation (SPMD) has received a lot of interest in the past decade, thanks to the development of photothermal materials. SPMD is a promising replacement for the traditional MD based on fossil fuels, as it can prevent the harmful effects of emissions on the environment. Integrating green solar energy with MD can reduce the cost of the water purification process and secure freshwater production in remote areas. At this point, it is important to consider the most current progress of the SPMD system and highlight the challenges and prospects of this technology. Based on this, the background, recent advances, and principles of MD and SPMD, their configurations and mechanisms, fabrication methods, advantages, and current limitations are discussed. Detailed comparisons between SPMD and traditional MD, assessments of various standards for incorporating photothermal materials with desirable properties, discussions of desalination and other applications of SPMD and MD, and energy consumption rates are also covered. The final section addresses the potential of SPMD to outperform traditional desalination technology while improving water production without requiring a significant amount of electrical or high-grade thermal energy.
淡水短缺仍然是影响我们星球的最大挑战之一。尽管传统的膜蒸馏(MD)无论气候条件如何都能生产出清洁的水,但该过程会浪费大量能源。由于光热材料的发展,太阳能驱动的膜蒸馏(SPMD)技术在过去十年中受到了广泛关注。SPMD有望取代基于化石燃料的传统MD,因为它可以防止排放对环境的有害影响。将绿色太阳能与MD相结合可以降低水净化过程的成本,并确保偏远地区的淡水生产。在这一点上,考虑SPMD系统的最新进展并突出该技术的挑战和前景非常重要。基于此,讨论了MD和SPMD的背景、最新进展和原理、它们的配置和机制、制造方法、优点和当前的局限性。还涵盖了SPMD与传统MD之间的详细比较、对纳入具有理想特性的光热材料的各种标准的评估、对SPMD和MD的脱盐及其他应用的讨论以及能源消耗率。最后一部分探讨了SPMD在无需大量电能或高品位热能的情况下提高水产量的同时超越传统脱盐技术的潜力。