Sadoun Ahmed K, Gebreil Ahmed, Eltabey Rania M, Kospa Doaa A, Ahmed Awad I, Ibrahim Amr Awad
Department of Chemistry, Faculty of Science, Mansoura University Al-Mansoura 35516 Egypt
Nile Higher Institutes of Engineering and Technology El-Mansoura Egypt.
RSC Adv. 2022 Oct 11;12(44):28843-28852. doi: 10.1039/d2ra04362a. eCollection 2022 Oct 4.
Solar steam generation (SSG) is a potential approach for resolving the global water and energy crisis while causing the least amount of environmental damage. However, using adaptable photothermal absorbers with salt resistance through a simple, scalable, and cost-effective production approach is difficult. Herein, taking advantage of the ultra-fast water transportation in capillaries, and the large seawater storage capacity of wood, we develop a highly efficient natural evaporator. The wood wastes (sawdust) were carbonized at low temperatures to fabricate a green and low-cost carbonaceous porous material (CW). To enhance the salt resistance in high saline water, this evaporator was coated with polyaniline emeraldine salt (ES-PANI) which was synthesized through facile and cost-effective one-step oxidation of aniline. Furthermore, the composite was decorated with silver sulfide to increase the evaporation rate which reached up to 1.1 kg m h under 1 sun irradiation with 91.5% efficiency. Besides, the evaporator performs exceptionally well over 10 cycles due to the salt resistance capability of ES-PANI which generates a "Donnan exclusion" effect against cations in saline water. The AgS@PANI/CW evaporator may be a viable large-scale generator of drinking water due to its high efficiency for energy conversion, simple and low-cost fabrication approach, salt-resistance, and durability.
太阳能蒸汽产生(SSG)是一种在造成最小环境破坏的同时解决全球水和能源危机的潜在方法。然而,通过简单、可扩展且具有成本效益的生产方法来使用具有耐盐性的适应性光热吸收器是困难的。在此,利用毛细管中超快的水传输以及木材的大储水量,我们开发了一种高效的自然蒸发器。将木材废料(锯末)在低温下碳化以制备绿色且低成本的碳质多孔材料(CW)。为了增强在高盐水中的耐盐性,该蒸发器用聚苯胺翡翠盐(ES-PANI)进行了涂层处理,ES-PANI是通过苯胺的简便且经济高效的一步氧化合成的。此外,该复合材料用硫化银进行了修饰以提高蒸发速率,在1个太阳辐照下蒸发速率达到1.1 kg m⁻² h⁻¹,效率为91.5%。此外,由于ES-PANI的耐盐性对盐水中的阳离子产生“唐南排斥”效应,该蒸发器在10个循环中表现出色。由于其高效的能量转换、简单且低成本的制造方法、耐盐性和耐久性,AgS@PANI/CW蒸发器可能是一种可行的大规模饮用水发生器。