Solar-driven interfacial steam generation

  • 文章类型: Journal Article
    如今,太阳能驱动的界面蒸汽发电(SISG)是一种可持续的绿色技术,可缓解水资源短缺危机。然而,SISG在实际应用中面临着冷凝水中挥发性有机化合物和给水中非挥发性有机化合物富集的问题。在这里,从大自然中汲取灵感,成功制备了具有特殊仿生海胆状微观结构的双功能双面CuCoNi(Bi-CuCoNi)蒸发器。具有2.5维双面工作面和海胆状光吸收微观结构的独特设计为Bi-CuCoNi蒸发器提供了出色的蒸发性能(1kWm-2下的1.91kgm-2h-1)。重要的是,由于海胆状的微观结构,充分暴露的催化活性位点使Bi-CuCoNi/过氧二硫酸盐(PDS)系统能够降解非挥发性有机污染物(进料水中的去除率为99.3%,冷凝水中接近100%)和挥发性有机污染物(进料水中去除率为99.1%,同时在冷凝水中为98.2%)。此外,Bi-CuCoNi蒸发器在整个阶段实现了非自由基途径降解。双功能蒸发器成功地将高级氧化工艺(AOPs)集成到SISG中,为从污染废水中生产优质淡水提供了新思路。环境含义:受自然启发,通过水热合成法在泡沫镍上生长CuCoNi氧化物纳米线,成功制备了具有特殊仿生海胆状微结构的双功能双面CuCoNi蒸发器。制备的Bi-CuCoNi蒸发器可以有效地同时降解SISG过程中的给水和冷凝水中的有机污染物,从而产生高质量的淡水。同时,通过绿色和可持续的方式减少了传统SISG期间与水中有机污染物积累相关的健康风险。Bi-CuCoNi的空间2.5维结构设计为实现有效的水蒸发和从各种污染废水中产生淡水提供了新的见解。
    Nowadays, solar-driven interfacial steam generation (SISG) is a sustainable and green technology for mitigating the water shortage crisis. Nevertheless, SISG is suffering from the enrichment of volatile organic compounds in condensate water and non-volatile organic compounds in feed water in practical applications. Herein, taking inspiration from nature, a dual-functional bifacial-CuCoNi (Bi-CuCoNi) evaporator with a special biomimetic urchin-like microstructure was successfully prepared. The unique design with 2.5-Dimensional bifacial working sides and urchin-like light absorption microstructure provided the Bi-CuCoNi evaporator with remarkable evaporation performance (1.91 kg m-2 h-1 under 1 kW m-2). Significantly, due to the urchin-like microstructure, the adequately exposed catalytic active sites enabled the Bi-CuCoNi/peroxydisulfate (PDS) system to degrade non-volatile organic pollutants (removal rate of 99.3 % in feed water, close to 100 % in condensate water) and the volatile organic pollutants (removal rate of 99.1 % in feed water, 98.2 % in condensate water) simultaneously. Moreover, the Bi-CuCoNi evaporator achieved non-radical pathway degradation at whole-stages. The dual-functional evaporator successfully integrated advanced oxidation processes (AOPs) into SISG, providing a new idea for high-quality freshwater production from polluted wastewater. ENVIRONMENTAL IMPLICATION: Inspired by nature, a dual-functional bifacial CuCoNi evaporator with a special biomimetic urchin-like microstructure formed by CuCoNi oxide nanowires grown on nickel foam by the hydrothermal synthesis method was successfully prepared. The prepared Bi-CuCoNi evaporator can effectively degrade organic pollutants in feed water and condensate water simultaneously during SISG, thus generating high-quality fresh water. Meanwhile, the health risks associated with the accumulation of organic pollutants in water during traditional SISG were reduced via green and sustainable way. The spatial 2.5-Dimensional structural design of Bi-CuCoNi provided new insights for achieving efficient water evaporation and fresh water generation from various polluted wastewater.
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  • 文章类型: Journal Article
    太阳能驱动的净水技术是一种有前途的技术,可以有效地利用太阳能进行海水淡化。然而,劣质材料无法满足太阳蒸汽在自然阳光下产生的密集能量,用于实时实际应用。因此,可以通过使用改进的半导体气凝胶材料来增加对能量密度的需求。这里,我们报道了一种简单的化学方法来获得CuS@ATP/PS复合气凝胶(名为CuAP),由凹凸棒石(ATP)和CuS制成,使用N模板加载到其上,以赋予其良好的光热特性(CuS@ATP),然后与马铃薯淀粉(PS)交联。CuAP-15气凝胶在1kWm-2太阳辐射下在纯水中的蒸发速率为1.57kgm-2h-1。同时,CuAP-15气凝胶在20wt%NaCl溶液中的蒸发速率为1.35kgm-2h-1,具有出色的耐盐性。并且在循环稳定性测试中也表现出优异的循环耐久性。更重要的是,在自然光照射11h下,淡水产量可达6.54kgm-2。因此,CuAP气凝胶在海水淡化领域具有广阔的应用前景。
    Solar-driven water purification is a promising technology that can effectively utilize solar energy for seawater desalination. However, poor materials are unable to meet the dense energy of solar steam generation in natural sunlight for real-time practical applications. Therefore, the demand for energy density can be increased by using improved semiconductor aerogel materials. Here, we report a simple chemical method to obtain a CuS@ATP/PS composite aerogel (named CuAP), which was made of attapulgite (ATP) and CuS loaded onto it using an N-template to give it good photothermal characteristics (CuS@ATP), and then cross-link it with potato starch (PS). The evaporation rate of CuAP-15 aerogel in pure water at 1 kW m-2 solar radiation is 1.57 kg m-2 h-1. Meanwhile, CuAP-15 aerogel showed excellent salt resistance with an evaporation rate of 1.35 kg m-2 h-1 in 20 wt% NaCl solution. And also exhibited excellent cycling durability in cycling stability tests. More importantly, the freshwater yield can reach 6.54 kg m-2 under natural light irradiation for 11 h. Therefore, CuAP aerogel has a great prospect of application in the field of seawater desalination in the future.
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  • 文章类型: Journal Article
    太阳能驱动的界面蒸汽发电(SISG)是缓解淡水短缺的一种有前途的技术。然而,当SISG技术应用于废水处理时,污染物将富集在残余的散装水中。在这里,通过在三聚氰胺泡沫(MF)上巧妙地装饰Co/N掺杂的氧化石墨烯(GO)来构建双功能蒸发器,可以同时实现高效的蒸汽生产和水源水净化。N掺杂碳纳米管(NCNTs)赋予蒸发器强大的光吸收和水传输性能,保证在1次阳光照射下的蒸发速率为2.02kgm-2h-1。同时,通过N掺杂剂和嵌入的Co颗粒调节碳层的催化活性,提供丰富的活性位点来激活过氧单硫酸盐(PMS)。当处理含有磺胺甲恶唑(SMX)的溶液时,在剩余的散装水中没有检测到SMX残留物(在60分钟内SMX降解效率高达100%),证明活性氧(ROS)产生攻击源水中的SMX。双功能蒸发器成功地结合了SISG和高级氧化工艺(AOPs),为解决SISG期间废水浓缩问题提供了一个巧妙的策略。
    Solar-driven interfacial steam generation (SISG) is a promising technology for alleviating freshwater shortage. However, when the SISG technology is applied to wastewater treatment, the contaminant would be enriched in residual bulk water. Herein, a dual-functional evaporator was constructed via tactfully decorating Co/N-doped graphene oxide (GO) on melamine foam (MF), which can simultaneously achieve efficient vapor production and source water purification. N-doped carbon nanotubes (NCNTs) endowed evaporators with powerful light absorption and water transport performance, guaranteeing an evaporation rate of 2.02 kg m-2 h-1 under 1 sun irradiation. Meanwhile, the catalytic activity of the carbon layer was adjusted by the N dopant and embedded Co particles, providing abundant active sites to activate peroxymonosulfate (PMS). When treating the solution containing sulfamethoxazole (SMX), no SMX residues were detected in the remaining bulk water (up to 100% SMX degradation efficiency within 60 min), demonstrating that reactive oxygen species (ROS) were generated to attack SMX in the source water. The bifunctional evaporator successfully combined SISG and advanced oxidation processes (AOPs), providing an ingenious strategy for solving the problem of wastewater enrichment during SISG.
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