材料科学
蒸发器
蒸发
海水淡化
废水
化学工程
太阳能淡化
工业废水处理
盐(化学)
饮用水净化
多孔性
纳米技术
六价铬
工艺工程
结垢
水处理
污水处理
纳米孔
纳米制造
光催化
制浆造纸工业
酒石酸
太阳能
降级(电信)
碳化硅
薄脆饼
废物管理
作者
Tang Yu,Chengcheng Zhang,Di Zhu
摘要
ABSTRACT Solar‐driven interfacial evaporation provides an attractive pathway for sustainable desalination and industrial wastewater treatment, yet its practical deployment remains constrained by insufficient mechanical robustness, limited vapor flux, and salt accumulation. In response, we develop a rice‐leaf‐vein‐inspired solar evaporator based on porous silicon carbide (SiC) for efficient and durable water purification. By integrating ultraviolet nanosecond laser direct writing with alkaline post‐treatment, a biomimetic micro‐nano groove architecture with hydrophilic and broadband light‐absorbing characteristics is constructed on the SiC surface. Benefiting from micro‐nanostructures induced enhancement of coupled optical, thermal, and water transport fields, the evaporator achieves an evaporation rate of 5.28 kg m −2 h −1 under 1‐Sun illumination and a daily water yield of 54.57 kg m −2 , while maintaining an exceptional compressive strength of 140.63 MPa. In treating highly saline industrial wastewater, the evaporator demonstrates robust salt tolerance up to 20 wt.% and enables hexavalent chromium removal exceeding 99.99%, outperforming existing industrial wastewater treatment technologies. The hierarchical architecture further promotes continuous salt migration, ensuring long‐term and fouling‐free operation. Overall, this biomimetic SiC‐based solar evaporator offers an integrated strategy for efficient freshwater recovery and pollutant removal, addressing pressing issues in the global energy‐water nexus.
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