4.6 Article

A robust and renewable solar steam generator for high concentration dye wastewater purification

期刊

JOURNAL OF MATERIALS CHEMISTRY A
卷 10, 期 7, 页码 3436-3442

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1ta10251f

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资金

  1. National Key Research and Development Program of China [2017YFA0206904]
  2. National Natural Science Foundation of China [51922018, 21875011, 51673010]
  3. Academic Excellence Foundation of BUAA for PhD Students

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In this study, a renewable and robust solar steam generator was fabricated for dye wastewater purification. This generator achieved a high evaporation rate and demonstrated the ability to purify wastewater with different dye concentrations. It also exhibited good stability and mechanical properties. The blocked generators after long-term treatment of high concentration wastewater can be regenerated by calcination, solving the issue of decreased evaporation rate due to organic accumulation. This work holds great practical application potential for organic wastewater purification.
As an eco-friendly and sustainable technology, the solar-driven interfacial evaporation for water purification garners widespread attention. In the field of dye wastewater purification, some solar steam generators with catalytic degradation have been developed. However, they can only deal with ultra-low concentration dye wastewater because of their poor degradability, which would lead to the decrease of the evaporation rate caused by dye blockage when treating high concentration dye wastewater. Meanwhile, the complex external environment puts forward a higher requirement to device robustness. Therefore, fabricating a robust and renewable solar steam generator for high concentration dye wastewater purification is still a challenge. Here, an Au/ceramic solar steam generator with renewability and robustness was fabricated for dye wastewater purification. This generator can achieve an evaporation rate of 5.52 kg m(-2) h(-1) by rational T-shaped thermal management and timely vapor diffusion with breeze. It can efficiently purify various kinds of wastewater with a wide range of dye concentrations. Furthermore, this generator exhibits good pH stability, thermostability and robust mechanical properties, which are beneficial to meet complex situations in practical applications. Meanwhile, the blocked generators after long-term purification of high concentration wastewater can be regenerated by calcination, solving the decrease of the evaporation rate caused by organic accumulation. This work shows great potential for organic wastewater purification in further practical applications.

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