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首页> 外文期刊>Advanced Functional Materials >Low Cost, Robust, Environmentally Friendly Geopolymer- Mesoporous Carbon Composites for Efficient Solar Powered Steam Generation
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Low Cost, Robust, Environmentally Friendly Geopolymer- Mesoporous Carbon Composites for Efficient Solar Powered Steam Generation

机译:低成本,坚固,环保的地聚合物-中孔碳复合材料,可高效产生太阳能蒸汽

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摘要

High-efficiency, environment friendly, renewable energy-based methods of desalination represent attractive and potentially very powerful solutions to the long-standing problem of global water shortage. Many new laboratory-scale materials have been developed for photothermal desalination but the development of low-cost, easy-to-manufacture, and scalable materials and systems that can convert solar irradiation into exploitable thermal energy in this context is still a significant challenge. This paper presents work on a geopolymer-biomass mesoporous carbon composite (GBMCC) device with mesoporous and macroporous structures for harvesting solar energy, which is then used in a device to generate water vapor with high efficiency using negative pressure, wind-driven, steam generation. The GBMCC device gives water evaporation rates of 1.58 and 2.71 kg m(-2) h(-1) under 1 and 3 suns illumination, with the solar thermal conversion efficiency up to 84.95% and 67.6%, respectively. A remarkable, record high water vapor generation rate of 7.55 kg m(-2) h(-1) is achieved under 1 sun solar intensity at the wind speed of 3 m s(-1). This is a key step forward todays efficient, sustainable and economical production of clean water from seawater or common wastewater with free solar energy.
机译:高效,环保,可再生能源为基础的海水淡化方法代表了解决全球水资源短缺这一长期存在的问题的有吸引力的方法,并且可能是非常强大的解决方案。已经开发出许多新的实验室规模的材料用于光热脱盐,但是在这种情况下,开发能够将太阳辐射转化为可利用热能的低成本,易于制造且可扩展的材料和系统仍然是一项重大挑战。本文介绍了具有介孔和大孔结构的地聚合物-生物质介孔碳复合材料(GBMCC)装置的工作原理,该装置用于收集太阳能,然后将该装置用于负压,风能,蒸汽产生,高效产生水蒸气的装置中。 GBMCC设备在1和3个太阳照射下的水蒸发速率分别为1.58和2.71 kg m(-2)h(-1),太阳热转换效率分别高达84.95%和67.6%。在1太阳太阳强度下,风速为3 m s(-1)时,达到了创纪录的7.55 kg m(-2)h(-1)的高水蒸气产生率。这是当今从海水或具有免费太阳能的普通废水中高效,可持续和经济地生产清洁水的关键一步。

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