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A NOVEL ACTIVATED CARBON ENABLED STEAM GENERATION SYSTEM UNDER SIMULATED SOLAR LIGHT

机译:模拟太阳灯下的一种新型活性炭使能蒸汽发电系统

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摘要

A number of studies on CNT, Au and Ag solar enabled steam generation with potential application in water purification, distillation and sterilization of medical equipment. The key challenge with these nanoparticles is cost of production hence limiting its wide application forclean water production. This work for the first time, reports on activated carbon enabled steam generation hence addressing the cost limitations of metallic nanoparticles. Activated carbon has high solar absorptivity at various wavelengths of visible light under low concentration. Experiments were carried out using activated carbon and CNT nanofluids and polyurethane membrane with immobilized activated carbon and CNT. A simulated solar light of 1 KW ~1 Sun was used. The rate of evaporation, temporal and spatial evolution of bulk temperature in the water were monitored automatically and recorded for further data reductions. Parametric studies ofthe effect of nanoparticle concentration, water quality and salinity were performed. Experimental evidence showed that activated carbon has potential. We reported for the first time that optimal activated carbon concentration for maximum steam generation is 60% vol. We also obtained a 160% increase in steam production rate at 60% concentration of activated carbon when compared with D.I water.
机译:CNT,AU和AG太阳能的一些研究使蒸汽产生具有水净化,蒸馏和医疗设备灭菌的潜在应用。与这些纳米颗粒的关键挑战是生产成本,因此限制了其广泛的应用前内部水生产。这是第一次工作,报道了活性炭使能蒸汽代的发电,因此解决了金属纳米颗粒的成本限制。活性炭在低浓度下在各种波长的可见光下具有高的太阳能吸收率。使用活性炭和CNT纳米流体和具有固定化活性炭和CNT的聚氨酯膜进行实验。使用了1 kW〜1阳光的模拟太阳灯。自动监测水中散热,批量温度的蒸发,时间和空间演化速率,并记录进一步的数据减少。进行纳米颗粒浓度,水质和盐度效果的参数研究。实验证据表明,活性炭具有潜力。我们报道了最大蒸汽发生的最佳活性炭浓度首次为60%Vol。与D.I水相比,我们还获得了60%的活性炭浓度的蒸汽生产速率增加了160%。

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