私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

當前位置:> 首頁 > 最新動態 > 正文
【2021-08】組內論文在Materials Today Communications發表,Congratulations 胡振和牛冉老師

Zhen Hu, Liang Hao, Ning Liu, Panpan He, Huiying Bai, Ran Niu*, Jiang Gong*  

High-performance bilayer solar evaporators constructed by candle-derived carbon nanoparticle/wood hybrid  

Materials Today Communications (2021). Accept (IF2021 = 3.383)  

Solar steam generation is regarded as a promising technique to produce drinkable water using renewable solar energy. However, synthesizing low-cost solar evaporators with high evaporation rates and good scalability remains challenging. Herein, we fabricate novel bilayer solar evaporators by in-situ growth of carbon nanoparticles on the wood surface through incomplete combustion of paraffin candle flame. As the light absorption layer, the carbon nanoparticles with interconnected porous structures exhibit a broadband and high light absorption (ca. 93%–97%) via multiple reflections and subsequently convert solar to thermal energy for heating the interfacial region of water/air. The vertically aligned tubular structures of wood substrate effectively transport water from bottom to the surface carbon nanoparticles via capillary force and guarantee sufficient water supply for evaporation. Meanwhile the abundant hydrophilic groups of wood form hydrogen bonds with water molecules, which weakens the hydrogen bonds among intermediate water molecules and reduces the water evaporation enthalpy by ca. 26%. The resultant bilayer solar evaporator displays a high evaporation rate of 2.06 kg/m2/h with the conversion efficiency of 90% under 1 kW/m2, long-term stability, self-cleaning capability, and good anti-acid/base abilities. Importantly, a large-scale solar desalination device is developed for outdoor experiments to produce freshwater. The daily freshwater production amount per unit area (3.1 kg) satisfies the consumption of one adult. This work develops a convenient method to convert wood into advanced solar evaporators to address the global freshwater shortage.

主站蜘蛛池模板: 嘉鱼县| 应用必备| 东莞市| 张家口市| 靖西县| 阳城县| 烟台市| 宜春市| 奉节县| 博客| 呼和浩特市| 张北县| 泰顺县| 上高县| 阜南县| 龙海市| 兴国县| 巩义市| 沙洋县| 长葛市| 汶上县| 石屏县| 临夏县| 上蔡县| 潍坊市| 肃北| 德令哈市| 民丰县| 甘肃省| 黄平县| 镇雄县| 昭平县| 响水县| 西藏| 九龙坡区| 博罗县| 彭阳县| 屯昌县| 龙游县| 丹寨县| 敖汉旗|