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
【2021-11】組內論文在Journal of Colloid and Interface Science發表,Congratulations 郝亮和牛冉老師

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

High-performance solar-driven interfacial evaporation through molecular design of antibacterial, biomass-derived hydrogels

Journal of Colloid and Interface Science (2021) Accept (IF2021 = 8.128)

Hydrogel has been regarded as one of the most promising candidates for next-generation solar evaporation technology to produce freshwater from non-potable water. However, synthesizing hydrogel absorbers that can precisely regulate water state and significantly reduce the water vaporization enthalpy remains a grand challenge. Herein, we report the rational design of a novel hydrogel hybrid solar evaporator constructed by poly(vinyl alcohol) and sodium lignosulfonate (SLS), with addition of carbon nanotube as a light absorption material. The abundant sulfonate and hydroxyl groups of SLS enhance the interplay between hydrogel and water molecule through electrostatic interaction and hydrogen bond. As such, the presence of SLS not only remarkably promotes the hydrophilicity and water transport of hydrogel, but also precisely tunes the state of water molecule and the content of intermediate water for reducing the water vaporization enthalpy. The combined advantageous features endow the as-prepared hydrogel with an evaporation rate up to 2.09 kg m-2 h-1 under 1 Sun illumination, along with good anti-acid/basic abilities, antibacterial property, high salt-tolerance, and self-cleaning capability in purifying different types of wastewater. Finally, an outdoor solar seawater desalination device is designed to generate drinking water from seawater. The daily drinking water production amount per square meter is ca. 13 kg, which satifies the five adults'' daily water consumption (12.5 kg). The present study highlights that rationally constructing the molecular architecture of hydrogel and tuning the interplay between water and hydrogel are effective strategies to fabricate advanced hydrogel solar evaporators for addressing the global freshwater shortage.

主站蜘蛛池模板: 丰宁| 灌阳县| 富阳市| 杂多县| 儋州市| 博湖县| 枣强县| 邵阳县| 大新县| 博兴县| 南召县| 安化县| 平顶山市| 博白县| 独山县| 图木舒克市| 郯城县| 罗田县| 兴国县| 灵璧县| 二连浩特市| 宾川县| 新邵县| 正镶白旗| 达拉特旗| 涞源县| 遂川县| 沁水县| 兴海县| 抚顺市| 拜城县| 会昌县| 临安市| 九龙坡区| 五莲县| 独山县| 东辽县| 大丰市| 阿拉尔市| 依兰县| 香港|