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
【2024-05】組內論文在《Journal of Energy Chemistry》發表,Congratulations 范子芬同學和牛冉教授

Zifen Fan, Jie Liu, Huajian Liu, Lijie Liu, Yan She, Xueying Wen, Huiyue Wang, Guixin Hu, Ran Niu*, Jiang Gong*

Synergism of solar-driven interfacial evaporation and photo-Fenton Cr(VI) reduction by sustainable Bi-MOF-based evaporator from waste polyester

Journal of Energy Chemistry (2024) (IF2023 = 13.1)

The integration of interfacial solar steam generation and photocatalytic degradation technology has provided a promising platform to simultaneously produce freshwater and degrade pollutants. However, constructing low-cost, multi-functional evaporators for treating Cr(VI)-polluted water remains challenging, and the synergistic mechanism on Cr(VI) reduction is fuzzy. Herein, we propose the combined strategy of ball milling and solution mixing for the sustainable production of Bi-MOF microrod from waste poly(ethylene terephthalate), and construct Bi-MOF-based solar evaporators for simultaneous photo-Fenton Cr(VI) reduction and freshwater production. Firstly, the evaporator comprised of Bi-MOF microrod and graphene nanosheet possesses high light absorption, efficient photothermal conversion, and good hydrophilic property. Attributing to the advantages, the hybrid evaporator exhibits the evaporation rate of 2.16 kg m-2 h-1 and evaporation efficiency of 87.5% under 1 kW m-2 irradiation. When integrating with photo-Fenton reaction, the Cr(VI) reduction efficiency is 91.3%, along with the reaction kinetics of 0.0548 min-1, surpassing many advanced catalysts. In the outdoor freshwater production and Cr(VI) reduction, the daily accumulative water yield is 5.17 kg m-2 h-1, and the Cr(VI) reduction efficiency is 99.9%. Furthermore, we prove that the localization effect derived from the interfacial solar-driven evaporation enhances H2O2 activation for the photo-Fenton reduction of Cr(VI). Based on the result of density functional theory, Bi-MOF microrod provides rich active centers for H2O2 activation to produce active sites such as e- or ?O2-. This study not only proposes a new strategy to construct multi-functional solar evaporators for freshwater production and catalytic reduction of pollutants, but also advances the chemical upcycling of waste polyesters.

主站蜘蛛池模板: 清涧县| 囊谦县| 喀喇沁旗| 肥东县| 资阳市| 德庆县| 安康市| 玉溪市| 龙泉市| 鄯善县| 个旧市| 云和县| 利川市| 哈密市| 海门市| 德钦县| 灯塔市| 鲁山县| 习水县| 晋州市| 海阳市| 金堂县| 特克斯县| 西乌珠穆沁旗| 杭锦后旗| 张家界市| 离岛区| 鄂托克旗| 太谷县| 海宁市| 龙口市| 扎赉特旗| 石景山区| 登封市| 苍山县| 南雄市| 云南省| 门头沟区| 缙云县| 定襄县| 宁晋县|