1、主要论文 [1]Zhenhua Dang, Ling Ding, Xing Zhao, Lin Zhang, Shuai Zhang. Sulfur doped N‑rich nitrogen carbon nanocatalysts for enhancing photocatalytic reduction of uranium(VI). Journal of Radioanalytical and Nuclear Chemistry, 2024, 5: s10967. [2]Zhenhua Dang, Ling Ding, Xing Zhao, Lin Zhang, Shuai Zhang. Nitrogen-rich carbon nitride with heptazine phase controlled by pyrolysis temperature towards photocatalytic U(Ⅵ) reduction. Chemical Physics, 2024, 587: 112421. [3]Zhenhua Dang, Ling Ding, Xing Zhao, Lin Zhang, Shuai Zhang.Adsorptive removal of uranium(VI) from aqueous solutions by amino-functionalized montmorillonite@β-cyclodextrin composite. Journal of Solid State Chemistry, 2024, 338: 124864. [4]Xiangtian Guo, Fan Chu, Ya Luo, WennaWang, Zhenhua Dang, BinYu, Feng Liu, Yanru Liu, LeiWang, BinLi. Superhydrophilic and underwater superoleophobic film with different microstructures from waste glass for oil/water separation. Journal of Porous Materials, 2024, 31(6): 1965-1977. [5]Ling Ding, Xiangyu Wan, Bowen Zheng, Zhenhua Dang, Shuai Zhang, Lin Zhang. One-pot synthesis of graphene oxide-supported TixAl1-xOy-based material modified with amidoxime for highly efficient U(VI) adsorption. Journal of Materials Chemistry A, 2024, 12, 8381-8391. [6]Ling Ding, Chaoyou Tao, Shuai Zhang, Bowen Zheng, Zhenhua Dang, Lin Zhang. One-step synthesis of phospho-rich, silica-enhanced chitosan aerogel for the efficient adsorption U(VI). International Journal of Biological Macromolecules, 2024, 259, 12901. [7]丁玲, 张帅, 郑博文, 党振华, 张林. 溶胶凝胶法合成Ti-Fe复合物及其铀(VI)吸附性能. 硅酸盐学报. [8]Zhenhua Dang, Mingming Jia, Jun Liao, Yong Zhang, Wenkun Zhu. Fabrication of the Al2O3 aerogels by in situ water formation method for the highly efficient removal of uranium(VI). Microporous and Mesoporous Materials 2021, 316: 110952. 2、专著 [1]周尧,党振华.《绿色环保光电催化功能材料发展过程及趋势》,青岛:中国海洋大学出版社,2024。 3、授权专利 [1]一种厨余垃圾资源化利用智能一体机的除臭装置,ZL202222184385.4, 2023. [2]一种有机废弃物用高效好氧发酵装置,ZL202121020666.5, 2022. [3]电除尘器 3D 实验仿真软件 V1.0,2023SR0479744, 2023. [4]一种好氧发酵用物料搅拌装置,ZL202121020669.9, 2022. [5]一种改进型 UASB 厌氧反应器,ZL202121389821.0, 2022. [6]一种有机物发酵预处理装置,ZL202121020691.3, 2022. [7]一种通风效果好的静态覆膜发酵设备,ZL202121389823.X, 2022. [8]一种好氧发酵用氧气含量监测装置,ZL202121019409.X, 2022. [9]一种高效的用于畜禽粪便覆膜好氧发酵设备,ZL202121389826.3, 2022. [10]一种纳米二氧化钛及其制备方法,2022/00818, 2022. [11]一种替硝唑有机药物超分子共晶及其制备方法,2022/00819, 2022. [12]一种微米碳球及其制备方法,2022/00853, 2022. [13]一种甲硝唑有机药物超分子共晶及其制备方法,2022/00854, 2022. [14]一种光催化水处理装置,ZL202110735656.8, 2022. [15]工业高盐有机废水零排放仿真实验软件[简称:工业高盐有机废水零排放仿真实验] V2.0,2023SR0756687, 2022. [16]一种草酸盐改性纳米零价铁材料及其制备方法和应用,ZL202210506000.3, 2022. |