(2023~2025年以第一/通讯作者发表论文) [1] Innovative synthesis of ternary heterojunction CuInS2/BiOI/Bi2MoO6 for 2,4-DCP degradation and its dechlorination performance[J]. Separation and Purification Technology,2025,357:130165(SCI收录,中科院一区TOP) [2] Selective removal of ammonia nitrogen and nitrate nitrogen by surface molecularly imprinted homojunction BiVO4 photocatalysts. Ceramics International,2025,51(20):32427-32438 (SCI收录,中科院二区) [3] Preparation of BiVO4/BiOI/ACF photocatalysts and their adsorption-photocatalytic synergistic degradation of phenol. Journal of Water Process Engineering,2025,80:109098 (SCI收录) [4] Hierarchical 3D Architectured DMSA-Functionalized SA/GO-Cellulose Monoliths Via Direct Ink Writing: Enhanced Cu²⁺ Removal and Synergistic Adsorption Mechanisms. Journal of Polymers and the Environment,2025,33(6):2721-2738 (SCI收录) [5] Insights into graphene oxide double-network macro-monothlic adsorbent through 3D printing: Mechanical properties and Cu2+ adsorption mechanism. Separation and Purification Technology,2025,363:132140 (SCI收录,中科院一区TOP) [6] Sensitivity-driven control strategy and analysis of operating parameter MLSS in the stacking total nitrogen prediction model. Environmental Monitoring and Assessment,2025,197(10):1076 (SCI收录) [7] Additive manufacturing of three-dimensional graphene-based architectures and its application in environmental treatment: A review[J]. Chemical Engineering Journal, 2023,465:142943.(SCI收录,中科院一区TOP) [8] Acid-resistant chitosan/graphene oxide adsorbent for Cu2+ removal: The role of mixed cross-linking and amino-functionalized[J]. International Journal of Biological Macromolecules,2024,273:133096(SCI收录,中科院一区TOP) [9] 3D printing of antimicrobial adsorbents using Mercapto-graphene oxide/chitosan/ε-Polylysine: Elucidating adsorption mechanisms and antimicrobial performance[J]. International Journal of Biological Macromolecules,2024,283:137797(SCI收录,中科院一区TOP) [10] Selective degradation of ceftriaxone sodium by surface molecularly imprinted BiOCl/Bi3NbO7 heterojunction photocatalyst[J]. Separation and Purification Technology, 2023,315:123716.(SCI收录,中科院一区TOP) [11] Insights into the synthesis of monolithic and structured graphene bulks and its application for Cu2+ ions removal from aqueous solution[J]. Separation and Purification Technology, 2023,308:122847.(SCI收录,中科院一区TOP) [12] Simultaneous removal of CTRX and Cr(Ⅵ) by CQDs-doped bifunctional molecular imprinted BiOCl/Bi3NbO7 photocatalyst: The enhanced selective performance and charge separation abilities[J]. Journal of Environmental Chemical Engineering,2024,12(5):113597(SCI收录,中科院二区TOP) [13] An investigation of Z-scheme homojunction BiVO4 photocatalysts for efficient green removal of ammonia nitrogen[J]. Journal of Alloys and Compounds,2024,1008:176640(SCI收录,中科院二区TOP) [14] Insights into the PMS activation towards phenol removal mechanism by a Ti3C2-MXene doped BiVO4 photocatalyst[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2024,698:134561(SCI收录,中科院二区) [15] Stable and Flexible Polyurethane Membranes with WO3/Bi2MoO6 Nanoparticles for the Photocatalytic Degradation of 2,4-Dichlorophenol[J]. ACS Applied Nano Materials,2024,7(15):17855-17867(SCI收录,中科院二区) [16] Effective degradation of phenol by in-situ photocatalytic-Fenton-like technology with BiVO4/Bi2WO6/Ti3C2 QDs[J]. Surfaces and Interfaces,2024,55:105315(SCI收录,中科院二区) [17] Efficient degradation of 2,4-DCP by activated molecular oxygen with the introduction of oxygen vacancies in bismuth molybdate catalysts[J]. Molecular Catalysis,2024,564:114336(SCI收录,中科院二区) [18] Synthesis of Amino-Engineered Graphene Oxidize Nanocomposite (GO/SBA-15) for Potential Copper Ions and Dye Removal from Aqueous Solution[J]. Journal of Environmental Engineering, 2023,149(6).(SCI收录) [19] Photocatalytic removal of ammonia nitrogen from water: investigations and challenges for enhanced activity[J]. Environmental Science and Pollution Research,2024,31(29):41824-41843(EI收录) [20] 碘氧化铋/铌酸铋复合光催化剂的制备及降解头孢曲松钠性能研究[J]. 环境科学学报,2023,43(11):73-83. (EI收录) 专利授权情况 [1] 张惠宁,王百祥,王少峰 等,一种多孔石墨烯-微生物聚集体及其制备方法、吸附装置,(ZL 2023 1 1628040.6) [2] 张惠宁,尹鑫,韩建平 等,一种负载铋系异质结的氧化石墨烯光催化材料及其制备方法和应用,(ZL2019109249455) [3] 张惠宁,罗振华,刘泳利 等,一种基于臭氧氧化与双氧水联合降解含油污泥的处理装置和方法,(ZL202010686802.8) [4] 张森,张惠宁,董亚鲲 等,一种承载界面蒸发材料的自漂浮海水淡化装置,(ZL202422658976.X) [5] 田杨懿,张惠宁,王凯文 等,一种大型地埋式污水处理厂臭气净化去除装置,(ZL202221392024.2) [6] 张惠宁,肖彦奎,尹鑫 等,一种光催化反应器,(ZL202022766178.0) [7] 张惠宁,尹鑫,吴志国 等,一种光催化反应器,(ZL2019216296494) [8] 张惠宁,刘泳利,张登启 等,一种基于生物滞留带系统的市政道路雨水复用设施,(ZL2019209523169) [9] 张惠宁,张登启,胡家玮 等,一种SBR-O3污水处理装置,(ZL201820456897.2) [10] 张惠宁,张登启,胡家玮 等,一种协同污水处理装置(ZL201820456896.8) [11] 张惠宁,石中玉,尹鑫 等,一种净化污水的装置,(ZL202022763918.5) [12] 王弘宇,张惠宁,陈丹 等,巯基化氧化石墨烯/聚乙烯醇大孔复合球吸附剂及其制备方法和应用(ZL201610772031.8) [13] 王弘宇,张惠宁,陈丹 等,一种聚乙烯醇/氨基硅烷化氧化石墨烯大孔复合球及其制备方法和应用(ZL201610772033.7) 获奖 [1] “中核钛白杯”白银市2025年创新创业大赛暨兰白两区科技创新大赛三等奖,2025年 [2] 兰威城镇水务科学技术进步三等奖,2023年 [3] 甘肃省“百千万”创业引领工程·甘肃省首届博士后创新创业大赛优秀奖,2021年 [4] 甘肃省“土木工程抗震防灾青年科技人才奖”,2021年 指导学生获奖情况 2023年大学生创新创业项目(国家级立项):基于表面分子印迹技术的铋系复合物光催化剂对医疗污水中头孢曲松钠降解的研究(202310731037) 2021年第十六届全国环境友好科技竞赛西北赛区一等奖 2021年第十一届全国大学生电子商务“创新、创意及创业”挑战赛 甘肃赛区 二等奖 2021年第十一届全国大学生电子商务“创新、创意及创业”挑战赛 甘肃赛区 三等奖 2021年大学生创新创业项目(省级立项):基于3D打印石墨烯钛系复合物光催化材料降解有机污水的研究 2020年大学生创新创业项目(国家级立项):铋系复合物/碳纳米纤维光催化电极降解有机污染物与同步产电性能的研究(202010731048) 2020年大学生创新创业项目(国家级立项):一种基于臭氧氧化和含油污泥联合使用对含油污泥的降解(202010731036) 2020年“互联网+”大学生创新创业大赛铜牌:“光电新科技”-有机污水光催化降解产电领航者 2019年大学生创新创业项目(省级立项):基于生物滞留带系统的市政道路雨水复用研究 2019年大学生创新创业项目(校级立项):基于西北地区屋面雨水收集利用装置 2018年大学生创新创业项目(校级立项):基于西北地区农村的分散式生活污水处理装置的构设和性能研究 (DC2018150) 2018“赛佰特杯”全国大学生智能互联创新应用设计大赛 西北赛区 三等奖 2018年首届全国大学生可再生能源创新竞赛 二等奖(2018-KZS-100) 2017年大学生创新创业项目(校级立项):SBR与臭氧氧化联用技术实现对含环丙沙星和诺氟沙星废水的处理性能研究 (201710731083)
(以上内容更新于2026年7月)
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