近年来发表的学术期刊论文: [1] Yang Y H, Li Y W, Mao R, et al. Removal of phosphate in secondary effluent from municipal wastewater treatment plant by iron and aluminum electrocoagulation: Efficiency and mechanism[J]. Separation and Purification Technology, 2021, 120439.(SCI) [2] Yang Y H, Chen Y R, Yin S C, et al. The Performance of the Synergistic Enhancement of Potassium Permanganate/Sludge-Based Biochar on Electro-Dewatering and Its Mechanism[J]. Electrochimica Acta, 2026, 548: 147916.(SCI) [3] Yang Y H, Zhang P T, Wang Y L. An Attention-Based Parallel Model with Sliding Window Decomposition Algorithm for Water Quality Prediction[J]. Journal of Water Process Engineering, 2025, 78: 108751.(SCI) [4] Qiao M, Zhu L F, Yang Y H, et al. Fate of calcium, magnesium, and phosphate during Fe electrocoagulation: An investigation for mitigating cathodic scaling in phosphate removal process[J]. Separation and Purification Technology, 2025, 354: 128994.(SCI) [5] Yang Y H, Ma P J, Li Y Y, et al. Insights into the mechanism of sludge-based biochar in electro-dewatering and energy consumption optimization[J]. Journal of Water Process Engineering, 2024, 68: 106328.(SCI) [6] Yang Y H, Ma P J, Li Y Y, et al. Sludge-derived biochar improves sludge electro-dewatering performance: Conductivity analysis[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 701: 134838.(SCI) [7] Yang Y H, Li Y Y, Ma P J, et al. Unraveling synergistic mechanisms of enhanced electrocoagulation sludge dewatering using modified sludge-based biochar[J]. Journal of Water Process Engineering, 2024, 65: 105697.(SCI) [8] Yang Y H, Zhu L F, Lin S, et al. Influence of key cations and anions on phosphate removal by Fe(0) electrocoagulation[J]. Journal of Water Process Engineering, 2023, 53:103628.(SCI) [9] Li Y W, Yang Y H, Qiao M, et al. Enhanced removal of phosphate by electrogenerated iron combined with mechanically activated calcite[J]. Chemical Engineering Journal, 2022, 451(3): 138803.(SCI) [10] Yang Y H, Yang X F, Yang Q Y, et al. Exploring the feasibility and potential mechanism of synergistic enhancement of sludge dewaterability by ultrasonic cracking, chitosan re-flocculation and sludge-based biochar adsorption of water-holding substances[J]. Journal of Environmental Chemical Engineering, 2022, 10(5): 108303.(SCI) [11] Yang Y H, Yang X F, Wang X, et al. Explore the closed-loop disposal route of surplus sludge: Sludge self-circulation preparation of sludge-based biochar (SBB) to enhance sludge dewaterability[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 638: 128304.(SCI) [12] Yang Y H, Xu W X, Yang Q Y, et al. Exploring the role of potassium ferrate and straw fiber in enhancing the strength of cement-based solidified municipal sludge[J]. Water Science and Technology, 2022, 86(9): 2358-2374.(SCI) [13] 杨亚红,李雨薇,乔梦,等。铁电絮凝去除磷酸盐性能及影响因素研究 [J]. 环境科学学报,2022: 1-7. [14] Yang Y H, Yang X F, Chen Y R, et al. Response surface optimization of sludge dewatering process: synergistic enhancement by ultrasonic, chitosan and sludge-based biochar[J]. Water Science and Technology, 2024, 89(7): 1630-1646.(SCI) [15] Yang Q Y, Xu W X, Yang Y H, et al. Mechanistic study of the effect of potassium ferrate and straw fiber on the enhancement of strength in cement-based solidified municipal sludge[J]. Scientific Reports, 2023. [16] Yang Y H, Li X. A knowledge-driven constructive heuristic algorithm for the distributed assembly blocking flow shop scheduling problem[J]. Expert Systems with Applications, 2022, 202: 117269. [17] Yang Y H, Li Y W, Mao R, et al. Removal of phosphate in secondary effluent from municipal wastewater treatment plant by iron and aluminum electrocoagulation: Efficiency and mechanism[J]. Separation and Purification Technology, 2022, 286: 120439. [18] Xue L X, Sun B, Yang Y H, et al. Efficiency and mechanism of reducing ammonia volatilization in alkaline farmland soil using Bacillus amyloliquefaciens biofertilizer[J]. Environmental Research, 2021, 202: 111672. [19] 杨亚红,马鹏锦,杨兴峰,等.沸石 / 超声强化污泥脱水和好氧堆肥效能研究 [J]. 中国给水排水,2024, 40 (9): 84-90. 发明专利情况 发明专利: (1)杨亚红;刘恩露;薛莉霞;胡家玮;蔚阳;李彦娟;张玉蓉;一种PPCPs处理装置, 2020-12-29,中国, ZL201711347948.4 (专利) (2)王惠;汪萱;马江;杨兴峰;杨亚红;王亚军;一种海绵城市的路面雨水收集及处理系统, 2019-11-28,中国, ZL201922091694.5 (专利) (3)杨亚红;夏小虎;李婧;舒智国;刘梓睿;温碧;袁洋浩;高寒地区供水防冻与净水一体化装置, 2020-10-29,中国, ZL202022451797.0 (专利) (4)杨亚红;朱立帆;刘梓睿;钟婕;赵学昊;一种高效运行的小型曝气池, 2021-4-14,中国, ZL202120761490.2 (专利) (5)杨亚红;杨兴峰;芦婉蒙;林秀锋;李雨薇;张惠宁;胡家玮;一种水产养殖尾水处理及循环装置,2020-1-10,中国, CN202010025637.1 (专利) (6)杨亚红;吴保存;马智莉;杨兴峰;罗振华;钟婕;赵学昊;胡天一;一体化温控鼓风搅拌式好氧堆肥装置, 2020-10-29,中国, ZL202022447346.X (专利) (7)何明阳;林秀锋;杨亚红;王亚军;一种节能好氧堆肥系统, 2019-11-28,中国, CN201922091596.1(专利) (8)张惠宁;尹鑫;韩建平;吴志国;高世铭;闫鹏勋;张登启;杨亚红;胡家玮;王少峰;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, 2019-9-27,中国, ZL201910924945.5 (专利) 指导学生获奖情况 [1]2020年国家级大学生创新创业训练计划项目,指导教师。 [2] 2020年省级大学生创新创业训练计划项目,指导教师。 [3]2018年学生科技创新项目,校级立项三等奖,指导教师。 [4 ]2018年兰州“银行杯”,省级优秀奖,指导教师。 [5]第四届全国“互联网+”大学生创新创业大赛,校级优秀奖,指导教师。 [6]第三届“求是杯”大学生实践大赛,省级重点项目,指导教师。 [7] 2020年,第五届全国“互联网+”大学生创新创业大赛,校级铜奖,指导教师。 [87]2022年大学生创新创业项目(国家级立项):秸秆-玉米芯粉助凝剂联合混凝剂污泥脱水(DC2022272)。 [9]2022年大学生创新创业项目(省级立项):富营养化杀手-基于氧化镧与电絮凝联合除磷系统研究(DC2022285)。 [10]2022年大学生创新创业训练计划校级立项项目(“新工科+”创新创业实验班)(校级立项):基于CS算法的智慧管网防爆云服务平台建设(DC2021797)。 [11]2022年“互联网+”大学生创新创业大赛校级铜奖:““御泥坊”—基于”以废治废生态循环”理念下的污泥脱水堆肥智能化控制工艺”(2021230)。 |