高晓亚

发布日期:2026-06-01 点击数:

高晓亚,女,1985年生,工学博士,教授,硕士生导师,云南省“兴滇英才支持计划”青年人才,昆明理工大学高层次引进人才,主要从事水污染控制方面的科研和教学工作。作为项目负责人主持国家基金地区科学基金项目2项、云南省科技厅面上项目1项,昆明理工大学高层次人才引进项目1项,参与国家自科基金重点项目1项。发表第一作者/通讯作者学术论文60余篇,ESI高被引论文4篇次,获授权发明专利10余件,获云南省自然科学一等奖、中国有色金属科学技术奖二等奖。 

研究方向:

(1)水中新型污染物治理;

(2)固废资源化利用;

(3)环境功能材料研发及应用。

联系方式:

Email;gaoxiaoya@kust.edu.cn

工作与教育经历:

2012.09-2015.07 太原理工大学化学工程与技术 博士

2015.05-至今昆明理工大学 环境科学与工程学院 教师

主要研究项目:

[1] 1. 有机污染物羧基和电子性质对黄铁矿芬顿天然自净化反应的调控及机理,34万元(主持);

[2] 有机酸增强黄铁矿光电子介导羟基自由基产生对卡马西平降解研究,38万元(主持);

[3] 昆明理工大学高层次引进人才项目,80万元(主持);

[4] 黄铁矿结构转变诱导抗癫痫类药物光催化降解行为与机理,10万元(主持);

[5] 国家自然科学基金委员会, 重点项目, 42030712, 褐煤气化过程中含硫挥发性有机物的排放特征与控制机理研究, 296万元(参与)

[6] 复合污染废水中重金属和抗生素同步吸附与协同去除机理研究, 41万元(参与);

代表性论文:

[1] Guo T, Gao X#, Yang X, Wang J, Yin Y, Hu Y, Luo Y, Luo Y#2025.

In-situ synthesizing CoONAl-C catalysts from spent LiCoO2 batteries and tobacco stems biomass: nearly 100 % peroxymonosulfate utilization. Resources, Environment and Sustainability, 22, 100280.

[2] Bingheng Liang, Xiaoya Gao*, Qingcun Gu, Xuhao Liu, Teng Guo, Jiatian Wang, Wenjie Zhu, Yongming Luo*,Highly efficient degradation of emerging pollutants using cobalt oxide recovery from spent LiCoO2 batteries through autocatalytic lithium extraction[J]. Separation and Purification Technology,370 (2025) 133264.

[3] Qingcun Gu, Xiaoya Gao*, Bingheng Liang, Xuhao Liu, Jiatian Wang, Teng Guo, Wenjie Zhu, Yongming Luo *,Overlooked role of transition metal impurities (cobalt and nickel) substitution in tuning pyrite to activate peroxymonosulfate for degradation of emerging pollutants[J]. Separation and Purification Technology 363 (2025) 132280

[4] Fali Hou, Wei Li, Kaiying Yang, Daoli Yang, Wenjie Zhu, Yongming Luo, Xiaoya Gao*,, Carbonyl and defect of metal-free biochar trigger electron transfer and 1O2 in peroxymonosulfate activation for carbamazepine degradation[J].Process Safety and Environmental Protection 199 (2025) 107328.

[5] Jinli Zhai, Xi Wang, Jiali Yan, Chao Gong, Wenjie Zhu, Yongming Luo, Daoli Yang, Xiaoya Gao*, Oxidized pyrite as an efficient Fenton reagent to generate active species for the degradation of carbamazepine in a wide pH range[J].Applied Surface Science, 638 (2023) 158098.

[6] Jiali Yan, Xi Wang, Jinli Zhai, Chao Gong, Wenjie Zhu, Daoli Yang, Yongming Luo, Xiaoya Gao*, Recovery of graphite from anode in spent lithium-ion battery as an efficient peroxymonosulfate (PMS) activator: Performance and mechanism[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects 663 (2023) 131090.

[7] Chao Gong, Jinli Zhai, Xi Wang, Wenjie Zhu, Daoli Yang, Yongming Luo, Xiaoya Gao*, Synergistic improving photo-Fenton and photo-catalytic degradation of carbamazepine over FeS2/Fe2O3/organic acid with H2O2 in-situ generation[J]. Chemosphere 307 (2022) 136199.

[8] Y.H. Li, W.J. Zhu, Q. Guo, X. Wang, L.M. Zhang, X.Y. Gao *, Y.M. Luo*, Highly efficient degradation of sulfamethoxazole (SMX) by activating peroxymonosulfate (PMS) with CoFe2O4 in a wide pH range[J]. Separation and Purification Technology, 276 (2021) 119403.

[9] Q. Guo, W.J. Zhu, D.L. Yang, X. Wang, Y.H. Li, C. Gong, J.L. Yan, J.L. Zhai, X.Y. Gao*, Y.M. Luo, A green solar photo-Fenton process for the degradation of carbamazepine using natural pyrite and organic acid with in-situ generated H2O2, Science of the Total Environment, 784 (2021) 147187.

[10] Q .Guo , G .B.Tang , W .Zhu, Y .M.Luo , X .Y.Gao *, In situ construction of Z-scheme FeS2/Fe2O3 photocatalyst via structural transformation of pyrite for photocatalytic degradation of carbamazepine and the synergistic reduction of Cr(VI), Journal of Environmental Sciences, 2021, 101, 351-360.

[11] X .Y.Gao , Q .Guo , G .B.Tang , W .Zhu, Y .M.Luo ,TBAOH assisted synthesis of ultrathin BiOCl nanosheets with enhanced charge separation efficiency for superior photocatalytic activity in carbamazepine degradation, Journal of Colloid and Interface Science, 2020, 570, 15: 242-250.

[12] X .Y.Gao , G .B.Tang , W .Peng , Q .Guo , Y .M.Luo , Surprise in the phosphate modification of BiOCl with oxygen vacancy: In situ construction of hierarchical Z-scheme BiOCl-OV-BiPO4 photocatalyst for the degradation of carbamazepine, Chemical Engineering Journal. 360 (2019) 1320–1329.

[13] X.Y. Gao ,X.X. Yang ,Q. Guo ,W. Peng ,Y.M. Luo , Enhanced photocatalytic performance of BiOCl for carbamazepine degradation by coupling H-ZSM-5 and modifying phosphate groups: Improved charge separation efficiency with high redox ability, Journal of the Taiwan Institute of Chemical Engineers. https://doi.org/10.1016/j.jtice.2019.08.022

[14] X .Y.Gao , Q .Guo , G .B.Tang , W .J.Zhu , Y .M.Luo , Controllable synthesis of solar-light-driven BiOCl nanostructures for highly efficient photocatalytic degradation of carbamazepine,Journal of Solid State Chemistry. 277 (2019) 133–138.

[15] X.Y. Gao, W. Peng, G.B. Tang, Q. Guo, Y.M. Luo, Highly efficient and visible-light-driven BiOCl for photocatalytic degradation of carbamazepine, J. Alloy. Compd, 757 (2018) 455–465.

[16] Y.M. Luo, R. Chen, W. Peng, G.B. Tang, X.Y. Gao, Inverse CeO2-Fe2O3 catalyst for superior low-temperature CO conversion efficiency, Applied Surface Science. 416 (2017) 911–917.

[17] X.Y. Gao, X.C. Zhang, Y.W. Wang, S.Q. Peng, B. Yue, C.M. Fan, Rapid synthesis of hierarchical BiOCl microspheres for efficient photocatalytic degradation of carbamazepine under simulated solar irradiation, Chem. Eng. J. 263 (2015) 419–426.

[18] X.Y. Gao, X.C. Zhang, Y.W. Wang, S.Q. Peng, B. Yue, C.M. Fan, Photocatalytic degradation of carbamazepine using hierarchical BiOCl microspheres: Some key operating parameters, degradation intermediates and reaction pathway, Chem. Eng. J. 273 (2015) 156–165.

授权发明专利:

[1] 高晓亚;侯发利;罗永明;杨铠莹;李伟.一种多元素掺杂生物炭复合材料及其应用, 专利号,ZL 2023 1 1355772.2,授权公告号: CN 117160515 B,授权公告日: 2025年10月21日。

[2] 高晓亚;杨铠莹;罗永明;侯发利;李伟. 一种A位镧掺杂钴酸锂活化PMS催化有机污染物的方法, 专利号ZL 2024 1 0297490.X,授权公告号:CN 118079938 B,授权公告日: 2025年10月28日。

[3] 高晓亚,彭稳,罗永明,唐光贝,郭倩,刘航,王婧轩,刘江平,刘攀, 余杰.一种Z型光催化剂BiPO4/H-ZSM-5/BiOCl的制备及其应用,申请号: 201810255972.3。

[4] 高晓亚,唐光贝,郭倩,彭稳. 一种氯氧铋纳米片的制备方法及应用, 2018.2.2,中国, CN201810105601 (专利)。

科研奖励:

[1] 2024年获云南省自然科学奖一等奖;

[2] 2020年获中国有色金属工业科学技术二等奖;

[3] 2025年获校级教学成果奖

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