何鉅華
特聘青年研究員
辦公室:廣東省佛山市禪城區(qū)江灣一路18號佛山科學技術(shù)學院基礎實驗樓513
Email:[email protected]
教育經(jīng)歷
香港科技大學,博士(土木工程-環(huán)境工程方向),,導師:Irene M. C. LO講席教授
華南理工大學,,碩士(化學工程專業(yè)),導師:張會平 教授
華南理工大學,,學士(應用化學專業(yè))
工作背景
2021 廣州市香港科大霍英東研究院 高級項目顧問
2021至今 佛山科學技術(shù)學院 特聘青年研究員
學術(shù)獎勵
The HKIE Outstanding Paper Award for Young Engineers/Researchers 2021,,香港工程師學會,The Hong Kong Institution of Engineers
研究領域
環(huán)境工程,、光催化
研究方向
(1)光催化材料開發(fā)合成:設計開發(fā)適用于實際污水處理的光催化劑材料,;
(2)水凈化處理:利用光催化技術(shù)處理實際污水,同步實現(xiàn)污水消毒殺菌及降解新型有機污染物,;毒性分析,;
(3)污染場地修復與安全利用
發(fā)表論文
1. He J., Zheng Z., Lo I.M.C., 2021. Different Responses of Gram-Negative and Gram-Positive Bacteria to Photocatalytic Disinfection using Solar-Light-Driven Magnetic TiO2-based Material, and Disinfection of Real Sewage. Water Research (207) Article no. 117816
2. He J., Hui K.W.K., Lo I.M.C., 2021. Potential and Prospect of Photocatalytic Disinfection: Using Sustainable Solar-energy-driven Photocatalyst. HKIE Transactions (28) Article no.4.
3. Zheng Z., He J., Dong C., Lo I.M.C., 2021. Photoelectrochemical sewage treatment by sulfite activation over an optimized BiVO4 photoanode to simultaneously promote PPCPs degradation, H2 evolution and E. coli disinfection. Chemical Engineering Journal, Article no. 129418
4. Dong C., Zheng Z., He J., Badsha M.A.H., Lo I.M.C., 2021. Visible-Light-Driven Peroxymonosulfate Activation in Photo-electrocatalytic System using Hollow-structured Pt@CeO2@MoS2 Photoanode for the Degradation of Pharmaceuticals and Personal Care Products. Environment International, (154) Article no.106572
5. Dong C., Wang Z., Ye Z., He J., Zheng Z., Gong X., Zhang J., Lo I.M.C., 2021. Superoxide Radicals dominated Visible light Driven Peroxymonosulfate Activation Using Molybdenum Selenide (MoSe2) for Boosting Catalytic Degradation of Pharmaceuticals and Personal Care Products. Applied Catalysis B: Environmental, (295) Article no.120223
6. Dong C., Zheng Z., Wang Z., He J., Ye Z., Gong X., Lo I.M.C., 2021. N-doped Graphitic C3N4 Nanosheets Decorated with CoP Nanoparticles: A highly efficient activator in singlet oxygen dominated visible-light-driven peroxymonosulfate activation for degradation of
pharmaceuticals and personal care products. Journal of Hazardous Materials (416) Article no. 125891
7. He J., Cheng J. and Lo I.M.C., 2020. Green Photocatalytic Disinfection of Real Sewage: Efficiency Evaluation and Toxicity Assessment of Eco-friendly TiO2-based Magnetic Photocatalyst under Solar Light. Water Research (190) Article no. 116705
8. He J., Kumar A., Khan M. and Lo I.M.C., 2020. Critical Review of Photocatalytic
Disinfection of Bacteria: From Noble Metals- and Carbon Nanomaterials-TiO2 Composites to Challenges of Water Characteristics and Strategic Solutions. Science of the Total Environment (758) Article no. 143953
9. Kumar A., Khan M., He J. and Lo I.M.C., 2020. Recent Developments and Challenges in Practical Application of Visible–light–driven TiO2–based Heterojunctions for PPCP
Degradation: A Critical Review. Water Research (170) Article no. 115356
10. Kumar A., Khan M., He J. and Lo I.M.C., 2020. Visible-light-driven Magnetically Recyclable Terephthalic Acid Functionalized g-C3N4/TiO2 Heterojunction Nanophotocatalyst for Enhanced Degradation of PPCPs. Applied Catalysis B: Environmental (270) Article no. 118898
11. Khan M., Kumar A., He J. and Lo I.M.C., 2020. Elucidating the Predominant Role of Crystal Disorders in Hierarchical Photocatalysts Governing Their Charge Carrier Separation and
Associated Activity in Photocatalytic Water Treatment. Journal of Colloid and Interface Science (573) 336-347
12. He J., Zeng X., Lan S. and Lo I.M.C., 2019. Reusable Magnetic Ag/Fe,N-TiO2/Fe3O4@SiO2 Composite for Photocatalytic Disinfection of E. coli and Degradation of Bisphenol A in Sewage under Visible Light. Chemosphere (217) 869-878
13. Khan M., Kumar A., Fung S., He J. and Lo I.M.C., 2019. Unravelling Mechanistic Reasons for Differences in Performance of Different Ti- and Bi-based Magnetic Photocatalysts in
Photocatalytic Degradation of PPCPs. Science of the Total Environment (686) 878-887
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