首页|前沿科研成果融入环境光催化水处理技术教学课程——Tm掺杂Fe2O3/ZnO光催化降解四环素

前沿科研成果融入环境光催化水处理技术教学课程——Tm掺杂Fe2O3/ZnO光催化降解四环素

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如何将创新意识渗透到课程教学之中,让学生从本科起就初步接触科学研究,培养科研创新意识是培养具有科研素质的本科生人才的重要环节.本文将利用《环境光催化水处理技术》在教学实践和指导学生开展科学实验研究中了解光催化水处理的原理及应用.合成Tm掺杂Fe2O3/ZnO纳米光催化材料,进一步研究其光催化降解四环素的性能,深入讨论光催化降解原理.利用教学与实验结合模式,使学生了解光催化领域,提高学生对科学研究的兴趣以及解决问题的能力,促进教学的质量.
Application of Frontier Research Achievements in Environmental Photocatalytic Water Treatment Technology Teaching Course:Photocatalytic Degradation of Tetracycline by Tm Doped Fe2O3/ZnO Materials
How to penetrate the consciousness of innovation into the course teaching?Give students an initial exposure to scientific research from their undergraduate years.Cultivating the consciousness of innovation for scientific research is an important link to cultivate the undergraduate talents with scientific research quality.This work will use"environmental photocatalytic water treatment technology"in teaching practice and guide students to carry out scientific experimental research to understand the principle and application of photocatalytic water treatment.Synthesis of Tm-Fe2O3/ZnO photocatalytic materials and studied its photocatalytic degradation performance of tetracycline.Furthermore,the principle of photocatalytic degradation is discussed in detail.The combination of teaching and experiment mode enables students to understand the field of photocatalysis.In addition,it can also improve students'interest in scientific research and problem-solving ability,and promote the quality of teaching.

photocatalysisiron oxidefrontier of scientific and technologicalwater treatmentteaching reforming

黄勇潮、谢宁

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广州大学 环境科学与工程学院,广东 广州 510006

光催化 氧化铁 科技前沿 水处理技术 教学改革

广州大学2023年度校级教育教学改革项目广州市科技项目

教务[2023]190号202201020147

2024

广东化工
广东省石油化工研究院

广东化工

影响因子:0.288
ISSN:1007-1865
年,卷(期):2024.51(19)