期刊文献+

固-液界面接触角测定实验的课程思政设计 被引量:1

Ideological and Political Design of Solid-liquid Contact Angle Measurement Experiment
下载PDF
导出
摘要 固液界面接触角的测定是一个重要的物理化学实验,本案例结合特殊润湿性材料可处理含油废水这一科研进展,将其改进为一个融入课程思政元素的综合创新实验,不仅能提升学生的学习兴趣,还能引导学生学会理论联系实际,利用所学专业知识来保护自然、治理环境,培养学生的社会责任感和专业自豪感,有助于达成创新型人才培养目标。 The measurement of solid-liquid contact angle holds significant importance in physical chemistry experiments.In this study,we have enhanced this experiment by incorporating the latest advancements in scientific research,specifically focusing on the application of special wettability materials for treating oily wastewater.The resulting comprehensive and innovative experiment integrates ideological and political elements,aiming to not only enhance students’learning interest but also guide them in applying theory to practical scenarios,utilizing their specialized knowledge to protect the environment and remediate nature.By fostering students’sense of social responsibility and professional pride,this teaching reform effectively achieves the goal of cultivating innovative talents.
作者 戴春爱 韩永生 颜鲁婷 李振 曹莹泽 Chunai Dai;Yongsheng Han;Luting Yan;Zhen Li;Yingze Cao(School of Physical Science and Engineering,Beijing Jiaotong University,Beijing 100044,China.;School of Chemical Engineering,University of Chinese Academy of Sciences,Beijing 100049,China.;China Academy of Aerospace Science and Innovation,Beijing 100088,China.;China Academy of Space Technology,Beijing 100094,China.)
出处 《大学化学》 CAS 2024年第2期28-33,共6页 University Chemistry
基金 北京交通大学教育教学改革与建设项目(134001187522,SQ20230283)。
关键词 接触角测定 物理化学实验 特殊润湿性 含油废水处理 课程思政 Contact angle measurement Physical chemistry experiment Special wettability Oily wastewater treatment Ideological and political education
  • 相关文献

参考文献3

二级参考文献42

  • 1罗正贵,闻荻江.铜的腐蚀及防护研究进展[J].武汉化工学院学报,2005,27(2):17-21. 被引量:39
  • 2Roach P, Shirtcliffe N J, Newton M 1. Progess in superhydrophobic surface development. Soft Matter, 2008.
  • 3Zhao N, Lu X Y, Zbang X Y, et al. Progress in superhydrophobic surfaces. Prog Chem, 2007, 19:860-871.
  • 4Yah Y Y, Gao N, Barthlott W. Mimicking natural superhydrophobic surfaces and grasping the wetting progress in preparing superhydrophobic surfaces. Adv Colloid Interface, 2011, 169:80-105.
  • 5Rothstein J P. Slip on superhydrophobic surfaces. Annu Rev Fluid Mech, 2010, 42:89-109.
  • 6Voronov R S, Papavassiliou D V, Lee L L. Review of fluid slip over superhydrophobic surfaces and its dependence on the contact angle. lnd Eng Chem Res, 2008, 47:2455-2477.
  • 7Nosonovsky M, Bhushan B. Superhydrophobic surfaces and emerging applications: Non-adhesion, energy, green engineering. Curr Opin Colloid Interface Sci. 2009, 14:270-280.
  • 8Genzer J, Efimenko K. Recent developments in superhydrophobic surfaces and their relevance to marine fouling: A review. Biofouling, 2006, 22:339-360.
  • 9Wenzel R N. Surface roughness and contact angle. J Phys Colloid Chem, 1948, 53:1466-1467.
  • 10Feng L, Zhang Z Y, Mai Z H, et al. A super-hydrophobic and super-oleophilic coating mesh film for the separation of oil and water. Angew Chem lnt Ed, 2004, 43:2012-2014.

共引文献20

同被引文献4

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部