大学化学 >> 2025, Vol. 40 >> Issue (8): 11-17.doi: 10.12461/PKU.DXHX202410041

教学研究与改革 上一篇    下一篇

“价值引领,固基强能”的化工原理教改与实践

张香兰, 马靖文, 曹俊雅, 蔡卫滨, 畅志兵, 刘金昌   

  1. 中国矿业大学(北京)化学与环境工程学院化学工程系, 北京 100083
  • 收稿日期:2024-10-10 录用日期:2024-11-22 发布日期:2025-07-19
  • 通讯作者: 张香兰 E-mail:zhxl@cumtb.edu.cn
  • 基金资助:
    校教改项目(J230306);北京市教改项目(202311413003);校级重点项目(J20ZD10, J23ZD06);教育部产学合作协同育人项目(230804697244412)

Curriculum Reform and Practice of Principles of Chemical Engineering Guided by the Concept of “Cultivating Values, Strengthening Foundations and Enhancing Engineering Competence”

Xianglan Zhang, Jingwen Ma, Junya Cao, Weibin Cai, Zhibing Chang, Jinchang Liu   

  1. Department of Chemical Engineering, School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China
  • Received:2024-10-10 Accepted:2024-11-22 Published:2025-07-19
  • Contact: Xianglan Zhang E-mail:zhxl@cumtb.edu.cn

摘要: 为培养适应时代和满足国家能源行业需求的高素质人才,我们秉承“价值引领,固基强能”育人理念,实施教改和人才培养模式探索。通过课程思政强化学生的爱国敬业、行业责任感、节能减排意识和团队合作精神,建设具有能源特色和智能化的教学资源,根据学生认知重新组织教学内容,并采用线上线下深度融合的教学模式以及“多元化、多主体、全过程”的评价体系来夯实学生的学科基础。同时,以“工程案例牵引+小组讨论”、仿真与学科竞赛延伸相结合,提升学生的工程创新能力。这些措施已取得一定成效。

关键词: 责任教育, 化工原理, 创新能力, 工程案例, 能源特色

Abstract: To cultivate high-quality talents who can not only adapt to the demands of the information and digital era while addressing national energy security, we have implemented a series of curriculum reforms and explored innovative talent training models under the educational philosophy of “cultivating values, strengthening foundations, and enhancing engineering competence”. By integrating ideological and political education into the curriculum, we aim to foster students’ patriotism, professionalism, awareness of energy conservation and emission reduction, and teamwork skills. To strengthen students’ disciplinary foundations, we have developed energy-themed teaching resources and knowledge maps, reorganized teaching content based on students’ cognitive levels, adopted a blended teaching mode combining online and offline methods, and introduced a “diverse, multi-party, and comprehensive” assessment system to evaluate learning outcomes throughout the process. To enhance students’ engineering innovation capabilities, we have employed an “engineering case-driven approach combined with TBL (team-based learning)” in-class activities and extended the curriculum through simulation experiments and subject competitions. These measures have yielded significant results.

Key words: Responsibility education, Principles of chemical engineering, Innovative ability, Engineering case studies, Energy characteristics