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基于国际化视域的轻化工程专业课程思政教学探讨

Exploration of Ideological and Political Education in Light Chemical Engineering Curriculum from an International Perspective

  • 摘要:
    目的 针对轻化工程专业国际化人才培养中存在的文化认同与全球视野的矛盾、价值引领与国际化目标协同难、思政元素与专业知识割裂、传统讲授与创新需求冲突等核心问题,文章旨在构建一套有效的课程思政教学设计框架,以提升轻化工程专业人才培养质量。
    分析 以《轻化工程导论》课程为实践案例,构建了以“铸牢中华民族共同体意识”为主线的四维教学框架(教学主线-教学理念-教学内容-教学方法),通过设计家国情怀与全球视野辩证统一的教学内容,并采用有机融合价值观培养与专业知识传授的教学方法,进行系统性实践教学探索。
    结论 相关教学实践探讨表明,所构建的四维框架能够显著提升课程育人作用与人才培养实效,为轻化工程专业实现本科教育国际化高质量发展提供了重要支撑。

     

    Abstract:
    Objective This study aims to address core challenges in cultivating international talents in light chemical engineering, such as the conflict between cultural identity and global perspective, the difficulty in aligning value guidance with internationalization goals, the disconnection between ideological-political elements and professional knowledge, and the mismatch between traditional teaching methods and innovation demands. It seeks to construct an effective instructional design framework for ideological and political education within the curriculum to enhance the quality of talent development in light chemical engineering.
    Analysis Using the Introduction to light chemical engineering as a practical case, a four-dimensional teaching framework centered on "Fostering a Strong Sense of Community for the Chinese Nation" is developed, integrating teaching threads, teaching philosophy, teaching content, and teaching methods. The systematic practical exploration is conducted by designing teaching content that dialectically unifies national sentiment with a global perspective, and by adopting pedagogical methods that organically integrate values cultivation with the imparting of professional knowledge.
    Conclusion The teaching practice demonstrates that the proposed four-dimensional framework significantly enhances the educational effectiveness of the curriculum and the quality of talent training. It provides crucial support for achieving high-quality, internationalized undergraduate education in light chemical engineering.

     

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