大学化学

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面向“双碳”战略的能源化学人才培养理念与路径

张进涛1, 严振华2, 张树永1   

  1. 1 山东大学化学与化工学院, 山东 济南 250100;
    2 南开大学化学学院, 天津 300071
  • 收稿日期:2026-06-25 录用日期:2026-07-27
  • 通讯作者: 张进涛, 张树永 E-mail:jtzhang@sdu.edu.cn;syzhang@sdu.edu.cn Jintao Zhang, Shuyong Zhang
  • 基金资助:
    山东大学2025年度课堂教学改革课程项目(sd01131150)

Talent cultivation in energy chemistry for the dual carbon strategy: concepts and pathways

Jintao Zhang1, Zhenhua Yan2, Shuyong Zhang1   

  1. 1 School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, Shandong Province, China;
    2 College of Chemistry, Nankai University, Tianjin 300071, China
  • Received:2026-06-25 Accepted:2026-07-27
  • Contact: Jintao Zhang, Shuyong Zhang E-mail:jtzhang@sdu.edu.cn;syzhang@sdu.edu.cn

摘要: 在“双碳”战略深入推进与全球能源结构加速转型的背景下,能源化学作为连接基础科学与能源技术的重要交叉领域,对复合型优秀人才培养提出了新的要求。传统以学科知识体系为核心的人才培养模式在应对新能源技术快速发展与复杂工程问题需求方面逐渐显现出局限性,学科壁垒导致知识体系碎片化、课程体系与产业需求脱节等问题突显。本文围绕能源化学人才培养体系重构,从培养理念、课程体系、实验实践教学以及质量评价机制等方面系统探讨其改革路径。通过构建面向能源战略需求的“五维一体”人才能力框架,重塑“基础-交叉-前沿-实践”一体化课程体系,强化科研反哺教学的实验实践模式,并引入多维质量评价体系与持续改进机制,形成贯通培养目标、教学实施与评价反馈的闭环结构。同时,将课程思政深度融入人才培养全过程,强化学生的家国情怀与服务国家能源战略的使命意识,从而为新时代能源化学高水平人才培养体系优化提供可借鉴的系统性框架。

关键词: 能源化学教育, 人才培养, 课程体系, 数智赋能

Abstract: Against the backdrop of the deepening Carbon Peaking and Carbon Neutrality strategy and the accelerating transformation of the global energy landscape, energy chemistry—an interdisciplinary field bridging fundamental science and energy technologies—has imposed new demands on the cultivation of versatile, high-caliber talent. The conventional talent development model, centered on disciplinary knowledge systems, is increasingly proving inadequate in addressing the rapid advancement of emerging energy technologies and the growing complexity of engineering challenges. Persistent disciplinary silos have led to fragmented knowledge structures and a disconnect between curricula and industrial needs. This paper systematically examines the restructuring of the energy chemistry talent cultivation system, focusing on educational philosophy, curriculum design, experimental and practical instruction, and quality assessment mechanisms. Specifically, it proposes a “five-in-one” competency framework aligned with national energy strategic needs, reconstructs an integrated “foundation-interdisciplinary-frontier-practice” curriculum, reinforces a research-driven approach to experimental teaching, and introduces a multidimensional evaluation system coupled with continuous improvement mechanisms. Together, these elements form a closed-loop architecture that interlinks training objectives, instructional implementation, and feedback-driven evaluation. In parallel, ideological and political education is seamlessly embedded throughout the entire cultivation process, fostering students’ patriotic commitment and their sense of mission in serving the nation’s energy strategy. This work thereby offers a systematic and transferable framework for advancing high-level talent cultivation in energy chemistry in the new era.

Key words: Energy chemistry education, Talent cultivation, Curriculum system, Digital and intelligent empowerment