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Integrating Green and Sustainable Chemistry into Undergraduate Teaching Laboratories: Closing and Assessing the Loop on the Basis of a Citrus Biorefinery Approach for the Biocircular Economy in Brazil

机译:将绿色和可持续化学集成为本科教学实验室:在巴西生物委员会的柑橘生物遗弃方法的基础上结束和评估环路

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One of the keys to achieving the United Nation's Sustainable Development Goals (SDGs) in education is to introduce novel pedagogical strategies into university curricula in order to promote an enhanced acute sense of sustainability in future professionals, teachers, and decision-makers. This paper aims at analyzing the effectiveness of including green and sustainable chemistry on the basis of a systems thinking framework to introduce a glocal (global scale, local impact) hot-type topic in an experimental chemistry course for first-year undergraduate Chemical Engineering students from a public Brazilian university located in Sao Paulo state, Brazil. The enormous amount of waste generated locally by the citrus processing industry was used as a case study for a guided-inquiry laboratory experiment that addressed concepts found in interfaces with other systems, such as biorefineries, biocircular economies, and green technologies and professional education programs. On the basis of student feedback, the alternative procedure proved to be technically and pedagogically effective, showing that problem-based glocal issues can be useful tools for developing sustainability-minded future professionals. Additionally, a set of green and sustainable chemistry education (GSCE) principles composing a new metric called the Green and Sustainable Chemistry Education Compass Rose was proposed that could help educators develop and assess novel experiments to modernize and introduce the scientific concepts and tools needed to face the world's greatest challenges.
机译:在教育中实现联合国可持续发展目标(SDGS)的关键之一是向大学课程引入新的教学策略,以促进未来的专业人士,教师和决策者的急剧可持续性感。本文旨在分析包括绿色和可持续化学的有效性,在一个系统思考框架的基础上,在一年内为一个实验化学课程中引入一个Glocal(全球规模,当地影响)热型话题位于巴西圣保罗州的公共巴西大学。柑橘加工工业局部产生的巨大废物是对导游查询实验室实验的案例研究,这些实验实验解决了与其他系统的界面中发现的概念,例如生物猎物,生物挑战经济和绿色技术和专业教育计划。在学生反馈的基础上,替代程序被证明在技术上和教育上有效,表明基于问题的壁虎问题可以是开发可持续性未来专业人士的有用工具。此外,还提出了一系列绿色和可持续化学教育(GSCE)原则,撰写了一个名为绿色和可持续化学教育指南罗斯的新公制的原则,可以帮助教育工作者开发和评估新的实验,以实现现代化,并介绍所需的科学概念和工具世界上最大的挑战。

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