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“化工单元操作”课程思政元素的探索与实践研究
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作者 张乾 巴图查干 +2 位作者 王雅平 王素娥 杨志 《现代盐化工》 2023年第2期6-8,共3页
通过探索和挖掘“化工单元操作”课程思政元素,构建了“两导一提升”三段式全程跟踪教学模式和“环环相接践三心”课程思政体系,充分发挥“化工单元操作”课程的德育功能,对专业知识体系教育与思想政治教育的有机统一进行探索与实践。
关键词 “化工单元操作” 课程思政 德育 教学模式 职业素养
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“三融”现代职业教育体系下“化工单元操作技术”课程思政探索与实践
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作者 郑楠 刘杰 +1 位作者 夏龙贵 何小燕 《生物化工》 CAS 2023年第5期160-163,共4页
“化工单元操作技术”课程是职业院校化工类专业的核心基础课。通过本课程学习,有利于学生在工程实践中分析并解决实际化工工艺及设备的问题。本文以江西省化学工业学校为例,对职业教育“化工单元操作技术”课程思政教学实践中存在的问... “化工单元操作技术”课程是职业院校化工类专业的核心基础课。通过本课程学习,有利于学生在工程实践中分析并解决实际化工工艺及设备的问题。本文以江西省化学工业学校为例,对职业教育“化工单元操作技术”课程思政教学实践中存在的问题进行分析。通过强化教师思政教学能力、挖掘思政元素整合课程资源、创新教学方式完善课程设计、完善教师评价激励机制、建立考核评价体系等方面进行探索和实践,“化工单元操作技术”课程思政建设将得到全面加强和完善,为培养德才兼备的大国工匠奠定坚实基础。 展开更多
关键词 “化工单元操作技术” 课程思政 教学方法
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Scoping biology-inspired chemical engineering 被引量:2
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作者 Xiao Dong Chen 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第1期1-8,共8页
Biology is a rich source of great ideas that can inspire us to find successful ways to solve the challenging problems in engineering practices including those in the chemical industry. Bio-inspired chemical engineerin... Biology is a rich source of great ideas that can inspire us to find successful ways to solve the challenging problems in engineering practices including those in the chemical industry. Bio-inspired chemical engineering(Bio Ch E)may be recognized as a significant branch of chemical engineering. It may consist of, but not limited to, the following three aspects: 1) Chemical engineering principles and unit operations in biological systems; 2) Process engineering principles for producing existing or developing new chemical products through living ‘devices';and 3) Chemical engineering processes and equipment that are designed and constructed through mimicking(does not have to reproduce one hundred percent) the biological systems including their physical–chemical and mechanical structures to deliver uniquely beneficial performances. This may also include the bio-inspired sensors for process monitoring. In this paper, the above aspects are defined and discussed which establishes the scope of BioChE. 展开更多
关键词 Bioinspired chemical engineering Biology Chemical engineering Material science Multidisciplinary Multiscale Biomimic Bionic
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Case Studies of Heat Integration of Evaporation Systems
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作者 冯霄 RobinSmith 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2001年第2期224-227,共4页
In this paper, through two case studies, evaporation systems are considered in the context of overall process, and then are optimized to obtain energy-saving effect. The possible evaporation schemes are given when int... In this paper, through two case studies, evaporation systems are considered in the context of overall process, and then are optimized to obtain energy-saving effect. The possible evaporation schemes are given when integrated with the background process and how to optimize the evaporator is shown. From the case studies, it can be seen that sometimes incomplete integration and heat pump evaporation are better than complete integration so should be considered as candidate retrofit schemes. 展开更多
关键词 EVAPORATION heat integration grand composite curve multi-effect evaporation vapour recompression evaporator
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A paradigm-based evolution of chemical engineering
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作者 Alexandru Woinaroschy 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第5期553-557,共5页
A short presentation of chemical engineering evolution,as guided by its paradigms,is exposed.The first paradigm–unit operations–has emerged as a necessity of systematization due to the explosion of chemical industri... A short presentation of chemical engineering evolution,as guided by its paradigms,is exposed.The first paradigm–unit operations–has emerged as a necessity of systematization due to the explosion of chemical industrial applications at the end of 19th century.The birth in the late 1950s of the second paradigm–transport phenomena–was the consequence of the need for a deep,scienti fic knowledge of the phenomena that explain what happens inside of unit operations.In the second part of 20th century,the importance of chemical product properties and qualities has become essentially in the market fights.Accordingly,it was required with additional and even new fundamental approaches,and product engineering was recognized as the third paradigm.Nowadays chemical industry,as a huge materials and energy consumer,and with a strong ecological impact,couldn't remain outside of sustainability requirements.The basics of the fourth paradigm–sustainable chemical engineering–are now formulated. 展开更多
关键词 Paradigms Unit operations Transport phenomena Product engineering Sustainable chemical engineering
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