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Websites of Note - Fall 2023 网站注意- 2023年秋季
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.f02233if
Alice Suroviec
Websites of Note selected for you by Alice Suroviec
由Alice surviec为您挑选的值得注意的网站
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引用次数: 0
New Members Fall 2023 新成员将于2023年离任
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.008233if
ECS is proud to announce the following new members for April, May, and June 2023.
ECS荣幸地宣布2023年4月、5月和6月的新成员名单如下:
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引用次数: 0
Awards Program Fall 2023 2023年秋季奖励计划
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.007233if
The Fall 2023 Awards Program recognizes Society, Division, Section, and Student award winners.
2023年秋季奖励计划表彰社会,部门,部门和学生获奖者。
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引用次数: 0
E-Chem Education: A Crash Course in Electrochemical Engineering for Caustic Soda Plant Design 电子化学教育:烧碱装置设计之电化学工程速成班
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.f04233if
Christopher G. Arges, Darrell Velegol, Matthew L. Jordan
The capstone chemical engineering senior process design course at Penn State in spring 2023 tasked students with designing a caustic soda process to partially meet the global demand for commoditized sodium hydroxide. This article disseminates our experience teaching senior chemical engineering students the core tenets of electrochemical engineering in a single class period for designing an electrolytic caustic soda process. In this E-Chem Education article, we relate key concepts found in chemical engineering (such as sizing up a reactor volume), which chemical engineering seniors are adept with, to electrochemical engineering principles (e.g., current density, voltage, and membrane electrode assembly area) for sizing up and costing out a chlor-alkali electrolyzer. Furthermore, we also discuss alternative electrolyzer designs outside the traditional chlor-alkali process, such as oxygen depolarized cathode (ODC) chlor-alkali and bipolar membrane electrodialysis (BPMED), for caustic soda production and the pros and cons of the alternative process designs.
2023年春季,宾夕法尼亚州立大学的顶级化学工程高级工艺设计课程要求学生设计一种烧碱工艺,以部分满足全球对商品氢氧化钠的需求。本文以电解烧碱工艺设计为例,介绍了我们在单节课上对化学工程高年级学生讲授电化学工程核心原理的经验。在这篇E-Chem教育文章中,我们将化学工程中的关键概念(如计算反应器体积)与电化学工程原理(如电流密度,电压和膜电极组装面积)联系起来,以确定氯碱电解槽的尺寸和成本。此外,我们还讨论了传统氯碱工艺之外的替代电解槽设计,如氧去极化阴极(ODC)氯碱和双极膜电渗析(BPMED),用于烧碱生产以及替代工艺设计的优缺点。
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引用次数: 0
243rd ECS Meeting with SOFC Highlights 第243次ECS会议与SOFC要点
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.f01233if
Highlights of the 243rd ECS Meeting with SOFC-XVIII
第243次ECS与SOFC-XVIII会议要点
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引用次数: 0
Special Issue of Interface on Commercialization of Electrochemistry and Material Science Technologies 电化学与材料科学技术商业化界面特刊
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.f06233if
E. Jennings Taylor
Introduction to the Special Issue on on Commercialization of Electrochemistry and Material Science Technologies
电化学与材料科学技术商业化专题导论
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引用次数: 0
Student News Fall 2023 2023年秋季学生新闻
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.009233if
Fall 2023 Student News includes news from the Boston, Case Western Reserve, Indian Institute of Technology Madras, University of Michigan, Münster, Norwegian University of Science and Technology, Purdue, TU Ilmenau, and University of Texas at Austin ECS Student Chapters.
2023年秋季学生新闻包括来自波士顿,凯斯西储,马德拉斯印度理工学院,密歇根大学,密歇根大学,挪威科技大学,普度大学,伊尔梅瑙理工大学和德克萨斯大学奥斯汀分校ECS学生分会的新闻。
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引用次数: 0
ECS Mourns the Passing of Beloved Member John B. Goodenough ECS哀悼敬爱的成员John B. Goodenough的逝世
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.f03233if
Frances N. Chaves
ECS remembers beloved member and Nobel laureate John B. Goodenough
ECS缅怀敬爱的成员和诺贝尔奖得主约翰·b·古迪纳夫
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引用次数: 0
Fall 2023 - What’s On ECS News? 2023年秋季- ECS新闻上有什么?
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.005233if
Your connection to the ECS community, career opportunities, and industry-related news and events
您与ECS社区的联系,职业机会以及与行业相关的新闻和事件
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引用次数: 0
The Path from Scientific Discovery to Electrochemical Product Realization 从科学发现到电化学产品实现的路径
Q4 ELECTROCHEMISTRY Pub Date : 2023-09-01 DOI: 10.1149/2.f09233if
Robert D. Hilty, Tom Clay
This article will follow the path from initial scientific discovery to product concept and eventual commercialization. We will utilize the history of new nanocrystalline metal materials made by electrodeposition at Xtalic as a case study for what worked and what didn’t work.
本文将遵循从最初的科学发现到产品概念和最终商业化的路径。我们将利用Xtalic电沉积新纳米晶金属材料的历史作为案例研究,研究哪些有效,哪些无效。
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引用次数: 0
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Electrochemical Society Interface
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