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ELECTRODEPOSITION SPECIAL ISSUE: Frontiers of Electrodeposition (Present and Future) 电泳特刊:电泳前沿(现在与未来)
Pub Date : 2024-06-01 DOI: 10.1149/2.20242if
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引用次数: 0
Section News Summer 2024 2024 年夏季分部新闻
Pub Date : 2024-06-01 DOI: 10.1149/2.005242if
Summer 2024 Section News includes a report from the Mexico Section.
2024 年夏季分会新闻》包括来自墨西哥分会的报道。
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引用次数: 0
ECS Celebrates the Life of Allen J. Bard ECS 庆祝艾伦-J-巴德(Allen J. Bard)逝世
Pub Date : 2024-06-01 DOI: 10.1149/2.f03242if
Frances Chaves
The ECS community is mourning the passing of our colleague and friend, Allen (Al) J. Bard, on February 11, 2024. Throughout a distinguished career that brought him worldwide recognition for his pioneering scientific achievements, Al was a beloved and respected member of the ECS community as an author, Fellow, awardee, editor, meeting participant and organizer, and more.
我们的同事和朋友艾伦-巴德(Allen (Al) J. Bard)于2024年2月11日逝世,ECS社区对此表示哀悼。艾伦在其杰出的职业生涯中取得了举世公认的开创性科学成就,作为作者、研究员、获奖者、编辑、会议参与者和组织者等,他是 ECS 社区备受爱戴和尊敬的一员。
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引用次数: 0
Society News - Summer 2024 社会新闻 - 2024 年夏季
Pub Date : 2024-06-01 DOI: 10.1149/2.003242if
Summer 2024 Society News includes publications updates, editorial updates, division officer slates, and upcoming ECS sponsored meetings.
2024 年夏季学会新闻包括出版物更新、社论更新、分部官员名单以及即将举行的 ECS 主办的会议。
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引用次数: 0
Awards Program Summer 2024 2024 年夏季奖励计划
Pub Date : 2024-06-01 DOI: 10.1149/2.006242if
ECS recognizes outstanding technical achievements in electrochemistry, solid state science, and related technologies, along with exceptional service to the Society. ECS award opportunities are provided in the categories of Society Awards, Division Awards, Section Awards, and Student Awards. Recognizing that today’s emerging scientists are the next generation of leaders in our field, ECS offers competitive fellowships and grants that enable students andyoung professionals to make discoveries and shape science long into the future.
ECS 表彰在电化学、固态科学和相关技术领域取得的杰出技术成就以及为学会提供的卓越服务。ECS 奖项包括学会奖、分部奖、分会奖和学生奖。ECS 认识到今天的新兴科学家是我们领域的下一代领导者,因此提供具有竞争力的研究金和补助金,使学生和年轻专业人员能够在未来的很长一段时间内取得发现并塑造科学。
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引用次数: 0
Student News Summer 2024 2024 年夏季学生新闻
Pub Date : 2024-06-01 DOI: 10.1149/2.008242if
Summer 2024 Student News includes news from the ECS Case Western Reserve University, Central Electrochemical Research Institute, Indian Institute of Technology Madras, MIT, Munich, Texas Tech, University of Michigan, University of Nebraska-Lincoln, and University of Texas at Austin ECS Student Chapters.
2024 年夏季学生新闻包括来自 ECS 凯斯西储大学、中央电化学研究所、印度理工学院马德拉斯分校、麻省理工学院、慕尼黑分校、德克萨斯理工大学、密歇根大学、内布拉斯加大学林肯分校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
Electrochemistry in Action: Iron and Steel Manufacturing 电化学在行动:钢铁制造
Pub Date : 2024-06-01 DOI: 10.1149/2.f06242if
Trevor Braun, Colleen Wallace, Quoc Pham, Sandeep Nijhawan, Christopher L. Alexander
Steel is one of the most manufactured materials in modern society, with 1.9 billion metric tons produced annually for use in building materials, vehicles, wind-turbines, and appliances, among many other applications. As you might expect for something so ubiquitous, the technology used to manufacture steel is also quite mature, having been first identified over 4,000 years ago and heavily industrialized in the 19th century. The general approach is to mine iron ore from the earth’s crust and refine that ore to metallic iron (i.e., ironmaking) which is then combined with carbon and other elements to make steel products (i.e., steelmaking). However, conventional steel manufacturing relies primarily on carbon-based fuels, such as coal, to create the high temperatures (≈ 1600°C) required for the process and can emit as much as 2.2 tons of CO2 per ton of crude steel produced.1 The iron ore reduction step accounts for 90% of CO2 emissions associated with steel production. The heightened effort to decarbonize industrial process and reverse climate change is putting pressure on this 600+ year-old technology to shift to lowcarbon alternatives, especially considering that the steel industry is responsible for ≈ 7% of all global CO2 emissions annually.
钢铁是现代社会制造量最大的材料之一,每年生产 19 亿吨,用于建筑材料、汽车、风力涡轮机和电器等多种用途。对于如此无处不在的材料来说,制造钢铁的技术也相当成熟,早在 4000 多年前就已出现,并在 19 世纪实现了大规模工业化。一般的方法是从地壳中开采铁矿石,然后将铁矿石提炼成金属铁(即炼铁),再与碳和其他元素结合制成钢铁产品(即炼钢)。然而,传统的钢铁生产主要依靠煤炭等碳基燃料来产生生产过程所需的高温(≈ 1600°C),每生产一吨粗钢可排放多达 2.2 吨的二氧化碳1 。1 铁矿石还原步骤占与钢铁生产相关的二氧化碳排放量的 90%。为实现工业过程脱碳和扭转气候变化所做的努力正在加大,这给这项拥有 600 多年历史的技术带来了向低碳替代品转变的压力,特别是考虑到钢铁行业每年的二氧化碳排放量占全球总排放量的 7%。
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引用次数: 0
Meet the New Society Officers, 2024 认识 2024 年新任协会官员
Pub Date : 2024-06-01 DOI: 10.1149/2.f01242if
The Electrochemical Society’s New Officers in 2024
电化学学会 2024 年的新官员
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引用次数: 0
New Members Summer 2024 2024 年夏季新成员
Pub Date : 2024-06-01 DOI: 10.1149/2.007242if
ECS is proud to announce new members for January, February, and March 2024
ECS 荣幸地宣布 2024 年 1 月、2 月和 3 月的新成员名单
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引用次数: 0
People News - Summer 2024 人物新闻 - 2024 年夏季
Pub Date : 2024-06-01 DOI: 10.1149/2.004242if
Summer 2024 People News features remembrances of Ugo Bertocci, Ralph Brodd, William O’Grady, and Vernon Branneky
2024 年夏季《人物新闻》刊登了对 Ugo Bertocci、Ralph Brodd、William O'Grady 和 Vernon Branneky 的怀念文章
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引用次数: 0
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The Electrochemical Society Interface
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