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相关概念视频

Batteries and Fuel Cells03:12

Batteries and Fuel Cells

27.0K
A battery is a galvanic cell that is used as a source of electrical power for specific applications. Modern batteries exist in a multitude of forms to accommodate various applications, from tiny button batteries such as those that power wristwatches to the very large batteries used to supply backup energy to municipal power grids. Some batteries are designed for single-use applications and cannot be recharged (primary cells), while others are based on conveniently reversible cell reactions that...
27.0K
Electrogravimetric Analysis: Overview01:30

Electrogravimetric Analysis: Overview

201
Electrogravimetric analysis measures the weight of an analyte deposited electrolytically onto a suitable working electrode. This method involves applying a potential to a pre-weighed electrode submerged in a solution, which results in the desired substance being deposited through reduction at the cathode or oxidation at the anode. The electrode's weight is recorded after deposition, and the difference in weight gives the analyte's weight in the solution.
To test the completeness of the...
201
DC Battery01:21

DC Battery

746
A conductor needs to be a component of a path that creates a closed loop or full circuit to have a continuous current flowing through it. A current starts to flow if an electric field is created inside an isolated conductor that is not part of a full circuit. The conductor quickly develops a net positive charge at one end and a net negative charge at the other. These charges generate an electric field opposite the direction of the applied electric field, which reduces the current. Eventually,...
746
Electrodeposition01:08

Electrodeposition

590
Electrodeposition is a technique used to separate an analyte from interferents by electrochemical processes. Here, the analyte is a metal ion that can be deposited on an electrode immersed in the sample solution. The electrochemical setup consists of an anode and a cathode. When an electric current is applied to the setup, oxidation occurs at the anode. At the cathode, which consists of a large metal surface, metal ions undergo reduction and deposit onto the surface.
Electrodeposition can...
590
Voltammetry: Factors Affecting Measurements01:21

Voltammetry: Factors Affecting Measurements

129
A current produced due to the redox reactions of the analyte at the working and auxiliary electrodes is called a faradaic current. The reaction can be divided into two types. The current generated due to the reduction of the analyte is called cathodic current, and it carries a positive charge. In contrast, the current produced by analyte oxidation is known as an anodic current, and it has a negative charge. The applied potential at the working electrode determines the faradaic current flow, and...
129

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相关实验视频

Updated: Jun 3, 2025

Identification and Quantification of Decomposition Mechanisms in Lithium-Ion Batteries; Input to Heat Flow Simulation for Modeling Thermal Runaway
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Identification and Quantification of Decomposition Mechanisms in Lithium-Ion Batteries; Input to Heat Flow Simulation for Modeling Thermal Runaway

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一项关于电池回收过程和风险估计的研究.

Taeho Kim1, Cheolhee Yoon1, Seungho Jung1

  • 1Department of Environmental and Safety Engineering, Ajou University, Suwon 16499, Republic of Korea.

International journal of environmental research and public health
|January 8, 2025
PubMed
概括

回收离子电池对于可持续发展至关重要. 这项研究确定硫酸漏是风险最高的过程,而拆卸和热处理对电池回收安全性构成最低风险.

科学领域:

  • 材料科学 材料科学 材料科学
  • 环境科学 环境科学
  • 化学工程是化学工程的重要组成部分.

背景情况:

  • 对二次电池的需求不断增长,需要可持续的回收利用.
  • 冲突矿物质的担忧和有限的储量凸显了电池回收研究的紧迫性.
  • 缺乏安全数据和使用危险化学品在电池回收过程中存在重大风险.

研究的目的:

  • 从现有文献中概括电池回收过程.
  • 估计与电池回收的每个步骤相关的相对风险.
  • 为电池回收行业的定量风险评估提供基础数据.

主要方法:

  • 基于文献审查的一般化电池回收过程.
  • 来自MIL-STD-882E的风险评估代码 (RAC) 矩阵用于风险估计.
  • NFPA 704用于严重性评估和WEEE报告与事件分析进行概率确定.

主要成果:

  • 使用硫酸 (H2SO4) 提取的浸出过程被确定为最高风险.
  • 拆卸和热处理过程被发现具有最低的相关风险.
  • 每个过程的计算概率因子为未来的定量风险评估提供了数据.
关键词:
在 RAC 矩阵中使用 RAC 矩阵.电池 电池 电池 电池 电池 电池电池回收 电池回收 电池回收 电池回收这是水力金工艺的过程.风险评估 风险评估 风险评估

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Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries
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Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries

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The Effect of Charging and Discharging Lithium Iron Phosphate-graphite Cells at Different Temperatures on Degradation
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The Effect of Charging and Discharging Lithium Iron Phosphate-graphite Cells at Different Temperatures on Degradation

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相关实验视频

Last Updated: Jun 3, 2025

Identification and Quantification of Decomposition Mechanisms in Lithium-Ion Batteries; Input to Heat Flow Simulation for Modeling Thermal Runaway
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Identification and Quantification of Decomposition Mechanisms in Lithium-Ion Batteries; Input to Heat Flow Simulation for Modeling Thermal Runaway

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Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries
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Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries

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The Effect of Charging and Discharging Lithium Iron Phosphate-graphite Cells at Different Temperatures on Degradation
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结论:

  • 了解和量化电池回收的风险对于安全管理至关重要.
  • 该研究为评估二次电池回收的风险提供了一个框架.
  • 预计这些发现将成为推动安全和可持续电池回收技术的关键数据.