» Electrochemical Reaction in the Voltaic Pile

Electrochemical Reaction in the Voltaic Pile

1800
  • Alessandro Volta

The electric current in a Voltaic pile is produced by a redox reaction. At the zinc anode, zinc metal is oxidized, releasing two electrons per atom ([latex]Zn \rightarrow Zn^{2+} + 2e^{-}[/latex]). These electrons travel through the external circuit to the copper cathode. There, hydrogen ions from the aqueous electrolyte are reduced, forming hydrogen gas ([latex]2H^{+} + 2e^{-} \rightarrow H_2[/latex]).

The operation of the Voltaic pile is governed by the principles of electrochemistry. Each metal has a different electrode potential, or tendency to lose electrons. Zinc is more reactive than copper, meaning it has a more negative electrode potential and is more easily oxidized. This difference in potential is what drives the flow of electrons from the zinc (anode) to the copper (cathode) through an external wire. The electrolyte’s role is crucial; it contains ions that can move between the electrodes to balance the charge, completing the electrical circuit. In a simple brine (NaCl) or acid (H2SO4) electrolyte, water molecules provide the hydrogen ions (H+) for the reaction at the cathode.

The overall reaction for a pile using a sulfuric acid electrolyte is [latex]Zn + 2H^{+} \rightarrow Zn^{2+} + H_2[/latex]. The copper itself does not chemically react; it serves as a noble, conductive surface for the reduction of hydrogen ions. The potential of a single zinc-copper cell is approximately 0.76 volts, though this can vary with the electrolyte concentration and temperature. This fundamental mechanism of converting stored chemical energy into electrical energy is the basis for all modern batteries, albeit with different materials and more sophisticated designs to improve efficiency and longevity.

UNESCO Nomenclature: 2203
– Electrochemistry

类型

Chemical Process

Disruption

Foundational

使用方法

Widespread Use

Precursors

  • Antoine Lavoisier’s work on the role of oxygen in combustion and oxidation
  • The concept of chemical elements and their reactivity series
  • Understanding of ionic compounds and their behavior in aqueous solutions
  • Henry Cavendish’s identification of hydrogen gas

应用

  • all modern batteries (alkaline, lead-acid, lithium-ion)
  • fuel cells
  • industrial electrolysis for chemical production
  • corrosion prevention through cathodic protection
  • electrorefining of metals

专利:

Potential Innovations Ideas

级别需要会员

您必须是!!等级!!会员才能访问此内容。

立即加入

已经是会员? 在此登录
Related to: redox reaction, anode, cathode, oxidation, reduction, electrolyte, electrode potential, electrochemistry

发表回复

您的邮箱地址不会被公开。 必填项已用 * 标注

迎接新挑战
Mechanical Engineer, Project, Process Engineering or R&D Manager
有效的产品开发

可在短时间内接受新的挑战。
通过 LinkedIn 联系我
Plastic metal electronics integration, Design-to-cost, GMP, Ergonomics, Medium to high-volume devices & consumables, Lean Manufacturing, Regulated industries, CE & FDA, CAD, Solidworks, Lean Sigma Black Belt, medical ISO 13485

我们正在寻找新的赞助商

 

您的公司或机构从事技术、科学或研究吗?
> 给我们发送消息 <

接收所有新文章
免费,无垃圾邮件,电子邮件不分发也不转售

或者您可以免费获得完整会员资格以访问所有受限制的内容>这里<

Historical Context

(if date is unknown or not relevant, e.g. "fluid mechanics", a rounded estimation of its notable emergence is provided)

Related Invention, Innovation & Technical Principles

滚动至顶部

你可能还喜欢