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The main environmental concern about lead acid batteries is lead contamination. Many of these car batteries are recycled but some are disposed of incorrectly and each battery contains 18 pounds of lead. This lead could leak into surrounding soil and air thus causing contamination. Lead is extremely toxic for humans and could cause kidney or brain damage.

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Can you explain the working of lead acid battery?

In a lead acid battery, chemical reactions between lead dioxide, spongy lead, and sulfuric acid generate electrical energy. When the battery is charged, lead dioxide and spongy lead transform into lead sulfate and water. During discharge, the reverse reaction occurs, causing electrons to flow through the external circuit, producing electricity.


Can you replace the sulphuric acid in a lead acid battery with acetic acid or vinegar or any other natural organic acid?

No, it is not recommended to replace the sulfuric acid in a lead acid battery with acetic acid or vinegar. Lead acid batteries require sulfuric acid for proper function due to its chemical properties and conductivity. Substituting with organic acids can damage the battery and lead to inefficient performance. It's best to stick with sulfuric acid for lead acid batteries.


What is the limiting reactant of a lead acid battery?

In a lead acid battery, the limiting reactant is typically the sulfuric acid (H2SO4) electrolyte. This is because the sulfuric acid provides the ions needed for the electrochemical reactions to occur at the electrodes. If there is not enough sulfuric acid present, the battery's performance can be limited.


Is sulfuric acid the same as battery acid?

Well, honey, technically speaking, sulfuric acid is the main component in most car batteries, so yeah, it's a big player in what you might call "battery acid." But if you're asking if they're exactly the same thing, well, not quite. Battery acid usually refers to a diluted form of sulfuric acid used in car batteries, so it's like saying a margarita is the same as straight tequila - similar, but not quite.


Is battery acid strong or week?

Battery acid, which is usually sulfuric acid in lead-acid batteries, is considered to be strong because it is highly corrosive and can cause severe chemical burns upon contact with skin. It is important to handle it with care and use appropriate safety precautions when working with battery acid.

Related Questions

What is the difference between a lead-acid accumulator and a lead-acid battery?

There is no difference between lead acid accumulator and lead acid battery.


What is inside a lead acid battery?

sulfuric acid and lead.


What type of battery does the 1997 Chrysler Sebring have?

Side post, lead acid, automotive battery.Side post, lead acid, automotive battery.


Can water work in a acid battery?

Water is required in a lead acid battery.


What type of battery is a car battery?

Lead - acid


Is a lead acid car battery the same as a 9 volt alkaline battery?

No, a lead acid battery is a wet cell battery and a 9 volt alkaline battery is a dry cell battery.


What causes a battery to wear out?

A car battery is made of three components, lead, sulfuric acid and water, over time the acid erodes the lead and the lead is the main charging part of a battery that is why vehicle batteries are called lead-acid


What has six wet cells made of lead and lead dioxide plates that are in sulfuric acid solution?

A flooded lead acid battery, such as an automotive battery.


What is produced as a lead-acid battery is discharged?

When a lead acid battery becomes discharged both electrodes undergo chemical changes to form lead sulphate and eventually the battery dies.


What substance is reduced in a lead-acid storage battery?

Lead dioxide on the positive electrode is reduced to lead sulfate during discharge in a lead-acid storage battery.


What electrolyte is used in a lead storage battery?

The electrolyte in a lead storage battery is a solution of sulfuric acid and water.


Can you explain the working of lead acid battery?

In a lead acid battery, chemical reactions between lead dioxide, spongy lead, and sulfuric acid generate electrical energy. When the battery is charged, lead dioxide and spongy lead transform into lead sulfate and water. During discharge, the reverse reaction occurs, causing electrons to flow through the external circuit, producing electricity.