You get Lead and Carbon dioxide. Of course, you have to heat them.
no idk help me :0
Lead and oxygen combine to form lead oxide (PbO).
Heating carbon with lead oxide will result in the production of lead metal. This is a common reduction reaction where carbon acts as a reducing agent to convert lead oxide into lead metal.
The reduction of lead oxide with carbon to produce lead is an exothermic reaction. This is because energy is released in the form of heat during the formation of lead from lead oxide and carbon.
No.Lead (ii) carbonate --> lead (ii) oxide + carbon
When lead oxide reacts with carbon, the products are lead metal and carbon dioxide. The balanced chemical equation for this reaction is: PbO + C -> Pb + CO2.
lead oxide + carbon-> lead + carbon dioxide
Lead and oxygen combine to form lead oxide (PbO).
When carbon reacts with lead oxide, it produces lead metal and carbon dioxide as byproduct.
Lead can be extracted from lead oxide through a reduction reaction. When lead oxide is heated in the presence of carbon (typically in the form of coke), carbon reduces the lead oxide to produce lead metal and carbon dioxide gas. This reaction allows the lead to be separated from the oxide compound.
Heating carbon with lead oxide will result in the production of lead metal. This is a common reduction reaction where carbon acts as a reducing agent to convert lead oxide into lead metal.
The reduction of lead oxide with carbon to produce lead is an exothermic reaction. This is because energy is released in the form of heat during the formation of lead from lead oxide and carbon.
When lead oxide is heated with carbon, carbon dioxide and lead are formed as the products 2PbO+C -->CO2+2Pb
Carbon is used to extract lead from lead oxide because it acts as a reducing agent in the smelting process. When carbon is heated with lead oxide (PbO), it reacts to form carbon dioxide (CO2) and lead (Pb), effectively reducing the lead oxide to elemental lead. This process is thermodynamically favorable and economically viable, making carbon a practical choice for extracting lead in metallurgical operations.
Lead being less electropositive will be given out
If you could get a high enough temp. you could heat it in a retort of some kind and collect the oxygen given off and lead would be left. The old school way was to heat the lead oxide on a block of carbon using a bunsen and blow pipe to provide extra oxygen for a hotter flame. The extra heat caused the oxygen from the lead oxide to combine with the carbon to form carbon dioxide and lead was left on the carbon block.
No.Lead (ii) carbonate --> lead (ii) oxide + carbon
When lead oxide reacts with carbon, the products are lead metal and carbon dioxide. The balanced chemical equation for this reaction is: PbO + C -> Pb + CO2.