The reactants when methane burns in oxygen are methane and oxygen. The products are CO2, water and heat about 890 Kj/mole is given out. The equation is : CH4(g) + 2O2 _______> CO2 + 2H2O + Heat (-890 Kj/mole) When one mole of methane gas reacts with (burns in) 2 moles of oxygen gas we get 1 mole of carbon dioxide and 2 moles of water and 890 Kilo joules of heat is released. This reaction is exothermic as heat is released and a combustion reaction as methane gas is burned in free supply oxygen not limited supply otherwise carbon monoxide (CO) will be formed. Hope that helped you out. :-D
When methane is burned, it reacts with oxygen to form carbon dioxide and water. This process releases energy in the form of heat and light, making it an exothermic reaction. The formation of the stronger bonds in carbon dioxide and water releases more energy than is required to break the bonds in methane and oxygen.
When methane is burned, it reacts with oxygen to produce carbon dioxide (CO2) and water (H2O) as byproducts. This chemical process releases energy in the form of heat. Methane is a potent greenhouse gas, but burning it can be a cleaner alternative to releasing it directly into the atmosphere.
When methane combines with oxygen in the presence of heat or a spark, it undergoes combustion to produce carbon dioxide, water, and heat energy. This reaction is exothermic, meaning it releases energy in the form of heat.
The chemical reaction of methane oxydation (burning) is: CH4 + 2O2 = CO2 + H2O
The reactants when methane burns in oxygen are methane and oxygen. The products are CO2, water and heat about 890 Kj/mole is given out. The equation is : CH4(g) + 2O2 _______> CO2 + 2H2O + Heat (-890 Kj/mole) When one mole of methane gas reacts with (burns in) 2 moles of oxygen gas we get 1 mole of carbon dioxide and 2 moles of water and 890 Kilo joules of heat is released. This reaction is exothermic as heat is released and a combustion reaction as methane gas is burned in free supply oxygen not limited supply otherwise carbon monoxide (CO) will be formed. Hope that helped you out. :-D
The heat is produced by the formation of chemical bonds between carbon and oxygen, and between hydrogen and oxygen. So CO2 and water are the necessary products when fossil fuel is burned, without which there would be no heat.
Burning release heat, the molecular structure of methane is destroyed and the bonding energy is released.
When methane is burned, it reacts with oxygen to form carbon dioxide and water. This process releases energy in the form of heat and light, making it an exothermic reaction. The formation of the stronger bonds in carbon dioxide and water releases more energy than is required to break the bonds in methane and oxygen.
No it is not essential. It will burn in air or oxygen if ignited by some spark or match but there are many other ways to get burning in chemistry. The requirements for burning are fuel, oxygen and heat. Oxygen can be supplied by the air for many fires. Heat must often be introduced initially to ignite the fuel but the heat of combustion will then be enough to sustain the burning. Fuel could be methane but there are many other potential fuels in chemistry, for example hydrogen, propane, wood ... Many dry foodstuffs will burn in air if lit.
When methane is burned, it reacts with oxygen to produce carbon dioxide (CO2) and water (H2O) as byproducts. This chemical process releases energy in the form of heat. Methane is a potent greenhouse gas, but burning it can be a cleaner alternative to releasing it directly into the atmosphere.
Petroleum energy is released through combustion, where the fuel is burned in the presence of oxygen to release heat energy. This heat energy is then used to generate electricity or power engines in vehicles and machinery.
•When methane is in the digester, it can be burned to heat your water or generate electricity. It is like lighting a match inside a balloon. You don't get the smells or the odors, meaning less fossil fuels are burned.
When methane combines with oxygen in the presence of heat or a spark, it undergoes combustion to produce carbon dioxide, water, and heat energy. This reaction is exothermic, meaning it releases energy in the form of heat.
The chemical reaction of methane oxydation (burning) is: CH4 + 2O2 = CO2 + H2O
That gas is methane, released from rectum. This gas is produced by colonoc bacteria, through there metabolic processes, on left over food material.
When fuel is burned, the energy released is in the form of heat and light. This energy is a result of the chemical reaction between the fuel and oxygen in the air, which produces heat energy that can be used for various purposes such as heating, transportation, or electricity generation.