Two reasons. Technically if the room is well sealed, the oxygen level in the room could fall to dangerous levels, which could lead to death. The oxidation process (burning) will remove oxygen from the room. Proof is the old drop a lighted match in the bottle, close it up with your finger or lid, and it will go out. Using up the oxygen and also lower the air-pressure in the bottle.
Second reason is incomplete burning which always happens will produce CO which is carbon monoxide. This easily enters the blood stream via lungs, and will attach itself to a site on red blood cells, hemoglobin. It is not easily given up in the lungs and accumulation of CO will give you that typical "blueish" finger nail or poor skin color, and you will pass-out. If you are not rescued, in time you will die from lack of oxygen or carbon monoxide poisoning.
In addition, if there is any sulfur compounds in the fuel as impurities, additional toxic materials will be present and can add damage to the living cells, and of course cause death.
Burning carbon-based fuel consumes oxygen and produces carbon monoxide, a toxic gas that can be lethal in high concentrations. In a closed space, the lack of ventilation can lead to a build-up of carbon monoxide, displacing oxygen and causing asphyxiation. It is important to ensure proper ventilation when using carbon-based fuels indoors to prevent this dangerous situation.
Carbon Dioxide (CO2) and Methane. "Methane is considered the No. 2 greenhouse gas based on the amount of warming it causes and the amount in the atmosphere. The total effect of methane on global warming is about one-third that of man-made carbon dioxide." (source: http://www.msnbc.msn.com/id/27400533/)
The covalent compound based on the formula CO2 is carbon dioxide.
A carbon-based compound is considered any compound that contains carbon atoms bonded together with other elements, such as hydrogen, oxygen, nitrogen, and more. These compounds are fundamental for life as they form the basis of organic molecules found in living organisms.
Carbon itself cannot be magnetized because it is a diamagnetic material, which means it weakly repels magnetic fields. However, carbon-based materials like iron-carbon alloys can be magnetized by exposing them to a strong external magnetic field.
Burning carbon-based fuels produces carbon monoxide, a colorless and odorless gas that can be toxic when inhaled. When burned in a closed room or building, the buildup of carbon monoxide can lead to poisoning, causing symptoms like dizziness, headache, and even death. Proper ventilation is crucial when using carbon-based fuels indoors to prevent such dangers.
Burning carbon-based fuel consumes oxygen and produces carbon monoxide, a toxic gas that can be lethal in high concentrations. In a closed space, the lack of ventilation can lead to a build-up of carbon monoxide, displacing oxygen and causing asphyxiation. It is important to ensure proper ventilation when using carbon-based fuels indoors to prevent this dangerous situation.
A carbon based molecule is a polymer. Edit: A carbon based molecule does not have to be a polymer, although some polymers are carbon based. For example methane - CH4 is carbon based and not a polymer. Carbon based molecules are called organic compounds.
Several processes release carbon as gases (carbon dioxide, carbon monoxide, methane) into the atmosphere. Three important processes are fuel combustion, respiration, and methane release. -- Combustion of carbon-based fuels (wood, alcohol, biogas, or fossil fuels) remove oxygen and combine it to form carbon dioxide and other compounds. -- Plant and animal respiration release carbon dioxide. This is the reverse operation of photosynthesis. -- Methane is released from ruminant animals, from decomposition of organisms, and from ocean-bottom clathrate deposits.
Carbon Dioxide (CO2) and Methane. "Methane is considered the No. 2 greenhouse gas based on the amount of warming it causes and the amount in the atmosphere. The total effect of methane on global warming is about one-third that of man-made carbon dioxide." (source: http://www.msnbc.msn.com/id/27400533/)
Covalent compounds composed of carbon-based molecules include hydrocarbons (such as methane, ethane, and benzene), alcohols (such as ethanol and methanol), acids (such as acetic acid), and amino acids (such as glycine and alanine). These compounds are characterized by carbon atoms forming covalent bonds with hydrogen, oxygen, nitrogen, and other elements.
Carbon can be used in dangerous ways such as producing carbon monoxide, a toxic gas formed from incomplete combustion of carbon-containing materials. Additionally, carbon can be used in explosives like black powder or carbon-based materials in chemical warfare agents. Lastly, carbon fibers can be hazardous if inhaled during production due to their small size and respiratory irritant properties.
There are two elements.They are carbon and hydrogen.
All carbon based fuels produce carbon dioxide when burned. These include:fossil fuels (coal. oil, natural gas)alcoholsbio-fuels (wood, charcoal, waste burning including cremation)specialty industrial fuels (acetylene etc.)carbon monoxideCoal and petroleum are the two primary fossil fuels. Oxidizing methane also releases CO2, but that is 25 times better than releasing methane, itself an even more potent greenhouse gas.
All carbon based fuels produce carbon dioxide when burned. These include:fossil fuels (coal. oil, natural gas)alcoholsbio-fuels (wood, charcoal, waste burning including cremation)specialty industrial fuels (acetylene etc.)carbon monoxideCoal and petroleum are the two primary fossil fuels. Oxidizing methane also releases CO2, but that is 25 times better than releasing methane, itself an even more potent greenhouse gas.
Variable gases in the atmosphere include water vapor, carbon dioxide, methane, and ozone. These gases can fluctuate in concentration based on factors such as weather patterns, human activities, and natural processes.
YES , IT IS POSSIBLE IF THE ACTIVATION ENERGY OF MOISTURE CAN BE REDUCED BY A CATALYST. Activation energy of moisture???? You are talking about converting water to hydrogen and then forming methane in a strongly oxidizing environment (burning bagasse). Both the conversion of water to hydrogen and the conversion of carbon based entities to methane require energy. This would actually end up costing you in efficiency if this were to work....