None you retard your own natural gas.. teehee. :)
MOO!!!!
maybe because the gases it contains
When hot air is passed through hot coke, two gases that are formed are carbon monoxide (CO) and carbon dioxide (CO2). This process is known as the destructive distillation of coal, where coke is produced as a byproduct along with these gases.
coke probably does emit gases, but you dont see them cause they are clear, but it doesnt emit smoke, which i am guessing would refer to carbon dioxide, because burning coke does not create it as one of its products. i am not sure what coke has in it exactly, so if someone can explain better then please do.
Low temperature carbonization : It is done at a temperature off about 500-700 C. It produces semi coke due to incomplete carbonization of coal. The coke oven gases produced have a lower calorific value. The tar produced is aliphatic in nature. The coke produced is more reactive, weaker in strength and large in size. High Temperature Carbonization : Done at a temperature range of 900-1100 C. It produces metallurgical coke. The coke gases have a higher calorific value. The tar produced contains more of the aromatics and the coke obtained is denser and less reactive
carbon dioxide Answer: Coke is produced in an oxygen deprived atmosphere so the combustion gases include both carbon dioxide and carbon monoxide. The coking process drives out various aromatics from the coal which may escape (although most are retained as they are valuable) these include benzene and toluene. Cracked and reformed hydrocarbons may also be emitted such as PAHs
sugar, gases, coke, omo, vanish clean and one witches finger
Coke reactivity refers to the ability of coke, a carbon-rich material derived from coal, to undergo chemical reactions, particularly in processes like iron and steel production. It measures how easily coke can react with gases such as carbon dioxide and oxygen, influencing its performance in blast furnaces. Higher reactivity can enhance the efficiency of the reduction processes but may also lead to faster consumption of the coke. Understanding coke reactivity is essential for optimizing metallurgical processes and improving overall production efficiency.
doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke doing coke
recovery type of coke-oven is having recovery of various products such as tar, benzene, sulpher etc as a by product of coke. where as no such by produst is been produced in non recovery coke-oven. recovery batteries been operated under positive pressure where as non recovery batteries work under negative pressure.
diet coke has acid in it just less than coke diet coke does not have sugar either which coke and coke zero has
i found that it was coke