On average, about 1.8 tons of carbon dioxide are produced per ton of steel produced. This accounts for emissions from both the iron and steelmaking processes. Efforts are being made within the industry to reduce these emissions through technological innovations and adoption of cleaner energy sources.
The grams of Carbon present in C12H22O11 depends on how many grams of C12H22O11 you have. For every 342 grams of C12H22O11 that you have, you will have 12 g of carbon.
Taking coal to contain 50 percent carbon, which combines with oxygen during burning to form CO2, we can arrive at 1.83 kg CO2 for every 1 kg of coal burned. Another way to put it, taking the efficiency of power stations into account, is that 950 grams of CO2 is evolved for every KWh of electricity produced. Note that for natural gas it is more like 600 g per KWh for natural gas powered plants.
carbon= 12.01 oxygen=16*2 12.01+32=44.01 CO2
Around 270 million metric tons of sulfuric acid are produced per year worldwide.
A gram of CO2 has more molecules than a gram of H2 because CO2 has more atoms per molecule (three atoms in CO2 compared to two in H2). Thus, CO2 will have a higher total number of molecules per gram.
The amount of CO2 produced by a 10 Megawatt power station would depend on the type of fuel it uses. For example, a coal-fired power station would produce around 25,000 tons of CO2 per year, while a natural gas power station would produce around 15,000 tons of CO2 per year.
Depending on the source of natural gas. Approximately 51kg of CO2 per GJ.
Too much !
steel is worth about $0.10 per kilo
Two Co2 molecules are produced per citric acid cycle. Since the citric acid cycle occurs twice with every molecule of glucose metabolized, a total of 4 C02 molecules are produces for every glucose molecule
To find the mass of CO2 produced, first calculate the moles of C2H4 using its molar mass. Then, use the balanced equation to determine the moles of CO2 produced per mole of C2H4 reacted. Finally, convert moles of CO2 to grams using the molar mass of CO2.
To calculate the cellular respiration rate in moles of glucose per minute, you need to convert the volume of CO2 produced into moles using the ideal gas law. Then, you can use the stoichiometry of the cellular respiration reaction to relate the moles of CO2 produced to moles of glucose consumed. Once you have both values, you can determine the rate of glucose consumption per minute.
No Bingo
The amount of CO2 produced daily varies significantly depending on factors such as population, industrial activity, and energy consumption. Globally, it is estimated that around 100 million metric tons of CO2 are emitted each day. This figure can fluctuate based on seasonal energy demands, economic activity, and advancements in carbon-reduction technologies. Reducing daily CO2 emissions is critical for mitigating climate change.
Walking does not produce co2, apart from breathing. We inhale air and exhale CO2. The more effort, the greater the heart rate, the higher the co2 figure. However, this is part of the natural carbon cycle. The carbon dioxide we exhale was removed from the atmosphere a short time before, when the food we eat was grown. If your question is to compare walking with driving, walking is far better for the environment.
two :]
The grams of Carbon present in C12H22O11 depends on how many grams of C12H22O11 you have. For every 342 grams of C12H22O11 that you have, you will have 12 g of carbon.