Yes.Through stomata water can released in the atmosphere.
Carbon dioxide and sulfur dioxide are formed when carbon disulfide vapor is burned in excess oxygen.
The burning of fossil fuels releases carbon dioxide into the carbon-oxygen cycle, which contributes to the greenhouse effect and global warming. This excess carbon dioxide disrupts the balance of the cycle and leads to negative impacts on the environment and climate.
Excess, or additional carbon dioxide is added to the atmosphere only by the burning of fossil fuels (coal, oil and natural gas), and a very small amount from volcanic activity.All other carbon dioxide moves in and out of the oceans, atmosphere and land as part of the normal carbon cycle, which includes the growing and dying of vegetation.Fossil fuels release carbon dioxide that was taken out of the atmosphere (when the vegetation grew) 300 million years ago, so it is extra.
The major anthropogenic sources of excess carbon dioxide in the atmosphere are burning fossil fuels for electricity, transportation, and heating, as well as deforestation and land-use changes that release stored carbon into the atmosphere. These activities contribute to the increase in greenhouse gases, which leads to global warming and climate change.
When oxygen reacts with carbon monoxide, it forms carbon dioxide. This reaction releases energy and is often used in combustion processes. Carbon monoxide is oxidized to carbon dioxide in the presence of excess oxygen.
Carbon dioxide and sulfur dioxide are formed when carbon disulfide vapor is burned in excess oxygen.
The burning of fossil fuels releases carbon dioxide into the carbon-oxygen cycle, which contributes to the greenhouse effect and global warming. This excess carbon dioxide disrupts the balance of the cycle and leads to negative impacts on the environment and climate.
Carbon Dioxide & Water, Complete burning with excess of oxygen gives out Carbon Dioxide(CO2) + Water , While incomplete burning with limited amount of oxygen gives out Carbon monoxide (CO) + Water
Humans disrupt the carbon cycle by burning fossil fuels, releasing excess carbon dioxide into the atmosphere. This disrupts the natural balance of carbon stored in the atmosphere, oceans, and land. Likewise, deforestation and land-use changes can disrupt the oxygen cycle by reducing the number of trees that absorb carbon dioxide and release oxygen during photosynthesis.
carbon dioxide
Yes, plants help the environment by absorbing carbon dioxide during photosynthesis and converting it into oxygen. This process helps in reducing the amount of carbon dioxide in the atmosphere, thus playing a vital role in mitigating climate change.
One can effectively eliminate excess carbon dioxide from the body by breathing out more frequently and deeply, allowing the lungs to expel the excess carbon dioxide through exhalation. This process helps maintain the body's acid-base balance and prevent respiratory issues.
When oxygen is produced more than carbon dioxide, it leads to an increase in oxygen levels in the atmosphere. This can occur during processes like photosynthesis in plants, which convert carbon dioxide into oxygen. The excess oxygen can benefit organisms that rely on it for respiration.
Oxygen in excess: carbon dioxide is obtained.Not sufficient oxygen: carbon monoxide is obtained.
During photosynthesis, plants and other producers get carbon dioxide from the air or water. Some of this carbon dioxide comes from people and other animals that release it when they breathe. Excess oxygen is released from the leaves into the air. Plants use some of the glucose for energy, store some to use later , and use some to build plant parts.
Yes, an excess of carbon dioxide in the blood is called hypercapnia. Hypercapnia can result from conditions such as hypoventilation or lung diseases that impair gas exchange, leading to inadequate removal of carbon dioxide from the body.
Algae play a critical role in maintaining carbon dioxide and oxygen levels through photosynthesis. During photosynthesis, algae convert carbon dioxide into oxygen, which helps balance the atmospheric oxygen levels. Algae also absorb carbon dioxide from the atmosphere, helping to mitigate excess carbon dioxide and reduce greenhouse gas emissions.