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What is the transfer of nitrogen from air to soil to organism?

Nitrogen gas in the air is converted into usable forms by soil bacteria through a process called nitrogen fixation. Plants then take up these forms of nitrogen from the soil. When organisms consume plants, they obtain nitrogen from the plants, and the nitrogen cycles through the food chain as organisms are consumed by other organisms.


How does nitrogen return to atmosphere?

When organisms die, their bodies decompose bringing the nitrogen into soil on land or into ocean water. Bacteria alter the nitrogen into a form that plants are able to use. Other types of bacteria are able to change nitrogen dissolved in waterways into a form that allows it to return to the atmosphere.


What role does the denitrification play in the nitrogen?

When organisms die, decomposers return nitrogen to the soil as ammonia. The ammonia may be taken up again by producers. Other soil bacteria convert nitrates into nitrogen gas in a process called denitrifrication. this process releases nitrogen into the atmosphere once again.


What is the transfer of nitrogen from air to soil to organism and back to air or soil?

Nitrogen is transferred from the atmosphere to the soil through processes like nitrogen fixation by bacteria or lightning, where plants can uptake this nitrogen from the soil. Organisms then consume these plants, incorporating the nitrogen into their own tissues. When organisms die and decompose, nitrogen is released back into the soil, where it can be recycled back into the atmosphere as nitrogen gas through denitrification by bacteria, completing the nitrogen cycle.


How does nitrogen return to the environment?

Nitrogen returns to the environment through a process called nitrogen fixation, where certain organisms convert atmospheric nitrogen into forms that plants can use. Once plants take up nitrogen, it enters the food chain and eventually returns to the soil through decomposition, animal waste, or dead organisms, completing the nitrogen cycle.


What organisms return nitrogen back into the air?

The organisms that are involved in the movement of nitrogen between the air and soil and back to the air are plants and bacteria. When plants decompose they release nitrogen and bacteria fixes nitrogen back into the air.


What humans do to return nitrogen to the soil?

Humans return nitrogen to the soil primarily by using fertilizers containing nitrogen compounds, such as ammonium nitrate or urea. They can also crop rotation, which involves planting leguminous plants that can fix nitrogen back into the soil or by incorporating nitrogen-rich organic matter like compost and manure.


Algae help return nitrogen to the soil?

Yes, certain types of algae can fix atmospheric nitrogen into a form that is usable by plants, helping to replenish nitrogen levels in the soil. This process, known as nitrogen fixation, plays a vital role in ecosystem productivity and nutrient cycling.


What are organisms that return nutrients to the soil called?

decomposers


How does nitrogen returned to the atmosphere?

When organisms die, their bodies decompose bringing the nitrogen into soil on land or into ocean water. Bacteria alter the nitrogen into a form that plants are able to use. Other types of bacteria are able to change nitrogen dissolved in waterways into a form that allows it to return to the atmosphere.


How does nitrogen in dead organisms get released back into soil?

A dead organisms nitrogen rich compounds are taken in by decomposers or are released back into the environment. The compounds are either recycled again by soil micro-organisms or are converted by detrifying bacteria back into nitrogen gas.Answer this question…


How is the nitrogen in dead organisms released back into the soil?

When dead organisms decay, decomposer organisms break down their tissues and release nitrogen in the form of ammonium. This ammonium is further converted into nitrates by nitrifying bacteria in the soil. These nitrates can then be taken up by plants as nutrients, completing the nitrogen cycle.