The gas dehydration is:
As for natural gas dehydration natural gas either from natural production or storage reservoirs contain water, which may condense and may also form solid gas hydrates to block pipeline flow and controlsystems. Natural Gas in transit to market should be dehydrated to a controlled water content to avoid hydrates, as well to minimize the corrosion problems. Dehydration of Natural Gas is the removal of the water that is associated with natural gases in vapor form. The natural gas industry has recognized that dehydration is necessary to ensure smooth operation of gas transmission lines. Dehydration prevents the formation of gas hydrates and reduces corrosion. Unless gases are dehydrated, liquid water may condense in pipelines and accumulate at low points along the line, reducing its flow capacity. Refer to link below for more information.
Dehydration synthesis
The process is dehydration+synthesis.
Dehydration. hydrolysis
dehydration synthesis
Dehydration synthesis
dehydration synthesis or condensation reaction
Dehydration reactions.
Dehydration synthesis is the joining of two compounds due to the loss of a water molecule between them. It is an example of an endergonic process, which uses energy for the process to occur.
The process is called dehydration.
Polymers of carbohydrates, fats, and proteins are all synthesized from monomers through the process of dehydration synthesis or condensation reaction. In this process, monomers are joined together by removing a water molecule, which forms a covalent bond between the monomers, resulting in the formation of a polymer.
The dehydration of cyclohexanol can form two isomers: cyclohexene and cyclohexadiene. These isomers result from different locations of the double bond formed during the dehydration process.
Many polymer are formed by the elimination of a water molecule when two monomers bond, thus it is referred to as dehydration.