A best case scenario for the wet route would be obtained when
the microalgae residues can be converted selectively into H2 and
CO2., which can possibly be achieved by choosing a suitable catalyst
and appropriate reaction conditions. In that case, the CO2 can
be recycled to the pond and the H2 can be used for hydrogenation
of the extracted lipids. The high pressurized CO2 that is released
from the SCWG process will benefit the CO2 supply process by
reducing compression and transportation costs. In this best case
scenario (Fig. 4b), green diesel and H2 will be the main end products,
both are high valuable biofuels or biochemicals. Our analysis
reveals that this route shows a high potential FER (2.21) and,
hence, sets a direction for future research and development.
A best case scenario for the wet route would be obtained whenthe microalgae residues can be converted selectively into H2 andCO2., which can possibly be achieved by choosing a suitable catalystand appropriate reaction conditions. In that case, the CO2 canbe recycled to the pond and the H2 can be used for hydrogenationof the extracted lipids. The high pressurized CO2 that is releasedfrom the SCWG process will benefit the CO2 supply process byreducing compression and transportation costs. In this best casescenario (Fig. 4b), green diesel and H2 will be the main end products,both are high valuable biofuels or biochemicals. Our analysisreveals that this route shows a high potential FER (2.21) and,hence, sets a direction for future research and development.
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