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Gasification temperature has been optimized for maximum syngas production.
Gasification temperature was found to be the most influential factor.
The gasification temperature could be lowered by ∼125 °C.
The variation of distribution of components with gasification temperature and pressure are determined.
Increase in gasification temperature led to a clear increase in both exergy values and exergy efficiency.
The gasification temperature of an entrained-flow gasifier generally well exceeds 1000°C.
Higher gasification temperature could promote H2 yield, but the heat value of syngas would decrease.
The simulations are performed by varying the gasification temperature, equivalence ratio and steam-to-biomass ratio.
The gasification temperature was controlled at 850, 900 and 950 °C.
According to the generalized exergy efficiency of the system, the influence of gasification temperature and pressure on the system performance is investigated and the optimum gasification temperature and pressure for system operation can be determined.
At the same time, cold gas efficiency (CGE) increased with the raising of gasification temperature, indicating that the improvement of gasification temperature is beneficial to the improvement of co-gasification gas quality.
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