화학공학소재연구정보센터
Bioresource Technology, Vol.194, 196-204, 2015
Experiment and simulation study on alkalis transfer characteristic during direct combustion utilization of bagasse
Bagasse is utilized as fuel in the biggest biomass power plant of China, however, alkalis in the fuel created severe agglomeration and slagging problems. Alkalis transfer characteristic, agglomeration causes in engineering practice, additive improvement effects and mechanism during bagasse combustion were investigated via experiments and simulations. Only slight agglomeration occurs in ash higher than 800 degrees C. Serious agglomeration in practical operation should be attributed to the gaseous alkalis evaporating at high temperature and condensing on the cooler grain surfaces in CFB. It can be speculated that ash caking can be avoided with temperature lower than 750 degrees C and heating surface corrosion caused by alkali metal vapor can be alleviated with temperature lower than 850 degrees C. Kaolin added into the bagasse has an apparent advantage over CaO additive both in enhancing ash fusion point and relieving alkali-chloride corrosion by locking alkalis in dystectic solid compounds over the whole temperature range. (C) 2015 Elsevier Ltd. All rights reserved.