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TG and DSC analyses of eucalyptus black liquor as alternative methods to estimate solids content
Authors:Brenno Santos Leite  Melissa Tatiana Andreuccetti  Sibele Augusta Ferreira Leite  José Vicente Hallak d’Angelo
Institution:1. Department of Chemistry, Federal University of Vi?osa, Campus Florestal, Rodovia LMG, 818?km 6, Florestal, MG, CEP 35.690-000, Brazil
2. Department of Chemical Systems Engineering, School of Chemical Engineering, University of Campinas, Av. Albert Einstein 500, Campinas, SP, CEP 13.083-852, Brazil
Abstract:As a consequence of the continuous increase in the production rate of pulp and paper mills around the world, a great quantity of black liquor, a by-product of the wood digestion process, is produced. This by-product has a great potential as biomass, but needs to be concentrated to higher solids content to be burned as fuel in a recovery boiler. This is necessary to make the pulping process economically feasible, incinerating black liquor to produce high pressure steam, recycling inorganic chemicals to the process. The greater the solids content in black liquor, the better the combustion process in the boiler. Nevertheless, concentration of solids in black liquor above 75 mass/%, causes scaling formation on the heat transfer surfaces of evaporators and concentrators, due to the precipitation of sodium salts, reducing the overall efficiency of this equipment. The aim of this work is to evaluate the use of thermal analyses techniques, TG and DSC, as alternative methods to estimate solids content in eucalyptus black liquor samples since this information is essential to understand scaling formation process, allowing actions to reduce this industrial problem. Traditional techniques applied to determine solids content use gravimetric methods, which are simple, fine, but take a lot of time to be executed. Thermal analyses have proved to be very accurate and have the advantage to be faster than the traditional techniques. On the other hand, the cost-benefit relationship of the traditional technique is much greater and the final decision which one should be used depends on the conditions available.
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