Stabilization Of Pelleting Plant Performance With An Impact On Energy Consumption Reduction

Associacao Brasileira de Metalurgia,  Materiais e Mineracao
Walter Luiz Castro dos Santos Leandro Resinentti Zanon
Organization:
Associacao Brasileira de Metalurgia, Materiais e Mineracao
Pages:
11
File Size:
790 KB
Publication Date:
Oct 1, 2019

Abstract

In the production of iron ore pellets, one of the factors that strongly influence the cost of ore-pellet processing is the specific consumption of natural gas that occurs during the thermal processing stage of the pellets. The filtration process is the step where the adequacy of the moisture percentage of the retained pulp occurs, so that subsequently there is the processing in the subsequent stages of the pellet formation and hardening of pellets. The water contained in the raw pellet is withdrawn at the stage of thermal processing. For this purpose, the literature indicates the demand of 600 Kcal/kg of water for the heating and vaporization of the moisture of raw pellets. The statistical analysis of the performance data of a pelletizing plant showed that for each decrement of 0.1% of water in the retained pulp is equivalent to the reduction of 0.091 Nm3 in the consumption of natural gas per tonne of pellets produced. Thus, the proper performance of the filtration stage is essential to reduce the percentage of pulp moisture retained and consequently to increase the energy efficiency of the pelletizing furnaces. The aim of this article is to present the main steps in conducting a work to increase the filtration performance to reduce the percentage of retained pulp moisture and the positive impacts on the specific natural gas consumption of a plant Pelletizing.
Citation

APA: Walter Luiz Castro dos Santos Leandro Resinentti Zanon  (2019)  Stabilization Of Pelleting Plant Performance With An Impact On Energy Consumption Reduction

MLA: Walter Luiz Castro dos Santos Leandro Resinentti Zanon Stabilization Of Pelleting Plant Performance With An Impact On Energy Consumption Reduction. Associacao Brasileira de Metalurgia, Materiais e Mineracao, 2019.

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