Comparative analysis of straight grate machines and combined facilities grate-tubetype kiln-cooler for selection technologies of pellets production

A. A. Butkarev, E. A. Butkareva
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Abstract

At present, mainly straight grate machines (SGM) and combined facilities grate-tube-type kiln-cooler (GKC) are used for heat-strengthening induration of iron ore pellets. Their total share in the produced iron ore pellets in the world accounts for 93%, of which SGM takes 60% and GKC – 33%, which speaks about high efficiency of both methods of induration. At the same time, when making decision on construction a pelletizing plant, a question of selection of most effective technology of iron ore pellets production by SGM and GKC often arises. Results of comparative analysis of efficiency of technologies of iron ore pellets production by SGM and GKC presented. Features of various ore types pellets induration considered as well as possibilities of ensuring the required quality of finished pellets at application for induration SGM and GKC. Data on maximum productivity of the considered induration facilities, amount of dust, fines formation, emissions of harmful substances into environment and electric energy consumption presented. Importance of a possibility of accounting of fuel type selection, of heat expenses for heat treatment, of expenses for maintenance, capital and operation costs were noted. It was shown that choice of a particular variant of technology should be done at the stage of elaboration feasibility study accounting existing experience of facilities running, availability of fuel types, cost of energy resources, climate zone and assembling solutions.
对直篦机与篦管式窑冷机组合式设备进行球团生产工艺选择的比较分析
目前,用于铁矿石球团热强化硬化的主要有直篦机(SGM)和篦管式窑冷机(GKC)组合设备。它们在世界生产的铁矿石球团中所占的总份额为93%,其中SGM占60%,GKC -占33%,说明两种硬结方法的效率都很高。与此同时,在决定建设球团厂时,经常会出现SGM和GKC生产铁矿石球团的最有效技术选择问题。对SGM和GKC两种生产铁球团的工艺效率进行了对比分析。考虑了各种矿石类型球团硬化的特点,以及在SGM和GKC应用中确保成品球团所需质量的可能性。所考虑的硬化设施的最大生产率、粉尘量、细颗粒物的形成、向环境排放有害物质和电能消耗的数据。与会者指出,有可能核算燃料类型选择、热处理的热费用、维护费用、资本和运营费用的重要性。会议指出,应在制订可行性研究阶段选择一种特定的技术,考虑到设施运行的现有经验、燃料种类的可得性、能源成本、气候区和装配解决办法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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