Power and Resourse Efficient Envoronmentally Safe Technology for Processing Dumps of Technogenic Waste From Ore-Dressing and Processing Enterprises

V. Meshalkin, V. Bobkov
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Abstract

This research proposes a systematic approach for the analysis of volumes, physicochemical, granulometric, lithologic and thermal characteristics of waste from ore-dressing and processing enterprises stored in the dumps (tailing dumps) of ore-dressing and processing plants to assess the economic potential of its use in the system of complex power and resource efficient environmentally safe processing including palletizing machines, conveyor indurating machines and ore–thermal furnaces. The obtained results allow the authors to formulate the basic engineering, technological, economic and environmental requirements for complex chemical and power engineering systems of processing technogenic waste from ore-dressing and processing plants, these results make it also possible to define the degree of variability for the characteristics of the waste lots from various dumps. The paper describes the developed intensional and mathematical formulations for the multiscale problem of optimizing chemical and power engineering processes of technogenic raw materials processing in a complex chemical and power engineering system as a problem for discrete dynamic programming. The distinctive feature of this problem is to take into account the spatio-temporal multistage processing in a moving multilayer mass of pelletized raw material, the intensity of the process of internal moisture transfer and the variables for the control flow of the heat carrier gas. It allows increasing power efficiency by intensifying heat and mass transfer processes of multilayer drying, calcination and sintering. The criterion of the efficiency is the minimum cost of electric and thermal energy spent on processing. The obtained results were used to calculate power efficient environmentally safe processing of technogenic waste from ore-dressing and processing enterprises dumps. It was defined that heat and mass transfer processes are intensified, power consumption is reduced and the quality of the finished product is increased in the conditions of optimal power and resource efficient operation for the processing system. Keywords: tecnhogenic waste, waste processing, ore-dressing and processing plant, power and resource efficiency, optimization, system analysis, environmentally safety
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选矿加工企业工艺废弃物堆积场的节能环保处理技术
本研究提出了一种系统的方法,用于分析储存在选矿和加工厂垃圾场(尾矿库)的选矿和加工企业产生的废物的体积、物理化学、颗粒学、岩性和热特性,以评估其在复杂电力和资源高效、环境安全处理系统中使用的经济潜力,包括堆料机、输送机和矿热炉。所获得的结果使作者能够制定处理来自选矿和加工厂的工艺废物的复杂化学和动力工程系统的基本工程、技术、经济和环境要求,这些结果也使定义来自不同垃圾场的废物堆特征的变化程度成为可能。本文将复杂化工动力系统中工艺原料加工过程的多尺度优化问题作为离散动态规划问题,给出了已开发的内涵和数学公式。该问题的显著特点是考虑了在移动的多层团状原料中的时空多阶段处理,内部水分传递过程的强度以及控制热载气流动的变量。它可以通过强化多层干燥、煅烧和烧结的传热和传质过程来提高功率效率。效率的标准是在加工过程中所消耗的电能和热能的最低成本。将所得结果用于选矿加工企业排土场工艺废弃物的节能环保处理计算。定义了在最优功率和资源高效运行的条件下,加工系统的传热和传质过程得到加强,功耗降低,成品质量提高。关键词:技术成因废物,废物处理,选厂,动力与资源效率,优化,系统分析,环境安全
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