利用浓缩尾料获得的回填抗压强度动态变化,用于循环废物管理

IF 5.4 Q1 ENVIRONMENTAL SCIENCES Resources, conservation & recycling advances Pub Date : 2024-06-25 DOI:10.1016/j.rcradv.2024.200224
Liqiang Ma , Yousef Ghorbani , Cheynesh B. Kongar-Syuryun , Marat M. Khayrutdinov , Roman V. Klyuev , Alexander Petenko , Vladimir Brigida
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引用次数: 0

摘要

在当前发展阶段,向循环经济转型是实现可持续采矿的唯一选择。目的是在循环废物管理的基础上确定采矿尾矿利用的方向。作者方法的新颖之处在于对矿渣进行机械处理,以优化回填成分。研究方法包括对俄罗斯主要(8 家)冶金厂的采矿废料(矿渣)进行研究。在对原始数据进行数学处理时,使用了平滑法和确定性三维插值法。结果,首次确定了矿渣经机械处理后的最终单轴抗压强度按对数规律增加。随着固化时间从 10 天增加到 90 天(添加 Ca 或 Si),强度增加了 21%(7% 和 23%)。在回填复合材料中用冶金矿渣完全取代传统水泥粘结剂的可能性已经得到证实。已经证实,使用活化处理(机械和化学)可以提高回填样品固化后的强度特性。采矿生产组织原则已经实施,该原则规定在封闭的生产循环中使用以前被归类为技术废物的中间产品(高炉粒化渣)。这一原则的引入将消除(尽量减少)人为废物的形成。用技术废料(高炉粒化矿渣)替代传统水泥粘合剂的科学价值使采矿业得以实施循环经济。
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Dynamics of backfill compressive strength obtained from enrichment tails for the circular waste management

At the current stage of development, the transition to a circular economy is a single option to achieve sustainable mining. Purpose was to identify a direction for mining tailings usage based on the circular waste management. The novelty of the author's approach lies in regulation of mechanical treatment of slag to optimize the backfill composition. The methodology involved a study of mining waste (slag) obtained from major (eight) metallurgical plants in Russia. For mathematical processing primary data, smoothing and deterministic three-dimensional interpolation methods were used. As a result, for the first time it has been established that the ultimate uniaxial compressive strength after mechanical treatment of slag increases by logarithmic laws. As the curing time increases from 10 days to 90 days (with the addition of Ca or Si) the strength increases by 21 % (7 % and 23 %). The possibility of completely replacing the traditional cement binder with metallurgical slag in the backfill composite has been proven. It has been established that the use of activation treatment (both mechanical and chemical) makes it possible to increase the strength characteristics of backfill samples after their curing. The principle of organizing mining production has been implemented, which provides for the use of intermediate products (blast furnace granulated slag), previously classified as technogenic waste, in a closed production cycle. The introduction of this principle will eliminate (minimize) the formation of man-made waste. The scientific merit of replacing traditional cement binder with technogenic waste (blast furnace granulated slag) allows implementation of circular economy in mining.

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来源期刊
Resources, conservation & recycling advances
Resources, conservation & recycling advances Environmental Science (General)
CiteScore
11.70
自引率
0.00%
发文量
0
审稿时长
76 days
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