矿业生产工艺废弃物的处理

K. Chokin, N. Nadirov, A. Yedilbayev, A. Medvedev
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The use of apparatuses with an inclined louvered grating is considered, for which the parameters of the degree of fractional extraction of magnetic separation tailings into a fine product are determined. The second stage of tailings enrichment consists in dry magnetic extraction of iron-containing particles from small classes. For these purposes, the use of new magnetic separators, specially developed earlier for working with magnetite particles of small sizes, is discussed. Taken together, this approach makes it possible to increase the overall degree of iron extraction from ore without additional grinding operations and significant financial costs. Another direction of the industrial application of the proposed technologies for the processing of technogenic waste relates to the production of phosphorus. The phosphorus industry is a promising sector of the chemical industry. 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摘要

本文考虑了通过额外提取目标组分,在富集阶段和化学和冶金处理后减少废物来处理技术成因的技术。这一方法与现有的利用技术废料作为建筑材料生产中的二次资源的基本概况有根本的不同。磁铁矿干式磁选尾矿中存在铁浓度较高的细粒,具有一定的商业价值。在第一阶段,有必要用机械方法从总废石中分离出小粒废石。解决这一问题的基础是采用高性能的空气分级方法。考虑采用带倾斜百叶光栅的装置,确定了磁选尾矿分选成细产品程度的参数。尾矿富集的第二阶段是干式磁提小粒含铁颗粒。为此,讨论了早先专门为处理小粒度磁铁矿而开发的新型磁选机的使用。综上所述,这种方法可以提高从矿石中提取铁的总体程度,而无需额外的研磨操作和重大的财务成本。拟议的处理技术的工业应用的另一个方向是生产磷。磷工业是化学工业中很有前途的一个部门。但它的发展也有消极的特点,即化学和冶金加工后产生的大吨位废物。其中,磷污泥是最具侵略性的——它是水介质中的一滴磷,通过“皮毛”从灰尘和其他与磷相关的产物的混合物中通过胶束中的吸收键吸收。正在考虑两个已开发的磷矿目标的应用。为了达到这一目的,必须破坏胶束的矿物学外壳。然后释放的磷沉降到底部,由于较高的密度和分离发生。在第一种方法中,胶束壳的破坏是化学的。在第二种提出的技术中,破坏过程是由于物理空化效应而发生的,这是由声音和超声波频率的弹性声学振动产生的。对含磷量为10 ~ 90%的污泥进行了试验研究,结果表明,该技术对磷的回收率可达95%以上。
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PROCESSING OF TECHNOGENIC WASTE OF MINING PRODUCTION
The article considers technologies for the processing of technogenic formations by additional extraction of target components, reduction of waste at the stages of enrichment and after chemical and metallurgical processing. This approach is fundamentally different from the existing basic outlines of the use of technogenic waste as secondary resources in the production of building materials. It is noted that in the tailings of dry magnetic separation of magnetite ores there are fine particles with iron concentration, which are of commercial interest. At the first stage, it is necessary to mechanically separate small classes from the total number of waste rocks. The solution to this problem is based on the use of high-performance air classification methods. The use of apparatuses with an inclined louvered grating is considered, for which the parameters of the degree of fractional extraction of magnetic separation tailings into a fine product are determined. The second stage of tailings enrichment consists in dry magnetic extraction of iron-containing particles from small classes. For these purposes, the use of new magnetic separators, specially developed earlier for working with magnetite particles of small sizes, is discussed. Taken together, this approach makes it possible to increase the overall degree of iron extraction from ore without additional grinding operations and significant financial costs. Another direction of the industrial application of the proposed technologies for the processing of technogenic waste relates to the production of phosphorus. The phosphorus industry is a promising sector of the chemical industry. But its development also bears negative features in the form of largetonnage waste generated after chemical and metallurgical processing. Among them, phosphorus sludge is the most aggressive - it is a drop of phosphorus in an aqueous medium, absorption by a "fur coat" from a mixture of dust and other products associated with phosphorus by absorption bonds in micelles. Applications are being considered for two developed phosphorus mining targets. To achieve this goal, it is necessary to destroy the mineralogical shell of micelles. Then the released phosphorus settles to the bottom due to the higher density and separation occurs. In the first approach, the destruction of the micelle shell is carried out chemically. In the second proposed technology, the destruction process occurs due to the physical cavitation effect, which is created by elastic acoustic vibrations of sound and ultrasonic frequencies. Experimental studies of the application of these technologies to sludge with a phosphorus content of 10-90% have shown the degree of phosphorus recovery of more than 95%.
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