Influence of industrial waste on the structure of environmentally friendly cement clinker

IF 0.8 Q4 METALLURGY & METALLURGICAL ENGINEERING
N. Zhanikulov, A. Kolesnikov, B. Taimasov, B. Zhakipbayev, A. Shal
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引用次数: 3

Abstract

The main problem of cement production is to reduce energy consumption and reduce the amount of greenhouse gases CO2 emitted into the atmosphere. The prerequisite for solving the problem is: the use of man-made waste and unconventional raw materials in the composition of the charge and the reduction of limestone content from 85% to 70-75% as a source of CO2 gas. The article presents the results of the studied technogenic waste and the suitability of non-traditional raw materials such as tefritobazalt, coal mining waste, and lead slag. The chemical and mineralogical composition of the materials and their suitability for obtaining environmentally friendly clinker have been established. The possibility of obtaining cement clinker using low-energy resource-saving technologies is shown. Clinker formation processes in the developed mixtures are completed at a temperature of 1350 °C, which, with the coal contained in the waste, will reduce the consumption of fuel injectors and reduce CO2 emissions into the atmosphere. In the developed low-energy mixtures, the specific consumption of raw materials for obtaining 1 ton of clinker is reduced to 1516-1525 kg, which is significantly lower than in traditional raw mixtures. Alite crystals are large, reaching 100-140 microns. The content of clinker minerals is C3S-57.88%, C2S-18.82%, C3A-6.46% and C4AF-11.61%. Disposal of large-tonnage waste will reduce environmental pollution and improve the environmental situation in the region.
工业废弃物对环保型水泥熟料结构的影响
水泥生产的主要问题是减少能源消耗,减少温室气体二氧化碳排放到大气中。解决这一问题的先决条件是:在配料中使用人造废弃物和非常规原料,并将作为CO2气体来源的石灰石含量从85%降低到70-75%。本文介绍了对工艺废弃物的研究结果,以及对硅藻土、煤矿废弃物、铅渣等非传统原料的适宜性。确定了材料的化学和矿物组成及其获得环保型熟料的适宜性。指出了利用低能耗节能技术获得水泥熟料的可能性。开发的混合物中的熟料形成过程在1350℃的温度下完成,与废料中含有的煤一起,将减少喷油器的消耗并减少向大气中的二氧化碳排放。在开发的低能量混合料中,获得1吨熟料的原料比消耗降低到1516-1525 kg,明显低于传统的原料混合料。Alite晶体很大,可达100-140微米。熟料矿物含量分别为C3S-57.88%、C2S-18.82%、C3A-6.46%和C4AF-11.61%。处置大吨位废物将减少环境污染,改善该地区的环境状况。
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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42.90%
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