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由红土镍矿联产镍铁和胶凝材料

Coupled Preparation of Ferronickel and Cementitious Material from Laterite Nickel Ores.

作者信息

Shi Ruimeng, Li Xiaoming, Cui Yaru, Zhao Junxue, Zou Chong, Qiu Guibao

机构信息

School of Metallurgical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China.

出版信息

Materials (Basel). 2020 Nov 5;13(21):4992. doi: 10.3390/ma13214992.

Abstract

Nickel slags can be produced through ferronickel preparation by the pyrometallurgical processing of laterite nickel ores; however, such techniques are underutilized at present, and serious environmental problems arise from the stockpiling of such nickel ores. In this study, a modification to the process of ferronickel preparation by the direct reduction of carbon bases in laterite nickel ores is proposed. The gangue from the ore is used as a raw material to prepare a cementitious material, with the main components of tricalcium silicate and tricalcium aluminate. By using FactSage software, thermodynamic calculations are performed to analyze the reduction of nickel and iron and the effect of reduction on the formation of tricalcium silicate and tricalcium aluminate. The feasibility of a coupled process to prepare ferronickel and cementitious materials by the direct reduction of laterite nickel ore and gangue calcination, respectively, is discussed under varying thermodynamic conditions. Different warming strategies are applied to experimentally verify the coupled reactions. The coupled preparation of ferronickel and cementitious materials with calcium silicate and calcium aluminate as the main phases in the same experimental process is realized.

摘要

镍渣可通过对红土镍矿进行火法冶金处理来制备镍铁而产生;然而,这类技术目前未得到充分利用,并且此类镍矿的堆存引发了严重的环境问题。在本研究中,提出了一种通过直接还原红土镍矿中的碳基来制备镍铁的工艺改进方法。矿石中的脉石被用作制备胶凝材料的原料,其主要成分为硅酸三钙和铝酸三钙。利用FactSage软件进行热力学计算,以分析镍和铁的还原以及还原对硅酸三钙和铝酸三钙形成的影响。讨论了在不同热力学条件下分别通过直接还原红土镍矿和脉石煅烧来制备镍铁和胶凝材料的耦合工艺的可行性。应用不同的升温策略对耦合反应进行实验验证。实现了在同一实验过程中耦合制备以硅酸钙和铝酸钙为主要相的镍铁和胶凝材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a37/7664209/5ab5465334ae/materials-13-04992-g001.jpg

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