Investigation of physicochemical characterization and magnetic enrichment of iron ore from Sidi Maarouf deposit

Abdeslam Chaib, Soufiane Bouabdallah, M. Ferfar, A. Benselhoub, N. Dovbash, S. Bellucci
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Abstract

The establishment of a new metallurgical complex in Bellara, located in El-Milia in the Jijel region, is geographically advantageous due to its proximity to the Sidi Maarouf deposit (Algeria). This proximity has been a fundamental motivation for the completion of the current study. The object of research is the quality of iron products from Sidi Maarouf. The research is aimed at developing a treatment process aimed at improving the quality of iron products from Sidi Maarouf, while reducing the impurities of quartz and clay present in this ore. This approach will be based on an approved technological treatment scheme, implemented through an experimental approach to ensure reliable results that meet the requirements of the steel industry. The problem issue revolves around the difficulties encountered in the production of steels due to the natural characteristics of the raw material. In the absence of a physico-chemical characterization of the Sidi Maarouf iron ore deposit, samples taken undergo a series of thorough analyses, including microscopic examinations, X-ray diffraction (XRD), as well as additional chemical analyses using X-ray fluorescence (XRF). The identified minerals are predominantly composed of hematite in terms of iron. As for the gangue, it is mainly composed of calcite and quartz. Through to the pre-treatment process involving washing, we have successfully removed lightweight particles, resulting in a concentrate containing dense particles. This approach was crucial in achieving satisfactory results during the high-intensity dry magnetic separation. As a result of the research it is shown that the enrichment of the Sidi Maarouf iron ore through high-intensity dry magnetic separation, a final concentrate was obtained with a Fe2O3 content exceeding 67 %, along with a significant reduction in silica impurities to 0.92 % and alumina to 0.77 %. It was concluded that this concentrate, derived from the -1+0.5 mm fraction and obtained under a current intensity of 12 A, meets the requirements of the steel industry. Following the work carried out, it is found that the methods of valorization of iron ore through mineralogical processes consistently require a high level of efficiency and performance in terms of equipment and characterization of the products obtained. In the future, iron ore processing will be conducted using innovative methods, integrating advanced technologies to enhance its characteristics while adopting environmentally friendly practices.
对 Sidi Maarouf 矿床铁矿石的物理化学特征和磁性富集的研究
在位于吉杰勒地区 El-Milia 的 Bellara 建立一个新的冶金综合体,由于毗邻 Sidi Maarouf 矿床(阿尔及利亚),在地理位置上非常有利。这种邻近性是完成当前研究的根本动力。研究对象是来自 Sidi Maarouf 的铁产品的质量。研究旨在开发一种处理工艺,以提高 Sidi Maarouf 铁矿产品的质量,同时减少矿石中的石英和粘土杂质。该方法将以经批准的技术处理方案为基础,通过实验方法实施,以确保取得符合钢铁行业要求的可靠结果。由于没有对 Sidi Maarouf 铁矿石矿藏进行物理化学鉴定,因此对采集的样本进行了一系列全面分析,包括显微镜检查、X 射线衍射 (XRD) 以及使用 X 射线荧光 (XRF) 进行的其他化学分析。经鉴定的矿物主要由赤铁矿组成。至于煤矸石,主要由方解石和石英组成。通过涉及洗涤的预处理过程,我们成功地去除了轻质颗粒,从而得到了含有致密颗粒的精矿。这种方法对于在高强度干式磁选过程中取得令人满意的结果至关重要。研究结果表明,通过高强度干式磁选对 Sidi Maarouf 铁矿石进行富集,最终得到的精矿中 Fe2O3 含量超过 67%,同时二氧化硅杂质大幅减少到 0.92%,氧化铝减少到 0.77%。根据已开展的工作,我们发现通过矿物学工艺对铁矿石进行增值的方法始终要求在设备和所获产品特征方面具有较高的效率和性能。今后,铁矿石加工将采用创新方法,整合先进技术,以提高其特性,同时采用环保做法。
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