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ALTERNATIVE BINDERS TO BENTONITE FOR IRON ORE PELLETIZING : PART II : EFFECTS ON METALLURGICAL AND CHEMICAL PROPERTIES

机译:用于铁矿石的膨润土的替代粘合剂:第II部分:对冶金和化学性质的影响

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摘要

This study was started to find alternative binders to bentonite and to recover the low preheated and fired pellet mechanical strengths of organic binders-bonded pellets. Bentonite is considered as a chemical impurity for pellet chemistry due to acid constituents (SiO2 and Al2O3). Especially addition of silica-alumina bearing binders is detrimental for iron ore concentrate with high acidic content. Organic binders are the most studied binders since they are free in silica. Although they yield pellets with good wet strength; they have found limited application in industry since they fail to give sufficient physical and mechanical strength to preheated and fired pellets. It is investigated that how insufficient preheated and fired pellet strengths can be improved when organic binders are used as binder. The addition of a slag bonding/strength increasing constituent (free in acidic contents) into pellet feed to provide pellet strength with the use of organic binders was proposed. Addition of boron compounds such as colemanite, tincal, borax pentahydrate, boric acid together with organic binders such as CMC, starch, dextrin and some organic based binders, into magnetite and hematite pellet mixture was tested. After determining the addition of boron compounds is beneficial to recover the low pellet physical and mechanical qualities in the first part of this study, in this second part, metallurgical and chemical properties (reducibility - swelling index – microstructure – mineralogy - chemical content) of pellets produced with combined binders (an organic binder plus a boron compound) were presented. The metallurgical and chemical tests results showed that good quality product pellets can be produced with combined binders when compared with the bentonite-bonded pellets. Hence, the suggested combined binders can be used as binder in place of bentonite in iron ore pelletizing without compromising the pellet chemistry.
机译:该研究开始寻找膨润土的替代粘合剂,并回收有机粘结粒料的有机粘合剂的低预热和烧制的颗粒机械强度。由于酸组分(SiO 2和Al 2 O 3),膨润土被认为是用于颗粒化学的化学杂质。特别是加入二氧化硅 - 氧化铝轴承粘合剂对铁矿石浓缩物具有高酸性含量。有机粘合剂是最研究的粘合剂,因为它们在二氧化硅中是空气的。虽然它们产生具有良好湿强度的颗粒;他们在工业中发现了有限的应用,因为它们未能提供足够的物理和机械强度以预热和烧制的颗粒。当使用有机粘合剂用作粘合剂时,可以改善预热和烧制的颗粒强度的预热和烧制强度的含量。将熔渣粘接/强度增加将组分(无酸性含量的酸性粘合剂)添加到颗粒饲料中,以提供具有有机粘合剂的颗粒强度。测试硼化合物如CoCanite,Tincal,硼砂五水合物,硼酸和有机粘合剂如CMC,淀粉,糊精和一些有机基粘合剂,进入磁铁矿和赤铁矿颗粒混合物中。在确定硼化合物的添加后,有利于在本研究的第一部分中恢复低颗粒物理和机械质量,在该第二部分,冶金和化学性质(可再溶胀 - 溶胀指数 - 微观结构 - 矿物学含量)的颗粒中的颗粒提出了用组合粘合剂(有机粘合剂加硼化合物)制备。冶金和化学试验结果表明,与膨润土粘结的颗粒相比,可以用组合粘合剂制备良好的品质颗粒。因此,建议的组合粘合剂可以用作粘合剂代替铁矿石造粒的膨润土,而不会损害颗粒化学。

著录项

  • 作者

    Osman Sivrikaya; A. I. Arol;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng;por;esl/spa
  • 中图分类

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