Accortling to the characteristics of concentrate, the authors analyse the reasons why the iron grade of roasted magnetic separation concentrate is not high.
从精矿性质特点着手,分析了酒钢选厂焙烧磁选精矿铁品位不高的原因和主要影响因素。
参考来源 - 提高酒钢焙烧磁选精矿质量的试验研究 Trial Study of Improving the Quality of Jiugang′s Roasted Magnetic Separation ConcentrateThe article introduces 2 kinds of waste FCC catalyst regeneration technology(chemical regeneration process and magnetic separation technology) and summarizes research and advances in main application fields of waste FCC catalyst.
介绍了废FCC催化剂的两种再生技术(化学再生法和磁分离技术),综述了废FCC催化剂主要应用领域的研究及进展。
参考来源 - 废FCC催化剂再生利用的研究现状及进展Test result shows: the iron concentrate of 64.6% in grade and 43.6% in recovery can be obtained through the weak magnetic separation by magnetic tube,when exciting current is 0.11T and carbon content is 4%.
回收率也有43.6%的磁选效果。
参考来源 - 从稀土浮选尾矿中回收铁的磁选试验研究FTIR spectra shows that the absorption strength of the ink and adhesive in deinked pulp after agglomeration-magnetic separation,decreases significantly.
FTIR图谱表明,附聚-磁分离后脱墨浆中的油墨和胶粘物成分的吸收强度明显降低。
参考来源 - 混合办公废纸附聚—磁性法脱除胶粘物的研究In addition, the magnetic polymer microspheres can also be carried out on the surface fluorescent microspheres. It carried out the combination of magnetic separation technology and fluorescent tags.
另外,还可将磁性高分子微球进行表面荧光化,实现磁性分离技术与荧光标记联用,在分离同时具有荧光示踪标记功能。
参考来源 - 磁性高分子微球的制备、保护及荧光化The alumina hydrosol was firstly synthesized using aluminum powder and hydrochloric acid. The amount of impurity in alumina hydrosol was decreased during the synthesis of alumina hydrosol using reduction-magnetic separation process.
以铝粉和盐酸为原料合成铝溶胶,利用过程还原—磁性分离技术和装置精制铝溶胶,再以其为原料用油柱成型法制备了系列球形氧化铝。
参考来源 - 碳二加氢催化剂用球形氧化铝载体制备及性能研究·2,447,543篇论文数据,部分数据来源于NoteExpress
以上来源于: WordNet
Zinnwaldite can be separated effectively by the high gradient magnetic separation from the tailing.
采用高梯度磁选可将铁锂云母从尾矿中有效分离。
The mixture of magnetite and quartz was separated by magnetic separation.
磁铁矿和石英的混合矿样采用磁选分离。
High gradient magnetic separation technology has good application foreground in dust removal.
高梯度磁分离技术在除尘方面具有很好的应用前景。
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