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It is the first system in the world which allows operators to metallurgical "lookinside"the blast durance process during operation for ensuring fully transparent operating conditionsSuccess in Running of Process Optimization System for Blast furnace have brought large economic and social benefits !

攀钢1#高炉过程优化系统的成功投运,具有很好的经济和社会效益,特别是该项目所采用的最新技术和全面翔实的整理攀钢冶炼钒钛磁铁矿的技术有非常大的作用,同时,证明了攀钢这种条件下,采用高新技术是可行的。

The Panzhihua intrusion, a part of the Emeishan large igneous province, is one of typical V—Ti magnetite ore-bearing layered gabbro intrusions.

攀枝花岩体是攀西地区一个典型含钒钛磁铁矿的层状辉长质岩体,是峨眉山大火成岩省的组成部分。

Coke properties has been studied by high temperature SiC oven、infrared gas analyzer and X-ray diffraction. First set forward the relationship between UPC and coke reactivity, strength, fine coke and coke graphitization, and creatively find the graphitization degree of coke tends to 100% when temp. reaches to 1350℃ UPC is profitableness to coke properties;②The effect of UPC on liquid slag distribution and flow functions in experiment oven has been studied by mathematics simulation The effect of UPC on taking shape and dropping of high titanium-bearing B. F. slag has been studied by using high temp. oven simulation cohesive zone and dropping zone of blast furnace.

为了弄清楚这部分UPC对高炉冶炼钒钛磁铁矿过程的影响,①在实验室利用高温SiC炉、红外线气体分析仪、X—射线衍射仪等进行了一系列UPC对焦炭性能及石墨化度的影响研究,提出了UPC与焦炭反应性、抗压强度、粉化性能及焦炭石墨化度之间的关系,创造性的发现高炉内1350℃以上,焦炭的石墨化度已达100%,UPC对焦炭性能的影响有益而无一害;②采用数学模拟方式研究了UPC对实验炉内液态渣分布及流函数的影响,并利用高温熔滴炉模拟高炉软熔带、滴落带研究UPC对高钛渣滴落性能的影响,采用旋转式粘度计测定滴落渣性能并通过高倍矿相显微镜观察了滴落渣的矿物结构。

Produce the BF gas mud 100, OOOt every year. The raw mineral of puddling is the magnetite containing vanadium and titanium. The grade of iron is only 53%. The grade of sinter mineral is only 47-48%. So the percentage composition of iron is relatively low, only 29.70%. The grade of zinc is relatively high, reach 9.92%. And the percentage composition of carbon is relatively high, reach 16. 80%. In the next place, the BF gas mud is the production through sinter in high temperature.

攀钢炼铁的原矿物为钒钛磁铁矿,铁品位仅为53%,烧结矿品位为47%~48%,所以攀钢高炉瓦斯泥的铁品位也相对较低,仅为29.70%,并且含锌量高,达到了9.92%,含碳则高达16.80%;其次高炉瓦斯泥是高炉冶炼过程中的产物,SiO_2、Al_2O_3和铁部分熔融在一起,选矿难度增加。

Based on the physical characters that the temporary magnetic material can absorb magnetic force nearby and change the distribution of magnetic field,and in combiniation with structural optimization of the semi-adverse current chest,a new type magnetic separator which can make the magnetic mineral apar has been developed and the pilot test was finished.

摘 要 根据软磁材料在磁场中具有吸收附近磁力线从而改变磁场分布的物理性质,结合半逆流型底箱结构的优化,研制了一种可使磁性矿物产生物理分带的磁选机并完成了半工业试验研究,证明用于选别攀枝花钒钛磁铁矿时比传统磁选机具有明显的优越性。

Research show titanomagnetite with fine grain high magnetic coercitive force is mian mineralogy of binding sinter mix,and magnetic force between sinter mix and roughened surface improve to bind sinter mix on the sifting bar.

研究表明:高矫顽力、细粒级的钛磁铁矿是粘结物料的主要矿相,它们与粗糙表面的筛杆之间的磁相互作用使粘结程度日益加重。

Panzhihua vanadic titanomagnetite ore deposit is characterized by high concentration of transition elements V, Ti and Fe etc.

攀枝花钒钛磁铁矿矿床为富集钒、钛、铁等过渡元素的典型岩浆矿床。

The theory and method of quantum geochemistry were applied to study the energy factors of primary ore-forming elements and their geochemical characterizations. The crystal structure models of titanomagnetite and ilmenite were calculated by ab initio Hartree-Fock molecular-orbital method.

运用量子地球化学的理论和方法研究了该矿床的元素组合、分配及变化特征,并用量子地球化学的ab initio Hartree-Fock分子轨道法对钛磁铁矿和钛铁矿晶体结构进行了模拟计算。

Panzhihua v-bearing titanomagnetite has a titanium recovery of only 7% when smelted by traditional process,an enormous waste of titanium resource.

攀枝花钒钛磁铁矿使用传统工艺流程冶炼,钛资源的回收只有7%,浪费巨大。

The ore sample tested was the tail of Pan-Zhi-Huan vanadic titanomagnetite after magneticseparation and froth flotation of the sulfides,with particle size minus 0.315mm and TiO_2 content 17.5-18%. A high-grade concentrate of 47.7% TiO_2 with a 67% recovery was abtained in a open circuit flotation (one roughing and two cleaning operation), using solely sulfuric acid as pH regulator.

对浮选攀枝花钒钛磁铁矿的磁选—浮硫化物后的尾矿—即试料(粒度为—0.315毫米、含TiO_2为17.5—18%),除用硫酸调整pH外,在不需添加其他调整剂的情况下,经一次粗选二次精选就可获得含TiO_247.7%、收率为67%的高品位钛精矿。

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