titaniferous

网络  产钛的; 含钛的

化学



双语例句

  1. The basic principle for electric smelting of titaniferous slag is introduced and the behaviors of titanium element in DC furnace are analyzed.
    介绍了电炉冶炼钛渣的基本原理,分析了直流电炉冶炼钛渣时,钛元素的行为。
  2. Phase-transformations of titaniferous and silicious minerals of guizhou's bauxite in high pressure digestion
    高压溶出铝土矿时硅钛矿物的相变化
  3. The characteristic feature of the cohesive dropping zone in BF during smelting V-bearing titaniferous magnetite sinter is examined. Samples prepared from the laboratory cohesive dropping apparatus simulating the blast furnace conditions were studied and the phase composition of this zone was investigated.
    针对高炉冶炼钒钛烧结矿软熔滴落带的特点,对实验室软熔滴落装置模拟高炉条件制备的软熔带和滴落带试样进行了研究,弄清了这个区间的物相组成。
  4. The isothermal and non-isothermal kinetics of the oxidation of titaniferous slag in air were investigated by the thermal gravimetric technique.
    用热重法研究了高钛渣在空气中的等温和非等温氧化动力学。
  5. The principle and producing situation of three production methods of titanium concentrates& Reduction smelting produces titaniferous slag, Acid leaching and Reductive leaching produce synthetic rutile are depicted;
    电炉熔炼钛精矿的热力学讨论简述了工业上制备富钛料常用的几种方法&电炉熔炼法生产钛渣、盐酸浸出法、硫酸浸出法、还原锈蚀法生产人造金红石的原理、国内外生产状况。
  6. Trial research of flotation for crude titaniferous concentrate
    承钢黑山铁矿粗钛精矿浮选试验研究
  7. Impact of sio_2/ tio_2 ratio and addition of auxiliary materials on softening dropping of V-bearing Titaniferous Magnetite Sinter
    SiO2/TiO2比值及辅料对钒钛烧结矿软熔滴落性能的影响
  8. Study of the high titaniferous heavy-slag breakstone as concrete aggregate
    高钛重矿渣碎石做混凝土集料的研究
  9. Present status of utilization for Panxi titaniferous resources was introduced and analyzed in this paper, and some suggestions for further utilizing the titaniferous resources were proposed.
    介绍并分析了攀西钛资源的利用现状,对进一步利用钛资源提出一些建议。
  10. Abstract In this paper nano TiO 2 powder was prepared from industrial primary products& titaniferous solution by homogeneous precipitation method.
    本文以工业钛白粉生产的中间产物&钛液为原料,采用均匀沉淀法制备纳米级TiO2微粉。
  11. High iron and low silica sintering techniques of titaniferous iron concentrate
    含钛铁精矿高铁低硅烧结技术
  12. This paper describes the results of the small-scale test on sodium sulphate roasting and oxidizing roasting of the Concentrate pellets of vanadium-bearing titaniferous magnetites from Chengde Iron and Steel company and the results of the pilot-plant test carried out in the rotary kiln-leaching pot system.
    本文介绍了钠化氧化焙烧承钢铁钒精矿球团&水漫提钒小型试验研究结果以及在回转窑-浸出罐系统进行的扩大试验结果。
  13. The trial researches are conducted separately with coarse-grain flotation without grinding and fine-grain flotation after grinding for crude titaniferous concentrate with TiO2 grade of about 33 percent.
    对承钢黑山铁矿TiO2品位33%左右的粗钛精矿进行了不磨矿的粗粒级浮选或磨矿后细粒级浮选试验研究;
  14. The conception of titanium concentrates, titaniferous slag, high titaniferous slag, synthetic rutile and natural rutile are introduced in this paper. The main use of titanium concentrates is also introduced.
    介绍了富钛料、钛渣、高钛渣、人造金红石、金红石的基本概念和富钛料的主要用途。
  15. Study on behavior of al_2o_3 in V-bearing Titaniferous Magnetite Sinter
    Al2O3在钒钛烧结矿中的行为研究
  16. The high titaniferous blast-furnace slag as a mineral is more lower reactivity due to its low calcium and high titanium content.
    攀钢高钛型高炉水渣属低钙富钛矿,活性很低。
  17. Analytical Method of Safety Risk for Titaniferous Orthopaedic Fixer used CDIC Maxillofacial and Cranial Surgery
    CDIC颌面及颅外科用钛骨固定器的安全风险分析方法
  18. The investigation of improving the foaming property of titaniferous slag with Bao
    BaO改善高钛型高炉渣起泡性能的研究
  19. The properties of titanium and titaniferous alloy, the development of equipments made from titaniferous alloy and their application in chemical industry were reviewed. It is of reference value for understanding titanium and titaniferous alloy and extending their application.
    综述了钛和钛合金的性质、钛制设备的发展以及在化学工业上的应用,对于了解钛和钛合金的应用及推广有着一定的参考价值。
  20. There are many kinds of Low-melting mineral in titaniferous residue ( after treatment of titanium slag) from blast furnace in Pan Steel Works in Sichuan Province. Such as: C2AS, Cs, titanaugite and etc.
    四川攀钢高炉含钛残渣含有较多的低熔矿物,如C2AS、CS、钛辉石等。
  21. Because of the discharging of the titaniferous blastfurnace, large quantities of titanium resource have run off, its utilization has been the focus of people'cencerning.
    由于含钛高炉渣的排放造成了大量钛资源的流失,对它的利用已成为人们关注的焦点。
  22. Preparation of Potassium Titanate Whiskers and Titanium Dioxide from Titaniferous Slag Using KOH Sub-molten Salt Method
    KOH亚熔盐法制备钛酸钾晶须和二氧化钛
  23. Experimental study of foaming phenomenon of titaniferous slag during V-Ti-bearing magnetite smelting
    全钒钛矿冶炼时含钛高炉渣起泡现象的研究
  24. The mechanism of reduction of titaniferous magnetite
    钛磁铁矿还原机理的研究
  25. Measurement of the surface tension of titaniferous molten iron by sessile drop method
    静滴法测定含钛生铁的表面张力
  26. Preparation of Nanometer Titanium Dioxide by Industrial Titaniferous Solution
    利用工业钛液制备纳米二氧化钛
  27. The Study on Smelting Ti-Si Ferroalloy by DC Electrothermal Process Using PISC Blast Furnace Titaniferous Slag
    用高炉钛渣冶炼钛硅合金的研究
  28. The rate of reduction of titaniferous magnetite
    钛磁铁矿的还原速率
  29. KOH sub-molten salt method was studied for preparing potassium titanate whiskers and titanium dioxide by using titaniferous slag as the raw material. The effects of reaction temperature, reaction time, initial KOH concentration and mass ratio of alkali-to-slag on the morphology of the products were investigated.
    研究了以高钛渣为原料、采用KOH亚熔盐法制备钛酸钾晶须和二氧化钛的新方法,探讨了反应温度、初始KOH浓度、反应时间和碱矿比等因素对钛酸钾晶须形貌的影响。