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Optimization of microwave heating parameter for TiO2extraction process from iron sand Indonesia

机译:铁砂印度尼西亚铁砂微波加热参数优化

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Microwave heating is environment-friendly technology which is able to reduce titanomagnetite into TiO2or titanium metal caused by CO2gas does not vacate the furnace. Titanomagnetite is one of the phases contained in Iron Ore with small amount of titanium (less than 10% Ti). This study aims to get a value of optimal parameter on microwave heating for TiO2extraction with different power levels and reductor composition. The method used consists of a magnetic separation, oxidation, reduction process using Microwave Batch Furnace reactor, and hydrochloric acid leaching. Titanomagnetite that oxidized at 1100°C temperature for 4 hours in muffle furnace have phase changed into hemoilmenite (pseudorutile + hematite) with power level is 650 Watt. As the antenna helix added on to design of Microwave Batch Furnace, gain from the heat irradiation become higher to ~34.7 dB. The power level used is 650 watt on variety graphite : iron ore composition are 3.05: 0.6, 3.05 : 1, and 3. 05: 1.4, thus the best reduction product is processed further by leaching in 20% chlorid acid with 1:6 (S/L ratio). X-Ray Diffraction and X-Ray Fluorense test is used to determine the effect of oxidation, reduction, and leaching process on Iron Ore. Results show that graphite has effect to TiO2separation from titanomagnetite phase. As the addition of graphite increases, yield process that represented by recovery TiO2 becomes higher to 4.6% Ti. Microwave adsorption confirmed by using Vector Network Analyse. The amount of microwaves adsorption that represented from S-parameter has increased with the addition of graphite to level 3.05:1. The optimal parameter is resulted in 3.05:1 composition ratio and used 4000 watt power.
机译:微波加热是环保技术,能够将泰坦诺镁减少到TIO中 2 或由CO引起的钛金属 2 气体不会腾空炉子。钛畴是铁矿石中含有少量钛(小于10 %Ti)的相之一。本研究旨在为TIO的微波加热获得最佳参数的值 2 用不同功率水平提取和还原剂组合物。使用的方法包括使用微波批料反应器和盐酸浸出的磁性分离,氧化,还原过程。在Muffle炉中在1100℃温度下氧化4小时的钛镁氧化钛与功率水平的血管胶铁(假种+赤铁矿)相变为650瓦。由于天线螺旋添加到微波批炉的设计中,来自热辐射的增益变为〜34.7dB。使用的功率水平为650瓦,在各种石墨上:铁矿石组合物为3.05:0.6,3.05:1和3. 05:1.4,因此通过浸出20℃的氯酸,1:6进一步加工最佳的还原产物。 (S / L比)。 X射线衍射和X射线氟脲试验用于确定铁矿石上氧化,减少和浸出过程的影响。结果表明石墨对TIO有影响 2 与钛镁镁岩相的分离。随着石墨的添加增加,由恢复TiO2表示的屈服过程变为4.6%Ti。使用矢量网络分析证实了微波吸附。从S参数中表示的微波吸附量随着第3.05级的第3级增加而增加。最佳参数导致3.05:1的成分比和使用4000瓦功率。

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