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Leaching Process of Cerium Extraction from Mixture of Cerite-monazite Mineral

机译:铈铁矿-独居石矿物混合物中铈的浸出工艺

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Rare earth oxides have been widely investigated in catalysis as structured and electronic promoters to improve the activity and thermal stability of catalysts. Cerium has an important role in three-way catalysis and fluid catalytic cracking, two significant catalytic processes by their economic relevance and tonnage. Cerium and other rare earths have been studied as possible heterogeneous catalysts at selective oxidation of hydrocarbons. Cerite and monazite are minerals with high concentration of cerium element. Extraction of cerium metal using conventional leaching processes has shown low yields or high costs. The main purpose of this research work is to optimize the parameters in cerium purification stage from this mineral using leaching process. To separate particles with different granulometries, the mineral is ground and fractioned with sieves of 80, 200, 250 and 400 mesh. In order to put off organic components and oxidize cerium(Ⅲ) to cerium(Ⅳ), samples were roasted at 1073K by twenty-four hours. The roasted samples were solubilized by acid attack (leaching) for approximately twenty-four hours; according to the acid used hydrochloric or sulfuric), cerium and other trivalent elements are solubilized as chloride or sulfate solution. Cerium was extracted by selective precipitation at pH~3,4 using ammonium or natrium hydroxide as pH changer. After filtration and drying, the precipitated product was characterized by XRD (x-ray diffraction), and then process efficiency was determined (cerium percentage and the different phases in the powder). Particles granulometry, roasting process (time and temperature), as well as leaching parameters (acid used, time, temperature and concentration of reagents) were the main variables studied.
机译:稀土氧化物作为结构助催化剂和电子助催化剂已在催化领域得到了广泛研究,以提高催化剂的活性和热稳定性。铈在三元催化和流化催化裂化中起着重要作用,这是两个重要的催化过程,具有经济意义和吨位。已经研究了铈和其他稀土作为烃选择性氧化时可能的非均相催化剂。铈土和独居石是铈元素含量高的矿物。使用常规的浸提工艺提取铈金属已显示出低产率或高成本。这项研究工作的主要目的是通过浸出工艺从这种矿物中提纯铈,以优化铈的参数。为了分离具有不同粒度的颗粒,将矿物磨碎并用80目,200目,250目和400目筛分选。为了放出有机成分并将铈(Ⅲ)氧化为铈(Ⅳ),将样品在1073K焙烧24小时。通过酸侵蚀(浸出)将烤制的样品溶解约二十四小时;根据所用酸的盐酸或硫酸),铈和其他三价元素溶解为氯化物或硫酸盐溶液。通过选择铵盐或氢氧化钠作为pH调节剂,在pH〜3,4下选择性沉淀来提取铈。过滤并干燥后,通过XRD(X射线衍射)表征沉淀的产物,然后确定工艺效率(铈百分比和粉末中的不同相)。颗粒粒度,焙烧过程(时间和温度)以及浸出参数(所用酸,时间,温度和试剂浓度)是研究的主要变量。

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