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Ion exchange extraction during continuous recrystallization of CaSO_4 in the phosphoric acid production process: lanthanide extraction efficiency and CaSO_4 particle shape

机译:磷酸生产过程中CaSO_4连续重结晶过程中的离子交换萃取:镧系元素萃取效率和CaSO_4颗粒形状

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摘要

In the HemiDiHydrate (HDH) phosphoric acid production processes, calcium sulfate hemihydrate (HH) is formed from the reaction of phosphate ore with sulfuric acid. In a second step, the HH crystals are recrystallized to calcium sulfate dihydrate (DH, gypsum). With the phosphate ore, impurities enter the production processes. Some of these impurities, such as the lanthanides, mainly end up in the DH crystals. Some impurities, such as aluminum fluoride and lanthanides, not only cause contamination of the DH crystals, but also retard the crystallization and influence the HH and DH particle shapes. By adding ion exchange resin during the continuously operated recrystallization, lanthanides are removed resulting in cleaner DH and phosphoric acid. The simultaneous ion exchange extraction accelerates the recrystallization and can lead to differences in DH particle shape.
机译:在半水合物(HDH)磷酸生产过程中,磷酸钙半水合物(HH)由磷酸盐矿石与硫酸反应形成。在第二步中,将HH晶体重结晶为二水合硫酸钙(DH,石膏)。随着磷酸盐矿石,杂质进入生产过程。这些杂质中的一些(例如镧系元素)主要存在于DH晶体中。一些杂质,例如氟化铝和镧系元素,不仅会污染DH晶体,而且会延迟结晶并影响HH和DH颗粒的形状。通过在连续操作的重结晶过程中添加离子交换树脂,可以除去镧系元素,得到清洁剂DH和磷酸。同时进行离子交换萃取可加快重结晶速度,并可能导致DH颗粒形状不同。

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