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Effect of CaF2 and SiO2 modification on phosphorus utilisation in P-bearing slag

机译:CaF2和SiO2改性对磷渣中磷利用的影响

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In order to recycle phosphorus in P-bearing converter slag for slag phosphate fertiliser, the effect of CaF2 and SiO2 modification on P-bearing steelmaking slag on phosphorus-bearing phases, P2O5 solubility and magnetic separation behaviour has been researched. The results show that the phosphorus-rich phase is mainly n2CaO center dot SiO2-3CaO center dot P2O5 (nC(2)S-C3P for short) and exists along with fluorapatite phase [Ca-5(PO4)(3)F] after the addition of CaF2. The fluorapatite cannot be dissolved in 2% citric acid solution, which decreases the P2O5 solubility in slag. Although adding CaF2 can increase the P2O5 content of phosphorus-rich phase, it can improve its metallisation and magnetisation of RO phase, increase the amount of recovered magnetic substances, and separate incompletely phosphorus and iron, therefore it is adverse to the phosphorus recovery from P-bearing slag by magnetic separation. P2O5 content of phosphorus-rich phase is more than 31% and P2O5 solubility of slag is increased to 96% in fluorine-free modified slag, which can meet the requirement of P2O5 content and P2O5 solubility of the phosphate fertiliser. Meanwhile, 87.1% of the phosphorus in the fluorine-free modified slag is contained in non-magnetic substance, and most of the phosphorus was recycled.
机译:为了回收磷渣矿渣含磷转炉渣中的磷,研究了CaF2和SiO2改性对磷渣炼钢渣中磷相,P2O5溶解度和磁选行为的影响。结果表明,富磷相主要为n2CaO中心点SiO2-3CaO中心点P2O5(简称nC(2)S-C3P),并与氟磷灰石相[Ca-5(PO4)(3)F]同时存在。添加CaF2。氟磷灰石不能溶解在2%的柠檬酸溶液中,这会降低P2O5在炉渣中的溶解度。尽管添加CaF2可以增加富磷相的P2O5含量,但可以改善RO相的金属化和磁化强度,增加回收的磁性物质的量,并且不完全分离磷和铁,因此不利于从P中回收磷磁选渣渣。在无氟改性渣中,富磷相的P2O5含量大于31%,炉渣的P2O5溶解度提高到96%,可以满足磷肥中P2O5含量和P2O5溶解度的要求。同时,无氟改性炉渣中磷的87.1%包含在非磁性物质中,大部分磷被回收。

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