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首页> 外文期刊>Frontiers of chemical science and engine >Filtration ability of hollow fiber membrane for production of magnesium ammonium phosphate crystals by reaction crystallization
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Filtration ability of hollow fiber membrane for production of magnesium ammonium phosphate crystals by reaction crystallization

机译:中空纤维膜通过反应结晶生产磷酸铵镁晶体的过滤能力

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摘要

Relationship between magnesium ammonium phosphate (MAP) crystal properties and the filtration ability of hollow fiber membrane (HFM) were investigated. Phosphorus recovery process by crystallization has a problem that it produces a large amount of fine crystals. So improvement of the crystallization process by combining with filtration was discussed. MAP crystals were obtained by batch reaction crystallization and the filtration characteristics were investigated. The filtration was evaluated by the specific filtration resistance (α_c) on HFM. Filtered slurry was prepared with each suspension density and crystal size distribution. The solution was filtered at constant pressure of 0.02 MPa and the filtration time on each filtrated volume was recorded. As a result, α_c decreases exponentially with suspension density increasing from 0.25 g/L to 0.5 g/L and α_c decreases moderately with suspension density increasing from 0.5 g/L to 1.5 g/L. α_c of large crystals decreases exponentially at less suspension density than α_c of small crystals does. Also, α_c increases as the ratio of the fractured crystals increases.
机译:研究了磷酸镁铵(MAP)晶体性能与中空纤维膜(HFM)过滤能力之间的关系。通过结晶进行的磷回收过程具有产生大量细晶体的问题。因此,讨论了通过结合过滤来改善结晶过程。通过间歇反应结晶获得MAP晶体,并研究了过滤特性。通过在HFM上的比过滤阻力(α_c)来评价过滤。制备具有每种悬浮液密度和晶体尺寸分布的过滤的浆料。在0.02MPa的恒定压力下过滤溶液,并记录在每个过滤体积上的过滤时间。结果,随着悬浮液密度从0.25 g / L增加到0.5 g / L,α_c呈指数下降;随着悬浮液密度从0.5 g / L增加到1.5 g / L,α_c适度下降。与小晶体的α_c相比,大晶体的α_c在较小的悬浮密度下呈指数下降。另外,α_c随着断裂晶体的比例增加而增加。

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