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A comparative study of phosphate removal technologies using adsorption and fluidized bed crystallization process

机译:吸附和流化床结晶工艺除磷技术的比较研究

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This study compared the two novel technologies "calcium phosphate fluidized-bed crystallization (FBC) process" and "adsorption" which used an amorphous iron oxide BT-1 as the adsorbent for treating an industrial wastewater with high concentration of phosphate (1,000 mg P L~(-1)). In the adsorption process, most of phosphorus was adsorbed rapidly initially and then reached the thermodynamics equilibrium in 24 h. The phosphate adsorptive capacity of BT-1 was 2.03 mmole/g when the PO_4~(3-) equilibrium concentration was conditioned at 8.23 mM, The adsorption process followed the Langmuir and Temkin adsorption isotherm. In the FBC process, the optimum pH range was wider (pH > 5.3) for the total removal of phosphate than that for crystallization (optimum pH = 5.3-5.9). The total removal efficiency and crystallization ratio of phosphate were about 90% and 60%, respectively, in the optimum pH range. The EDS analysis showed that the Ca-P crystal products had an approximate 1:1:6 molar ratio of Ca:P:O. The XRD diagrams confirmed the crystal type of FBC product in a highly phosphate concentrated system was diacalcium phosphate dehydrate (CaHPO_4 • 2H_2O, DCPD), which was different from the general calcium phosphate crystal content, hydroxyapatite (Ca_5(PO_4)_3OH, HAP), produced by FBC process.
机译:这项研究比较了两种新技术“磷酸钙流化床结晶(FBC)工艺”和“吸附”技术,它们使用无定形氧化铁BT-1作为吸附剂来处理高浓度磷酸盐(1,000 mg PL〜 (-1))。在吸附过程中,大部分磷最初迅速吸附,然后在24小时内达到热力学平衡。当PO_4〜(3-)平衡浓度为8.23 mM时,BT-1的磷酸盐吸附能力为2.03 mmole / g。吸附过程遵循Langmuir和Temkin吸附等温线。在FBC工艺中,完全去除磷酸盐的最佳pH范围(pH> 5.3)比结晶(最佳pH = 5.3-5.9)更宽。在最佳pH范围内,磷酸盐的总去除效率和结晶率分别约为90%和60%。 EDS分析表明,Ca-P晶体产物的Ca∶P∶O摩尔比约为1∶1∶6。 X射线衍射图证实了在高度磷酸盐浓缩的系统中FBC产物的晶体类型为磷酸氢钙脱水物(CaHPO_4•2H_2O,DCPD),这与一般磷酸钙晶体含量,羟基磷灰石(Ca_5(PO_4)_3OH,HAP),由FBC工艺生产。

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