结晶除磷用扇贝壳除铅

K. Yoshimura, H. Shiomi
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引用次数: 1

摘要

在此之前,我们报道了将破碎的扇贝壳和石膏复合材料浸泡在kh2po4水溶液中,DCPD(cahpo4·2h2o)晶体在复合材料表面析出,并随着浸泡时间的增加而生长。本研究对含DCPD沉淀物经磷酸盐离子去除后的扇贝壳作为废水中铅吸附剂的可行性进行了评价。将含有DCPD沉淀物的扇贝壳浸泡在含50ppm pb2 +的pH3水溶液中,随着浸泡时间的延长,溶液中pb2 +的浓度逐渐降低。对pb2 +的去除率在很大程度上取决于DCPD在扇贝表面的沉淀量,并随着DCPD沉淀量的增加而增加。通过SEM观察、EDX和XRD分析发现,在Pb2+水溶液中浸泡含有DCPD沉淀物的扇贝壳后,DCPD转化为HAP(Ca 10 (po4) 6 (OH) 2)和羟基磷(pb5 (po4) 3 OH, HPY)晶须在HAP晶体表面析出。当DCPD转化为HAP时,多余的po43 -离子溶解到溶液中,与pb2 +离子反应生成pb5 (po4) 3oh。结果表明,作为磷离子吸附剂的扇贝壳可以作为废水中铅的吸附剂。
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Lead Removal By Scallop Shell Used for Crystallization Phosphorus Removal
Previously, we reported that on immersing the composite of crashed scallop shells and gypsum into KH 2 PO 4 aqueous solution, DCPD(CaHPO 4 ・ 2H 2 O) crystal precipitated on the surface of the composite and grew with increasing immersion time. In this study, the feasibility of using the scallop shells with DCPD precipitate after phosphate ion removal as an adsorbent of lead in waste water was evaluated. When the scallop shells with DCPD precipitate were immersed in an aqueous solution containing 50ppm Pb 2+ at pH3, the concentration of Pb 2+ in the solution deceased with increasing immersion time. The Pb 2+ removal rate largely depended on the amount of DCPD precipitate on the surface of the scallop shells and increased with the amount of DCPD precipitate. From the results of SEM observation, EDX and XRD analysis, it was found that after immersing scallop shells with DCPD precipitate in the Pb2+ aqueous solution, DCPD converted into HAP(Ca 10 (PO 4 ) 6 (OH) 2 ) and hydroxypyromophite(Pb 5 (PO 4 ) 3 OH, HPY) whisker precipitated on the surface of HAP crystal. When DCPD converts into HAP, surplus PO 43- ions dissolve into the solution and react with Pb 2+ ions to form Pb 5 (PO 4 ) 3 OH. There results show that the scallop shells used for the adsorbent of phosphate ions would be reused as the adsorbent of lead in wastewater.
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