首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Reclaiming Boron as Calcium Perborate Pellets from Synthetic Wastewater by Integrating Chemical Oxo-Precipitation within a Fluidized-Bed Crystallizer
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Reclaiming Boron as Calcium Perborate Pellets from Synthetic Wastewater by Integrating Chemical Oxo-Precipitation within a Fluidized-Bed Crystallizer

机译:通过将化学氧沉淀在流化床结晶器内整合化学氧气沉淀作为合成废水的钙硼酸钙作为钙沉淀物

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Chemical oxo-precipitation (COP) is a modified precipitation process in which hydrogen peroxide is used to transform boric acid to perborate anions, which are precipitated with calcium salt under ambient conditions. To minimize the production of sludge, chemical oxo-precipitation was performed in a fluidized-bed reactor to reclaim boron as unseeded calcium perborate pellets. Several major experimental parameters, including effluent pH, calcium dosage, and surface loading that affected the degree of supersaturation and the efficiency of boron removal, were tested. A crystallization ratio of around 60% was attained under the following conditions: initial boron concentration = 1000 ppm, molar ratios of [Ca]/[B] = 0.6 and [H2O2]/[B] = 2, effluent pH = 10.6, bed height = 80 cm, and hydraulic retention time = 18 min. On the basis of the characterization of XRD, SEM, and Raman spectroscopy, the granules recovered were amorphous calcium perborates Ca(B(OH)(3)OOH)(2) and CaB(OH)(3)OOB(OH)(3).
机译:化学氧沉淀(COP)是一种改性沉淀方法,其中过氧化氢用于将硼酸转化为过硼酸盐阴离子,在环境条件下用钙盐沉淀。 为了使污泥的生产最小化,在流化床反应器中进行化学氧沉淀,以将硼作为未上述钙的过硼酸钙粒料。 测试了几种主要的实验参数,包括影响过饱和度和除去硼的效率的流出物pH,钙剂量和表面负荷。 在下列条件下达到约60%的结晶率:初始硼浓度= 1000ppm,[ca] / [b] = 0.6和[H 2 O 2] / [b] = 2,流出物pH = 10.6,床 高度= 80厘米,液压保留时间= 18分钟。 在XRD,SEM和拉曼光谱的表征的基础上,回收的颗粒是无定形钙哌膦酸钙(B(OH)(3)oOH)(2)和驾驶室(OH)(3)OOB(OH)(3 )。

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