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首页> 外文期刊>Journal of Colloid and Interface Science >Adsorptional photocatalytic mineralization of oxytetracycline and ampicillin antibiotics using Bi2O3/BiOCl supported on graphene sand composite and chitosan
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Adsorptional photocatalytic mineralization of oxytetracycline and ampicillin antibiotics using Bi2O3/BiOCl supported on graphene sand composite and chitosan

机译:负载石墨烯砂复合物和壳聚糖的Bi2O3 / BiOCl对土霉素和氨苄青霉素类抗生素的吸附光催化矿化

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In present study, heterojunctioned Bi2O3/BiOCl (BO/BOC) was synthesized via in situ chemical reduction and oxidation of BiOCl nanoplates. BiOCl was reduced to metallic Bi in KHB4 solution followed by oxidation in H2O2 solution to produce BO/BOC. The BO/BOC was supported over graphene sand composite and also on chitosan using wet impregnation method to report BO/BOC/GSC and BO/BOC/CT nanocomposite. The morphology and compositional characteristics of BO/BOC/GSC and BO/BOC/CT were investigated by FESEM, TEM, HRTEM, FTIR, XRD, EDX, RAMAN, BET and UV-visible diffuse reflectance spectral analysis. The photocatalytic activity of BO/BOC/GSC and BO/BOC/CT was performed for mineralization of ampicillin (AMP) and oxytetracycline (OTC) antibiotics under solar light. The adsorption process had significant effect on photodegradation of AMP and OTC. The adsorption of both OTC and AMP onto BO/BOC/GSC and BO/BOC/CT followed pseudo second order kinetics. Simultaneous adsorption and degradation process (A + P) resulted in higher degradation rate of investigated antibiotics. The applicability of power law model indicates the intricacies of mineralization process. During A + P process, OTC and AMP were mineralized to CO2 center dot H2O, NO3- and SO42- ions. Both BO/BOC/GSC and BO/BOC/CT exhibited significant recycle efficiency. (C) 2016 Elsevier Inc. All rights reserved.
机译:在本研究中,通过BiOCl纳米板的原位化学还原和氧化反应合成了异质结的Bi2O3 / BiOCl(BO / BOC)。将BiOCl在KHB4溶液中还原为金属Bi,然后在H2O2溶液中氧化以生成BO / BOC。 BO / BOC负载在石墨烯砂复合材料上以及壳聚糖上,采用湿法浸渍法来报告BO / BOC / GSC和BO / BOC / CT纳米复合材料。通过FESEM,TEM,HRTEM,FTIR,XRD,EDX,RAMAN,BET和紫外可见漫反射光谱分析研究了BO / BOC / GSC和BO / BOC / CT的形貌和组成特征。 BO / BOC / GSC和BO / BOC / CT的光催化活性是在太阳光下对氨苄青霉素(AMP)和土霉素(OTC)抗生素进行矿化的。吸附过程对AMP和OTC的光降解有显着影响。 OTC和AMP在BO / BOC / GSC和BO / BOC / CT上的吸附均遵循拟二级动力学。同时的吸附和降解过程(A + P)导致研究的抗生素的降解率更高。幂律模型的适用性表明了成矿过程的复杂性。在A + P过程中,OTC和AMP矿化为CO2中心点H2O,NO3-和SO42-离子。 BO / BOC / GSC和BO / BOC / CT均显示出显着的回收效率。 (C)2016 Elsevier Inc.保留所有权利。

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