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首页> 外文期刊>The journal of physics and chemistry of solids >Removal of tetracycline by BiOBr microspheres with oxygen vacancies: Combination of adsorption and photocatalysis
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Removal of tetracycline by BiOBr microspheres with oxygen vacancies: Combination of adsorption and photocatalysis

机译:用氧气空位去除BioBR微球的四环素:吸附和光催化的组合

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摘要

Oxygen vacancy-containing BiOBr microspheres with dual functions of adsorption-photocatalysis were synthesized by a simple solvothermal method. The as-prepared samples were characterized by X-ray diffraction (XRD), field-emission scanning electron microscopy (FESEM), X-ray photoelectron spectroscopy (XPS), electron paramagnetic resonance spectroscopy (EPR) and UV-vis diffuse reflectance spectroscopy (DRS). BiOBr microspheres with oxygen vacancies exhibited a higher adsorptive and photocatalytic activity for the removal of tetracycline (TC) than that of defect-deficient BiOBr microspheres. After adsorption for 30 min and visible light irradiation for 90 min, about 94% of TC was removed by oxygen vacancy-containing BiOBr microspheres, and TC removal efficiency performed effectively in a wide pH range from 3.1 to 11.00. Almost all inorganic anions, such as Cl-, SO2 - 4, PO3 - 4, CO2 - 3and NO - 3, inhibited the removal of TC by BiOBr microspheres and their inhibition effects followed the order of PO3 - 4 > SO2- 4 > CO2- 3 > Cl- > NO - 3. The surface hydroxyl groups had no effect on TC adsorption, and the adsorption of TC on BiOBr was mainly through the anion exchange process. The existence of oxygen vacancies facilitated the generation of superoxide radicals (O-2(-center dot)) which were the dominant reactive oxygen species for TC degradation in BiOBr suspension. The adsorptive and photocatalytic performance of oxygen vacancy-containing BiOBr decreased to different degrees after three cycles mainly due to the formation of surface complex.
机译:通过简单的溶剂热法合成具有双函数的吸附 - 光催化的含氧空位的BioBR微球。通过X射线衍射(XRD),现场排放扫描电子显微镜(FESEM),X射线光电子能谱(XPS),电子顺磁共振谱(EPR)和UV-VI扩散反射光谱( DRS)。具有氧空位的BioBR微球表现出更高的吸附和光催化活性,用于去除四环素(TC)而不是缺陷缺陷的BioBR微球。在吸附30分钟后90分钟后,通过含氧空位的BioBR微球除去约94%的Tc,并且TC去除效率在3.1至11.00的宽pH范围内进行。几乎所有无机阴离子,如Cl-,SO2-4,PO3 - 4,CO2 - 3和No - 3,通过BioBR微球去除TC,其抑制作用遵循PO3 - 4> SO2-4> CO2的顺序 - 3> Cl-> No - 3.表面羟基对Tc吸附没有影响,并且TC对BioBR的吸附主要是通过阴离子交换过程。氧空位的存在促进了超氧化物自由基的产生(O-2( - 中心点)),其是BioBR悬浮液中Tc降解的显性反应性氧物质。在三个循环后,含氧空位的BioBR的吸附和光催化性能在三个循环后降低到不同程度,主要是由于表面复合物的形成。

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