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首页> 外文期刊>CERAMICS INTERNATIONAL >Enhanced sonocatalytic degradation of recalcitrant organic contaminants using a magnetically recoverable Ag/Fe-loaded activated biochar composite
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Enhanced sonocatalytic degradation of recalcitrant organic contaminants using a magnetically recoverable Ag/Fe-loaded activated biochar composite

机译:使用磁性可回收的Ag / Fe加载的活化生物耐油复合材料增强了顽固有机污染物的单催化降解

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Silverorthophosphate (Ag3PO4)-iron oxide (Fe3O4)@activated biochar (AB) composite was prepared by a co-precipitation method as a sonocatalyst for the degradation of recalcitrant organic contaminants. We characterized Ag3PO4-Fe3O4@AB to study the physicochemical properties using scanning electron microscopy, porosimetry, a vibrating sample magnetometer, and X-ray photoelectron spectroscopy. The specific surface area increased after loading Ag3PO4-Fe3O4 on AB compared to AB only. The high magnetic property of Ag3PO4-Fe3O4@AB was confirmed by vibrating sample magnetometer analysis, which could be attributed to the existence of Fe3O4. The Ag3PO4-Fe3O4@AB demonstrated excellent sonocatalytic performances for the degradation of rhodamine B (RhB) and bisphenol A (BPA) under an ultrasonic (US) irradiation. Synergetic sonocatalytic activity of Ag3PO4-Fe3O4@AB has been obtained from (i) enhanced pyrolysis conditions of water molecules on the surface of the sonocatalyst through a "hot spot" and (ii) photoinduced separation between electron-hole pairs of Ag3PO4 using sonoluminescence. The predominant active radical species was OH center dot, which was confirmed by a spin trapping study. The US/Ag3PO4-Fe3O4@AB system demonstrated successful application in the degradation of various organic contaminants including synthetic dyes, endocrine-disrupting compounds/pharmaceutical active chemicals, and chlorinated organic contaminants as well as excellent reusability without a significant loss of sonocatalytic performance.
机译:通过共沉淀法作为乙醛有机污染物降解的单催化剂,制备氧化磷酸酯(Ag3PO4) - 铁(Fe3O4)@活化的生物炭(AB)复合材料。我们以扫描电子显微镜,孔料法,振动样品磁力计和X射线光电子能谱研究了AG3PO4-FE3O4 @ AB来研究物理化学性质。与AB相比,在AB上加载Ag3PO4-Fe3O4后,比表面积增加。通过振动样品磁力计分析证实了Ag3PO4-Fe3O4 @ AB的高磁性,这可能归因于Fe3O4的存在。 AG3PO4-FE3O4 @ AB在超声(US)辐射下展示了优异的罗丹明B(RHB)和双酚A(BPA)的罗丹明B(RHB)和双酚A(BPA)的催化性能。 AG3PO4-FE3O4 @ AB的协同同催化活性从(i)通过“热点”和(ii)使用声辐发光的电子空穴对与Ag3Po4的电子空穴对之间的光致突出的分离来获得来自(i)的水分子的水分子的增强的热解条件。主要的活性自由基物质是OH中心点,其通过旋转捕获研究证实。 US / AG3PO4-FE3O4 @ AB系统证明了各种有机污染物的降解成功应用,包括合成染料,内分泌破坏化合物/药物活性化学品和氯化有机污染物以及出色的可重用性,而无需大大偶催化性能。

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