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制备新型 CeO-生物炭纳米复合材料用于声催化降解纺织染料。

Preparation of novel CeO-biochar nanocomposite for sonocatalytic degradation of a textile dye.

机构信息

Research Laboratory of Advanced Water and Wastewater Treatment Processes, Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz, 51666-16471 Tabriz, Iran; Department of Materials Science and Nanotechnology Engineering, Near East University, 99138 Nicosia, North Cyprus, Mersin 10, Turkey.

Research Laboratory of Advanced Water and Wastewater Treatment Processes, Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz, 51666-16471 Tabriz, Iran.

出版信息

Ultrason Sonochem. 2018 Mar;41:503-513. doi: 10.1016/j.ultsonch.2017.10.013. Epub 2017 Oct 16.

Abstract

The sonocatalytic performance of CeO nanoparticles synthesized by a hydrothermal method (CeO-H) and CeO@biochar (CeO-H@BC) nanocomposite, were evaluated for the degradation of Reactive Red 84 (RR84) under ultrasonic irradiation. For comparison purposes the corresponding performance of bare biochar (BC) and commercial CeO (CeO-C) samples were also assessed. A complementary characterization study, involving scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), Transmission electron microscopy (TEM), dynamic light scattering (DLS), X-ray diffraction (XRD), N adsorption at -196°C (Brunauer-Emmett-Teller (BET) method) and Fourier transform infrared spectroscopy (FT-IR) was undertaken to gain insight into the structure-performance relationships. The effect of various parameters such as initial RR84 concentration, solution pH, catalyst amount and ultrasonic power on the sonodegradation of RR84 was studied in detail. The results indicated that the CeO-H@BC nanocomposite exhibited the best RR84 degradation efficiency, which is enhanced with the increase of CeO-H@BC amount and ultrasonic power but diminished with the increment in RR84 concentration and pH value. A 98.5% degradation was obtained with a CeO-H@BC amount of 1g/L, ultrasonic power of 450 W, pH of 6.5 and initial RR84 concentration of 10mg/L. The quenching effects of various scavengers proposed that OH radical plays the key role in the process. Analyses of intermediates by Gas chromatography-Mass spectroscopy (GC-MS) identified several by-products and accordingly the main pathway was proposed.

摘要

采用水热法(CeO-H)和 CeO@生物炭(CeO-H@BC)纳米复合材料合成的 CeO 纳米粒子的超声催化性能,用于在超声辐射下降解活性红 84(RR84)。为了比较目的,还评估了裸生物炭(BC)和商业 CeO(CeO-C)样品的相应性能。进行了一项补充的表征研究,涉及扫描电子显微镜(SEM)、能量色散 X 射线光谱(EDX)、透射电子显微镜(TEM)、动态光散射(DLS)、X 射线衍射(XRD)、-196°C 下的氮气吸附(Brunauer-Emmett-Teller(BET)方法)和傅里叶变换红外光谱(FT-IR),以深入了解结构-性能关系。详细研究了初始 RR84 浓度、溶液 pH 值、催化剂用量和超声功率等各种参数对 RR84 超声降解的影响。结果表明,CeO-H@BC 纳米复合材料表现出最佳的 RR84 降解效率,随着 CeO-H@BC 用量和超声功率的增加而增强,但随着 RR84 浓度和 pH 值的增加而减弱。在 CeO-H@BC 用量为 1g/L、超声功率为 450 W、pH 值为 6.5 和初始 RR84 浓度为 10mg/L 的条件下,可获得 98.5%的降解率。各种猝灭剂的猝灭效应表明,OH 自由基在该过程中起关键作用。通过气相色谱-质谱联用(GC-MS)分析中间体确定了几个副产物,并据此提出了主要途径。

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