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首页> 外文期刊>Chemical engineering journal >BiOCl0.875Br0.125/polydopamine functionalized PVDF membrane for highly efficient visible-light-driven photocatalytic degradation of roxarsone and simultaneous arsenic immobilization
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BiOCl0.875Br0.125/polydopamine functionalized PVDF membrane for highly efficient visible-light-driven photocatalytic degradation of roxarsone and simultaneous arsenic immobilization

机译:BioCl0.875BR0.125 /聚二胺官能化PVDF膜,用于高效的可见光型光催化的罗克斯诺和同时砷固定化

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摘要

A bifunctional membrane modified by BiOCl0.875Br0.125 and polydopamine (PDA) was developed in the current study and employed for the photocatalytic degradation of roxarsone (ROX) under visible-light and simultaneous immobilization of the released inorganic arsenic by sorption. Characterization techniques, such as FESEM, XRD, FTIR-ATR, DRS and XPS were used to characterize as-prepared membranes so as to analyze their structural and functional attributes. Dynamic cyclic experiments indicated that a satisfactory degradation efficiency of ROX ( similar to 100%) could be achieved by the photocatalytic process within 5 h. Simultaneously, the released inorganic arsenic could be completely converted to As(V) and eventually immobilized onto the surface of membrane. The critical reactive oxidation species (ROS) including center dot O-2(-), h(+) and center dot OH contributed to the photodegradation of ROX, and the PDA coating played multiple roles as an adhesive interface, an electron transfer layer, and an active adsorptive layer. Additionally, based on the HPLC-AFS and GC-MS analysis, the major degradation products were detected and the mechanism of ROX degradation and simultaneous arsenic immobilization by BiOCl0.875Br0.125/PDA functionalized PVDF membranes (BPMs) was given, and the reaction pathway of ROX during the photocatalytic/filtration process was also taken into consideration. Combined with the exceptional photocatalytic property and high adsorption capacity of arsenic, the fabricated BPMs may open new opportunities for the control of ROX in water treatment.
机译:通过BioCl0.875Br0.125和聚二胺(PDA)改性的双官能膜在目前的研究中开发,并在可见光下用于光催化降解Roxarsone(ROX)的光催化降解,并通过吸附同时固定释放的无机砷。表征技术,例如FeSEM,XRD,FTIR-ATR,DRS和XPS用于表征以制备的膜,以分析其结构和功能属性。动态循环实验表明,通过5小时内的光催化过程可以实现ROX(类似于100%)的令人满意的降解效率。同时,释放的无机砷可以完全转化为(V)并最终将其固定在膜的表面上。包括中心点O-2( - ),H(+)和中心点OH的临界反应性氧化物质(ROS)有助于ROX的光降解,并且PDA涂层发挥了多种作用作为粘合剂界面,电子转移层,和一个活跃的吸附层。另外,基于HPLC-AFS和GC-MS分析,检测到主要的降解产物,并给出了BioCl0.875BR0.125 / PDA官能化PVDF膜(BPMS)的ROX降解和同时砷固定的机理,反应还考虑了光催化/过滤过程中ROX的途径。结合蛋白酶的特殊光催化性和高吸附能力,制造的BPM可以为水处理中的ROX控制提供新的机会。

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