College of Environmental Science and Technology, Shanghai Jiao Tong University, Shanghai 200240, PR China.
Bioresour Technol. 2012 Aug;118:638-42. doi: 10.1016/j.biortech.2012.05.102. Epub 2012 May 29.
A magnetic porous carbon containing Fe(3)O(4) (FPC) has been synthesized by a novel activation and carbonization process of sewage sludge without extra addition of ferric ions. Properties of FPC carbonized at 600, 800 and 1000 °C were studied using N(2) adsorption and desorption isotherms, X-ray diffraction (XRD), scanning electron microscopy (SEM) and vibrating sample magnetometer. The results indicate that FPC carbonized at 600 °C has a superior porous structure and high pore volume (0.504 mL/g). Further study found that Fe(3)O(4) is dominating in the presence of iron in FPC carbonized at 600 °C. The resulting chars shows higher catalytic activity in 1-diazo-2-naphthol-4-sulfonic acid (1,2,4-Acid) oxidation than commercial Fe(3)O(4) MNPs. The 1,2,4-Acid and TOC removal efficiency can reach 96.6% and 87.2% after 260 min Fenton-like treatment. The mechanism in FPC-H(2)O(2) system may include a Haber-Weiss type reaction between the active sites (e.g. Fe(3)O(4)) in FPC and hydrogen peroxide.
一种含有 Fe(3)O(4)(FPC)的磁性多孔碳通过一种新颖的活化和碳化工艺合成,该工艺无需额外添加铁离子。通过 N(2)吸附和解吸等温线、X 射线衍射(XRD)、扫描电子显微镜(SEM)和振动样品磁强计研究了在 600、800 和 1000°C 碳化的 FPC 碳的性质。结果表明,在 600°C 碳化的 FPC 具有优越的多孔结构和高孔体积(0.504mL/g)。进一步的研究发现,在 600°C 碳化的 FPC 中,Fe(3)O(4)是主要的含铁物质。所得的炭在 1-重氮-2-萘酚-4-磺酸(1,2,4-酸)氧化中表现出比商业 Fe(3)O(4) MNPs 更高的催化活性。在类 Fenton 处理 260 分钟后,1,2,4-酸和 TOC 的去除效率可达到 96.6%和 87.2%。在 FPC-H(2)O(2)体系中的机制可能包括 FPC 中的活性位点(如 Fe(3)O(4))与过氧化氢之间的Haber-Weiss 型反应。