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Synthesis and characterization of novel magnetic Fe3O4/polyurethane foam composite applied to the carrier of immobilized microorganisms for wastewater treatment

机译:新型磁性Fe 3 O 4 /聚氨酯泡沫复合材料的合成及表征

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The objective of this work was to prepare novel magnetic Fe3O4/polyurethane foam (Fe3O4/PUF) composites applied to the carriers of immobilized microorganisms for toluene-containing wastewater treatment. The morphology and structure of Fe3O4/PUF composite were characterized by X-ray diffraction, Fourier transform IR spectroscopy, thermogravimetric analysis, differential scanning calorimetry, scanning electron microscopy, and magnetic property measurement system. These morphological investigations revealed that Fe3O4 nano-particles were well dispersed into the matrix of PUF with nano-scale diameter particles. TG experiments indicated that the initial thermal weight loss temperatures of composite with the content of 2.5 wt% and 7.5% Fe3O4 were increased by 7 and 16 °C, compared with pure PUF. The degradation efficiency of toluene with magnetic PUF composite was much higher than that of pure PUF carrier, and the reason why the immobilization of microbial biomass of microorganisms on the magnetic PUF composite was much higher than that of the pure PUF. The prepared magnetic Fe3O4/PUF composite offered excellent thermal stability and medium paramagnetic properties. And this composite could not only increase the immobilized biomass of the microorganisms, but also enhance the COD removal efficiency of wastewater.
机译:这项工作的目的是制备新型的磁性Fe 3 O 4 /聚氨酯泡沫(Fe 3 O 4 / PUF)复合材料应用于固定化微生物的载体,用于含甲苯废水处理。通过X射线衍射,傅里叶变换红外光谱,热重分析,差示扫描量热法,扫描电子显微镜,扫描电镜对Fe 3 O 4 / PUF复合材料的形貌和结构进行了表征。和磁性能测量系统。这些形态学研究表明,Fe 3 O 4 纳米颗粒很好地分散在具有纳米级直径颗粒的PUF基质中。 TG实验表明,Fe 3 O 4 的含量为2.5 wt%和7.5%时,复合材料的初始热失重温度分别提高了7和16°C。用纯PUF。磁性PUF复合材料对甲苯的降解效率远高于纯PUF载体,而将微生物的微生物量固定在磁性PUF复合材料上的原因要比纯PUF高得多。制备的磁性Fe 3 O 4 / PUF复合材料具有优异的热稳定性和中等顺磁性。该复合物不仅可以增加微生物的固定化生物量,而且可以提高废水的COD去除率。

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