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首页> 外文期刊>ACS Omega >Hydrophobic Magnetic Porous Material of Eichhornia crassipes for Highly Efficient Oil Adsorption and Separation
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Hydrophobic Magnetic Porous Material of Eichhornia crassipes for Highly Efficient Oil Adsorption and Separation

机译:Eichhornia散装磁性多孔材料,用于高效的油吸附和分离

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Many oil adsorption materials are composed of nonrenewable raw materials, and their disposal can increase resource consumption and cause new environmental pollution. In this paper, the carbonized Eichhornia crassipes (CEC) were immobilized with Fe_(3)O_(4) magnetic nanoparticles and modified with 1H , 1H , 2H , 2H -perfluorooctyltriethoxysilane (PFOS) to prepare an oil adsorption material, referred to here as CEC/Fe_(3)O_(4)/PFOS. The magnetic and mechanical strength of the CEC was enhanced by adding Fe_(3)O_(4) magnetic particles, which enable it efficient to dispose the oil/water solution. CEC/Fe_(3)O_(4)/PFOS shows high porosity (83.53%), low skeletal density (0.487 g/cm~(3)), excellent magnetism, ultrahigh oil absorption capacity (49.94–140.90 g/g), hydrophobic performances with a water contact angle of 150.1 ± 2.3°, and a sliding angle of 10.5°. It is worth noting that the material can be recycled, and the absorbed oil is obtained by distillation. Therefore, this work may provide a candidate for solving the problem of oil pollution using E. crassipes .
机译:许多油吸附材料由不可再生的原材料组成,它们的处置可以提高资源消耗并导致新的环境污染。在本文中,用Fe_(3)O_(4)磁性纳米颗粒固定碳化的 EICHHORNIA沉默(CEC)并用1℃,1℃,2,2 <1 H,2 < I> Hperfluoroocortyltriethoxysilane(PFOS)制备油吸附材料,在此称为CEC / Fe_(3)O_(4)/ PFOS。通过添加Fe_(3)O_(4)磁性颗粒来增强CEC的磁性和机械强度,这使得能够有效地处理油/水溶液。 CEC / FE_(3)O_(4)/ PFOS显示高孔隙度(83.53%),低骨骼密度(0.487克/厘米〜(3)),优异的磁,超高吸油能力(49.94-140.90 g / g),水接触角为150.1±2.3°的疏水性能,滑动角为10.5°。值得注意的是,材料可以再循环,并且通过蒸馏获得吸收的油。因此,这项工作可以提供用于使用 e解决油污问题的候选者。沉思。

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