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Bisphenol A degradation enhanced by air bubbles via advanced oxidation using in situ generated ferrous ions from nano zero-valent iron/palygorskite composite materials

机译:使用纳米零价铁/坡缕石复合材料原位生成的亚铁离子通过高级氧化作用使气泡促进双酚A降解

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摘要

Novel nano zero-valent iron/palygorskite composite materials prepared by evaporative and centrifuge methods are tested for the degradation of bisphenol A in an aqueous medium. A systematic study is presented which showed that nano zero-valent iron material has little effect on bisphenol A degradation. When hydrogen peroxide was added to initiate the reaction, some percentage of bisphenol A removal (∼20%) was achieved; however, with the aid of air bubbles, the percentage removal can be significantly increased to ∼99%. Compared with pristine nano zero-valent iron and commercial iron powder, nano zero-valent iron/palygorskite composite materials have much higher reactivity towards bisphenol A and these materials are superior as they have little impact on the solution pH. However, for pristine nano zero-valent iron, it is difficult to maintain the reaction system at a favourable low pH which is a key factor in maintaining high bisphenol A removal. All materials were characterized by X-ray diffraction, scanning electron microscopy, elemental analysis, transmission electron microscopy and X-ray photoelectron spectroscopy. The optimum conditions were obtained based on a series of batch experiments. This study has extended the application of nano zero-valent iron/palygorskite composites as effective materials for the removal of phenolic compounds from the environment.
机译:测试了通过蒸发和离心法制备的新型纳米零价铁/凹凸棒石复合材料在水性介质中双酚A的降解。进行了系统的研究,表明纳米零价铁材料对双酚A的降解几乎没有影响。当添加过氧化氢引发反应时,双酚A的去除率达到了约20%。但是,借助气泡,去除率可以显着提高到〜99%。与原始的纳米零价铁和市售铁粉相比,纳米零价铁/坡缕石复合材料对双酚A的反应活性更高,并且这些材料对溶液的pH值影响很小,因此具有优越性。然而,对于原始的纳米零价铁,难以将反应体系维持在有利的低pH下,这是维持高双酚A去除的关键因素。所有材料均通过X射线衍射,扫描电子显微镜,元素分析,透射电子显微镜和X射线光电子能谱进行了表征。基于一系列批处理实验获得了最佳条件。这项研究扩展了纳米零价铁/坡缕石复合材料作为从环境中去除酚类化合物的有效材料的应用。

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