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Excellent long-term reactivity of inhomogeneous nanoscale Fe-based metallic glass in wastewater purification 被引量:4
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作者 Shuang-Qin Chen Ke-Zhen Hui +9 位作者 Liang-Zheng Dong Zhun Li Qing-hua Zhang Lin Gu Wei Zhao Si Lan Yubin Ke Yang Shao Horst Hahn Ke-Fu Yao 《Science China Materials》 SCIE EI CSCD 2020年第3期453-466,共14页
Metallic glasses(MGs)have attracted great attention in wastewater treatment because of their high reactivity arising from amorphous structure,large residual stress and high density of low coordination sites.However,th... Metallic glasses(MGs)have attracted great attention in wastewater treatment because of their high reactivity arising from amorphous structure,large residual stress and high density of low coordination sites.However,the reactivity of MGs would gradually slow down with time due to the passivation of active sites by corrosion products,resulting in limited long-term reactivity,which is also an unsolved key issue for established crystalline zero valent iron(ZVI)technology.Here,such problems are successfully overcome by introducing nanoscale chemical inhomogeneities in Fe-based MG(Fe-MGI),which apparently contributes to local galvanic cell effect and accelerates electron transfer during degradation process.More importantly,the selective depletion of Fe0 causes local volume shrinkage and crack formation,leading to self-peeling of precipitated corrosion products and reacted regions.Thereby fresh low coordination sites could be continuously provided,counteracting the mass transport and reactivity deteriorating problem.Consequently,Fe-MGI demonstrates excellent long-term reactivity and self-refreshing properties even in neutral solution.The present results provide not only a new candidate but also a new route of designing ZVI materials for wastewater treatment. 展开更多
关键词 Fe-based metallic glass INHOMOGENEITY self-refreshing wastewater treatment catalysis
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