Facile fabrication of sea buckthorn biocarbon (SB)@alpha-Fe2O3 composite catalysts and their applications for adsorptive removal of doxycycline wastewater through a cohesive heterogeneous Fenton-like regeneration
Zhang, Xia1; Bai, Bo2; Wang, Honglun2; Suo, Yourui2
刊名rsc advances
2016
卷号6期号:44页码:38159-38168
英文摘要a facile, low-cost and novel route for successful synthesis of sb@alpha-fe2o3 composite catalysts was described through a simple thermal conversion process from sb@beta-feooh precursor. the products were characterized by x-ray diffraction (xrd), scanning electron microscopy (sem), energy dispersive spectrometry (eds) and fourier transformed infrared spectroscopy (ftir) analysis, respectively. the experimental results indicated that alpha-fe2o3 phase nanoparticles in the sb@alpha-fe2o3 composites appeared in spindly nanorods and were highly dispersed on the surface of sea buckthorn biocarbon (sb) platform. the mechanism of thermal conversion from sb@beta-feooh precursor to sb@alpha-fe2o3 products was discussed. subsequently, the naked sb and resultant sb@alpha-fe2o3 composites were applied in fixed-bed columns for the effective pre-adsorption of doxycycline (do) from an aqueous solution. breakthrough curves for do adsorption were carried out at different empty bed contact times (ebcts). the results showed that the adsorption capacity of sb@alpha-fe2o3 was much better than that of sb at all tested ebcts. the do-saturated sb@alpha-fe2o3 bed was almost completely regenerated in situ through triggering a succedent heterogeneous fenton-like regeneration process with an h2o2 dose of 1% w/v for 3 h, while the naked sb was hardly regenerated by a parallel processes. in view of the facile synthetic method of composites, the superior adsorption performance and the effective way of regeneration for consecutive pre-adsorption/regeneration cycles, the heterogeneous fenton-like oxidation of do-exhausted sb@alpha-fe2o3 presents to be a promising and viable strategy for the regeneration of adsorbent. regeneration mechanism of sb@alpha-fe2o3 was in-depth investigated.
WOS标题词science & technology ; physical sciences
类目[WOS]chemistry, multidisciplinary
研究领域[WOS]chemistry
关键词[WOS]fixed-bed column ; activated carbon ; aqueous-solution ; hydrogen-peroxide ; beta-feooh ; pyrolysis temperature ; alpha-fe2o3 particles ; enhanced adsorption ; graphene oxide ; degradation
收录类别SCI
语种英语
WOS记录号WOS:000374495400084
内容类型期刊论文
源URL[http://ir.nwipb.ac.cn/handle/363003/5751]  
专题西北高原生物研究所_中国科学院西北高原生物研究所
作者单位1.Changan Univ, Coll Environm Sci & Engn, Xian 710054, Shaanxi, Peoples R China
2.Chinese Acad Sci, Northwest Inst Plateau Biol, Key Lab Tibetan Med Res, Xining 810008, Qianghai, Peoples R China
推荐引用方式
GB/T 7714
Zhang, Xia,Bai, Bo,Wang, Honglun,et al. Facile fabrication of sea buckthorn biocarbon (SB)@alpha-Fe2O3 composite catalysts and their applications for adsorptive removal of doxycycline wastewater through a cohesive heterogeneous Fenton-like regeneration[J]. rsc advances,2016,6(44):38159-38168.
APA Zhang, Xia,Bai, Bo,Wang, Honglun,&Suo, Yourui.(2016).Facile fabrication of sea buckthorn biocarbon (SB)@alpha-Fe2O3 composite catalysts and their applications for adsorptive removal of doxycycline wastewater through a cohesive heterogeneous Fenton-like regeneration.rsc advances,6(44),38159-38168.
MLA Zhang, Xia,et al."Facile fabrication of sea buckthorn biocarbon (SB)@alpha-Fe2O3 composite catalysts and their applications for adsorptive removal of doxycycline wastewater through a cohesive heterogeneous Fenton-like regeneration".rsc advances 6.44(2016):38159-38168.
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