陆安慧

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教授

博士生导师

硕士生导师

主要任职:校长助理

其他任职:精细化工国家重点实验室副主任,辽宁省低碳资源高值化利用重点实验室主任

性别:男

毕业院校:中科院山西煤化所

学位:博士

所在单位:化工学院

学科:工业催化. 化学工艺. 能源化工

办公地点:大连市凌工路2号大连理工大学西部校区化工楼,邮编:116024

联系方式:0411-84986112

电子邮箱:anhuilu@dlut.edu.cn

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Magnetic hollow carbon nanospheres for removal of chromium ions

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论文类型:期刊论文

发表时间:2013-09-07

发表刊物:JOURNAL OF MATERIALS CHEMISTRY A

收录刊物:SCIE、EI、Scopus

卷号:1

期号:33

页面范围:9477-9483

ISSN号:2050-7488

摘要:Magnetically functionalized carbon materials as adsorbents have shown outstanding adsorption capacity for Cr(VI) removal. Here, magnetic hollow carbon nanospheres (MHCSs) have been fabricated by simply changing the pyrolysis temperature from 600 to 850 degrees C of the polymer counterparts, which were denoted as MHCS-n, where n is 600, 700, or 850 degrees C. The MHCS composite displayed spherical morphology with a hollow air core and crack-free carbon shell structure, which was homogenously and controllably loaded with nanosized (ca. 10 nm) Fe-based nanoparticles (ca. 8.9 wt%). In principle, the hollow structure would allow more exposed adsorption sites to adsorbate than a solid structure. When evaluated as an absorbent for Cr(VI) ion removal, such highly engineered MHCSs exhibited excellent adsorption capacity. The maximum adsorption capacity of Cr(VI) per weight of adsorbent was 200 mg g(-1), which was much higher than those of other carbon-based adsorbents reported in literature. The extraordinary adsorption capacity of MHCS-700 may be attributed to two factors: (i) the large specific surface area would provide abundant functional groups, (ii) the developed graphitic structures provide electrostatic interactions between pi electrons and Cr species. Furthermore, magnetic iron-based nanoparticles allowed fast separation of the MHCSs from liquid suspension. Thus, the MHCSs may serve as an ideal candidate for chromium removal in water treatment.