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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Magnetically Responsive Core-Shell Fe3O4@C Adsorbents for Efficient Capture of Aromatic Sulfur and Nitrogen Compounds
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Magnetically Responsive Core-Shell Fe3O4@C Adsorbents for Efficient Capture of Aromatic Sulfur and Nitrogen Compounds

机译:具有磁响应性的核壳型Fe3O4 @ C吸附剂,可有效捕集芳族硫和氮化合物

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Elimination of aromatic sulfur and nitrogen compounds via selective adsorption is an effective method for the purification of transportation fuels to meet the increasingly stringent environmental requirements. Since the adsorption processes proceed in liquid phases, separation and recycling of adsorbents should be greatly facilitated if they were endowed with magnetism. In the present study, magnetically responsive core-shell microspheres, Fe3O4@C, which comprise a magnetite core and a carbon shell with a thickness adjustable from 47 to 97 nm, were fabricated for the adsorption of aromatic sulfur and nitrogen compounds. The carbon shell derived from the carbonization of a resorcinol-formaldehyde polymer possesses abundant porosity with a hierarchical structure, which is highly active in the capture of aromatic sulfur and nitrogen compounds despite the absence of any active metal sites such as Cu(I) and Ag(I). Our results show that the Fe3O4@C adsorbents with BET surface areas ranging from 227 to 264 m g~(-1) are capable of removing thiophene (0.483 mmol g~(-1) ), benzothiophene (0.476 mmol g~(-1)), indole (0.463 mmol g~(-1)), and quinolone (0.297 mmol g~(-1)) efficiently under ambient conditions. More importantly, the superparamagnetism allows the adsorbents to be separated conveniently from the adsorption system by the use of an external field. The regenerated adsorbents after six cycles still exhibit a good adsorption capacity comparable to that of the fresh one. The present magnetically responsive core-shell Fe3O4@C adsorbents with low cost, high efficiency, and convenient recycling make them highly promising in the purification of transportation fuels.
机译:通过选择性吸附消除芳族硫和氮化合物是一种提纯运输燃料以满足日益严格的环境要求的有效方法。由于吸附过程是在液相中进行的,因此如果吸附剂具有磁性,则应大大促进吸附剂的分离和回收。在本研究中,制备了磁响应的核壳微球Fe3O4 @ C,它由磁铁矿核和厚度在47至97 nm之间的碳壳构成,用于吸附芳族硫和氮化合物。从间苯二酚-甲醛聚合物的碳化中获得的碳壳具有丰富的孔隙,具有分层结构,尽管没有任何活性金属位点(例如Cu(I)和Ag),但在捕获芳族硫和氮化合物方面具有很高的活性(一世)。我们的结果表明,BET表面积为227至264 mg〜(-1)的Fe3O4 @ C吸附剂能够去除噻吩(0.483 mmol g〜(-1)),苯并噻吩(0.476 mmol g〜(-1) ),吲哚(0.463 mmol g〜(-1))和喹诺酮(0.297 mmol g〜(-1))在环境条件下有效。更重要的是,超顺磁性允许通过使用外部磁场将吸附剂方便地与吸附系统分离。六个循环后,再生的吸附剂仍显示出与新鲜吸附剂相当的良好吸附能力。目前的低成本,高效率和方便回收的磁响应性核壳型Fe3O4 @ C吸附剂使其在运输燃料的提纯中具有很高的前景。

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