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Preparation and characterization of the carbon-Microsilica composite sorbent

机译:碳-二氧化硅复合吸附剂的制备与表征

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In this paper, Microsilica, one kind of industry solid waste, was utilized firstly to prepare carbon-Microsilica composite sorbent with core-shell structures from a partial carbonization, mixture, and sulfonation process. The prepared composite sorbent was characterized with XPS, FT-IR, SEM, XRD and gas sorption experiments. The characterization results indicated BET surface area (S_(BET)) and total pore volume (V_(total)) of the prepared composite sorbent enhance 255% and 136% than Microsilica, respectively, and an abundant of oxygen functional groups, such as carboxyl and sulfonic groups, were introduced into the surface of the prepared composite sorbent. The adsorption capacity of the prepared composite sorbent for methylene blue (MB) and Cr(VI) also was investigated and compared with Microsilica and activated carbon, the results shown that the adsorption capacity of the prepared composite sorbent for methylene blue and Cr(VI) enhance 406.6% and 657.5% than Microsilica, and reach about 70.0% and 72.3% of activated carbon adsorption capacity, respectively. This paper proposed a new approach of comprehensive utilization of Microsilica with a uncomplicated process, and the prepared carbon-Microsilica composite sorbent with excellent adsorbent performance could be used as a potential substitute of activated carbon for heavy metal ion or organic dye adsorption in waste water.
机译:本文首先利用一种工业固体废物微硅粉,通过部分碳化,混合和磺化工艺制备了具有核-壳结构的碳微硅复合吸附剂。通过XPS,FT-IR,SEM,XRD和气体吸附实验对制备的复合吸附剂进行了表征。表征结果表明,所制备的复合吸附剂的BET表面积(S_(BET))和总孔体积(V_(total))分别比Microsilica提高了255%和136%,并且含有大量的氧官能团,例如羧基将氨基和磺酸基引入制备的复合吸附剂的表面。还研究了所制备的复合吸附剂对亚甲基蓝和Cr(VI)的吸附能力,并与微二氧化硅和活性炭进行了比较,结果表明所制备的复合吸附剂对亚甲基蓝和Cr(VI)的吸附能力。比微硅粉提高406.6%和657.5%,分别达到活性炭吸附能力的70.0%和72.3%。本文提出了一种不需复杂工艺即可综合利用微硅的新方法,所制备的具有良好吸附性能的碳-微硅复合吸附剂可作为活性炭的潜在替代品,用于废水中重金属离子或有机染料的吸附。

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