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首页> 外文期刊>Journal of thermal analysis and calorimetry >Barothermal preparation and characterization of micro-mesoporous activated carbons Textural studies, thermal destruction and evolved gas analysis with TG-TPD-IR technique
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Barothermal preparation and characterization of micro-mesoporous activated carbons Textural studies, thermal destruction and evolved gas analysis with TG-TPD-IR technique

机译:TG-TPD-IR技术的重热制备和微介孔活性炭的表征织构研究,热破坏和逸出气体分析

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摘要

In this study, natural microporous activated carbon (AC) was barothermal treated with hydrogen peroxide vapors at 553 and 623 K. Nitrogen adsorption proves the formation of micro-mesoporous ACs with S (ext) of 350 m(2) g(-1) at S (BET) = 1250 m(2) g(-1). The texture of ACs drastically depends on the oxidant concentration and temperature at the treatment. Thermal behavior of the initial and obtained ACs was examined in an argon dynamic atmosphere with thermogravimetric (TG) analysis. Thermoprogrammed desorption coupled with infrared spectroscopy (TPD-IR) and MS spectroscopy monitoring of evolved gases were used to disclose the regularities of the surface groups thermodestruction. TG-TPD-IR shows that the barothermal oxidation suppresses the rich surface chemistry of the initial AC, of 1 mmol g(-1) of oxygen-containing functional groups. The oxidation causes selective functionalization of the AC surface with 2.6-4.3 mmol g(-1) of non-acidic quinolic (Qu) groups. The CO/CO2 release from the barothermal treated ACs has reached the Boudouard equilibrium at temperatures above 930 K. Thermal stability of two different surface centers, single spaced and vicinal Qu groups, is assigned as a factor responsible for issues related to the thermodesorption of CO/CO2 and the passage of the reversed reaction of Boudouard-Bell.
机译:在这项研究中,天然微孔活性炭(AC)在553和623 K下用过氧化氢蒸汽进行了重压处理。氮吸附证明形成了S(ext)为350 m(2)g(-1)的微介孔AC。在S(BET)= 1250 m(2)g(-1)下。 AC的质地在很大程度上取决于处理时的氧化剂浓度和温度。使用热重分析(TG)在氩气动态气氛中检查初始和获得的AC的热行为。使用热程序解吸与红外光谱法(TPD-IR)和MS光谱法监测逸出气体的方法来揭示表面基团热破坏的规律性。 TG-TPD-IR表明,重压氧化抑制了初始AC的1 mmol g(-1)含氧官能团的丰富表面化学。氧化导致具有2.6-4.3 mmol g(-1)的非酸性喹啉(Qu)基团的AC表面选择性官能化。在高于930 K的温度下,从经过重热处理的AC中释放出的CO / CO2已达到Boudouard平衡。两个不同的表面中心(单排和相邻的Qu基团)的热稳定性被指定为负责与CO热解吸有关的问题的因素/ CO2和Boudouard-Bell逆反应的通过。

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