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Chemical and physical characteristics of optimal synthesised activated carbons from grass-derived sulfonated lignin versus commercial activated carbons

机译:草衍生的磺化木质素最佳合成活性炭与市售活性炭的化学和物理特性

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This study aims to evaluate the surface characteristics and chemistry of optimal activated carbons (ACs) synthesised from water-soluble grass-derived sulfonated lignin (SL) using three dehydrating salts (ZnCl2, KCl and Fe-2(SO4)(3)center dot xH(2)O). The optimal AC synthesised by each dehydrating salt was chosen as the carbon that achieved the highest removal efficiency of Cd2+, Cu2+ and Zn2+ ions from aqueous solutions. These optimal sulfonated lignin-based activated carbons (SLACs) showed the highest surface areas, total pore and micropore volumes among all the synthesised ACs. These SLACs were named SLAC-ZC (optimal grass-derived SLAC activated by zinc chloride); SLAC-PC (optimal grass-derived SLAC activated by potassium chloride) and SLAC-FS (optimal grass-derived SLAC activated by ferric sulphate). The surface characteristics of two commercial activated carbons (CAC1 and CAC2) were also appraised for comparison purposes. The optimal SLACs showed similar, or even better, properties to the two CACs. The N-2 adsorption/desorption isotherms showed that the micropore fraction of SLAC-ZC was greater and its mesopores were narrower than SLAG-PC. For SLAC-FS, the amount of adsorbed N-2 was markedly lower than all other ACs and hence its values of BET surface area (A(BET)) and total pore volume (V-total) were the lowest. The iodine volume capacities of SLAC-ZC and SLAC-PC were higher than CAC1, suggesting that they could operate better in continuous adsorption processes. FTIR and SEM analysis illustrated that chemical activation had changed the surface chemistry of SL. Overall; synthesis of ACs from this novel precursor will add value to sulfonated lignin, which is considered as an industrial waste. (C) 2016 Elsevier Inc. All rights reserved.
机译:这项研究旨在评估使用三种脱水盐(ZnCl2,KCl和Fe-2(SO4)(3)中心点)从水溶性草衍生的磺化木质素(SL)合成的最佳活性炭(ACs)的表面特性和化学性质xH(2)O)。选择每种脱水盐合成的最佳AC作为碳,该碳可从水溶液中获得最高的Cd2 +,Cu2 +和Zn2 +离子去除效率。这些最佳的磺化木质素基活性炭(SLAC)在所有合成的AC中显示出最高的表面积,总孔和微孔体积。这些SLAC称为SLAC-ZC(由氯化锌激活的最佳草源SLAC)。 SLAC-PC(由氯化钾激活的最佳草源SLAC)和SLAC-FS(由硫酸铁激活的最佳草源SLAC)。为了比较,还评估了两种市售活性炭(CAC1和CAC2)的表面特性。最佳SLAC显示出与两个CAC相似甚至更好的特性。 N-2吸附/解吸等温线表明,SLAC-ZC的微孔分数比SLAG-PC更大,中孔更窄。对于SLAC-FS,N-2的吸附量明显低于所有其他AC,因此其BET表面积(A(BET))和总孔体积(V-total)值最低。 SLAC-ZC和SLAC-PC的碘体积容量高于CAC1,表明它们在连续吸附过程中可以更好地工作。 FTIR和SEM分析表明,化学活化改变了SL的表面化学性质。总体;由这种新型前体合成AC可以为磺化木质素增加价值,而磺化木质素被视为工业废物。 (C)2016 Elsevier Inc.保留所有权利。

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