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首页> 外文期刊>International journal of hydrogen energy >Synthesis and characterization of KOH/boron modified activated carbons from coal and their hydrogen sorption characteristics
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Synthesis and characterization of KOH/boron modified activated carbons from coal and their hydrogen sorption characteristics

机译:煤中KOH /硼改性活性炭的合成,表征及其氢吸附特性

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Activated carbons from bituminous coal taken from the area of Zonguldak Kilimli region in Turkey were synthesized by chemical activation using a mixed combination of KOH and as a boron source borax decahydrate. The modification process consists of chemical activation of the demineralized coal with KOH (KOH/coal:4/1) and various concentrations of borax decahydrate solutions (0.025-0.1 M). Textural properties such as surface area and pore structure were studied by volumetric methods using N-2 adsorption data at 77.4 K (P/P-0 = 0-1). The samples obtained have high microporosity, in the form of irregular structures. The EDAX spectra indicate that Boron heteroatoms are attached to surface of AC41, and as BDH concentration increases from 0.025 M to 0.1 M, higher atomic percent of boron is accumulated at the surfaces. AC41 exhibits amorphous structures, whereas BDH modified AC41 consists of predominantly amorphous structure and disordered graphitic carbon. Among the synthesized boron modified samples, the highest surface area, total pore volume and average pore diameters were found for the 0.025 M_BDH-AC41 sample. As the BDH concentration increases, the volume of N-2 adsorbed decreases. Surface area of CC and AC41 samples were 52.62 and 2228 m(2)/g, respectively, whereas surface area of the boron modified samples were found in the range of 2190-2704 m(2)/g. Hydrogen sorption capacities of the KOH/boron modified samples were found in the range between 2.08 and 3.74% wt. Hydrogen sorption capacity of AC41 obtained was 4.11% wt. Increasing boron concentration resulted in the decrease of hydrogen sorption capacities. Boron modified activated carbons were prepared successfully from coal samples by chemical activation using a mixed combination of KOH and BDH. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用KOH和十水硼砂硼砂的混合混合物,通过化学活化合成了来自土耳其Zonguldak Kilimli地区的烟煤中的活性炭。改性过程包括用KOH(KOH /煤:4/1)和各种浓度的十水合硼砂溶液(0.025-0.1 M)对脱矿煤进行化学活化。通过体积法使用77.4 K(P / P-0 = 0-1)的N-2吸附数据,研究了表面积和孔结构等质地特性。获得的样品具有不规则结构形式的高微孔率。 EDAX光谱表明,硼杂原子附着在AC41的表面,并且随着BDH浓度从0.025 M增加到0.1 M,硼的原子百分数更高。 AC41具有非晶态结构,而BDH修饰的AC41主要由非晶态结构和无序石墨碳组成。在合成的硼改性样品中,发现最大表面积,总孔体积和平均孔径为0.025 M_BDH-AC41样品。随着BDH浓度的增加,吸附的N-2的体积减小。 CC和AC41样品的表面积分别为52.62和2228 m(2)/ g,而硼改性样品的表面积为2190-2704 m(2)/ g。发现KOH /硼改性的样品的氢吸附容量在2.08至3.74重量%的范围内。得到的AC41的氢吸附容量为4.11重量%。硼浓度的增加导致氢吸附能力的降低。使用KOH和BDH的混合组合,通过化学活化从煤样品中成功制备了硼改性的活性炭。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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