香蕉皮废活性炭和水葫芦活性炭吸附天然气等温线研究

Nasruddin, M. A. Budiyanto, A. Wijanarko, Osvaldo Sahat, Ghilandy Ramadhan
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引用次数: 1

摘要

吸附天然气技术(ANG)是一种基于吸附原理的天然气储存方法,它利用高多孔材料作为吸附剂。该技术为高甲烷含量天然气的简单压缩储存提供了便利。活性炭是一种多孔材料,通常用于吸附ANG池中的甲烷,活性炭是一种由于其高孔隙率而具有大表面积的材料。由于香蕉皮和水葫芦的含碳量高,因此可以生产活性炭。通过改变两种不同化学活化剂ZnCl2的浓度(0.25 N和1 N),以香蕉皮废物和水葫芦为原料生产活性炭。在设计的ANG罐系统上,采用每种来源的最佳活性炭作为吸附剂,根据其吸附等温线特性来研究其储存容量和输送能力。它们与市售的活性炭EnerG2进行了比较,后者的表面积为1750 m2/g。以香蕉皮废和水葫芦为原料制备的活性炭的最佳比表面积分别为797.04 m2/g和540.77 m2/g。当压力为35 bar时,EnerG2、香蕉皮废弃物和水葫芦活性炭分别吸附0.454 kg/kg、0.278 kg/kg和0.269 kg/kg气体,ANG系统中压力的增加导致每个活性炭的存储容量增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorption isotherms of natural gas on activated carbons from banana peel waste and water hyacinth
Adsorbed Natural Gas Technology (ANG) is a natural gas storage method based on the principle of adsorption which utilizes a highly porous material as adsorbents. This technology facilitates a natural gas with high methane contents storage method which may be done with simple compression. One of the porous materials that is commonly applied to adsorb methane in ANG tank is activated carbon which is a material that has large surface area because of its high porosity. Activated carbon can be produced from banana peel waste and water hyacinth because of its high carbon contents. The production of activated carbon from banana peel waste and water hyacinth is carried out by variation of two different chemical activator, ZnCl2, concentrations (0.25 N and 1 N). Activated carbon with the best characterization from each source will be adopted as adsorbents on the designed ANG tank system in order to discover their storage capacity and delivery capacity based on their adsorption isotherm properties. They are compared with the commercially available activated carbon EnerG2 which has a surface area of 1750 m2/g. The best activated carbon produced from banana peel waste and water hyacinth has a surface area of 797.04 m2/g and 540.77 m2/g, respectively. The increase of pressure in an ANG system causes an increase of storage capacity for each activated carbon where at 35 bar, EnerG2, banana peel waste, and water hyacinth activated carbons adsorb 0.454 kg/kg, 0.278 kg/kg, and 0.269 kg/kg gas, respectively.
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