用填充(天然沸石)床吸附剂解决异丙醇-水共沸特性问题

Q4 Environmental Science
L. Prasakti, Muhammad Hartono, Pandu Prabowo Jati, M. F. Setiaji, S. K. Wirawan, H. Sudibyo
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引用次数: 2

摘要

研究了化学活化的天然沸石在有和没有粘合剂(淀粉)的情况下对异丙醇和水的共沸混合物中水的吸附动力学。此外,还对沸石球团的抗压强度进行了研究,以确定吸附剂的长期运行性能。沸石制备过程中使用了三个参数:沸石粒度(20、30、50和80目)、烧结温度(550、750和1000℃)、压实压力(2、4和6吨)以及淀粉与沸石的重量比(0,1:3、1:5和1:7)。初步筛选表明,最强的沸石颗粒是80目沸石粉(不添加淀粉),使用6吨压力压实,并在750°C下烧结。采用最强沸石在填充床柱上进行3个循环的吸附试验,每个循环后对沸石球团进行抗压强度试验。实验数据表明,不添加淀粉的沸石球团可以吸附混合物中98.4%的初始水。在四种描述水吸附动力学的模型中,Freundlich模型被证明是最好的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Problem Solving of Isopropyl Alcohol – Water Azeotropic Characteristics Using Packed (Natural Zeolite) Bed Adsorber
The adsorption kinetics of water from an azeotropic mixture of isopropyl alcohol and water using chemically activated natural zeolites with and without a binder (starch) was investigated. In addition, an investigation of the compressive strength of zeolite pellets was conducted to ascertain the performance of the adsorbent for long-term operation. Three parameters were applied in the zeolite-making process: the particle size of zeolite (20, 30, 50, and 80 mesh), the sintering temperature (550, 750, and 1,000°C), the compaction pressure (2, 4, and 6 tonnes), and the starch-to-zeolite weight ratio (0, 1:3, 1:5, and 1:7). Initial screenings indicated that the strongest zeolite pellet was 80-mesh zeolite powder (without starch addition) that was compacted using 6 tonnes pressure and was sintered at 750°C. The adsorption tests using the strongest zeolite were conducted in a packed-bed column for three cycles, followed by compressive strength tests on the zeolite pellets after each cycle. According to the experimental data, zeolite pellets made without the addition of starch could adsorb up to 98.4% of the initial water in the mixture. From the four models proposed to describe the kinetics of adsorption of water from the mixture, the Freundlich model turned out to be the best model.
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来源期刊
Asean Journal on Science and Technology for Development
Asean Journal on Science and Technology for Development Environmental Science-Waste Management and Disposal
CiteScore
1.50
自引率
0.00%
发文量
10
审稿时长
14 weeks
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