Adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and water

An ordinary silica gel (SG-1) was chosen as the raw material and hydrophobically modified with trimethylchlorosilane under different microwave exposure. The orthogonal experiment was designed to screen the optimized modification method. The hydrophobic properties modified silica gel (SG-2) was analy...

Full description

Bibliographic Details
Main Authors: Weiqiu Huang, Jixing Xu, Bo Tang, Hongning Wang, Xiaobin Tan, Aihua Lv
Format: Article
Language:English
Published: Hindawi - SAGE Publishing 2018-05-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1177/0263617417728835
id doaj-6dd746da2f8d4b89883aea048fd7b76d
record_format Article
spelling doaj-6dd746da2f8d4b89883aea048fd7b76d2021-04-02T11:44:57ZengHindawi - SAGE PublishingAdsorption Science & Technology0263-61742048-40382018-05-013610.1177/0263617417728835Adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and waterWeiqiu HuangJixing XuBo TangHongning WangXiaobin TanAihua LvAn ordinary silica gel (SG-1) was chosen as the raw material and hydrophobically modified with trimethylchlorosilane under different microwave exposure. The orthogonal experiment was designed to screen the optimized modification method. The hydrophobic properties modified silica gel (SG-2) was analyzed by comparing the difference changes of surface chemistries. Then, the adsorption capacities of SG-1 and SG-2 to the n -hexane vapor and water vapor, respectively, were investigated and compared with the capacities of activated carbon and SG-3 (hydrophobically modified using the same composite modifier without microwave exposure). Meanwhile, there cyclable adsorptions of SG-2 to the two vapors were conducted while the desorptions of vacuum and heat was observed. The results showed that the effect of hydrophobic modification to SG-1 under microwave exposure was obvious and SG-2 also had a very good effect of adsorption for the n -hexane vapor. The modified silica gel shows great potential and effect for the recovery of volatile organic compounds with high content of water.https://doi.org/10.1177/0263617417728835
collection DOAJ
language English
format Article
sources DOAJ
author Weiqiu Huang
Jixing Xu
Bo Tang
Hongning Wang
Xiaobin Tan
Aihua Lv
spellingShingle Weiqiu Huang
Jixing Xu
Bo Tang
Hongning Wang
Xiaobin Tan
Aihua Lv
Adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and water
Adsorption Science & Technology
author_facet Weiqiu Huang
Jixing Xu
Bo Tang
Hongning Wang
Xiaobin Tan
Aihua Lv
author_sort Weiqiu Huang
title Adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and water
title_short Adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and water
title_full Adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and water
title_fullStr Adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and water
title_full_unstemmed Adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and water
title_sort adsorption performance of hydrophobically modified silica gel for the vapors of -hexane and water
publisher Hindawi - SAGE Publishing
series Adsorption Science & Technology
issn 0263-6174
2048-4038
publishDate 2018-05-01
description An ordinary silica gel (SG-1) was chosen as the raw material and hydrophobically modified with trimethylchlorosilane under different microwave exposure. The orthogonal experiment was designed to screen the optimized modification method. The hydrophobic properties modified silica gel (SG-2) was analyzed by comparing the difference changes of surface chemistries. Then, the adsorption capacities of SG-1 and SG-2 to the n -hexane vapor and water vapor, respectively, were investigated and compared with the capacities of activated carbon and SG-3 (hydrophobically modified using the same composite modifier without microwave exposure). Meanwhile, there cyclable adsorptions of SG-2 to the two vapors were conducted while the desorptions of vacuum and heat was observed. The results showed that the effect of hydrophobic modification to SG-1 under microwave exposure was obvious and SG-2 also had a very good effect of adsorption for the n -hexane vapor. The modified silica gel shows great potential and effect for the recovery of volatile organic compounds with high content of water.
url https://doi.org/10.1177/0263617417728835
work_keys_str_mv AT weiqiuhuang adsorptionperformanceofhydrophobicallymodifiedsilicagelforthevaporsofhexaneandwater
AT jixingxu adsorptionperformanceofhydrophobicallymodifiedsilicagelforthevaporsofhexaneandwater
AT botang adsorptionperformanceofhydrophobicallymodifiedsilicagelforthevaporsofhexaneandwater
AT hongningwang adsorptionperformanceofhydrophobicallymodifiedsilicagelforthevaporsofhexaneandwater
AT xiaobintan adsorptionperformanceofhydrophobicallymodifiedsilicagelforthevaporsofhexaneandwater
AT aihualv adsorptionperformanceofhydrophobicallymodifiedsilicagelforthevaporsofhexaneandwater
_version_ 1721571449352749056