Ultra-desulfurization of sulfur recovery unit wastewater using thin film nanocomposite membrane
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, , , , , , , , , , ,سال
: 2019
چکیده: Herein, to meet the requirement of the stringent sulfur emission and discharge rate standards based on World Health Organization -WHO- and Environmental Protection Agency -EPA-, polyamide/titanium dioxide -PA/TiO2- thin film nanocomposite -TFN- membranes were synthesized to remove sulfur compound from sulfur recovery unit -SRU- wastewater. The experiments were designed to appraise the effects of three independent factors including TiO2 nanoparticle concentration, transmembrane pressure -TMP-, and operating temperature on membrane performance. Surface physiochemical and morphological properties of the resultant membranes were characterized with analytical techniques. The membrane characterizations revealed that the nanocomposite selective layer was formed on the surface of the substrate and its morphology and surface charge were affected by TiO2 loading. The performance test showed that TFN membrane was highly effective in sulfur removal as the minimum and maximum rejections with this type of membrane in the design space were 92.56% and 99.94%, respectively. In addition, the responses were predicted by the model equations designed via response surface methodology -RSM-. Accordingly, the main effects and their interactions were statistically validated by the analysis of variance -ANOVA-. In conclusion, the resulting TFN membranes demonstrated not only a very outstanding reduction in sulfur content -more than 97% below the aforementioned global surveillance standards’ level-, but also overcame the trade-off effect between permeability and selectivity of the reference TFC membranes.
کلیدواژه(گان): Ultra-desulfurization,Sulfur recovery unit,Thin film nanocomposite membrane,Titanium dioxide,Antifouling characteristic,Analysis of variance
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Ultra-desulfurization of sulfur recovery unit wastewater using thin film nanocomposite membrane
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contributor author | مهدی پورافشاری چنار | en |
contributor author | Ali Haghighi Asl | en |
contributor author | Mohammadamin Esmaeili | en |
contributor author | Arto Pihlajamaki | en |
contributor author | Mari Kallioinen | en |
contributor author | Mari Manttari | en |
contributor author | Mahdi Pourafshari Chenar | fa |
contributor author | Ali Haghighi Asl | fa |
contributor author | Mohammadamin Esmaeili | fa |
contributor author | Arto Pihlajamaki | fa |
contributor author | Mari Kallioinen | fa |
contributor author | Mari Manttari | fa |
date accessioned | 2020-06-06T13:44:46Z | |
date available | 2020-06-06T13:44:46Z | |
date issued | 2019 | |
identifier uri | http://libsearch.um.ac.ir:80/fum/handle/fum/3367383 | |
description abstract | Herein, to meet the requirement of the stringent sulfur emission and discharge rate standards based on World Health Organization -WHO- and Environmental Protection Agency -EPA-, polyamide/titanium dioxide -PA/TiO2- thin film nanocomposite -TFN- membranes were synthesized to remove sulfur compound from sulfur recovery unit -SRU- wastewater. The experiments were designed to appraise the effects of three independent factors including TiO2 nanoparticle concentration, transmembrane pressure -TMP-, and operating temperature on membrane performance. Surface physiochemical and morphological properties of the resultant membranes were characterized with analytical techniques. The membrane characterizations revealed that the nanocomposite selective layer was formed on the surface of the substrate and its morphology and surface charge were affected by TiO2 loading. The performance test showed that TFN membrane was highly effective in sulfur removal as the minimum and maximum rejections with this type of membrane in the design space were 92.56% and 99.94%, respectively. In addition, the responses were predicted by the model equations designed via response surface methodology -RSM-. Accordingly, the main effects and their interactions were statistically validated by the analysis of variance -ANOVA-. In conclusion, the resulting TFN membranes demonstrated not only a very outstanding reduction in sulfur content -more than 97% below the aforementioned global surveillance standards’ level-, but also overcame the trade-off effect between permeability and selectivity of the reference TFC membranes. | en |
language | English | |
title | Ultra-desulfurization of sulfur recovery unit wastewater using thin film nanocomposite membrane | en |
type | Journal Paper | |
contenttype | External Fulltext | |
subject keywords | Ultra-desulfurization | en |
subject keywords | Sulfur recovery unit | en |
subject keywords | Thin film nanocomposite membrane | en |
subject keywords | Titanium dioxide | en |
subject keywords | Antifouling characteristic | en |
subject keywords | Analysis of variance | en |
journal title | Separation and Purification Technology | fa |
pages | 211-225 | |
journal volume | 221 | |
journal issue | 1 | |
identifier link | https://profdoc.um.ac.ir/paper-abstract-1073655.html | |
identifier articleid | 1073655 |