Cargando…
The new life of traditional water treatment flocculant polyaluminum chloride (PAC): a green and efficient micro–nano reactor catalyst in alcohol solvents
Polyaluminum chloride (PAC) is an inorganic polymer material that has the advantages of a simple preparation process and special electronic structure. It is considered to be the most efficient and widely used flocculation material for water treatment. In this work, PAC has been used as a Lewis acid...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8696963/ https://www.ncbi.nlm.nih.gov/pubmed/35425147 http://dx.doi.org/10.1039/d1ra08038e |
_version_ | 1784619937381220352 |
---|---|
author | Wang, Gang Hao, Pengcheng Liang, Yanping Liang, Yuwang Liu, Wanyi Wen, Jiantong Li, Xiang Zhan, Haijuan Bi, Shuxian |
author_facet | Wang, Gang Hao, Pengcheng Liang, Yanping Liang, Yuwang Liu, Wanyi Wen, Jiantong Li, Xiang Zhan, Haijuan Bi, Shuxian |
author_sort | Wang, Gang |
collection | PubMed |
description | Polyaluminum chloride (PAC) is an inorganic polymer material that has the advantages of a simple preparation process and special electronic structure. It is considered to be the most efficient and widely used flocculation material for water treatment. In this work, PAC has been used as a Lewis acid catalyst in interdisciplinary fields because of its polynuclear Al–O cation structure. Further, its catalytic mechanism in green organic synthesis has been studied in detail by using the multicomponent Biginelli reaction as the probe. The effect of solvent on the self-assembly and aggregation process of PAC materials was investigated using optical microscopy, UV-Vis spectrophotometry, particle size analysis, XPS, IR, SEM and HR-TEM. The results show that the PAC materials have different morphological characteristics in different solvents. The Al–O–Al cations were transformed in the ethanol solvent to form new multi-nuclear cation aggregates Al(b), which could be used as inorganic micro–nano reactors with unique synergistic catalysis in catalytic reactions. This is the first time the role of PAC in the Biginelli reaction has been analyzed with a liquid in situ infrared instrument, which provided favorable evidence for the speculated reaction mechanism. The PAC–ethanol system is, therefore, considered to be a green, efficient (best yield >99%), economic and recyclable catalyst for catalyzing organic synthesis reactions. The development and utilization of PAC materials in organic synthesis will bring new vitality to this cheap material, which is widely used in industries. |
format | Online Article Text |
id | pubmed-8696963 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-86969632022-04-13 The new life of traditional water treatment flocculant polyaluminum chloride (PAC): a green and efficient micro–nano reactor catalyst in alcohol solvents Wang, Gang Hao, Pengcheng Liang, Yanping Liang, Yuwang Liu, Wanyi Wen, Jiantong Li, Xiang Zhan, Haijuan Bi, Shuxian RSC Adv Chemistry Polyaluminum chloride (PAC) is an inorganic polymer material that has the advantages of a simple preparation process and special electronic structure. It is considered to be the most efficient and widely used flocculation material for water treatment. In this work, PAC has been used as a Lewis acid catalyst in interdisciplinary fields because of its polynuclear Al–O cation structure. Further, its catalytic mechanism in green organic synthesis has been studied in detail by using the multicomponent Biginelli reaction as the probe. The effect of solvent on the self-assembly and aggregation process of PAC materials was investigated using optical microscopy, UV-Vis spectrophotometry, particle size analysis, XPS, IR, SEM and HR-TEM. The results show that the PAC materials have different morphological characteristics in different solvents. The Al–O–Al cations were transformed in the ethanol solvent to form new multi-nuclear cation aggregates Al(b), which could be used as inorganic micro–nano reactors with unique synergistic catalysis in catalytic reactions. This is the first time the role of PAC in the Biginelli reaction has been analyzed with a liquid in situ infrared instrument, which provided favorable evidence for the speculated reaction mechanism. The PAC–ethanol system is, therefore, considered to be a green, efficient (best yield >99%), economic and recyclable catalyst for catalyzing organic synthesis reactions. The development and utilization of PAC materials in organic synthesis will bring new vitality to this cheap material, which is widely used in industries. The Royal Society of Chemistry 2021-12-23 /pmc/articles/PMC8696963/ /pubmed/35425147 http://dx.doi.org/10.1039/d1ra08038e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/ |
spellingShingle | Chemistry Wang, Gang Hao, Pengcheng Liang, Yanping Liang, Yuwang Liu, Wanyi Wen, Jiantong Li, Xiang Zhan, Haijuan Bi, Shuxian The new life of traditional water treatment flocculant polyaluminum chloride (PAC): a green and efficient micro–nano reactor catalyst in alcohol solvents |
title | The new life of traditional water treatment flocculant polyaluminum chloride (PAC): a green and efficient micro–nano reactor catalyst in alcohol solvents |
title_full | The new life of traditional water treatment flocculant polyaluminum chloride (PAC): a green and efficient micro–nano reactor catalyst in alcohol solvents |
title_fullStr | The new life of traditional water treatment flocculant polyaluminum chloride (PAC): a green and efficient micro–nano reactor catalyst in alcohol solvents |
title_full_unstemmed | The new life of traditional water treatment flocculant polyaluminum chloride (PAC): a green and efficient micro–nano reactor catalyst in alcohol solvents |
title_short | The new life of traditional water treatment flocculant polyaluminum chloride (PAC): a green and efficient micro–nano reactor catalyst in alcohol solvents |
title_sort | new life of traditional water treatment flocculant polyaluminum chloride (pac): a green and efficient micro–nano reactor catalyst in alcohol solvents |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8696963/ https://www.ncbi.nlm.nih.gov/pubmed/35425147 http://dx.doi.org/10.1039/d1ra08038e |
work_keys_str_mv | AT wanggang thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT haopengcheng thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT liangyanping thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT liangyuwang thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT liuwanyi thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT wenjiantong thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT lixiang thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT zhanhaijuan thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT bishuxian thenewlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT wanggang newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT haopengcheng newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT liangyanping newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT liangyuwang newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT liuwanyi newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT wenjiantong newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT lixiang newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT zhanhaijuan newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents AT bishuxian newlifeoftraditionalwatertreatmentflocculantpolyaluminumchloridepacagreenandefficientmicronanoreactorcatalystinalcoholsolvents |