Cargando…

The Discrepancy between Coal Ash from Muffle, Circulating Fluidized Bed (CFB), and Pulverized Coal (PC) Furnaces, with a Focus on the Recovery of Iron and Rare Earth Elements

Coal ash (CA) is not only one of the most solid wastes from combustion, easily resulting in a series of concerns, but it is also an artificial deposit with considerable metals, such as iron and rare earth. The variation in the coal ash characteristics due to the origins, combustion process, and even...

Descripción completa

Detalles Bibliográficos
Autores principales: Pan, Jinhe, Long, Xin, Zhang, Lei, Shoppert, Andrei, Valeev, Dmitry, Zhou, Changchun, Liu, Xiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738165/
https://www.ncbi.nlm.nih.gov/pubmed/36499989
http://dx.doi.org/10.3390/ma15238494
_version_ 1784847470642069504
author Pan, Jinhe
Long, Xin
Zhang, Lei
Shoppert, Andrei
Valeev, Dmitry
Zhou, Changchun
Liu, Xiao
author_facet Pan, Jinhe
Long, Xin
Zhang, Lei
Shoppert, Andrei
Valeev, Dmitry
Zhou, Changchun
Liu, Xiao
author_sort Pan, Jinhe
collection PubMed
description Coal ash (CA) is not only one of the most solid wastes from combustion, easily resulting in a series of concerns, but it is also an artificial deposit with considerable metals, such as iron and rare earth. The variation in the coal ash characteristics due to the origins, combustion process, and even storage environment has been hindering the metal utilization from coal ash. In this study, three ash sample from lab muffle, circulating fluidized bed (CFB), and pulverized coal (PC) furnace was derived for the discrepancy study from the combustion furnace, including properties, iron, and rare earth recovery. The origins of the coal feed samples have more of an effect on their properties than combustion furnaces. Magnetic separation is suitable for coal ash from PC because of the magnetite product, and the iron content is 58% in the Mag-1 fraction, with a yield of 3%. The particles in CA from CFB appear irregular and fragmental, while those from PC appear spherical with a smooth surface. The results of sequential chemical extraction and observation both indicated that the aluminosilicate phase plays an essential role in rare earth occurrences. Rare earth in CA from muffling and CFB is facilely leached, with a recovery of approximately 50%, which is higher than that from PC ash. This paper aims to offer a reference to easily understand the difference in metal recovery from coal ash.
format Online
Article
Text
id pubmed-9738165
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97381652022-12-11 The Discrepancy between Coal Ash from Muffle, Circulating Fluidized Bed (CFB), and Pulverized Coal (PC) Furnaces, with a Focus on the Recovery of Iron and Rare Earth Elements Pan, Jinhe Long, Xin Zhang, Lei Shoppert, Andrei Valeev, Dmitry Zhou, Changchun Liu, Xiao Materials (Basel) Article Coal ash (CA) is not only one of the most solid wastes from combustion, easily resulting in a series of concerns, but it is also an artificial deposit with considerable metals, such as iron and rare earth. The variation in the coal ash characteristics due to the origins, combustion process, and even storage environment has been hindering the metal utilization from coal ash. In this study, three ash sample from lab muffle, circulating fluidized bed (CFB), and pulverized coal (PC) furnace was derived for the discrepancy study from the combustion furnace, including properties, iron, and rare earth recovery. The origins of the coal feed samples have more of an effect on their properties than combustion furnaces. Magnetic separation is suitable for coal ash from PC because of the magnetite product, and the iron content is 58% in the Mag-1 fraction, with a yield of 3%. The particles in CA from CFB appear irregular and fragmental, while those from PC appear spherical with a smooth surface. The results of sequential chemical extraction and observation both indicated that the aluminosilicate phase plays an essential role in rare earth occurrences. Rare earth in CA from muffling and CFB is facilely leached, with a recovery of approximately 50%, which is higher than that from PC ash. This paper aims to offer a reference to easily understand the difference in metal recovery from coal ash. MDPI 2022-11-29 /pmc/articles/PMC9738165/ /pubmed/36499989 http://dx.doi.org/10.3390/ma15238494 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pan, Jinhe
Long, Xin
Zhang, Lei
Shoppert, Andrei
Valeev, Dmitry
Zhou, Changchun
Liu, Xiao
The Discrepancy between Coal Ash from Muffle, Circulating Fluidized Bed (CFB), and Pulverized Coal (PC) Furnaces, with a Focus on the Recovery of Iron and Rare Earth Elements
title The Discrepancy between Coal Ash from Muffle, Circulating Fluidized Bed (CFB), and Pulverized Coal (PC) Furnaces, with a Focus on the Recovery of Iron and Rare Earth Elements
title_full The Discrepancy between Coal Ash from Muffle, Circulating Fluidized Bed (CFB), and Pulverized Coal (PC) Furnaces, with a Focus on the Recovery of Iron and Rare Earth Elements
title_fullStr The Discrepancy between Coal Ash from Muffle, Circulating Fluidized Bed (CFB), and Pulverized Coal (PC) Furnaces, with a Focus on the Recovery of Iron and Rare Earth Elements
title_full_unstemmed The Discrepancy between Coal Ash from Muffle, Circulating Fluidized Bed (CFB), and Pulverized Coal (PC) Furnaces, with a Focus on the Recovery of Iron and Rare Earth Elements
title_short The Discrepancy between Coal Ash from Muffle, Circulating Fluidized Bed (CFB), and Pulverized Coal (PC) Furnaces, with a Focus on the Recovery of Iron and Rare Earth Elements
title_sort discrepancy between coal ash from muffle, circulating fluidized bed (cfb), and pulverized coal (pc) furnaces, with a focus on the recovery of iron and rare earth elements
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738165/
https://www.ncbi.nlm.nih.gov/pubmed/36499989
http://dx.doi.org/10.3390/ma15238494
work_keys_str_mv AT panjinhe thediscrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT longxin thediscrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT zhanglei thediscrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT shoppertandrei thediscrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT valeevdmitry thediscrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT zhouchangchun thediscrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT liuxiao thediscrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT panjinhe discrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT longxin discrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT zhanglei discrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT shoppertandrei discrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT valeevdmitry discrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT zhouchangchun discrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements
AT liuxiao discrepancybetweencoalashfrommufflecirculatingfluidizedbedcfbandpulverizedcoalpcfurnaceswithafocusontherecoveryofironandrareearthelements