Mechanisms of Phosphorus Removal by Recycled Crushed Concrete
Due to urbanisation, there are large amounts of waste concrete, particularly in rapidly industrialising countries. Currently, demolished concrete is mainly recycled as aggregate for reconstruction. This study has shown that larger sizes (2–5 mm) of recycled concrete aggregate (RCA) removed more than...
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doaj-9651097f576e4ce79d40ddaed00482b52020-11-24T22:11:47ZengMDPI AGInternational Journal of Environmental Research and Public Health1660-46012018-02-0115235710.3390/ijerph15020357ijerph15020357Mechanisms of Phosphorus Removal by Recycled Crushed ConcreteYihuan Deng0Andrew Wheatley1School of Architecture, Building and Civil Engineering, Loughborough University, Loughborough, LE113 TU, UKSchool of Architecture, Building and Civil Engineering, Loughborough University, Loughborough, LE113 TU, UKDue to urbanisation, there are large amounts of waste concrete, particularly in rapidly industrialising countries. Currently, demolished concrete is mainly recycled as aggregate for reconstruction. This study has shown that larger sizes (2–5 mm) of recycled concrete aggregate (RCA) removed more than 90% of P from effluent when at pH 5. Analysis of the data, using equilibrium models, indicated a best fit with the Langmuir which predicated an adsorption capacity of 6.88 mg/g. Kinetic analysis indicated the equilibrium adsorption time was 12 h, with pseudo second-order as the best fit. The thermal dynamic tests showed that the adsorption was spontaneous and, together with the evidence from the sequential extraction and desorption experiments, indicated the initial mechanism was physical attraction to the surface followed by chemical reactions which prevented re-release. These results suggested that RCA could be used for both wastewater treatment and P recovery.http://www.mdpi.com/1660-4601/15/2/357desorptionrecycled concretephosphorus removal and recoveryphosphorus speciation by sequential extractionthermal dynamicinfinite focused microscope |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yihuan Deng Andrew Wheatley |
spellingShingle |
Yihuan Deng Andrew Wheatley Mechanisms of Phosphorus Removal by Recycled Crushed Concrete International Journal of Environmental Research and Public Health desorption recycled concrete phosphorus removal and recovery phosphorus speciation by sequential extraction thermal dynamic infinite focused microscope |
author_facet |
Yihuan Deng Andrew Wheatley |
author_sort |
Yihuan Deng |
title |
Mechanisms of Phosphorus Removal by Recycled Crushed Concrete |
title_short |
Mechanisms of Phosphorus Removal by Recycled Crushed Concrete |
title_full |
Mechanisms of Phosphorus Removal by Recycled Crushed Concrete |
title_fullStr |
Mechanisms of Phosphorus Removal by Recycled Crushed Concrete |
title_full_unstemmed |
Mechanisms of Phosphorus Removal by Recycled Crushed Concrete |
title_sort |
mechanisms of phosphorus removal by recycled crushed concrete |
publisher |
MDPI AG |
series |
International Journal of Environmental Research and Public Health |
issn |
1660-4601 |
publishDate |
2018-02-01 |
description |
Due to urbanisation, there are large amounts of waste concrete, particularly in rapidly industrialising countries. Currently, demolished concrete is mainly recycled as aggregate for reconstruction. This study has shown that larger sizes (2–5 mm) of recycled concrete aggregate (RCA) removed more than 90% of P from effluent when at pH 5. Analysis of the data, using equilibrium models, indicated a best fit with the Langmuir which predicated an adsorption capacity of 6.88 mg/g. Kinetic analysis indicated the equilibrium adsorption time was 12 h, with pseudo second-order as the best fit. The thermal dynamic tests showed that the adsorption was spontaneous and, together with the evidence from the sequential extraction and desorption experiments, indicated the initial mechanism was physical attraction to the surface followed by chemical reactions which prevented re-release. These results suggested that RCA could be used for both wastewater treatment and P recovery. |
topic |
desorption recycled concrete phosphorus removal and recovery phosphorus speciation by sequential extraction thermal dynamic infinite focused microscope |
url |
http://www.mdpi.com/1660-4601/15/2/357 |
work_keys_str_mv |
AT yihuandeng mechanismsofphosphorusremovalbyrecycledcrushedconcrete AT andrewwheatley mechanismsofphosphorusremovalbyrecycledcrushedconcrete |
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1725804231394328576 |