A systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research

Geopolymer has been recently gaining attention due to its excellent properties in various applications. It is an inorganic material that can be synthesized in the presence of a precursor rich in aluminosilica and an activator. This novel material also resembles the structure of a zeolite which makes...

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Main Authors: Tigue, April Anne S., Malenab, Roy Alvin J., Promentilla, Michael Angelo B.
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Published: Animo Repository 2020
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/3372
https://animorepository.dlsu.edu.ph/context/faculty_research/article/4374/type/native/viewcontent/s41660_020_00105_y.html
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-43742021-09-07T00:32:30Z A systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research Tigue, April Anne S. Malenab, Roy Alvin J. Promentilla, Michael Angelo B. Geopolymer has been recently gaining attention due to its excellent properties in various applications. It is an inorganic material that can be synthesized in the presence of a precursor rich in aluminosilica and an activator. This novel material also resembles the structure of a zeolite which makes it suitable in wastewater treatment applications. Meanwhile, one of the contributors to toxic metals in wastewater is the mining industry. The presence of these toxic metals in wastewater due to environmental impact brought by mining activities can contaminate both the ground and surface water. In addition, this could also cause environmental damage affecting the biodiversity around the area. One of the many challenges that the mining industry faces that contributes to environmental pollution is the generation of acid mine drainage. This is produced through further exposure of sulfide ore and other minerals to water and oxygen. On the other hand, the permeable reactive barrier is an emerging remediation technique that can be used to treat acid mine drainage. This paper reviews the current trend on geopolymer and permeable reactive barrier for acid mine drainage treatment research. This paper aims to identify the topics that have been studied and to elucidate the potential areas for research which could serve as a reference to future works. © 2020, Springer Nature Singapore Pte Ltd. 2020-03-01T08:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/3372 info:doi/10.1007/s41660-020-00105-y https://animorepository.dlsu.edu.ph/context/faculty_research/article/4374/type/native/viewcontent/s41660_020_00105_y.html Faculty Research Work Animo Repository Acid mine drainage—Purification Inorganic polymers Mineral industries—Sustainable methods Chemical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Acid mine drainage—Purification
Inorganic polymers
Mineral industries—Sustainable methods
Chemical Engineering
spellingShingle Acid mine drainage—Purification
Inorganic polymers
Mineral industries—Sustainable methods
Chemical Engineering
Tigue, April Anne S.
Malenab, Roy Alvin J.
Promentilla, Michael Angelo B.
A systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research
description Geopolymer has been recently gaining attention due to its excellent properties in various applications. It is an inorganic material that can be synthesized in the presence of a precursor rich in aluminosilica and an activator. This novel material also resembles the structure of a zeolite which makes it suitable in wastewater treatment applications. Meanwhile, one of the contributors to toxic metals in wastewater is the mining industry. The presence of these toxic metals in wastewater due to environmental impact brought by mining activities can contaminate both the ground and surface water. In addition, this could also cause environmental damage affecting the biodiversity around the area. One of the many challenges that the mining industry faces that contributes to environmental pollution is the generation of acid mine drainage. This is produced through further exposure of sulfide ore and other minerals to water and oxygen. On the other hand, the permeable reactive barrier is an emerging remediation technique that can be used to treat acid mine drainage. This paper reviews the current trend on geopolymer and permeable reactive barrier for acid mine drainage treatment research. This paper aims to identify the topics that have been studied and to elucidate the potential areas for research which could serve as a reference to future works. © 2020, Springer Nature Singapore Pte Ltd.
format text
author Tigue, April Anne S.
Malenab, Roy Alvin J.
Promentilla, Michael Angelo B.
author_facet Tigue, April Anne S.
Malenab, Roy Alvin J.
Promentilla, Michael Angelo B.
author_sort Tigue, April Anne S.
title A systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research
title_short A systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research
title_full A systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research
title_fullStr A systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research
title_full_unstemmed A systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research
title_sort systematic mapping and scoping review on geopolymer and permeable reactive barrier for acid mine drainage treatment research
publisher Animo Repository
publishDate 2020
url https://animorepository.dlsu.edu.ph/faculty_research/3372
https://animorepository.dlsu.edu.ph/context/faculty_research/article/4374/type/native/viewcontent/s41660_020_00105_y.html
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