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Phytostabilization of Cd and Pb in Highly Polluted Farmland Soils Using Ramie and Amendments

In-situ remediation of heavy-metal-contaminated soil in farmland using phytostabilization combined with soil amendments is a low-cost and effective technology for soil pollution remediation. In this study, coconut shell biochar (CB, 0.1% and 0.5%), organic fertilizer (OF, 3.0%), and Fe-Si-Ca materia...

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Autores principales: Lan, Mo-Ming, Liu, Chong, Liu, Shi-Jiao, Qiu, Rong-Liang, Tang, Ye-Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084681/
https://www.ncbi.nlm.nih.gov/pubmed/32143354
http://dx.doi.org/10.3390/ijerph17051661
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author Lan, Mo-Ming
Liu, Chong
Liu, Shi-Jiao
Qiu, Rong-Liang
Tang, Ye-Tao
author_facet Lan, Mo-Ming
Liu, Chong
Liu, Shi-Jiao
Qiu, Rong-Liang
Tang, Ye-Tao
author_sort Lan, Mo-Ming
collection PubMed
description In-situ remediation of heavy-metal-contaminated soil in farmland using phytostabilization combined with soil amendments is a low-cost and effective technology for soil pollution remediation. In this study, coconut shell biochar (CB, 0.1% and 0.5%), organic fertilizer (OF, 3.0%), and Fe-Si-Ca material (IS, 3.0%) were used to enhance the phytostabilization effect of ramie (Boehmeria nivea L.) on Cd and Pb in highly polluted soils collected at Dabaoshan (DB) and Yangshuo (YS) mine sites. Results showed that simultaneous application of CB, OF, and IS amendments (0.1% CB + 3.0% OF + 3.0% IS and 0.5% CB + 3.0% OF + 3.0% IS, DB-T5 and DB-T6) could significantly increase soil pH, reduce the concentrations of CaCl(2)-extractable Cd and Pb, and increase the contents of Ca, P, S, and Si in DB soil. Under these two treatments, the growth of ramie was significantly improved, its photosynthesis was enhanced, and its levels of Cd and Pb were reduced, in comparison with the control (DB-CK). After applying DB-T5 and DB-T6, the concentrations of Cd and Pb in roots were decreased by 97.7–100% and 64.6–77.9%, while in shoots they were decreased by up to 100% and 92.9–100%, respectively. In YS-T4 (0.5% CB + 3.0% OF), the concentrations of Cd and Pb in roots were decreased by 39.5% and 46.0%, and in shoots they were decreased by 44.7% and 88.3%. We posit that phytostabilization using ramie and amendments could reduce the Cd and Pb bioavailability in the soil mainly through rhizosphere immobilization and plant absorption. In summary, this study suggests that the use of tolerant plant ramie and simultaneous application of coconut shell biochar, organic fertilizer, and Fe-Si-Ca materials is an effective stabilization strategy that can reduce Cd and Pb availabilities in soil. Ultimately, this strategy may reduce the exposure risk of crops to heavy metal pollution in farmland.
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spelling pubmed-70846812020-03-24 Phytostabilization of Cd and Pb in Highly Polluted Farmland Soils Using Ramie and Amendments Lan, Mo-Ming Liu, Chong Liu, Shi-Jiao Qiu, Rong-Liang Tang, Ye-Tao Int J Environ Res Public Health Article In-situ remediation of heavy-metal-contaminated soil in farmland using phytostabilization combined with soil amendments is a low-cost and effective technology for soil pollution remediation. In this study, coconut shell biochar (CB, 0.1% and 0.5%), organic fertilizer (OF, 3.0%), and Fe-Si-Ca material (IS, 3.0%) were used to enhance the phytostabilization effect of ramie (Boehmeria nivea L.) on Cd and Pb in highly polluted soils collected at Dabaoshan (DB) and Yangshuo (YS) mine sites. Results showed that simultaneous application of CB, OF, and IS amendments (0.1% CB + 3.0% OF + 3.0% IS and 0.5% CB + 3.0% OF + 3.0% IS, DB-T5 and DB-T6) could significantly increase soil pH, reduce the concentrations of CaCl(2)-extractable Cd and Pb, and increase the contents of Ca, P, S, and Si in DB soil. Under these two treatments, the growth of ramie was significantly improved, its photosynthesis was enhanced, and its levels of Cd and Pb were reduced, in comparison with the control (DB-CK). After applying DB-T5 and DB-T6, the concentrations of Cd and Pb in roots were decreased by 97.7–100% and 64.6–77.9%, while in shoots they were decreased by up to 100% and 92.9–100%, respectively. In YS-T4 (0.5% CB + 3.0% OF), the concentrations of Cd and Pb in roots were decreased by 39.5% and 46.0%, and in shoots they were decreased by 44.7% and 88.3%. We posit that phytostabilization using ramie and amendments could reduce the Cd and Pb bioavailability in the soil mainly through rhizosphere immobilization and plant absorption. In summary, this study suggests that the use of tolerant plant ramie and simultaneous application of coconut shell biochar, organic fertilizer, and Fe-Si-Ca materials is an effective stabilization strategy that can reduce Cd and Pb availabilities in soil. Ultimately, this strategy may reduce the exposure risk of crops to heavy metal pollution in farmland. MDPI 2020-03-04 2020-03 /pmc/articles/PMC7084681/ /pubmed/32143354 http://dx.doi.org/10.3390/ijerph17051661 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lan, Mo-Ming
Liu, Chong
Liu, Shi-Jiao
Qiu, Rong-Liang
Tang, Ye-Tao
Phytostabilization of Cd and Pb in Highly Polluted Farmland Soils Using Ramie and Amendments
title Phytostabilization of Cd and Pb in Highly Polluted Farmland Soils Using Ramie and Amendments
title_full Phytostabilization of Cd and Pb in Highly Polluted Farmland Soils Using Ramie and Amendments
title_fullStr Phytostabilization of Cd and Pb in Highly Polluted Farmland Soils Using Ramie and Amendments
title_full_unstemmed Phytostabilization of Cd and Pb in Highly Polluted Farmland Soils Using Ramie and Amendments
title_short Phytostabilization of Cd and Pb in Highly Polluted Farmland Soils Using Ramie and Amendments
title_sort phytostabilization of cd and pb in highly polluted farmland soils using ramie and amendments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084681/
https://www.ncbi.nlm.nih.gov/pubmed/32143354
http://dx.doi.org/10.3390/ijerph17051661
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