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Original Articles

Phytoremediation of contaminated sediments: evaluation of agronomic properties and risk assessment

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Pages 1-11 | Received 12 Nov 2009, Accepted 22 Oct 2010, Published online: 18 Feb 2011

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Zahra Arabi, Mehdi Homaee, Mohammad Esmaeil Asadi & Safoora Asadi Kapourchal. (2017) Cadmium removal from Cd-contaminated soils using some natural and synthetic chelates for enhancing phytoextraction. Chemistry and Ecology 33:5, pages 389-402.
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Raymond Ahulle Wuana & Phoebe Ahemen Mbasugh. (2013) Response of roselle (Hibiscus sabdariffa) to heavy metals contamination in soils with different organic fertilisations. Chemistry and Ecology 29:5, pages 437-447.
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Articles from other publishers (14)

Jalal Sadeghi, Amir Lakzian, Akram Halajnia & Mina Alikhani. (2023) Effects of fungal carbon dots application on growth characteristics and cadmium uptake in maize. Plant Physiology and Biochemistry 204, pages 108102.
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Wenjing Ning, Yifan Jia, Jian Wu, Pan Yang, Min Cao & Jie Luo. (2022) Environmental risk due to the accumulation of metals in Sedum alfredii under different intercropping patterns during phytoremediation . Land Degradation & Development 34:2, pages 534-544.
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Juan José Martínez-Nicolás, Francisca Hernández, Dámaris Núñez-Gómez, Francisco García-Sánchez, Rafael Martínez-Font, Pilar Legua & Pablo Melgarejo. (2023) Metabolomic Approach to Study the ‘Purple Queen’ Pomegranate Cultivar Response to Alternative Culture Media and Phenological Stages. Foods 12:2, pages 352.
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Francisca Hernández, Juan Martínez-Nicolás, Pablo Melgarejo, Dámaris Núñez-Gómez, Vicente Lidón, Rafael Martínez-Font & Pilar Legua. (2022) Life Cycle Assessment (LCA) of Substrate Mixes Containing Port Sediments for Sustainable ‘Verna’ Lemon Production. Foods 11:19, pages 3053.
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Ibrahim Said. (2022) Nickel pollution pathways in small ecosystem, Egypt. Arabian Journal of Geosciences 15:10.
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Juan José Martínez-Nicolás, Pilar Legua, Francisca Hernández, Rafael Martínez-Font, Edgardo Giordani & Pablo Melgarejo. (2021) Effect of Phytoremediated Port Sediment as an Agricultural Medium for Pomegranate Cultivation: Mobility of Contaminants in the Plant. Sustainability 13:17, pages 9661.
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Xiaomin GongDanlian Huang, Yunguo LiuGuangming Zeng, Rongzhong WangPiao XuChen ZhangMin ChengWenjing XueSha Chen. (2019) Roles of multiwall carbon nanotubes in phytoremediation: cadmium uptake and oxidative burst in Boehmeria nivea (L.) Gaudich . Environmental Science: Nano 6:3, pages 851-862.
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Somayyeh Eisazadeh, Safoora Asadi Kapourchal, Mehdi Homaee, Seyyed Ali Noorhosseini & Christos A. Damalas. (2018) Chive (Allium schoenoprasum L.) response as a phytoextraction plant in cadmium-contaminated soils. Environmental Science and Pollution Research 26:1, pages 152-160.
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W.H.T. Ting, I.A.W. Tan, S.F. Salleh & N.A. Wahab. (2018) Application of water hyacinth ( Eichhornia crassipes ) for phytoremediation of ammoniacal nitrogen: A review. Journal of Water Process Engineering 22, pages 239-249.
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Marco Pittarello, Jader Galba Busato, Paolo Carletti & Leonardo Barros Dobbss. (2017) Possible developments for ex situ phytoremediation of contaminated sediments, in tropical and subtropical regions – Review. Chemosphere 182, pages 707-719.
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S. A. Salman, A. A. Elnazer & H. A. El Nazer. (2016) Integrated mass balance of some heavy metals fluxes in Yaakob village, south Sohag, Egypt. International Journal of Environmental Science and Technology 14:5, pages 1011-1018.
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Beatriz Moreno, Rosa Cañizares, Cristina Macci, Serena Doni, Grazia Masciandaro & Emilio Benitez. (2015) Molecular tools to understand the bioremediation effect of plants and earthworms on contaminated marine sediments. Journal of Hazardous Materials 300, pages 398-405.
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Seulki Jeong, Hee Sun Moon & Kyoungphile Nam. (2015) Increased ecological risk due to the hyperaccumulation of As in Pteris cretica during the phytoremediation of an As-contaminated site. Chemosphere 122, pages 1-7.
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G. Masciandaro, A. Di Biase, C. Macci, E. Peruzzi, R. Iannelli & S. Doni. (2014) Phytoremediation of dredged marine sediment: Monitoring of chemical and biochemical processes contributing to sediment reclamation. Journal of Environmental Management 134, pages 166-174.
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