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Original Article

Immobilization of Microalgae for Biosorption and Degradation of Butyltin Chlorides

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Pages 399-410 | Published online: 04 Aug 2009

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Read on this site (4)

Semih Cerit, Fadime Yilmaz & Bulent Icgen. (2015) Challenging tin toxicity by a novel strain isolated from freshwaters. Desalination and Water Treatment 53:12, pages 3244-3252.
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Tetsuro Kikuchi & Shuzo Tanaka. (2012) Biological Removal and Recovery of Toxic Heavy Metals in Water Environment. Critical Reviews in Environmental Science and Technology 42:10, pages 1007-1057.
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Guo-Lan Huang & Song Zhihui. (2002) IMMOBILIZATION OF Spirulina subsalsa FOR REMOVAL OF TRIPHENYLTIN FROM WATER. Artificial Cells, Blood Substitutes, and Biotechnology 30:4, pages 293-305.
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Huang Guolan, Sun Hongwen & Cong Li Li. (2000) Study on the physiology and degradation of dye with immobilized algae. Artificial Cells, Blood Substitutes, and Biotechnology 28:4, pages 347-363.
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Articles from other publishers (13)

Divya Jyoti, Reshma Sinha & Caterina Faggio. (2022) Advances in biological methods for the sequestration of heavy metals from water bodies: A review. Environmental Toxicology and Pharmacology 94, pages 103927.
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Najeebul Tarfeen, Khair Ul Nisa, Burhan Hamid, Zaffar Bashir, Ali Mohd Yatoo, Mohd Ashraf Dar, Fayaz Ahmad Mohiddin, Zakir Amin, Rabi’atul Adawiyah Ahmad & R. Z. Sayyed. (2022) Microbial Remediation: A Promising Tool for Reclamation of Contaminated Sites with Special Emphasis on Heavy Metal and Pesticide Pollution: A Review. Processes 10:7, pages 1358.
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Hussein El-Sayed Touliabah, Mostafa M. El-Sheekh, Mona M. Ismail & Hala El-Kassas. (2022) A Review of Microalgae- and Cyanobacteria-Based Biodegradation of Organic Pollutants. Molecules 27:3, pages 1141.
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Madhumanti Mondal & Anoar Ali Khan. 2021. Wastewater Treatment. Wastewater Treatment 367 384 .
Jing Nie, Yuqing Sun, Yaoyu Zhou, Manish Kumar, Muhammad Usman, Jiangshan Li, Jihai Shao, Lei Wang & Daniel C.W. Tsang. (2020) Bioremediation of water containing pesticides by microalgae: Mechanisms, methods, and prospects for future research. Science of The Total Environment 707, pages 136080.
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K. Athira, Asha Sathish, K. Nithya & A. Guhananthan. (2020) Corn cob immobilised Chlorella sorokiniana for the sequestration of chromium ions from aqueous solution. Materials Today: Proceedings 33, pages 2148-2155.
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Jianhua Du, Sreenivasulu Chadalavada, Zuliang Chen & Ravi Naidu. (2014) Environmental remediation techniques of tributyltin contamination in soil and water: A review. Chemical Engineering Journal 235, pages 141-150.
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Anatoly Tsygankov & Sergey Kosourov. 2014. Microbial BioEnergy: Hydrogen Production. Microbial BioEnergy: Hydrogen Production 321 347 .
Jing Jin, Lihua Yang, Sidney M.N. Chan, Tiangang Luan, Yan Li & Nora F.Y. Tam. (2011) Effect of nutrients on the biodegradation of tributyltin (TBT) by alginate immobilized microalga, Chlorella vulgaris, in natural river water. Journal of Hazardous Materials 185:2-3, pages 1582-1586.
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Luz E. de-Bashan & Yoav Bashan. (2010) Immobilized microalgae for removing pollutants: Review of practical aspects. Bioresource Technology 101:6, pages 1611-1627.
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T.G. Luan, Jing Jin, Sidney M.N. Chan, Y.S. Wong & Nora F.Y. Tam. (2006) Biosorption and biodegradation of tributyltin (TBT) by alginate immobilized Chlorella vulgaris beads in several treatment cycles. Process Biochemistry 41:7, pages 1560-1565.
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Mamta Awasthi & Lal Chand Rai. (2005) Toxicity of nickel, zinc, and cadmium to nitrate uptake in free and immobilized cells of Scenedesmus quadricauda. Ecotoxicology and Environmental Safety 61:2, pages 268-272.
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Osamu TAKIMURA, Hiroyuki INOUE, Hiroyuki FUSE, Katsuji MURAKAMI, Yukiho YAMAOKA & Masato AIHARA. (2003) Adsorption and Degradation of Triphenyltin by Pseudomonas chiororaphis Immobilized in Alginate Beads. Journal of Japan Society on Water Environment 26:11, pages 713-717.
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