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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 41, 2006 - Issue 4
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Original Articles

Decomposition of 1,4-Dioxane by Advanced Oxidation and Biochemical Process

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Pages 599-611 | Received 23 Dec 2004, Published online: 22 Sep 2006

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Read on this site (1)

Jina Shin, Young-Chul Lee, Yeonghee Ahn & Ji-Won Yang. (2012) 1,4-Dioxane degradation by oxidation and sonication in the presence of different-sized ZVI in open-air system. Desalination and Water Treatment 50:1-3, pages 102-114.
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Articles from other publishers (22)

Tanmoy Roy Tusher, Chihiro Inoue & Mei-Fang Chien. (2022) Efficient biodegradation of 1,4-dioxane commingled with additional organic compound: Role of interspecies interactions within consortia. Chemosphere 308, pages 136440.
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Mansi Kikani, Gopi Vijaybhai Satasiya, Tarini Prasad Sahoo, P. Senthil Kumar & Madhava Anil Kumar. (2022) Remedial strategies for abating 1,4-dioxane pollution-special emphasis on diverse biotechnological interventions. Environmental Research 214, pages 113939.
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Issam Najm, Karl Linden, Bryan Liu, Joseph Liles & Steve Winners. (2022) Destruction of 1, 4‐Dioxane and VOCs with UV‐H 2 O 2 in a high alkalinity groundwater . AWWA Water Science 4:4.
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Tanmoy Roy Tusher, Takuya Shimizu, Chihiro Inoue & Mei-Fang Chien. (2021) Isolation and Characterization of Novel Bacteria Capable of Degrading 1,4-Dioxane in the Presence of Diverse Co-Occurring Compounds. Microorganisms 9:5, pages 887.
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Cheng-Shiuan Lee, Arjun K. Venkatesan, Harold W. Walker & Christopher J. Gobler. (2020) Impact of groundwater quality and associated byproduct formation during UV/hydrogen peroxide treatment of 1,4-dioxane. Water Research 173, pages 115534.
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S. Kaviya. 2020. Green Methods for Wastewater Treatment. Green Methods for Wastewater Treatment 87 120 .
Tanmoy Roy Tusher, Takuya Shimizu, Chihiro Inoue & Mei-Fang Chien. (2019) Enrichment and Analysis of Stable 1,4-dioxane-Degrading Microbial Consortia Consisting of Novel Dioxane-Degraders. Microorganisms 8:1, pages 50.
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NORIFUMI YAMAMOTO, DAISUKE INOUE, YUJI SAITO & MICHIHIKO IKE. (2019) Issues on Existing Treatment Technologies and Possibility of Biological Treatment Technologies for 1,4-Dioxane-containing Industrial Wastewater1,4-ジオキサン含有排水処理における従来技術の課題と生物学的処理適用の可能性. Japanese Journal of Water Treatment Biology 55:1, pages 1-13.
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Michelle A. Myers, Nicholas W. Johnson, Erick Zerecero Marin, Peerapong Pornwongthong, Yun Liu, Phillip B. Gedalanga & Shaily Mahendra. (2018) Abiotic and bioaugmented granular activated carbon for the treatment of 1,4-dioxane-contaminated water. Environmental Pollution 240, pages 916-924.
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Norifumi Yamamoto, Yuji Saito, Daisuke Inoue, Kazunari Sei & Michihiko Ike. (2018) Characterization of newly isolated Pseudonocardia sp. N23 with high 1,4-dioxane-degrading ability. Journal of Bioscience and Bioengineering 125:5, pages 552-558.
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Norifumi Yamamoto, Daisuke Inoue, Kazunari Sei, Yuji Saito & Michihiko Ike. (2018) Field Test of On-Site Treatment of 1,4-Dioxane-Contaminated Groundwater Using <i>Pseudonocardia</i> sp. D17. Journal of Water and Environment Technology 16:6, pages 256-268.
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Shu Zhang, Phillip B. Gedalanga & Shaily Mahendra. (2017) Advances in bioremediation of 1,4-dioxane-contaminated waters. Journal of Environmental Management 204, pages 765-774.
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Gui-Peng Tian, Qian-Yuan Wu, Ang Li, Wen-Long Wang & Hong-Ying Hu. (2017) Promoted ozonation for the decomposition of 1,4-dioxane by activated carbon. Water Supply 17:2, pages 613-620.
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Wenhua Shen, Yujue Wang, Juhong Zhan, Bin Wang, Jun Huang, Shubo Deng & Gang Yu. (2017) Kinetics and operational parameters for 1,4-dioxane degradation by the photoelectro-peroxone process. Chemical Engineering Journal 310, pages 249-258.
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Ramanan Sekar, Martial Taillefert & Thomas J. DiChristina. (2016) Simultaneous Transformation of Commingled Trichloroethylene, Tetrachloroethylene, and 1,4-Dioxane by a Microbially Driven Fenton Reaction in Batch Liquid Cultures. Applied and Environmental Microbiology 82:21, pages 6335-6343.
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Daisuke Inoue, Tsubasa Tsunoda, Kazuko Sawada, Norifumi Yamamoto, Yuji Saito, Kazunari Sei & Michihiko Ike. (2016) 1,4-Dioxane degradation potential of members of the genera Pseudonocardia and Rhodococcus. Biodegradation 27:4-6, pages 277-286.
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Helen Barndõk, Laura Blanco, Daphne Hermosilla & Ángeles Blanco. (2016) Heterogeneous photo-Fenton processes using zero valent iron microspheres for the treatment of wastewaters contaminated with 1,4-dioxane. Chemical Engineering Journal 284, pages 112-121.
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Ramanan Sekar & Thomas J. DiChristina. (2014) Microbially Driven Fenton Reaction for Degradation of the Widespread Environmental Contaminant 1,4-Dioxane. Environmental Science & Technology 48:21, pages 12858-12867.
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Noemí Merayo, Daphne Hermosilla, Luis Cortijo & Ángeles Blanco. (2014) Optimization of the Fenton treatment of 1,4-dioxane and on-line FTIR monitoring of the reaction. Journal of Hazardous Materials 268, pages 102-109.
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Eakalak Khan, Wanpen Wirojanagud & Nawarat Sermsai. (2009) Effects of iron type in Fenton reaction on mineralization and biodegradability enhancement of hazardous organic compounds. Journal of Hazardous Materials 161:2-3, pages 1024-1034.
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Yao-Hui Huang, Hsiao-Ting Su & Li-Way Lin. (2009) Removal of citrate and hypophosphite binary components using Fenton, photo-Fenton and electro-Fenton processes. Journal of Environmental Sciences 21:1, pages 35-40.
Crossref
Tanmoy Roy Tusher, Chihiro Inoue & Mei-Fang Chien. (2022) Efficient Biodegradation of 1,4-Dioxane Commingled with Additional Organic Compound: Role of Interspecies Interactions. SSRN Electronic Journal.
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