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| 1 | Polytitanium sulfate(PTS):Coagulation application and Ti species detection显示文摘Interest in the development of inorganic polymerized coagulants is growing; however, there are only limited studies on the synthesis of polytitanium coagulants, which are expected to exhibit improved coagulation efficiency with better floc properties. This study presents the synthesis of polytitanium sulfate(PTS) for potential application in water purification,followed by characterization of PTS flocs and titanium species detection. Stable PTS solutions were successfully synthesized and standard jar tests were conducted to evaluate their coagulation efficiency. Electrospray ionization time-of-flight mass spectrometry(ESI-TOF-MS) speciation analysis revealed that a variety of mononuclear and polynuclear complexes were formed in PTS solution, indicating the polymeric nature of the synthesized coagulant. Floc characteristics were studied through on-line monitoring of floc size using a laser diffraction particle size analyzer. Results showed that PTS had a comparable or in some cases even higher organic matter and particulate removal efficiency than Ti(SO_4)_2.The effluent p H after PTS coagulation significantly improved toward desirable values closer to neutral p H. Properties of flocs formed by PTS were significantly improved in terms of floc size, growth rate and structure. This study showed that PTS could be an efficient and promising coagulant for water purification, with the additional benefit that its coagulated sludge can be used to recover valuable TiO_2 nanoparticles for various commercial applications. | Yanxia Zhao Sherub Phuntsho Baoyu Gao Hokyong Shon | 2017 | Journal of Environmental Sciences2017,29,2: | 4 |
| 2 | Characteristics of bio-foulants in the membrane bioreactor显示文摘 | Jang Namjung Shon Hokyong Ren Xianghao | 2006 | Desalination2006,200,123: | 1 |
| 3 | Characteristics of bio-foulants in the membrane bioreactor显示文摘 | Jang Namjung Shon Hokyong Ren Xianghao | 2006 | Desalination2006,200,13: | 1 |
| 4 | Blended Fertilizers as Draw Solutions for Fertilizer-Drawn Forward Osmosis Desalination显示文摘 | Sherub Phuntsho HoKyong Shon etc | 2012 | Environmental Science and Technology2012,3,: | 1 |
| 5 | Microbial community analysis of an aerobic nitrifying-denitrifying MBR treating ABS resin wastewater显示文摘 | Chia-Yuan Chang Kulchaya Tanong Jia Xu Hokyong Shon | 2010 | Bioresource Technology2010,,9: | 1 |
| 6 | Characteristics of bio-foulants in the membrane bioreactor显示文摘 | Jang Namjung Shon Hokyong Ren Xianghao | 2006 | Desalination2006,200,13: | 1 |
| 7 | Characteristics of bio-foulants in the membrane bioreactor 显示文摘 | Jang Namjung Shon Hokyong Ren Xianghao | 2006 | Desalination2006,200,123: | 1 |
| 8 | Characteristics of bio-foulaats in the membrane bioreactor 显示文摘 | Namjung Jang Hokyong Shon Xianghao Ren | 2006 | Desalination2006,,200: | 1 |
| 9 | CeUimmobilizedFOG-Trap system for fat, oil, and grease removal from restaurant wastewater显示文摘 | NisolaGM EulsaengC HokyongS etal | 2009 | Journal ofEnvironmentalEngineering2009,135,9: | 1 |
| 10 | The interaction mechanisms of co-existing polybrominated diphenyl ethers and engineered nanoparticles in environmental waters: A critical review显示文摘This review focuses on the occurrence and interactions of engineered nanoparticles(ENPs)and brominated flame retardants(BFRs)such as polybrominated diphenyl ethers(PBDEs)in water systems and the generation of highly complex compounds in the environment.The release of ENPs and BFRs(e.g.PBDEs)to aquatic environments during their usage and disposal are summarised together with their key interaction mechanisms.The major interaction mechanisms including electrostatic,van derWaals,hydrophobic,molecular bridging and steric,hydrogen andπ-bonding,cation bridging and ligand exchange were identified.The presence of ENPs could influence the fate and behaviour of PBDEs through the interactions as well as induced reactions under certain conditions which increases the formation of complex compounds.The interaction leads to alteration of behaviour for PBDEs and their toxic effects to ecological receptors.The intermingled compound(ENPs-BFRs)would show different behaviour from the parental ENPs or BFRs,which are currently lack of investigation.This review provided insights on the interactions of ENPs and BFRs in artificial,environmental water systems and wastewater treatment plants(WWTPs),which are important for a comprehensive risk assessment. | Anwar Ul Haq Khan Ravi Naidu Raja Dharmarajan Cheng Fang Hokyong Shon Zhaomin Dong Yanju Liu | 2023 | Journal of Environmental Sciences2023,,2: | 0 |