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A novel recovery method for treating wastewater containing fluoride and fluoroboric acid
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In site solid/liquid separation effect for high-yield recovery of boron and fluorine from aqueous media containing borate or fluoroborate ions
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Arsenic recovery from water containing arsenite and arsenate ions by hydrothermal mineralization
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DOI 10.1016/j.jhazmat.2006.12.025, PII S030438940601483X
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Itakura, T., Sasai, R. & Itoh, H., Arsenic recovery from water containing arsenite and arsenate ions by hydrothermal mineralization. J. Hazardous Materials, 146, pp. 328-333, 2007. (Pubitemid 46921373)
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Phosphorous mineralization for resource recovery from wastewater using hydrothermal treatment
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Itakura, T., Imaizumi, H., Sasai, R. & Itoh, H., Phosphorous mineralization for resource recovery from wastewater using hydrothermal treatment. J. Ceram. Soc. Japan, 117(3), pp. 316-319, 2009.
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Chromium and phosphorous recovery from polluted water by hydrothermal mineralization
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Itakura, T., Imaizumi, H., Sasai, R. & Itoh, H., Chromium and phosphorous recovery from polluted water by hydrothermal mineralization. Waste Management and the Environment IV, (WIT Press, Southampton, UK), pp. 781-788. 2008.
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Detoxification of antimonic contaminated water and precipitation recovery of antimony by mineralization under hydrothermal condition
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Itakura, T., Sasai, R. & Itoh, H., Detoxification of antimonic contaminated water and precipitation recovery of antimony by mineralization under hydrothermal condition. Chemistry Letters, 36(4), pp. 524-525, 2007.
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