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The influence of cosolvent and heat on the solubility and reactivity of organophosphorous pesticide DNAPL alkaline hydrolysis
Authors:Muff  Jens  MacKinnon  Leah  Durant  Neal D  Bennedsen  Lars Frausing  Rügge  Kirsten  Bondgaard  Morten  Pennell  Kurt
Institution:1.Department of Chemistry and Bioscience, Section of Chemical Engineering, Aalborg University, Niels Bohrs Vej 8, DK-6700, Esbjerg, Denmark
;2.Geosyntec Consultants Inc., 130 Research Lane, Suite 2, Guelph, Ontario, Canada
;3.Geosyntec Consultants Inc., 10220 Old Columbia Road, Suite A, Columbia, USA
;4.Rambøll, Forurenet jord og grundvand, Lysholt Allé 6, DK-7100, Vejle, Denmark
;5.COWI A/S, Jord og Grundvand, Parallelvej 2, DK-2800, Kongens Lyngby, Denmark
;6.Central Denmark Region, Environment, Lægårdvej 12, DK-7500, Holstebro, Denmark
;7.Department of Civil and Environmental Engineering, Tufts University, 200 College Avenue, Medford, MA, 02155, USA
;
Abstract:

The presented research concerned the compatibility of cosolvents with in situ alkaline hydrolysis (ISAH) for treatment of organophosphorous (OPP) pesticide contaminated sites. In addition, the influence of moderate temperature heat increments was studied as a possible enhancement method. A complex dense non-aqueous phase liquid (DNAPL) of primarily parathion (~50 %) and methyl parathion (~15 %) obtained from the Danish Groyne 42 site was used as a contaminant source, and ethanol and propan-2-ol (0, 25, and 50 v/v%) was used as cosolvents in tap water and 0.34 M NaOH. Both cosolvents showed OPP solubility enhancement at 50 v/v% cosolvent content, with slightly higher OPP concentrations reached with propan-2-ol. Data on hydrolysis products did not show a clear trend with respect to alkaline hydrolysis reactivity in the presence of cosolvents. Results indicated that the hydrolysis rate of methyl-parathion (MP3) decreased with addition of cosolvent, whereas the hydrolysis rate of ethyl-parathion (EP3) remained constant, and overall indications were that the hydrolysis reactions were limited by the rate of hydrolysis rather than NAPL dissolution. In addition to cosolvents, the influence of low-temperature heating on ISAH was studied. Increasing reaction temperature from 10 to 30 °C provided an average rate of hydrolysis enhancement by a factor of 1.4–4.8 dependent on the base of calculation. When combining 50 v/v% cosolvent addition and heating to 30 °C, EP3 solubility was significantly enhanced and results for O,O-diethyl-thiophosphoric acid (EP2 acid) showed a significant enhancement of hydrolysis as well. However, this could not be supported by para-nitrophenol (PNP) data indicating the instability of this product in the presence of cosolvent.

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