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Water Res ; 45(11): 3417-26, 2011 May.
Article in English | MEDLINE | ID: mdl-21536314

ABSTRACT

This work examined the sorption potential to wastewater primary- and activated-sludge solids for 34 emerging trace organic chemicals at environmentally relevant concentrations. These compounds represent a diverse range of physical and chemical properties, such as hydrophobicity and charge state, and a diverse range of classes, including steroidal hormones, pharmaceutically-active compounds, personal care products, and household chemicals. Solid-water partitioning coefficients (K(d)) were measured where 19 chemicals did not have previously reported values. Sludge solids were inactivated by a nonchemical lyophilization and dry-heat technique, which provided similar sorption behavior for recalcitrant compounds as compared to fresh activated-sludge. Sorption behavior was similar between primary- and activated-sludge solids from the same plant and between activated-sludge solids from two nitrified processes from different wastewater treatment systems. Positively-charged pharmaceutically-active compounds, amitriptyline, clozapine, verapamil, risperidone, and hydroxyzine, had the highest sorption potential, log K(d)=2.8-3.8 as compared to the neutral and negatively-charged chemicals. Sorption potentials correlated with a compound's hydrophobicity, however the higher sorption potentials observed for positively-charged compounds for a given log D(ow) indicate additional sorption mechanisms, such as electrostatic interactions, are important for these compounds. Previously published soil-based one-parameter models for predicting sorption from hydrophobicity (log K(ow)>2) can be used to predict sorption for emerging nonionic compounds to wastewater sludge solids.


Subject(s)
Organic Chemicals/chemistry , Pharmaceutical Preparations/chemistry , Sewage/chemistry , Water Pollutants, Chemical/chemistry , Adsorption , Amitriptyline/analysis , Amitriptyline/chemistry , Clozapine/analysis , Clozapine/chemistry , Cosmetics/analysis , Cosmetics/chemistry , Household Products/analysis , Hydroxyzine/analysis , Hydroxyzine/chemistry , Organic Chemicals/analysis , Pharmaceutical Preparations/analysis , Risperidone/analysis , Risperidone/chemistry , Verapamil/analysis , Verapamil/chemistry , Waste Disposal, Fluid , Water Pollutants, Chemical/analysis
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