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1.
Environ Sci Technol ; 41(15): 5349-56, 2007 Aug 01.
Artigo em Inglês | MEDLINE | ID: mdl-17822101

RESUMO

Beta-adrenergic blocking agents (beta blockers) are widely used pharmaceuticals which have been detected in the environment. Predicting the transport and ultimate fate of beta blockers in the environment requires understanding their adsorption to soils and sediments, something for which little information is currently available. The objective of this work was to examine the adsorption of three beta blockers, propranolol, metoprolol and nadolol, to a natural alluvial material, as well as to six minerals present as components of the alluvial material. Batch adsorption experiments indicate that, for most of the minerals studied, compound hydrophobicity is an important predictor of adsorption, with propranolol,the most hydrophobic compound studied, adsorbing to the greatest extent. Results further suggest that, for the minerals studied, electrostatic effects are not a good predictor of adsorption; adsorption extent was not well-predicted by either surface zeta potential or by the difference between experiment pH and point of zero charge, despite the cationic nature af the three beta blockers at experiment pH values. Experiments were conducted to examine the effect of an anionic surfactant, sodium dodecyl benzene sulfonate (SDBS), on adsorption. Results indicate that SDBS significantly increases the adsorption of propranolol to two different sorbents. This result is potentially important because surfactants such as SDBS are likely to be present in wastewater effluents with beta blockers and could influence their mobility in the environment.


Assuntos
Antagonistas Adrenérgicos beta/isolamento & purificação , Meio Ambiente , Antagonistas Adrenérgicos beta/química , Adsorção , Benzenossulfonatos/química , Intervalos de Confiança , Concentração de Íons de Hidrogênio , Metoprolol/química , Metoprolol/isolamento & purificação , Minerais/química , Nadolol/química , Nadolol/isolamento & purificação , Propranolol/química , Propranolol/isolamento & purificação , Rios , Propriedades de Superfície , Tensoativos/química
2.
Environ Sci Technol ; 39(8): 2592-8, 2005 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-15884354

RESUMO

A wide range of pharmaceutical compounds have been identified in the environment, and their presence is a topic of growing concern, both for human and ecological health. Adsorption to aquifer materials and sediments is an important factor influencing the fate and transport of pharmaceutical compounds in the environment. Surfactants and other amphiphiles are known to influence the adsorption of many compounds and may be present in the environment from wastewaters or other sources. The work described here examines the adsorption of four pharmaceutical compounds, acetaminophen, carbamazepine, nalidixic acid, and norfloxacin, in the presence of a natural aquifer material. Adsorption was studied as a function of pH and in the presence and absence of two surfactants, cetylpyridinium chloride (CPC), a cationic surfactant, and Tergitol NP9, an ethoxylated nonionic surfactant. In the absence of surfactants, results indicate a 1-2 orders of magnitude variation in adsorption affinity with changing pH for each of the two quinolone pharmaceuticals (nalidixic acid and norfloxacin) but no measurable adsorption for carbamazepine or acetaminophen. In the presence of surfactants, adsorption of acetaminophen and carbamazepine was enhanced to extents consistent with compound hydrophobicity, while adsorption of nalidixic acid and norfloxacin was not. At high pH values, the anionic species of nalidixic acid exhibited enhanced adsorption in the presence of the cationic surfactant, CPC.


Assuntos
Monitoramento Ambiental , Sedimentos Geológicos/química , Preparações Farmacêuticas/química , Tensoativos/química , Poluição Química da Água , Acetaminofen/química , Adsorção , Carbamazepina/química , Cátions , Cetilpiridínio/química , Concentração de Íons de Hidrogênio , Interações Hidrofóbicas e Hidrofílicas , Ácido Nalidíxico/química , Norfloxacino/química , Poloxaleno/química
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