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The rate and extent of the reductive dissolution of iron oxyhydroxide nanoparticles by hydroquinone in batch experiments were measured as a function of particle identity, particle loading, and hydroquinone concentration.
Nitrite and nitrate samples (1 ml) from the batch experiments were measured colorimetrically (Kartal et al. 2006).
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The sample from the low temperature and low N experiments had been randomized using different chip batches and different hybridization dates, but the influence of these two parameters was judge as minor and samples from the low P experiment were measured in one batch.
Batch experiments were used to measure the adsorption isotherms of the lactic acid on Silicalite.
To study the impact of DOM on barrier performance, a series of batch experiments were performed by measuring naphthalene and phenanthrene sorption onto sand coated with cetylpyridinium chloride (CPC) and bentonite coated with hexadecyltrimethylammonium bromide (HDTMA) in the presence of various concentrations of DOM.
Batch experiments were conducted to measure the adsorption isotherms of Cu2+, Pb2+, and Cd2+ over c-MCM-41(40).
Batch experiments were first conducted to measure the contact angles and interfacial tensions (IFT) between PCE and quartz surface in water containing different amount of surface active agents.
Langmuir isotherm sorption maxima for oxyanions measured in batch experiments were in the following order: perchlorate >> chromate > selenate, consistent with their selectivity.
Batch experiments were conducted to evaluate equilibrium phase-partitioning behavior.
Batch experiments were performed to determine the equilibrium solubilization capacity of the surfactant, polyoxyethylene (20) sorbitan monooleate (Tween 80), and to measure fluid viscosity, density and interfacial tension.
Three batch experiments were carried out.
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