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A series of batch tests were conducted to investigate the effects of pH and intermediate products on biological hydrogen production.
Batch tests were conducted to study the effects of contact time, initial Pb II) concentration, loess proportion in LSB, and pH on Pb II) adsorption.
Nitrification batch tests were conducted with an initial ammonia concentration of 2.0 mg L−1 and varying raw water temperatures of 2.8 28.3 °C.
Batch tests were conducted in a specially designed protocol using ultrasound, and changing iron (commercial iron powder of micro-scale grain size) loading and pH.
Laboratory batch tests were conducted using the soils spiked with PCB 44 at an initial concentration of 50 mg/kg to determine the optimal conditions for effective oxidation.
A series of batch tests were conducted to investigate the effect of different sulfide concentrations (0 1600 mg-total dissolved sulfide (TDS)/L) on autotrophic denitrification and sulfide oxidation by SOB-enriched sludge.
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Batch mode tests were conducted to prognosticate the adsorption equilibrium.
Series of 27 successive batch leaching tests were conducted under acidic, alkaline or reductive conditions using a representative sludge sample taken from an 8-year old VFCW plant.
In this work, batch reactor tests were conducted to study the thermal runaway behavior of hydrogen peroxide under the contaminations of Fe3+ ion, formic/acetic acid and ethanol/acetone.
In this study, batch fermentation tests were conducted to investigate the direct hydrogen production enhancement of mesophilic cellulolytic bacteria C. termitidis co-cultured with mesophilic hydrogen producer C. beijerinckii on cellulose at 2 g l−1 compared to C. termitidis mono-culture.
Batch fermentation tests were conducted with a series of 500-mL serum bottles, which were inoculated with sludge taken from five semi-continuous reactors after 55 days of operation, and illustrated as CSS, RSS, LESS, ABSS, and BLS, respectively.
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