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The comparison of experimental data and model prediction for 2-CP adsorption in batch test was plotted in Fig. 5.
In a previous work, the fermented rice noodle wastewater treatment by the yeast in batch test was preliminarily investigated (Siripattanakul et al. 2010b).
Interestingly, regardless of substrate types and total solid concentration, obvious reduction of methane yield was found as κ value was lower than 0.01 1/day in batch test.
A central composite design was carried out to investigate the effect of temperature, initial pH and glucose concentration on fermentative hydrogen production by mixed cultures in batch test.
The adsorbents, (a) aluminium nanoparticles (Alu-NPs, <50 nm) incorporated in amine rich cryogels (Alu-cryo), (b) molecular imprinted polymers (<38 μm) in polyacrylamide cryogels (MIP-cryo) and (c) thiol functionalised cryogels (SH-cryo) were evaluated regarding material characteristics and arsenic removal in batch test and continuous mode.
Based on Tables 1 and 3, the adsorption capacity in column study was consistent with that in batch test.
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The quantities of nitrifiers were consistent with the nitrifying activities in batch tests.
Adsorption of Escherichia coli strain D to silica sands was measured in batch tests.
Only PUFs and textile fibers containing AgNPs exhibited catalytic activity when evaluated in batch tests (Figure 5).
A review of the literature suggests that iodine sorption should decrease under reducing conditions when I- is the predominant species; this was not consistently observed in batch tests.
To support interpretation of the results from this test, interactions between the capping material and the dredged material were also studied in batch tests.
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