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The copper concentration was increased from 20 to 50 mg/L to obtain the maximum removal capacities for the targeted copper ions.
The maximum removal capacities of benzene in a combined process of photo-oxidation and sorption affinity were 111.6 and 144.8 mg/g for ACF-TiO2 and ACF-TNW, respectively, at pH 5, under UV light irradiation within 80 min.
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As a result, 99.5% of Cr VI) could be removed within 2 h, and the maximum removal capacity for Cr VI) of Cu0 PEI(1800)–PAA was 9.16 mg/g.
The maximum removal capacity observed at the optimal conditions was 278.9 ± 4.3 mg g−1.
A maximum removal capacity of 2.93 mmol Cu II)/g was obtained after a regeneration cycle.
The maximum removal capacity for As III) and As V) was found to be 10.3 and 12.2 mg/g, respectively.
The maximum removal capacity for Cr III) and Cr VI) was 85.65 and 88.27 mg/g, respectively.
The maximum removal capacity was found to be nearly 12 mg/g for both As III) and As V).
The maximum removal capacity at equilibrium concentration of 40 ppm was found to be 0.83 mg/g.
The maximum removal capacity of Cu II) with dried and carbonized biomass is found as 35.71 and 8.33 mg/g, respectively.
Under optimum adsorption conditions (pH = 4.5, T = 318 K), The maximum removal capacity of L-CysC microcolumn toward Se (IV) was found to be 105.1 mg/g.
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