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It was demonstrated that PAA with a lower molecular weight (2000 Da) exhibits the highest adsorption at the solid-liquid interface at pH 3.
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The adsorption isotherms are shown in Figure 2. The adsorption isotherms exhibit initially a very steep increase, which indicates high adsorption at lower concentrations.
The evidence of this is slightly higher adsorption at pH 3 of PAA 2000 Da coils in comparison to the PAA 240,000 Da chains (Fig. 8).
PL had no adsorption and CL had higher adsorption at aliphatic -OH (2.0 and 1.9 ppm).
Experimental results on adsorption conditions indicated that copper, nickel and lead ions have highest adsorption capacity at pH 5, while the maximum adsorbent dosage was 1 g/L for copper and lead ions recording a sorption capacity of 1.013 and 0.853 mg/g, respectively, and 2 g/L for nickel recording 0.07 mg/g.
The MITDC showed maximum removal (98.2 %) at a pH value of 4.7, whereas RT exhibited highest adsorption of Cd II) at 7.1 and 10.5.
Highest adsorption was observed at pH below 4.8 and for low molecular mass hyaluronan (≤150 kDa) at concentrations above 2 mg ml−1.
The CO2 adsorption decreased with increase in temperature with the highest adsorption capacity obtained at 25 °C.
Highest adsorption was achieved at low temperature (25 °C) indicating the exothermic nature of the adsorption process.
The highest adsorption was found at pH 6 using Fe3O4/PVP (1 g) as adsorbent.
On the other hand, highest adsorption was obtained at pH 9. Finally, Char ash produced from animal bones is a potential adsorbent to remove phenols from aqueous system.
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