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Updated: Feb 8, 2026

Quantification of Humic and Fulvic Acids in Humate Ores, DOC, Humified Materials and Humic Substance-Containing Commercial Products
Published on: March 18, 2022
[Adsorption Characteristics for Humic Acid by Binary Systems Containing Kaolinite and Goethite]
Peng-Ju Niu1, Shi-Yong Wei1,2, Dun Fang1
1Department of Chemistry and Environmental Engineering, Hubei University for Nationalities, Enshi 445000, China.
This study prepared kaolinite-goethite mixtures and complexes, revealing enhanced humic acid adsorption. The kaolinite-goethite complex showed the highest adsorption capacity, indicating improved surface properties for contaminant removal.
Area of Science:
- Environmental Science
- Soil Science
- Materials Science
Background:
- Understanding the surface properties and adsorption behavior of mineral mixtures is crucial for environmental remediation.
- Kaolinite and goethite are common soil minerals with distinct surface characteristics that influence contaminant interactions.
Purpose of the Study:
- To investigate the surface properties and humic acid adsorption of kaolinite-goethite mixtures (KGM) and complexes (KGC).
- To compare the adsorption capacities and mechanisms of binary systems with pure minerals.
Main Methods:
- Preparation of kaolinite-goethite mixture (KGM) and kaolinite-goethite complex (KGC) using different methods.
- Characterization of specific surface area (SSA), isoelectric point (IEP), and Zeta potential.
- Adsorption kinetics, isotherm, and thermodynamic studies for humic acid adsorption.
Main Results:
- Specific surface area followed the order: goethite > KGC > KGM > kaolinite, with KGC showing significant increase.
- Adsorption kinetics followed pseudo-second-order models, indicating chemisorption. Isotherm data fitted well with one-site and two-site Langmuir models.
- The kaolinite-goethite complex (KGC) exhibited the highest humic acid adsorption capacity (42.10 mg·g⁻¹), followed by KGM (35.13 mg·g⁻¹).
Conclusions:
- Binary systems of kaolinite-goethite, particularly the complex (KGC), demonstrate enhanced humic acid adsorption compared to individual minerals.
- Chemisorption and multi-site adsorption mechanisms are significant for humic acid binding onto these mineral systems.
- The prepared KGC and KGM show potential for use in environmental applications targeting organic contaminant removal.
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