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Informatics-Based Evaluation of Guava Leaf Tannin as a Bio-Coagulant: A Health Technology Approach for Sustainable
Jindawan Wibuloutai1, Chittranuch Sophapia1, Nareerat Srithong1
1Environmental Health Science, Faculty of Public Health, Mahasarkham University, Khamriang Sub-District, Kantarawichai, MahaSarakham 44150, Thailand.
Background:
The reliance on chemical coagulants like aluminum sulfate (Alum) in water treatment presents potential long-term neurodegenerative risks. This study evaluates the health technology potential of guava leaf (Psidium guajava) tannin extract as a sustainable bio-coagulant.
Objectives:
To optimize tannin extraction and provide an informatics-driven comparison of its turbidity removal efficiency against traditional methods.
Methods:
Tannin was extracted using heat-assisted methods and quantified via UV-vis spectrophotometry. Jar tests were conducted on synthetic wastewater (55 NTU) across varying pH levels. Data analysis included statistical significance testing using One-way ANOVA.
Results:
Optimal extraction (30°C, 30 min) yielded 10.79 mg/L of tannin. At pH 7, tannin achieved a turbidity reduction of 64.67% (± 1.25, p < 0.05), demonstrating comparable performance to Alum (66.67% ± 0.95).
Conclusion:
The findings suggest that bio-coagulants can be integrated into environmental health monitoring systems as a safer, informatics-supported alternative to minimize chemical exposure in public health infrastructure.
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