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Training on the Production of Eco-Friendly Organic Detergent Based on Hibiscus tiliaceus Leaf Extract at SMAN 3 Palu Dinalia Dinalia; Arif Ahmadi
Pelita Eksakta Vol 9 No 1 (2026): Pelita Eksakta, Vol. 9, No. 1
Publisher : Fakultas MIPA Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/pelitaeksakta/vol9-iss1/334

Abstract

The increasing use of synthetic detergents has contributed to water pollution and environmental degradation, highlighting the need for safer and more sustainable cleaning alternatives. This community service program aimed to train students of SMAN 3 Palu in producing an eco-friendly detergent derived from Hibiscus tiliaceus (daun waru) extract while strengthening their understanding of basic chemical concepts. The activities consisted of theoretical counseling, demonstration of the production process, hands-on practice, and evaluation through a 3-point Likert scale questionnaire. The results indicate that students were able to follow each stage of the procedure, including extraction, formulation, pH testing, and foam performance evaluation. Participant responses showed a highly positive assessment, particularly regarding the clarity of material delivery, adequacy of tools and materials, and overall satisfaction with the program. The training also fostered creativity and environmental awareness by introducing natural ingredients as an alternative to synthetic detergents. In conclusion, this program effectively enhanced students’ knowledge, practical skills, and environmental consciousness and has strong potential to be developed as a continuous educational initiative within the school.
Atmospheric Corrosion Inhibition of Steel Using Tea Leaf Extract in the Coastal Environment of Air Tawar, Padang Niko Kurniawan; Sabrizal Saputra; Dinalia Dinalia; Yerimadesi Yerimadesi; sauli safitri
Jurnal Akademika Kimia Vol. 14 No. 2 (2025)
Publisher : Universitas Tadulako

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22487/j24775185.2025.v14.i2.pp123-131

Abstract

This study evaluates the effectiveness of tea leaf extract as a corrosion inhibitor for steel under real coastal atmospheric exposure. The novelty of this work lies in its direct assessment of a plant-derived inhibitor in an open-air marine environment, a setting that has not been adequately addressed in previous studies, which have largely focused on controlled aqueous systems. In addition, this study employs mature tea leaves, an abundant agricultural byproduct with naturally high tannin content, processed through a simple, solvent-free extraction method, thereby offering a sustainable route for green inhibitor development. The extract was obtained from mature tea leaves through aqueous boiling, and its tannin content was quantified using UV–Vis spectrophotometry. ASSAB 760 steel specimens were coated by immersion in tea extract at varying concentrations and soaking durations, followed by natural exposure in a coastal environment for 1 to 30 days. Corrosion behavior was evaluated using the weight loss method. The results showed that mature tea leaves contained the highest tannin concentration (29530.95 ppm), supporting their selection for inhibitor application. The optimum extract concentration was identified as 11000 ppm with a 5-hour immersion time. Under these conditions, treated steel exhibited a substantially lower corrosion rate (7.78 × 10⁻⁵ g/cm²/day) compared to untreated steel (1.66 × 10⁻⁴ g/cm²/day), corresponding to a maximum inhibition efficiency of 84.71%. The inhibition mechanism is attributed to the formation of a stable Fe³⁺–tannin chelate complex that adsorbs onto the steel surface, forming a protective film that restricts the ingress of aggressive chloride-rich moisture in the coastal atmosphere. Overall, the findings demonstrate the practical viability of mature tea leaf extract as an effective and environmentally benign atmospheric corrosion inhibitor, providing field-relevant insight into sustainable protection strategies for marine-exposed steel infrastructure.