PELATIHAN PEMBUATAN SABUN PADAT RAMAH LINGKUNGAN DI DESA TANJUNG PERING, INDRALAYA, SUMATERA SELATAN

Authors

  • Elsa Fitria Apriani Jurusan Farmasi, Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Sriwijaya, Sumatera Selatan, Indonesia, Indonesia
  • Dwi Hardestyariki Jurusan Biologi, Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Sriwijaya, Sumatera Selatan, Indonesia, Indonesia
  • Naisa Kornelia Jurusan Farmasi, Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Sriwijaya, Sumatera Selatan, Indonesia, Indonesia
  • Ochita Ledy Fransiska Jurusan Farmasi, Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Sriwijaya, Sumatera Selatan, Indonesia, Indonesia
  • Rida Seranita Al-Rasyid Jurusan Farmasi, Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Sriwijaya, Sumatera Selatan, Indonesia, Indonesia
  • Arini Luvita Sari Jurusan Farmasi, Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Sriwijaya, Sumatera Selatan, Indonesia, Indonesia

Abstract

Saat ini, sabun yang banyak beredar di Indonesia bukan sebuah produk sabun melainkan pembersih yang berasal dari senyawa surfaktan seperti Sodium Lauril Sulfat (SLS). Telah banyak penelitian yang membuktikan bahwa SLS memiliki efek negatif terhadap kesehatan manusia. Pemanfataan bahan alam dapat menjadi solusi dari permasalahan tersebut. Sabun dapat dibuat dari minyak nabati dengan reaksi saponifikasi. Tujuan dari pengabdian ini adalah memberikan pendampingan kepada masyarakat Desa Tanjung Pering dalam keterampilan pembuatan sabun padat ramah lingkungan. Metode yang digunakan pada kegiataan ini yaitu berupa praktek, penyuluhan, bimbingan teknis dan pendampingan. Masyarakat sangat antusias dalam mempraktekkan pembuatan sabun padat. Pembuatan yang dilakukan juga sangat sederhana sehingga kedepannya ibu-ibu PKK dapat menerapkannya sendiri dirumah dan dapat menjadi wadah usaha baru untuk dikembangkan. Selain itu, pemahaman ibu-ibu PKK tentang pembuatan sabun padat juga cukup baik dimana 90% ibu-ibu PKK paham terkait pembuatan sabun ini setelah dilakukan proses praktek.

References

Latirah, Nugroho, P.D., & Irwandi, D. (2022), “The Formulation and Analysis of Solid Bath Soap from Ethanol Extract of Kaffir Lime Peel (Citrus hystrixDC.) With Several Concentrationsâ€, Sanitas: Jurnal Teknologi Dan Seni Kesehatan, Vol. 13 No. 2, pp. 110-119.

El-Sharkawy, G.F. (2011), “Awareness of Sodium Lauryl Sulfate & Sodium Laureth Sulfate Health Hazards among Usersâ€, Journal of American Science, Vol. 7 No. 4, pp. 535-541.

Cosmetic Ingredient Review (CIR). (2005), “Final report on the safety assessment of sodiumlauryl sulfate and ammonium lauryl sulfateâ€, Int J Toxicol. Vol. 24 No. 1, pp. 1–102.

Bondi, C.A.M., Marks, J.L., Wroblewski, L.B., Raatikainen, H.S., Lenox, S.R., & Gebhardt, K.E. (2015), “Human and Environmental Toxicity of Sodium Lauryl Sulfate (SLS): Evidence for Safe Use in Household Cleaning Productsâ€, Environmental Health Insights, Vol. 9, pp. 27–32.

Engwa, G. (2015), “Effect of Sodium Lauryl Sulfate (SLS) on the External Adnexia of the Rabbit Eye’, Research Journal of Pharmacology and Toxicology, Vol. 1.

De Jongh, C.M., Verberk, M.M., Withagen, C.E., Jacobs, J.J., Rustemeyer, T., & Kezic, S. (2006), “Stratum corneum cytokines and skin irritation response to sodium lauryl sulfateâ€, Contact Dermatitis, Vol. 54 No. 6, pp. 325–333.

De Jongh, C.M., Verberk, M.M., Spiekstra, S.W., Gibbs, S., & Kezic, S. (2007), “Cytokines atdifferent stratum corneum levels in normal and sodium lauryl sulphate-irritated skinâ€, Skin Res Technol, Vol. 13 No. 4, pp. 390–398

Manashe. (2006), “Toxic Effect of Surfactant Appplied to Plant Rootsâ€, John Wiley & Sons.

Mareta, A., & Helmy, Q. (2015), “Degradasi Surfaktan Sodium Lauryl Sulfat Dengan Proses Fotokatalisis Menggunakan Nano Partikel Znoâ€, Jurnal Teknik Lingkungan, Vol. 21 No. 1, pp. 1-8.

Rahayu, S., Pambudi, K.A., Afifah, A., Fitriani, S.R., Tasyari, S., Zaki, M. & Djamahar, R. (2021), “Environmentally safe technology with the conversion of used cooking oil into soapâ€, Journal of Physics: Conference Series, Vol. 1869 No. 012044, pp. 1-7.

BerneckÄ—, S., & MaruÅ¡ka, A. (2013), “Analysis of free fatty acids in soap samples by means of gas chromatography-mass spectrometryâ€, Chemija, Vol. 24, pp. 307–311.

Vivian, O.P., Nathan, O., Osano, A., Mesopirr, L., & Omwoyo, W.N. (2014), “Assessment of the physicochemical properties of selected commercial soaps manufactured and sold in Kenyaâ€, Open J. Appl. Sci, Vol. 4, pp. 433.

Prieto Vidal, N., Adeseun Adigun, O., Pham, T. H., Mumtaz, A., Manful, C., Callahan, G., Stewart, P., Keough, D., & Thomas, R. H. (2018), “The Effects of Cold Saponification on the Unsaponified Fatty Acid Composition and Sensory Perception of Commercial Natural Herbal Soapsâ€, Molecules (Basel, Switzerland), Vol. 23 No. 9, pp. 1-20.

Compean, K. (2014), “Antimicrobial Activity of Plant Secondary Metabolites: A Reviewâ€, Research Journal of Medicinal Plant, Vol. 8, pp. 204-213.

Bhimba, B.V., Meenupriya, J., Joel, E.L., Naveena, D.E., Kumar, S., & Thangaraj M. (2010), Antibacterial activity and characterization of secondary metabolites isolated from mangrove plant Avicennia officinalisâ€, Asian Pacific Journal of Tropical Medicine, Vol. 3 No. 7, pp. 544-546.

Rumidatul, A., Rahmawati, N., & Sunarya, S. (2021), “Production of Secondary Metabolites and its Antibacterial and Antioxidant Activity During the Growth Period of Endophytic Fungi Isolated from Gall Rust Sengon Plantsâ€, Pharmacog J., Vol. 13 No. 2, pp. 325-331

Aliyu, A.W., Hassan, L.G., Gunu, S.Y., & Jega, S. (2010), “Cold- Process Synthesis and Properties of Soaps Prepared from Different Triacylglycerol Sourcesâ€, Nigerian Journal of Basic and Applied Sciences, Vol. 18, pp. 315-321.

M’hiri, N., Ioannou, I., Ghoul, M., & Mihoubi, N. (2017), “Phytochemical characteristics of citrus peel and effect of conventional and nonconventional processing on phenolic compounds: A reviewâ€, Food reviews Int J, Vol. 33 No. 6, pp. 587-619.

Jeffrey, J., Sudigdoadib, S., Kurniac, D., & Satarid, M.H. (2020), “A Monoterpenoid Isolated from Citrus Aurantifolia Peel and Its Potential as An Antibacterial for The Inhibition and Eradication of Streptococcus Mutans Biofilmâ€, Sys Rev Pharm, Vol. 11 No. 6, pp. 1205-1210

Lemes, R.S., Alves, C.C.F., Estevam, B.B., Santiago, M.B., Martins, C.H.G., Dos-Santos, T.C.L., Crotti, A.E.M., & Miranda, M.L.D. (2018), “Chemical composition and antibacterial activity of essential oils from Citrus aurantifolia leaves and fruit peel against oral pathogenic bacteriaâ€, Anais da Academia Brasileira de Ciências, Vol. 90 No. 2, pp. 1285-1292.

Low, S.J. (2017), “Determination of Activation Energy of Saponification Reaction through pH Analysisâ€, Research & Reviews: Journal of Chemistry, Vol. 6 No. 1, pp. 1-5

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Published

2023-10-23

How to Cite

Apriani, E. F., Hardestyariki, D., Kornelia, N., Fransiska, O. L., Al-Rasyid, R. S., & Sari, A. L. (2023). PELATIHAN PEMBUATAN SABUN PADAT RAMAH LINGKUNGAN DI DESA TANJUNG PERING, INDRALAYA, SUMATERA SELATAN. BUDIMAS : JURNAL PENGABDIAN MASYARAKAT, 5(2). Retrieved from https://jurnal.stie-aas.ac.id/index.php/JAIM/article/view/9817

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