Vol. 17 No. 4 (2022): July 2022
Open Access
Peer Reviewed

The effect of sucrose concentration on the transparency of solid soap-based cooking oil

Authors

Irda Handriani , Ika Kusuma Nugraheni , Mariatul Kiptiah

DOI:

10.29303/jpm.v17i4.3703

Published:

2022-07-31

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Abstract

This research aimed to identify the effect of sucrose concentration on the transparency of solid soap and to analyze the quality of used cooking oil based on the pH standards of bath soap and the quality requirements of bath soap. Sucrose, a soaping agent, was concentrated at 0%, 7%, 9%, 11%, and 13%, for the test was carried out three times in a row. The test of solid soap was a test of soap transparency, pH, air content, amount of fatty acids, free alkali, free fatty acids, neutral fats, and mineral oil. The results showed that the concentration of sucrose in soap making greatly affected the transparency of soap. The most transparent is a soap with a concentration of 13% sucrose. The quality of soap based on used cooking oil against the pH standard of bath soap has met the standard, and the quality requirements of the Indonesian Nasional Standard for bath soap are appropriate except for the water content and the number of fatty acids.

Keywords:

Cooking Oil Sucrose Bath Soap Transparency

References

Soegiantoro, G. H., Chang, J., Rahmawati, P., Christiani, M. F., & Mufrodi, Z. (2019). Home-made eco green biodiesel from chicken fat (CIAT) and waste cooking oil (PAIL). Energy Procedia, 158, 1105-1109.

Li, W., Guan, R., Yuan, X., Wang, H., Zheng, S., Liu, L., & Chen, X. (2020, June). Product Soap from Waste Cooking Oil. In IOP Conference Series: Earth and Environmental Science (Vol. 510, No. 4, p. 042038). IOP Publishing.

Mustakim, M., Taufik, R., & Trismawati, T. (2020). The utilization of waste cooking oil as a material of soap. Journal Of Development Research, 4(2), 86-91.

Sanaguano-Salguero, H., Tigre-Leon, A., & Bayas-Morejon, I. F. (2018). Use of waste cooking oil in the manufacture of soaps. Int. J. Ecol. Dev, 33, 19-27.

Zhu, X. N., Lyu, X. J., Wang, Q., Qiu, J., Wang, S. S., Liu, X. Y., & Li, L. (2019). Clean utilization of waste oil: Soap collectors prepared by alkaline hydrolysis for fluorite flotation. Journal of Cleaner Production, 240, 118179.

Rahayu, S., Pambudi, K. A., Afifah, A., Fitriani, S. R., Tasyari, S., Zaki, M., & Djamahar, R. (2021, April). Environmentally safe technology with the conversion of used cooking oil into soap. In Journal of Physics: Conference Series (Vol. 1869, No. 1, p. 012044). IOP Publishing.

Cholifah, U., Nafiunisa, A., Aryanti, N., & Wardhani, D. H. (2021, February). The influence of cocamide DEA towards the characteristics of transparent soap. In IOP Conference Series: Materials Science and Engineering (Vol. 1053, No. 1, p. 012016). IOP Publishing.

Handayani, S. S., Gunawan, E. R., Suhendra, D., Murniati, M., & Aditha, I. M. (2020). Karakterisasi Sifat Fisiko Kimia Minyak Nyamplung Sebagai Bahan Baku Sabun Padat Transparan. Jurnal Pijar Mipa, 15(4), 411-415.

Juliansyah, R., & Firawati, F. (2020). Optimasi Konsentrasi Sukrosa Terhadap Transparansi Dan Sifat Fisik Sabun Padat Transparan Minyak Atsiri Sereh Wangi (Cymbopogon citratus L.). Jurnal Mandala Pharmacon Indonesia, 6(2), 91-96.

Rincón, L. A., Ramírez, J. C., & Orjuela, A. (2021). Assessment of degumming and bleaching processes for used cooking oils upgrading into oleochemical feedstocks. Journal of Environmental Chemical Engineering, 9(1), 104610.

Idawati, S., & Sukmana, D. J. (2022). Formulation and evaluation liquid hand soap of celery leaf (Apium graviolens) extract. Jurnal Pijar Mipa, 17(1), 67-72.

Sasongko, H., & Mumpuni, A. S. (2017). Pengaruh penambahan sukrosa terhadap mutu sabun transparan dari ekstrak etanol herba pegagan (Centella asiatica L.). Pharmaciana, 7(1), 71.

Arlofa, N., Budi, B. S., Abdillah, M., & Firmansyah, W. (2021). Pembuatan Sabun Mandi Padat Dari Minyak Jelantah. Jurnal Chemtech, 7(1), 17-21.

Rifkowaty, E. E. (2020). Pengaruh Konsentrasi Sukrosa Dan Gliserin Terhadap Sabun Transparan Daun Ketepeng (Cassia Alata). JURNAL PATANI: Pengembangan Teknologi Pertanian dan Informatika, 4(2), 26-33.

Novianti, R. D., Prabowo, W. C., & Narsa, A. C. (2021, April). Optimasi Basis Sabun Padat Transparan Menggunakan Minyak Zaitun dan Pengaruh Konsentrasi Sukrosa Terhadap Transparansi Sabun: Optimization of Transparent Solid Soap Base Using Olive Oil and the Effect of Sucrose Concentration on Soap Transparency. In Proceeding of Mulawarman Pharmaceuticals Conferences (Vol. 13, pp. 164-170).

Setiawati, I., & Ariani, A. (2020). Kajian pH dan Kadar Air dalam Sni Sabun Mandi Padat di Jabedebog. Prosiding Pertemuan Dan Presentasi Ilmiah Standardisasi, 293-300.

Robbia, A. Z., Yahdi, Y., & Dewi, Y. K. (2021). Perbandingan pengaruh ekstrak lidah buaya (aloe vera) dan ekstrak daun sirih (piper betle linn) terhadap kualitas produk hand soap. Jurnal Pijar Mipa, 16(2), 228-234.

Febriani, A., Syafriana, V., Afriyando, H., & Djuhariah, Y. S. (2020, September). The utilization of oil palm leaves (Elaeis guineensis Jacq.) waste as an antibacterial solid bar soap. In IOP Conference Series: Earth and Environmental Science (Vol. 572, No. 1, p. 012038). IOP Publishing.

Prihanto, A., & Irawan, B. (2018). Pemanfaatan Minyak Goreng Bekas Menjadi Sabun Mandi. Metana, 14(2), 55-59.

Badan Standardisasi Nasional. (1994). SNI 06-3532-1994 Standar Mutu Sabun Mandi. Dewan Standardisasi Nasional. Jakarta.

Author Biographies

Irda Handriani, Agricultural Industrial Technology Department, Politeknik Negeri Tanah Laut

Author Origin : Indonesia

Ika Kusuma Nugraheni, Agricultural Industrial Technology Department, Politeknik Negeri Tanah Laut

Author Origin : Indonesia

Mariatul Kiptiah, Agricultural Industrial Technology Department, Politeknik Negeri Tanah Laut

Author Origin : Indonesia

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How to Cite

Handriani, I. ., Nugraheni, I. K., & Kiptiah, M. . (2022). The effect of sucrose concentration on the transparency of solid soap-based cooking oil. Jurnal Pijar MIPA, 17(4), 533–537. https://doi.org/10.29303/jpm.v17i4.3703