Liquid Body Wash Formulation with the Addition of Agarwood Leaf Extract
Abstract
Abstract
This study aimed to study the effect of agarwood leaf extract extracted through maceration as an antibacterial agent on the quality of liquid body wash. The study used a completely randomized design with five treatments and four replications. The treatments applied included the addition of agarwood leaf extract with concentrations of 0% (S1), 2.5% (S2), 5% (S3), 7.5% (S4), and 10% (S5). Data were analyzed using Analysis of Variance (ANOVA), followed by Duncan's Test at 5% significance level. The results showed that adding agarwood leaf extract significantly affected free alkali, pH, foam stability, density, antibacterial activity, and sensory properties of liquid body wash. Liquid body wash with a 10% addition of agarwood leaf extract showed the best quality, with an inhibition zone of 24.86 ± 0.79 mm and 22.16 ± 2.40 mm against Bacillus subtilis and Pseudomonas aeruginosa. This liquid body wash has a free alkali content of 0.027%, a specific gravity of 1.08±0.08g/mL, foam stability of 89.79±0.77%, pH of 9.33±0.03, and does not cause skin irritation. Descriptive tests showed that the liquid body wash was dark brown with a distinctive aroma of agarwood leaves.
Keywords: Agarwood leaves extract, antibacterial activity, Bacillus subtilis, liquid body wash, Pseudomonas aeruginosa
Abstrak
Penelitian ini bertujuan untuk mempelajari pengaruh ekstrak daun gaharu yang diekstrak melalui maserasi sebagai agen antibakteri terhadap kualitas sabun mandi cair. Penelitian menggunakan rancangan acak lengkap dengan lima perlakuan dan empat ulangan. Perlakuan yang diterapkan meliputi penambahan ekstrak daun gaharu dengan konsentrasi 0% (S1), 2,5% (S2), 5% (S3), 7,5% (S4), dan 10% (S5). Data dianalisis menggunakan Analisis Varians (ANOVA), dilanjutkan dengan Uji Duncan pada taraf signifikansi 5%. Hasil penelitian menunjukkan bahwa penambahan ekstrak daun gaharu berpengaruh signifikan terhadap alkali bebas, pH, stabilitas busa, densitas, aktivitas antibakteri, dan sifat sensorik sabun mandi cair. Sabun mandi cair dengan penambahan ekstrak daun gaharu 10% menunjukkan kualitas terbaik, dengan zona hambat sebesar 24,86±0.79 mm dan 22,16±2.40 mm terhadap Bacillus subtilis dan Pseudomonas aeruginosa. Sabun ini memiliki kadar alkali bebas 0,027%, berat jenis 1,08±0.08g/mL, stabilitas busa 89.79±0.77%, pH 9.33±0.03, dan tidak menyebabkan iritasi kulit. Uji deskriptif menunjukkan bahwa sabun mandi cair tersebut memiliki warna coklat tua dengan aroma khas daun gaharu.
Kata kunci: Aktivitas antibakteri, Bacillus subtilis, ekstrak daun gaharu, Pseudomonas aeruginosa, sabun mandi cair
Keywords
Full Text:
PDFReferences
Adiwibowo, M. T. (2020). Aditif sabun mandi berbahan alami: Antimikroba dan antioksidan. Jurnal Integrasi Proses, 9(1), 29–36.
Advinda, L., Anhar, & Irdawati. (2021). Antagonism of siderophore producing bacteria against blood disease bacteria. Journal of Physics: Conference Series, 1940(1), 012070. https://doi.org/10.1088/1742-6596/1940/1/012070
Agustin, Y., Rubiyanto, D., & Setyawati, A. (2020). Formulasi dan Uji Aktivitas Antibakteri Sabun Cair Minyak Atsiri Kemangi terhadap Escherichia coli. Program Studi Kimia. Fakultas Matematika dan Ilmu Pengetahuan Alam. Universitas Islam Indonesia. Yogyakarta.
Al-Bayati, M. R. Y., Hussein, Y. F., Faisal, G. G., Fuaat, A. A., Affandi, K. A., & Abidin, M. A. Z. (2022). The effect of eurycoma longifolia jack tongkat ali hydrogel on wound contraction and re-epithelialization in in vivo excisional wound model. Open Access Macedonian Journal of Medical Sciences, 10(A), 634–643. https://doi.org/10.3889/oamjms.2022.9140
Araos, R., & D’Agata, E. (2019). Pseudomonas aeruginosa and Other Pseudomonas Species. In Mandell, Douglas, and Bennett’s Principles and Practice of Infectious Diseases. Elsevier. https://doi.org/10.1016/C2012-1-00075-6
Aritonang, S. N., Roza, E., Rossi, E., Purwati, E., & Husmaini. (2017). Isolation and identification of lactic acid bacteria from okara and evaluation of their potential as candidate probiotics. Pakistan Journal of Nutrition, 16(8), 618–628. https://doi.org/10.3923/pjn.2017.618.628
Auri, A., Faridah, E., Sumardi, & Hardiwinoto, S. (2021). The effect of crown pruning and induction of Acremonium sp. on agarwood formation in Gyrinops caudata in West Papua, Indonesia. Biodiversitas : Journal of Biolodical Diversity, 22(7), 2604–2611. https://doi.org/10.13057/biodiv/d220707
SNI 06-4085-1996. Sabun Mandi Cair, National Standardization Agency of Indonesia 1 (1996).
Barai, M., Manna, E., Sultana, H., Mandal, M. K., Guchhait, K. C., Manna, T., Patra, A., Chang, C.-H., Moitra, P., Ghosh, C., Larsson, A.-C., Bhattacharya, S., & Panda, A. K. (2021). Micro-structural investigations on oppositely charged mixed surfactant gels with potential dermal applications. Scientific Reports, 11(1), 15527. https://doi.org/10.1038/s41598-021-94777-2
Batubara, R., Surjanto, Hanum, T. I., Handika, A., & Affandi, O. (2020). The screening of phytochemical and antioxidant activity of agarwood leaves (Aquilaria malaccensis) from two sites in North Sumatra, Indonesia. Biodiversitas : Journal of Biolodical Diversity, 21(4), 1588–1596. https://doi.org/10.13057/biodiv/d210440
Baxter, A., & Cleary, V. (2002). Hand hygiene in local primary school children — an infection control and health promotion initiative. British Journal of Infection Control, 3(2), 14–17. https://doi.org/10.1177/175717740200300204
Casciaro, B., Mangiardi, L., Cappiello, F., Romeo, I., Loffredo, M. R., Iazzetti, A., Calcaterra, A., Goggiamani, A., Ghirga, F., Mangoni, M. L., Botta, B., & Quaglio, D. (2020). Naturally-occurring alkaloids of plant origin as potential antimicrobials against antibiotic-resistant infections. Molecules, 25(16), 3619. https://doi.org/10.3390/molecules25163619
Cavaletti, J. C. S., Prando, W. L. M., Ribeiro, E. B., & Valladão, D. M. de S. (2023). Development and stability of intimate soap formulations using Sapindus saponaria L. extract as a natural surfactant. Brazilian Journal of Biology, 83. https://doi.org/10.1590/1519-6984.276940
Chastelyna, A. J., & Wijayati, N. (2017). Uji Aktivitas Antibakteri Sabun Cair Ekstrak Daun Jati (Tectona grandis L.f). Indonesian Journal of Chemical Science, 6(1), 72–76.
Cigala, R. M., Crea, F., De Stefano, C., Irto, A., Milea, D., & Sammartano, S. (2020). Thermodynamic behavior of polyalcohols and speciation studies in the presence of divalent metal cations. Journal of Chemical & Engineering Data, 65(5), 2805–2812. https://doi.org/10.1021/acs.jced.0c00120
Devika, C., Singhalage, I. D., & Seneviratne, G. (2021). Modification of nutrient agar medium to culture yet-unculturable bacteria living in unsanitary landfills. Ceylon Journal of Science, 50(4), 505. https://doi.org/10.4038/cjs.v50i4.7949
Hacib, H., Lakache, Z., Aliboudhar, H., Laassami, A., Tounssi, H., Hamil, S., & Kameli, A. (2023). Chemical composition and antioxidant and antibacterial properties of the essential oils extracted from Citrus sinensis peels by hydrodistillation and microwave methods. Environmental Science and Pollution Research, 31(28), 40748–40757. https://doi.org/10.1007/s11356-023-31526-0
Haque, A. F., Mulyani, E., & Hendick, J. (2022). Formulasi sabun cair cuci tangan antibakteri ekstrak etanol daun cabe rawit (Solanum frutescens L.). Indonesian Journal of Pharmaceutical Education, 2(2), 152–160. https://doi.org/10.37311/ijpe.v2i2.15510
Harfinda, E. M., Normagiat, S., & Hardiansyah, G. (2017). Potensi senyawa metabolit sekunder daun Aquilaria sp. asal Kalimantan Barat untuk pembuatan teh herbal. Seminar Nasional Penerapan Ilmu Pengetahuan Dan Teknologi (PIPT), 1–7.
Hasanah, M., Apriyanti, D., & Patmayuni, D. (2020). Perbandingan antioksidan ekstrak etanol daun gaharu (Aqularia malaccensis L.) dan ketiga fraksi berbagai pelarut (heksan, etil asetat, dan air). Jurnal Penelitian Sains, 22(1), 25–31. https://doi.org/10.56064/jps.v22i1.552
Hashim, Y. Z. H.-Y., Kerr, P. G., Abbas, P., & Mohd Salleh, H. (2016). Aquilaria spp. (agarwood) as source of health beneficial compounds: A review of traditional use, phytochemistry and pharmacology. Journal of Ethnopharmacology, 189, 331–360. https://doi.org/10.1016/j.jep.2016.06.055
Hayati, R., Sari, A., Hanum, F., Nabilah, N., Earlia, N., & Lukitaningsih, E. (2023). Formulation and antibacterial activity of Averrhoa bilimbi L. Fruits Extract in vegetable oil-based liquid hand soap. Malacca Pharmaceutics, 1(1), 30–36. https://doi.org/10.60084/mp.v1i1.35
Hidayat, A., & Turjaman, M. (2018). Manfaat besar dibalik penampilan kecil. Jurnal Penelitian Kehutanan Sumatrana, 2(1), 47–56.
Huanbutta, K., Sripirom, P., Phetthong, P., Thalerngkiatsiri, P., Kabthong, N., Sangnim, T., & Sriamornsak, P. (2023). Dissolvable shower gel tablets with enhanced skin benefits. International Journal of Cosmetic Science, 45(6), 739–748. https://doi.org/10.1111/ics.12882
Janshen, Y. R., Sidharta, B. R., & Swasti, R. (2017). Aktivitas Antibakteri Ekstrak Daun Gaharu (Aquilaria malaccensis Lamk.) Terhadap Pseudomonas aeruginosa Dan Staphylococcus aureus. Program Studi Biologi. Fakultas Teknobiologi. Universitas Atma Jaya. Yogyakarta.
Jayuska, A., Ardiningsih, P., Destiarti, L., & Puteri, T. (2014). Isolasi dan identifikasi senyawa bioaktif dari fraksi n-heksana daun gaharu (. 275–285.
Kelly, B. A. (2024). Insecticidal potency of entomopathogenic bacterium Bacillus subtilis on cockroach (Periplaneta americana). International Journal of Science and Research Archive, 12(1), 934–939. https://doi.org/10.30574/ijsra.2024.12.1.0839
Kohnen-Johannsen, K., & Kayser, O. (2019). Tropane alkaloids: Chemistry, pharmacology, biosynthesis and production. Molecules, 24(4), 796. https://doi.org/10.3390/molecules24040796
Kwok, W. C., Ho, J. C. M., Tam, T. C. C., Ip, M. S. M., & Lam, D. C. L. (2021). Risk factors for Pseudomonas aeruginosa colonization in non-cystic fibrosis bronchiectasis and clinical implications. Respiratory Research, 22(1), 132. https://doi.org/10.1186/s12931-021-01729-5
Lan, L., Xie, Y., Kong, X., Li, C., & Liu, D. (2021). Investigation of reduction in risk from antibiotic resistance genes in laboratory wastewater by using O 3 , ultrasound, and autoclaving. Water Environment Research, 93(3), 479–486. https://doi.org/10.1002/wer.1451
Li, D., Zhou, C., Zou, N., Wu, Y., Zhang, J., An, Q., Li, J.-Q., & Pan, C. (2021). Nanoselenium foliar application enhances biosynthesis of tea leaves in metabolic cycles and associated responsive pathways. Environmental Pollution, 273, 116503. https://doi.org/10.1016/j.envpol.2021.116503
Loh, Z. H., Oh, H. K. F., & Lim, Y. Y. (2018). Relationship between polyphenol oxidase activity and phenolics degradation on ambient air-drying of herbal plants. Journal of Food Processing and Preservation, 42(7), e13672. https://doi.org/10.1111/jfpp.13672
Martihandini, N., Putria Angelica, D., & Isasi Sutiswa, S. (2024). Liquid soap formulation from ethanolic extract of cassava leaves (Manihot esculenta Crantz) with cocamide dea as surfactant. Medical Sains : Jurnal Ilmiah Kefarmasian, 9(1), 215–222. https://doi.org/10.37874/ms.v9i1.912
Maruapey, A., Nanlohy, L. H., Saeni, F., Hahury, S., & Lestaluhu, R. (2022). Empowerment of the klayili forest farmers group (kth) in making agarwood tea in Klayili Village, Klayili District, Sorong Regency. Indonesian Journal of Engagement, Community Services, Empowerment and Development, 2(3), 277–283. https://doi.org/10.53067/ijecsed.v2i3.71
Meizalin, A. A., & Paramita, V. (2021). Quality analysis of liquid soap formulation made from virgin coconut oil with addition of white tea extract. Journal of Vocational Studies on Applied Research, 3(2), 47–51. https://doi.org/10.14710/jvsar.v3i2.12651
Missa, M. M. Y., Pingak, R. K., & Sutaji, H. I. (2018). Penentuan celah energi optik ekstrak daun alpukat (Persea americana Mill) asal Desa Oinlasi menggunakan metode tauc plot. Jurnal Fisika : Fisika Sains Dan Aplikasinya, 3(2), 86–90. https://doi.org/10.35508/fisa.v3i1.606
Musa, N. H. C., Zain, H. H. M., Ibrahim, H., & Jamil, N. N. M. (2019). Evaluation of acute and sub-acute oral toxicity effect of Aquilaria malaccensis leaves aqueous extract in male icr mice. Natural Product Sciences, 25(2), 157. https://doi.org/10.20307/nps.2019.25.2.157
Musfirah, M., Rangkuti, A. F., & Khotimah, F. N. (2022). Factors influencing hand washing with soap compliance level among beach tourism workers. International Journal of Public Health Science (IJPHS), 11(4), 1391. https://doi.org/10.11591/ijphs.v11i4.21720
Nowrouzi, I., Mohammadi, A. H., & Manshad, A. K. (2020). Water-oil interfacial tension (IFT) reduction and wettability alteration in surfactant flooding process using extracted saponin from Anabasis Setifera plant. Journal of Petroleum Science and Engineering, 189, 106901. https://doi.org/10.1016/j.petrol.2019.106901
Nurfadhila, S., & Hambali, E. (2022). Liquid smoke from coconut shell pyrolysis process on palm surfactant based liquid hand soap. International Journal of Oil Palm, 5(2), 50–57. https://doi.org/10.35876/ijop.v5i2.71
Nurhayati, C., Susilawati, N., Susanto, T., Marthalia, W., & Nugroho, A. K. (2022). Utilization of gambier leaf extract (Uncaria gambier roxb) as antibacterial and natural dyes in making liquid bath soap with natrium lauryl ether sulfate. IOP Conference Series: Earth and Environmental Science, 963(1), 012059. https://doi.org/10.1088/1755-1315/963/1/012059
Odinga, T.-B., Nwaokezi, C. O., George, D., & Izuagha, O. D. (2024). Assessment of physicochemical properties of liquid soaps in Port Harcourt, Rivers State, Nigeria. Singapore Journal of Chemical Biology, 13(1), 1–7. https://doi.org/10.3923/sjcb.2024.01.07
Oh, H. K. F., Siow, L. F., & Lim, Y. Y. (2019). Approach to preserve phenolics in Thunbergia laurifolia leaves by different drying treatments. Journal of Food Biochemistry, 43(7). https://doi.org/10.1111/jfbc.12856
Ozbey, A. A., & Bilir, N. (2022). Variation in growth among provenances of pinus brutia in a 32-year-old experiment from southern Turkey. The Journal “Agriculture and Forestry,” 68(2). https://doi.org/10.17707/AgricultForest.68.2.06
Pendit, P. A. C. D., Zubaidah, E., & HeppySriherfyna, F. (2016). Karakteristik fisik-kimia dan aktivitas antibakteri ekstrak daun belimbing wuluh (Averrhoa bilimbi L.). Jurnal Pangan Dan Agroindustri, 4(1), 400–409.
Piras, S., Brazão, J., Ricardo-da-Silva, J. M., Anjos, O., & Caldeira, I. (2020). Volatile and sensory characterization of white wines from three minority Portuguese grapevine varieties. Ciência e Técnica Vitivinícola, 35(1), 49–62. https://doi.org/10.1051/ctv/20203501049
Prasad, P., Gupta, A., & Sasmal, P. K. (2021). Aggregation-induced emission active metal complexes: a promising strategy to tackle bacterial infections. Chemical Communications, 57(2), 174–186. https://doi.org/10.1039/D0CC06037B
Pratama, B. A., Rahmawati, K., Atikah, T. D., Wardani, W., & Apandi, I. (2017). Populasi Gaharu Buaya ( Aetoxylon sympetalum ( Steenis & Domke ) Airy Shaw ). Seminar Nasional Biodiversitas Dan Ekologi Tropika Indonesia Ke-4 Dan Kongres Penggalang Taksonomi Tumbuhan Ke-12.
Rahman, Z., Afsheen, Z., Hussain, A., & Khan, M. (2022). Antibacterial and antifungal activities of garlic ( Allium sativum ) against common pathogens. Mic.
Rai, S., Acharya-Siwakoti, E., Kafle, A., Devkota, H. P., & Bhattarai, A. (2021). Plant-derived saponins: A review of their surfactant properties and applications. Sci, 3(4), 44. https://doi.org/10.3390/sci3040044
Rusdianto, A. S., Yulianti, A., Suwasono, S., & Wiyono, A. E. (2021). The characteristics of liquid soap with additional variations of moringa seed extract (Moringa oleifera L.). International Journal on Food, Agriculture and Natural Resources (IJFANRES), 2(3), 5–11. https://doi.org/10.46676/ij-fanres.v2i3.43
Samsudin, Y. B., Adzani, T., Ramadian, M. A., Naito, D., & Baral, H. (2021). The potential of agarwood as a climate- resilient livelihood option in Indonesia. In The potential of agarwood as a climate- resilient livelihood option in Indonesia. Center for International Forestry Research (CIFOR). https://doi.org/10.17528/cifor/008260
Sari, R., Muhani, M., & Fajriaty, I. (2017). Antibacterial Activity of Ethanolic Leaves Extract of Agarwood (Aquilaria microcarpa Baill.) Against Staphylococcus aureus and Proteus mirabilis. Pharmaceutical Sciences and Research, 4(3), 143–154. https://doi.org/10.7454/psr.v4i3.3756
Savela‐Huovinen, U., Muukkonen, H., & Toom, A. (2018). Sensory expert assessor’s learning practices at workplace: Competencies and contexts in sensory evaluation. Journal of Sensory Studies, 33(2). https://doi.org/10.1111/joss.12315
Savira, A. D. R., Amin, M. N. G., & Alamsjah, M. A. (2021). The effect of different type of solvents on the antioxidant activity of fucoxanthin extract from brown seaweed Sargassum duplicatum. IOP Conference Series: Earth and Environmental Science, 718(1), 012010. https://doi.org/10.1088/1755-1315/718/1/012010
Savitri, A. K., Hendrawati, & Mustika, A. A. (2018). Formula dan Tingkat iritasi Akut Dermal Serbuk Biji Kelor (Moringa oleifera) pada Sediaan Lulur Krim dengan Metode Draize Test. Program Studi Kimia. Fakultas Sains dan Teknologi. Universitas ISlam Negeri Syarif Hidayatullah. Jakarta.
Simbolon, M. T. M., Zalfiatri, Y., & Hamzah, F. (2018). Pembuatan sabun transparan dengan penambahan ekstrak batang pepaya sebagai antibakteri. Chempublish Journal, 3(2), 57–68. https://doi.org/10.22437/chp.v3i2.5713
Siregar, J., Batubara, R., & Surjanto. (2019). Uji Efektivitas Sediaan Krim Ekstrak Etanol Daun Gaharu (Aquilaria malaccensis Lamk) sebagai Anti-Aging. Program Studi Kehutanan. Fakultas Kehutanan. Universitas Sumatera Utara. Medan.
Snoussi, A., Essaidi, I., Ben Haj Koubaier, H., Zrelli, H., Alsafari, I., Živoslav, T., Mihailovic, J., Khan, M., El Omri, A., Ćirković Veličković, T., & Bouzouita, N. (2021). Drying methodology effect on the phenolic content, antioxidant activity of Myrtus communis L. leaves ethanol extracts and soybean oil oxidative stability. BMC Chemistry, 15(1), 31. https://doi.org/10.1186/s13065-021-00753-2
Soares, B. P., Ferreira, A. M., Justi, M., Rodrigues, L. G. G., Oliveira, J. V., Pinho, S. P., & Coutinho, J. A. P. (2023). Juçara fruit (Euterpe edulis Martius) valorization combining emergent extraction technologies and aqueous solutions of alkanediols. Molecules, 28(4), 1607. https://doi.org/10.3390/molecules28041607
Su, X., Bai, C., Wang, X., Liu, H., Zhu, Y., Wei, L., Cui, Z., & Yao, L. (2022). Potassium sulfate spray promotes fruit color preference via regulation of pigment profile in litchi pericarp. Frontiers in Plant Science, 13. https://doi.org/10.3389/fpls.2022.925609
Sudayasa, I. P., Dewi, G. A. K., Ariasnitra, S., Purnamasari, Y., & Alifariki, L. O. (2022). Antibacterial test of ethanol extract of “Cocor-Bebek” leaves (Kalanchoe pinnata) against the growth of Staphylococcus aureus and Salmonella typhi. GSC Biological and Pharmaceutical Sciences, 19(3), 204–212. https://doi.org/10.30574/gscbps.2022.19.3.0226
Surjanto, Batubara, R., Hanum, T. I., & Pulungan, W. (2019). Phytochemical and antioxidant activity of gaharu leaf tea (Aquilaria malaccensis Lamk) as raw material of tea from middle Tapanuli Regency, North Sumatera Province. IOP Conference Series: Earth and Environmental Science, 260(1), 012101. https://doi.org/10.1088/1755-1315/260/1/012101
Tyowua, A. T., Vitalis, T. B., Terhemen, M. M., & Mbaawuaga, E. M. (2019). Aloe vera (Aloe barbadensis Miller) extract as a natural antimicrobial agent in hand-washing liquid soap. NIGERIAN ANNALS OF PURE AND APPLIED SCIENCES, 1, 96–107. https://doi.org/10.46912/napas.113
Wahid, A. R., Fitriana, Y., Wardani, A. K., & Listari, L. A. H. (2022). Antioxidant activity assay of Agarwood leaf extract cream (Aquilaria malaccensis L.) using free radical scavenging method. Pharmacy Education, 22(2), 24–29. https://doi.org/10.46542/pe.2022.222.2429
Wahid, A. R., & Ittiqo, D. H. (2019). Daya hambat bakteri Staphylococcus aureus ekstrak daun gaharu (Aquilaria malea L.) sebagai antibakteri. Jurnal Insan Farmasi Indonesia, 2(1), 34–43. https://doi.org/10.36387/jifi.v2i1.299
Wang, J., Ishfaq, M., Miao, Y., Liu, Z., Hao, M., Wang, C., Wang, J., & Chen, X. (2022). Dietary administration of Bacillus subtilis KC1 improves growth performance, immune response, heat stress tolerance, and disease resistance of broiler chickens. Poultry Science, 101(3), 101693. https://doi.org/10.1016/j.psj.2021.101693
Wang, S., Yu, Z., Wang, C., Wu, C., Guo, P., & Wei, J. (2018). Chemical constituents and pharmacological activity of agarwood and aquilaria plants. Molecules, 23(2), 342. https://doi.org/10.3390/molecules23020342
Wangiyana, I. G. A. S., Supriadi, Nikmatullah, A., & Sunarpi. (2022). A mini review on agarwood tea development towards alternative utilization of agarwood commodity in Indonesia. Pakistan Journal of Scientific and Industrial Research Series B: Biological Science, 65(2), 189–196.
Widyasanti, A., Junita, S., & Nurjanah, S. (2017). Pengaruh konsentrasi minyak kelapa murni (virgin coconut oil) dan minyak jarak (castor oil) terhadap sifat fisikokimia dan organoleptik sabun mandi cair. Jurnal Teknologi Dan Industri Pertanian Indonesia, 9(1), 10–16. https://doi.org/10.17969/jtipi.v9i1.6383
Wulandari, D., Ayu, D. F., & Ali, A. (2018). Pengaruh minyak atsiri bangle (Zingiber purpureum Roxb.) sebagai antibakteri terhadap kualitas sabun cair. Jurnal Agroindustri Halal, 4(1), 1–9. https://doi.org/10.30997/jah.v4i1.882
Zhou, J., Zhang, C., & Ranjith, P. G. (2023). Highly stable polymer-enhanced pickering foams for hydraulic fracturing applications. Energy & Fuels, 37(13), 9151–9162. https://doi.org/10.1021/acs.energyfuels.3c01323
Zhu, X., Zhang, J., Liu, S., Gu, Y., Yu, X., Gao, F., & Wang, R. (2022). Relationship between molecular structure and heat-induced gel properties of duck myofibrillar proteins affected by the addition of pea protein isolate. Foods, 11(7), 1040. https://doi.org/10.3390/foods11071040
https://doi.org/10.21776/ub.industria.2024.013.01.7
Refbacks
- There are currently no refbacks.