AN ECO-FRIENDLY DYE FOR BATIK CLOTHES: A NATURAL DYE SOLUTION MADE OF MANGO SEEDS EXTRACT (Mangifera indica L.)

dc.contributor.authorSobandi, Bandi
dc.contributor.authorSupiarza, Hery
dc.contributor.authorGunara, Sandie
dc.contributor.authorGunawan, Wawan
dc.contributor.authorHamdani, Hafizh Yasir
dc.contributor.organizationTechnická univerzita v Liberci
dc.date.accessioned2023-08-24T08:33:46Z
dc.date.available2023-08-24T08:33:46Z
dc.description.abstractWaste pollution resulting from the production process of synthetic batik dyes is against the Sustainable Development Goals (SDGs) in the aspects of waste management systems and clean water. One effort to cut down the amount of pollution is the use of natural dyes for coloring batik clothes. This undertaking is not only healthy but also expected to bring in some added value economically, community empowerment, and intergenerational inheritance. This experimental research was carried out collaboratively between the Textile and Batik Craft Studio at the Indonesian University of Education, the Umymay Batik Studio, and the Yogyakarta Batik and Craft Center. A batik cloth was dyed 5 times with a mango seed extract solution as the dependent variable, then fixed with lime solution (Ca(OH)2) and Ferrous Sulfate solution (FeSO4.7H2O) as the independent variables. The dyed fabrics were tested for their colorfastness against washing and sun exposure. The results of the study: 1) The process of dyeing the batik cloth was performed through several stages, that is, by cutting the cloth with a canting stamp, dyeing the cloth, and fixing it with Ca(OH)2 and FeSO4.7H2O, the batik cloth fixed with Ca(OH)2 tended to be brown in color while the other one fixed with FeSO4.7H2O resulted in black; 2) The results of the Color Fastness Test against Washing at 40℃ on the batik cloth that has been dyed with mango seed extract fixed with Ca(OH)2 and FeSO4.7H2O were considered a good category with respective values of 4 on a scale of 5. Likewise, the results of the Color Resistance to Light: Day Light Ray Resistant Test Value with the fixation of Ca(OH)2 and FeSO4.7H2O was in the moderate category with a value of 3 each on a scale of 5. There should be a governmental policy to promote a green industry. As for batik artisans, they can utilize an eco-friendly alternative dye for batik clothes.cs
dc.formattext
dc.format.extent11 stran
dc.identifier.doi10.15240/tul/008/2023-3-005
dc.identifier.issn1335-0617
dc.identifier.urihttps://dspace.tul.cz/handle/15240/172678
dc.language.isocscs
dc.publisherTechnical University of Liberec
dc.publisher.abbreviationTUL
dc.relation.isbasedonSelçuk, K., & Yurttaş, H.: Geometric and herbal motifs used in Kirkit Textiles from the eastern black sea region, Art-Sanat, 15, 2021. pp. 287-315. https://doi.org/10.26650/artsanat.2021.15.0012
dc.relation.isbasedonKasiri, M.B., & Safapour, S.: Natural Dyes and Antimicrobials for Textiles, In E. Lichtfouse, D. Robert, & J. Schwarzbauer (Eds.), Green materials for energy, products and depollution, Springer, Dordrech, 2013, pp. 229–286, ISBN: 978-94-007-6835-2.
dc.relation.isbasedonPramugani, A., Soda, S., & Argo, T. A.: Current situation of batik wastewater treatment in Pekalongan City, Indonesia, Journal of Japan Society of Civil Engineers, 8(1), 2020. pp. 188-193. https://doi.org/10.2208/JOURNALOFJSCE.8.1_188
dc.relation.isbasedonKarthik, D., Baheti, V., Militky, J., et al.: Activated carbon derived from carbonization of kevlar waste materials: A novel single stage method, Materials, 14(21), 2021. pp. 1- 15. https://doi.org/10.3390/ma14216433
dc.relation.isbasedonMákindé, D. O., Ìjísakin, E. T., & Ìjísakin, Y. O.: Indoor and outdoor pollution in cloth dyeing: Examples from textile studios in Nigeria tertiary institutions, WIT Transactions on Ecology and the Environment, 136, 2010. pp.313-320. https://doi.org/10.2495/AIR100281
dc.relation.isbasedonHandayani, W., Kristijanto, A. I., & Hunga, A. I. R.: Are natural dyes eco-friendly? A case study on water usage and wastewater characteristics of batik production by natural dyes application, Sustainable Water Resources Management, 4(4), 2018. pp. 1011-1021 https://doi.org/10.1007/s40899-018-0217-9
dc.relation.isbasedonPhang, F. A., Roslan, A. N., Zakaria, Z. A., Zaini, M. A. A., Pusppanathan, J., & Talib, C. A.: Environmental awareness in batik making process, Sustainability (Switzerland), 14(10), 2022. pp. 1-14. https://doi.org/10.3390/su14106094
dc.relation.isbasedonElleuch, B., Bouhamed, F., Elloussaief, M., & Jaghbir, M.: Environmental sustainability and pollution prevention, Environmental Science and Pollution Research, 25, 2018. pp. 18223-18225. https://doi.org/10.1007/s11356-017-0619-5
dc.relation.isbasedonPedro, H., Koentjoro, Meiyanto, S., & Andayani, B.: Transformation of women’s leadership through producing natural-dyed hand-woven fabrics (ethnographic study on Palue weavers), Gaceta Sanitaria, 35(S2), 2021. pp. S554- S557. https://doi.org/10.1016/j.gaceta.2021.07.032
dc.relation.isbasedonYusuf, M., Shabbir, M., & Mohammad, F.: Natural colorants: Historical, processing and sustainable prospects, Natural Products and Bioprospecting, 7(1), 2017. pp. 123-145 https://doi.org/10.1007/s13659-017-0119-9
dc.relation.isbasedonKusumastuti, A., Atika, Achmadi, T. A., Phusavat, K., & Hidayanto, A. N.: Assessment of producer’s perspective on the production of environmentally friendly fashion products: a case study in Indonesian natural dyes batik craftsmen, Environmental Science and Pollution Research, 2022, in press. https://doi.org/10.1007/s11356-022-23330-z
dc.relation.isbasedonTorres-León, C., Rojas, R., Contreras-Esquivel, J. C., Serna-Cock, L., Belmares-Cerda, R. E., & Aguilar, C. N.: Mango seed: Functional and nutritional properties, Trends in Food Science and Technology, 55, 2016. pp. 109-117. https://doi.org/10.1016/j.tifs.2016.06.009
dc.relation.isbasedonSolís-Fuentes, J. A., & Durán-de-Bazúa, M. del C.: Mango Seed: Mango (Mangifera indica L.) Seed and Its Fats, In V. R. Preedy & R. R. Watson (Eds.), Nuts and Seeds in Health and Disease Prevention, Academic Press, London, 2020, pp. 79-90, ISBN: 978-0-12-818553-7. https://doi.org/10.1016/C2009-0-01960-6
dc.relation.isbasedonMas’ud, F., Rifai, A., & Sayuti, M.: Mango seed kernel flour (Mangifera indica): Nutrient composition and potential as food, Malaysian Journal of Nutrition, 26(1), 2020. pp. 101- 106. https://doi.org/10.31246/MJN-2019-0082
dc.relation.isbasedonDiarra, S. S.: Potential of mango (Mangifera indica L.) seed kernel as a feed ingredient for poultry: A review. World’s Poultry Science Journal, 70(2), 2014. pp. 279-288. https://doi.org/10.1017/S0043933914000294
dc.relation.isbasedonKumar, M., Saurabh, V., Tomar, M., et al.: Mango (Mangifera indica l.) leaves: Nutritional composition, phytochemical profile, and health-promoting bioactivities, Antioxidants, 10(2), 2021. pp. 1-23. https://doi.org/10.3390/antiox10020299
dc.relation.isbasedonJahurul, M. H. A., Zaidul, I. S. M., Ghafoor, K., et al.: Mango (Mangifera indica L.) by-products and their valuable components: A review, Food Chemistry, 183, 2015, pp. 173-180. https://doi.org/10.1016/j.foodchem.2015.03.046
dc.relation.isbasedonMirza, B., Croley, C. R., Ahmad, M., et al.: A. Mango (Mangifera indica L.): a magnificent plant with cancer preventive and anticancer therapeutic potential, Critical Reviews in Food Science and Nutrition, 61(13), 2021. pp. 2125-2151. https://doi.org/10.1080/10408398.2020.1771678
dc.relation.isbasedonAbdalla, A. E. M., Darwish, S. M., Ayad, E. H. E., & El- Hamahmy, R. M.: Egyptian mango by-product 1. compositional quality of mango seed kernel, Food Chemistry, 103, 2007. pp. 1134-1140 https://doi.org/10.1016/j.foodchem.2006.10.017
dc.relation.isbasedonAlañón, M. E., Pimentel-Moral, S., Arráez-Román, D., & Segura-Carretero, A.: HPLC-DAD-Q-ToF-MS profiling of phenolic compounds from mango (Mangifera indica L.) seed kernel of different cultivars and maturation stages as a preliminary approach to determine functional and nutraceutical value, Food Chemistry, 337(127764), 2021. pp. 1-8 https://doi.org/10.1016/j.foodchem.2020.127764
dc.relation.isbasedonPoomanee, W., Khunkitti, W., Chaiyana, W., et al.: Multifunctional biological properties and phytochemical constituents of Mangifera indica L. seed kernel extract for preventing skin aging, Toxicological Research, 37(4), 2021. pp. 459-472. https://doi.org/10.1007/s43188-020-00079-6
dc.relation.isbasedonDa Silva, A. C., & Jorge, N.: Potential of mangaba (Hancornia speciosa), mango (Mangifera indica L.), and papaya (Carica papaya L.) seeds as sources of bioactive compounds, Revista Ceres, 67(6), 2020. pp. 439-447. https://doi.org/10.1590/0034-737X202067060003
dc.relation.isbasedonRamPravinKumar, M., & Dhananjayan, K.: Peripheral arterial disease: Effects of ethanolic extracts of seed kernels of mango (Mangifera indica .L) on acute hind limb ischemia-reperfusion injury in diabetic rats, Journal of Traditional and Complementary Medicine, 11(6), 2021. pp. 520-531 https://doi.org/10.1016/j.jtcme.2021.05.004
dc.relation.isbasedonSampaio, C. D. G., Silva, J. G. A. E., Brito, E. S. De, et al.: Chromium (VI) remediation in aqueous solution by waste products (peel and seed) of mango (Mangifera indica L.) cultivars, Environmental Science and Pollution Research, 26(6), 2019. pp. 5588-5600 https://doi.org/10.1007/s11356-018-3851-8
dc.relation.isbasedonIqbal, M., Saeed, A., & Zafar, S. I.: FTIR spectrophotometry, kinetics and adsorption isotherms modeling, ion exchange, and EDX analysis for understanding the mechanism of Cd2+ and Pb2+ removal by mango peel waste, Journal of Hazardous Materials, 164(1), 2009. pp. 161-171. https://doi.org/10.1016/j.jhazmat.2008.07.141
dc.relation.isbasedonLim, K. J. A., Cabajar, A. A., Lobarbio, C. F. Y., et al.: Extraction of bioactive compounds from mango (Mangifera indica L. var. Carabao) seed kernel with ethanol–water binary solvent systems, Journal of Food Science and Technology, 56(5), 2019. pp. 2536-2544. https://doi.org/10.1007/s13197-019-03732-7
dc.relation.isbasedonCorreia, L. B., Fiuza Jr., R. A., de Andrade, R. C., & Andrade, H. M. C.: CO2 capture on activated carbons derived from mango fruit (Mangifera indica L.) seed shells: A TG study, Journal of Thermal Analysis and Calorimetry, 131(1), 2018. pp. 579-586. https://doi.org/10.1007/s10973-017-6542-7
dc.relation.isbasedonMartínez-Morris, U. G., Marquina-Gelvez, C. E., Carrasquero-Ferrer, S., et al.: El extracto de semillas de mango (Mangifera indica L) como coagulante natural en la potabilización deaguas (Mango seed extract (Mangifera indica L) as a natural coagulant in water purification), Proceedings of the 15th LACCEI International Multi- Conference for Engineering, Education, and Technology: “Global Partnerships for Development and Engineering Education”, Boca Raton Fl, United States, 19-21 July 2017, pp. 19-21 (in Spanish).
dc.relation.isbasedonSiacor, F. D. C., Lobarbio, C. F. Y., & Taboada, E. B.: Pretreatment of Mango (Mangifera indica L. Anacardiaceae) Seed Husk for Bioethanol Production by Dilute Acid Treatment and Enzymatic Hydrolysis, Applied Biochemistry and Biotechnology, 193(5), 2021. pp. 1338- 1350. https://doi.org/10.1007/s12010-020-03387-7
dc.relation.isbasedonMukherjee, S. K., & Litz, R. E.: Introduction: Botany and Importance,In R. E. Litz (Ed.), The Mango 2nd Edition: Botany, Production and Uses, CABI, Wallingford, 2009, pp. 1-18, ISBN: 978 1 84593 489 7.
dc.relation.isbasedonPracaya: Mango Planting (Bertanam Mangga), Penebar Swadaya, Jakarta, 2011, 18 p. ISBN: 978-979-022-483-5 (in Indonesian).
dc.relation.isbasedonSusanto, S.: Indonesian Batik Crafts (Seni Kerajinan Batik Indonesia), Balai Penelitian Batik dan Kerajinan, Lembaga Penelitian dan Pendidikan Industri, Departemen Perindustrian Republik Indonesia, Yogyakarta, 1980, 54p., ISBN: 978-979-29-6973-3 (in Indonesian).
dc.relation.isbasedonSobandi, B., Triyanto, Rohidi, T. R., & Syakir: The use of clove leaves (Syzygium aromaticum L.) as natural dye for batik production in kasumedangan batik industry, Indonesia, Vlakna a Textil, 28(1), 2021. pp. 86-94.
dc.relation.isbasedonVisalakshi, M., & Jawaharlal, M.: Healthy Hues – Status and Implication in Industries – Brief Review. Research & Reviews: Journal of Agriculture and Allied Sciences, 2(3), 2013, pp. 42-51.
dc.relation.isbasedonPujilestari, T.: The effect of natural dyestuff extraction and fixation on color fastness in cotton fabrics (Pengaruh ekstraksi zat warna alam dan fiksasi terhadap ketahanan luntur warna pada kain katun), Dinamika Kerajinan dan Batik, 31(1), 2014, pp. 31-40. http://dx.doi.org/10.22322/dkb.v31i1.1058
dc.relation.isbasedonLaela, E., Isnaini, I., Rufaida, E. Y., & Sayogo, R.: Effectiveness of Natural Soap on Batik Colors (Efektivitas sabun alami terhadap warna batik), Dinamika Kerajinan dan Batik, 35(2), 2018. pp. 119-124, (in Indonesian). http://dx.doi.org/10.22322/dkb.v35i2.4187
dc.relation.isbasedonSuheryanto, D., & Haryanto, T.: The effect of alum concentration on the age and durability of color fastness in dyeing silk fabric with gambir dyes (Pengaruh konsentrasi tawas terhadap ketuaan dan ketahanan luntur warna pada pencelupan kain sutera dengan zat warna gambir), Dinamika Kerajinan dan Batik, 25, 2008. pp. 9-16, (in Indonesian).
dc.relation.isbasedonAhmed, H. E.: History of natural dyes in North Africa ‘Egypt’, In T. Bechtold & R. Mussak (Eds.), Handbook of Natural Colorants, John Wiley & Sons Ltd., West Sussex, 2009, pp. 27-36, ISBN: 978-0-470-51199-2. https://doi.org/10.1002/9780470744970
dc.relation.isbasedonAbbasi, S. M.: The future of organic colored cotton, Vlakna a Textil, 26(4), 2019. pp. 13-18.
dc.relation.isbasedonMartuti, N. K. T., Hidayah, I., Margunani, M., & Alafima, R. B.: Organic material for clean production in the batik industry: A case study of natural batik Semarang, Indonesia, Recycling, 5(4), 2020. pp. 1-13. https://doi.org/10.3390/recycling5040028
dc.relation.isbasedonSarwono, Santosa, S., & Prameswari, N. S.: Short communication: The color fastness of cotton cloth dyed with dye extracted from skin of shallot (Allium ascalonicum), Biodiversitas, 20(9), 2019. pp. 2475-2479. https://doi.org/10.13057/biodiv/d200907
dc.relation.isbasedonNugroho, Z. B., Cahyandito, M. F., Astari, A. J., Dede, M., Abdoellah, O. S., Fadilah, K., & Sunardi, S.: Preliminary development of indicators for assessing the sustainability of Indonesia’s natural-dye-based batik industry, International Journal of Sustainable Development and Planning, 17(7), 2022. pp. 2097-2107. https://doi.org/10.18280/ijsdp.170710
dc.relation.isbasedonElder, M., & Olsen, S. H.: The Design of Environmental Priorities in the SDG’s. Global Policy, 10(S1), 2019. pp. 70- 82. https://doi.org/10.1111/1758-5899.12596
dc.relation.isbasedonFanina, J. J., & Suaedi, F.: Challenges in preserving batik as indonesia’s cultural identity facing global demand of sustainable eco-friendly fabric, Vlakna a Textil, 27(2), 2020. pp. 37-42.
dc.relation.ispartofFibres and Textiles
dc.subjectMangifera indica L.cs
dc.subjectBatikcs
dc.subjectEco-friendlycs
dc.subjectNatural Dyescs
dc.subjectSDGscs
dc.titleAN ECO-FRIENDLY DYE FOR BATIK CLOTHES: A NATURAL DYE SOLUTION MADE OF MANGO SEEDS EXTRACT (Mangifera indica L.)en
dc.typeArticleen
local.accessopen access
local.citation.epage47
local.citation.spage37
local.facultyFaculty of Textile Engineeringen
local.fulltextyesen
local.relation.issue3
local.relation.volume30
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