Alternative mordants for wool dyeing using leaves of Punica granatum and Lantana camara

EDENAFANAMBINANTSOA Soamaro Evah Andrianjato, ANDRIAMANANTENA Mahery , ANDRIAMIHAJA Tsiza Faratiana , RATSIMBAZAFY Tsanta Antenaina , SCHUTZBACH Carys

Résumé

Application of bio-mordants in fabrics dyeing is a sustainable and ecological way to preserve the environment from textile industries wastes. Considering the use of potential plant-based mordants as an alternative to metallic mordants, this study deals with the comparison between the use of Punica granatum and Lantana camara leaves and alum as mordant. Two different mordanting techniques namely simultaneous and post mordanting were applied along with the dyeing process using leaves of Psidia altissima as source of dye. It is a Malagasy endemic plant species commonly used by craftsmen to get green color on silk. Few tests were carried out in order to evaluate the fastness and fixing properties of the involved mordants on wool knitted fibers. The washing fastness of the dyed and mordanted samples were assessed by comparing their color coordinates. The results from this study showed that leaves of Punica granatum and Lantana camara can be used in natural mordanting process to dye wool in range of green to brownish color with Psiadia altissima dye. Their wash fastness values are more interesting compared to alum. Thus, processes from this study will conduct to an ecofriendly technology of textile dyeing.

Bio-mordant, Natural dyeing, textile, mordanting, tannins, Psidia altissima

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References

[1] Rita Kant. (2012). Textile Dyeing Industry on Environmental Hazard. Natural Science, Vol.4.

[2] Kumar Samanta A, Agarwal P. (2009). Application Of Natural Dyes on Textiles. Indian Journal of Fibre and Textile Research [0975-1025], Vol. 34.

[3] Aref Jahangiri1, Seyed Majid Ghoreishian, Ahmad Akbari, Mohammad Norouzi, Masoomeh Ghasemi, Maryamsadat Ghoreishian, And Elham Shafiabadi (2018). Natural Dyeing of Wool by Madder (Rubia Tinctorum L.) Root Extract Using Tannin-Based Biomordants: Colorimetric, Fastness and Tensile Assay. Fibers And Polymers [1875-0052], Vol.19.

[4] Mahima Singh, Falguni Patel, Nainesh Modi (2020). Effect Of Mordants on Natural Dye Extracts. International journal of research culture society [2456-6683], Vol. 4, (Issue 6).

[5] Ashis Kumar Samanta (2020). Bio-Dyes, Bio-Mordants and Bio-Finishes: Scientific Analysis for Their Application on Textiles. Chemistry and Technology of Natural and Synthetic Dyes and Pigments.

[6] Mahima Singh, Falguni Patel, Nainesh Modi. (2020). Effect of Mordants on Natural Dye Extracts. International journal of research culture society [2456-6683]

[7] Samanta AK.. (2018). Application of Natural Dyes to Cotton and Jute Textiles: Science and Technology and Environmental Issues. Handbook of Renewable Materials for Coloration and Finishing.

[8] Mansour, R. (2018). Natural Dyes and Pigments: Extraction and Applications. Handbook Of Renewable Materialsfor Coloration and Finishing.

[9] Yusuf M, Mohammad F, Shabbir M, Khan MA. (2016). Eco-Dyeing of Wool with Rubia Cordifolia Root Extract: Assessment of The Effect of Acacia Catechu as Biomordant on Colour and Fastness Properties. Textiles And Clothing Sustainability [], Vol. 2

[10] Mahery Andriamanantena,A, B Pascal Danthu,C, D Dominique Cardon,E Fanjaniaina R. Fawbush,B, Béatrice Raonizafinimanana,B Vahinalahaja Eliane Razafintsalama,F Stéphan R. Rakotonandrasana,F Andrée Ethève,G Thomas Petit,A, H And Yanis Caro. (2019). Malagasy Dye Plant Species: A Promising Source of Novel Natural Colorants with Potential Applications – A Review. Biochemistry and Biodiversity [DOI:10.1002/cbdv.201900442] , Vol. 16.

[11] Anthony B. Cunningham, I.Made Maduarta, Jean Howe, W. Ingram ,And Steven Jansen. (2011). Hanging by A Thread: Natural Metallic Mordant Processes in Traditional Indonesian Textiles. Economic Botany [DOI:10.1007/s12231-011-9161-4]. Vol. 10.

[12] Shahid-Ul-Islam, Faqeer Mohammad. (2000). Ecological Dyeing of Wool

With Biomordants.  Sustanaible fibres and textiles [https://doi.org/10.1016/B978-0-08-102041-8.00005-6].

[13] Sinha, K., Saha, P.D., Datta, S.. (2012). Response surface optimization and artificial neural network modeling of microwave assisted natural dye extraction from pomegranate rind. Industrial Crops and Products [DOI:10.1016/j.indcrop.2011.12.032], Vol 37.

[14] Erdem İşmal Et Al., Erdem İşmal, Ö., Yıldırım, L., Özdoğan, E.. (2014). Use of almond shell extracts plus biomordants as effective textile dye. Journal of Cleaner Production [DOI:10.1016/j.jclepro.2014.01.055], Vol. 70.

[15] Rather Et Al. (2016) Rather, L.J., Shahid Ul, I., Shabbir, M., Bukhari, M.N., Shahid, M., Khan, M.A., Mohammad, F.. (2016). Ecological dyeing of woolen yarn with adhatoda vasica natural dye in the presence of biomordants as an alternative copartner to metal mordants. Journal of Environmental Chemical Engineering [DOI:10.1016/j.jece.2016.06.019], Vol. 4.

[16] Pubalina Samanta. (2022). Basic Principles of Colour Measurement and Colour Matching of Textiles and Apparels. Colorimetry [DOI: 10.5772/intechopen.101442].

[17] Yan Vivian Li yan.li@colostate.edu, Nicholas Malensek, and Chunhui Xiang+1View all authors and affiliations. (2016). Colorfastness Properties of Persimmon Dye on Cotton and Wool Fabrics. Sage journals [DOI: 10.1177/0887302X16647124], Volume 34.

[18] M. Montazer,1 M. Parvinzadeh. (2004). Effect of Ammonia on Madder-Dyed Natural Protein Fiber. Journal of Applied Polymer Science [DOI 10.1002/app.20880], Vol. 93.

[19] Aminoddin Haji, Fatemeh Shahmoradi Ghaheh, Liliana Indrie. (2022). Pomegranate fallen leaves as a source of natural dye for mordant-free dyeing of wool. Coloration technology [DOI:10.1111/cote.12651]. Vol. 139.