Optimization of ultrasound-assisted anthocyanin extraction from agricultural waste purple corn silk for multifunctional hemp finishes
DOI:
https://doi.org/10.55713/jmmm.v34i4.2027Keywords:
purple corn silk, Antibacterial activity, Antioxidant activity, UV-protection, Hemp fabricsAbstract
The utilization of agricultural wastes for textile dyeing has gained popularity due to their safe and environmentally friendly properties, as well as the resource sustainability. Natural dye extraction is usually achieved through solvent extraction, which is time-consuming, requires a lot of solvent, and degrades desired compounds at high temperatures. Thus, this study investigated ultrasound-assisted anthocyanin extraction from agricultural waste purple corn silk as natural functional colorants for hemp finishes, given the numerous health benefits associated with anthocyanin. In order to optimize the extraction processes and evaluate the synergistic impact of these conditions, response surface methodology was implemented. The optimum conditions were 1:15 material-liquid ratio, 47% ethanol concentration, 60°C, and 20 min, yielding 240.25 mg·L‒1 anthocyanin. The extracted anthocyanin was used for dyeing hemp fabrics and demonstrated satisfactory colorfastness, antibacterial action on both S.aureus and E.coli, with E.coli being more effective, and strong antioxidant (>80%). The dyed fabrics also exhibited their great UV shield (UPF value > 40+). Anthocyanin derived from purple corn silk could therefore be utilized as a natural functional color for medical and health products. Also, purple corn silk contains more anthocyanin than other natural sources, making it a promising natural anthocyanin resource in textile industry.
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References
B. Koul, M. Yakoob, and M. P. Shah, "Agricultural waste management strategies for environmental sustainability," Environmental Research, vol. 206, p. 112285, 2022. DOI: https://doi.org/10.1016/j.envres.2021.112285
P. De Nisi, G. Borlini, P. Parizad, A. Scarafoni, P. Sandroni, E. Cassani, F. Adani, and R. Pilu, "Biorefinery approach applied to the valorization of purple corn cobs," ACS Sustainable Chemistry & Engineering, vol. 9, pp. 3781-3791, 2021. DOI: https://doi.org/10.1021/acssuschemeng.0c08717
P. Chitichotpanya, N. Vuthiganond, P. Chutasen, and T. Inprasit, “Green production of simultaneous coloration and functional finishing on hemp textiles through dyeing with Diospyros mollis Griff. extract,” Journal of Metals, Materials and Minerals, vol. 33, pp. 108-119, 2023. DOI: https://doi.org/10.55713/jmmm.v33i2.1697
M. Nakpathom, B. Somboon, N. Narumol, and R. Mongkholrattanasit, "Dyeing of cationized cotton with natural colorant from purple corncob," Journal of Natural Fibers, vol. 15, pp. 668-679, 2018. DOI: https://doi.org/10.1080/15440478.2017.1354742
P. Chitichotpanya, N. Vuthiganond, T. Inprasit, B. Klaykruayat, and S. Srisuk, “Extraction of lutein dye from Tagetes erecta garland waste for green dyeing of hemp fabric using response surface methodology,” Journal of Metals, Materials and Minerals, vol. 32, pp. 47-58, 2022. DOI: https://doi.org/10.55713/jmmm.v32i4.1527
R. Mongkholrattanasit, M. Nakpathom, and N. Vuthiganond, "Eco-dyeing with biocolorant from spent coffee ground on low molecular weight chitosan crosslinked cotton," Sustainable Chemistry and Pharmacy, vol. 20, p. 100389, 2021. DOI: https://doi.org/10.1016/j.scp.2021.100389
T. Lei, Y. Pan, B. Zhang, R. Liu, and Y. Pan, "Optimisation of ultrasonic-assisted extraction of natural dyes from pomegranate rind using response surface methodology and its characterisation," Coloration Technology, vol. 137, pp. 259-271, 2021. DOI: https://doi.org/10.1111/cote.12528
Z. Zhou, and D. Yang, " Economical and eco-friendly isolation of anthocyanins from grape pomace with higher efficiency," Food Chemistry X, vol. 10, p. 100419, 2022. DOI: https://doi.org/10.1016/j.fochx.2022.100419
M. Paulsmeyer, K. Vermillion, and J. Juvik, "Assessing the diversity of anthocyanin composition in various tissues of purple corn (Zea mays L.)," Phytochemistry, vol. 201, p. 113263, 2022. DOI: https://doi.org/10.1016/j.phytochem.2022.113263
M. Cristianini, amd J. Guillén Sánchez, "Extraction of bioactive compounds from purple corn using emerging technologies: A review," Journal of Food Science, vol. 85, pp. 862-869, 2020. DOI: https://doi.org/10.1111/1750-3841.15074
H. Kim, K. Lee, M. Kim, M. Hong, P. Deepa, and S. Kim, "A review of the biological properties of purple corn (Zea mays L.)," Journal of Food Science, vol. 91, pp. 6, 2023. DOI: https://doi.org/10.3390/scipharm91010006
B. Alappat, and J. Alappat, "Anthocyanin pigments: Beyond aesthetics," Molecules, vol. 25, p. 5500, 2020. DOI: https://doi.org/10.3390/molecules25235500
J. Tan, Y. Han, B. Han, X. Qi, X. Cai, S. Ge, and H. Xue, "Extraction and purification of anthocyanins: A review," Journal of Agriculture and Food Research, vol. 8, p. 100306, 2022. DOI: https://doi.org/10.1016/j.jafr.2022.100306
T. Senphan, N. Yakong, K. Aurtae, S. Songchanthuek, V. Choommongkol, N. Fuangpaiboon, P. LiewPhing, and S. Yarnpakdee, "Comparative studies on chemical composition and antioxidant activity of corn silk fromtwo varieties of sweet corn and purple waxy corn as influenced by drying methods," Food and Applied Bioscience Journal, vol. 7, pp. 64-80, 2019.
R. Mongkholrattanasit, C. Klaichoi, J. Sarnium, P. Jareonsapyanant, N. Sasivatchutikool, J. Pattavanitch, and N. Rungruangkitkrai. "Effect of dye concentration on UV protection property of silk fabric dyed with purple corn cob using pre-mordanting method," Advanced Materials Research, vol. 1010-1012, pp. 508-511, 2014. DOI: https://doi.org/10.4028/www.scientific.net/AMR.1010-1012.508
R. Mongkholrattanasit, C. Klaichoi, T. Tomkom, N. Sasivatchutikool, Y. Laoong-U-Thai, and N. Rungruangkitkrai, "Study on color activity of silk fabric dyed with purple corn cob: A research on effect of metal mordants concentration using post-mordanting method," Advanced Materials Research, vol. 1010-1012, pp. 516-519, 2014. DOI: https://doi.org/10.4028/www.scientific.net/AMR.1010-1012.516
L. Shen, S. Pang, M. Zhong, Y. Sun, A. Qayum, Y. Liu, A. Rashid, B. Xu, Q. Liang, H. Ma, and X. Ren, "A comprehensive review of ultrasonic assisted extraction (UAE) for bioactive components: Principles, advantages, equipment, and combined technologies," Ultrasonics Sonochemistry, vol. 101, p. 106646, 2023. DOI: https://doi.org/10.1016/j.ultsonch.2023.106646
E. M. Garcia-Castello, A. D. Rodriguez-Lopez, L. Mayor, R. Ballesteros, C. Conidi, and A. Cassano, "Optimization of conventional and ultrasound assisted extraction of flavonoids from grapefruit (Citrus paradisi L.) solid wastes," LWT - Food Science and Technology, vol. 64, pp. 1114-1122, 2015. DOI: https://doi.org/10.1016/j.lwt.2015.07.024
S. Kim, H. Son, S. Pang, J. Yang, J. Lee, K. Lee, J. Lee, C. Park, and H. Yoo, " Optimization of major extraction variables to improve recovery of anthocyanins from elderberry by response surface methodology," Processes, vol. 11, p. 72, 2023. DOI: https://doi.org/10.3390/pr11010072
S. Kim, H. Son, S. Pang, J. Yang, J. Lee, K. Lee, J. Lee, C. Park, and H. Yoo, "Ultrasound-assisted extraction of natural dyes from Hawthorn fruits for dyeing polyamide fabric and study its fastness, antimicrobial, and antioxidant properties," Environment, Development and Sustainability, vol. 23, pp. 9163-9180, 2021. DOI: https://doi.org/10.1007/s10668-020-01017-0
M. Kumar, A. Dahuja, S. Tiwari, S. Punia, Y. Tak, R. Amarowicz, A. G. Bhoite, S. Singh, S. Joshi, P. S. Panesar, R. P. Saini, A. Pihlanto, M. Tomar, J. Sharifi-Rad, and C. Kaur, "Recent trends in extraction of plant bioactives using green technologies: A review," Food Chemistry, vol. 353, p. 129431, 2021. DOI: https://doi.org/10.1016/j.foodchem.2021.129431
K. Kumar, S. Srivastav, and V. Sharanagat, "Ultrasound assisted extraction (UAE) of bioactive compounds from fruit and vegetable processing by-products: A review," Ultrasonics Sonochemistry, vol. 70, p. 105325, 2021. DOI: https://doi.org/10.1016/j.ultsonch.2020.105325
E. Backes, C. Pereira, L. Barros, M. A. Prieto, A. K. Genena, M. F. Barreiro, and I. C. F. R. Ferreira, “Recovery of bioactive anthocyanin pigments from Ficus carica L. peel by heat, microwave, and ultrasound based extraction techniques,” Food Research International, vol. 113, pp. 197-209, 2018. DOI: https://doi.org/10.1016/j.foodres.2018.07.016
B. R. Albuquerque, M. A. Prieto, M. F. Barreiro, A. Rodrigues, T. P. Curran, L. Barros, and I. C. F. R. Ferreira, “ Catechin-based extract optimization obtained from Arbutus unedo L. fruits using maceration/microwave/ultrasound extraction techniques,” Industrial Crops and Products, vol. 95, pp. 404–415, 2016. DOI: https://doi.org/10.1016/j.indcrop.2016.10.050
C. Caleja, L. Barros, M. A. Prieto, F. M. F. Barreiro, M. B. P. Oliveira, and I. C. F. R. Ferreira, “ Extraction of rosmarinic acid from Melissa officinalis L. by heat-, microwave- and ultrasound-assisted extraction techniques: A comparative study through response surface analysis,” Separation and Purification Technology, vol. 186, pp. 297-308, 2017. DOI: https://doi.org/10.1016/j.seppur.2017.06.029
M. Rehman, S. Fahad, G. Du, X. Cheng, Y. Yang, K. Tang, L. Liu, F. Liu, and G. Deng, "Evaluation of hemp (Cannabis sativa L.) as an industrial crop: a review," Environmental Science and Pollution Research, vol. 28, pp. 52832-52843, 2021. DOI: https://doi.org/10.1007/s11356-021-16264-5
A. Schumacher, S. Pequito, and J. Pazour, "Industrial hemp fiber: A sustainable and economical alternative to cotton," Journal of Cleaner Production, vol. 268, p. 122180, 2020. DOI: https://doi.org/10.1016/j.jclepro.2020.122180
G. B. Celli, A. Ghanem, and M. S Brooks, “Optimization of ultrasound-assisted extraction of anthocyanins from haskap berries (Lonicera caerulea L.) using Response Surface Methodology. Ultrasonics sonochemistry, vol. 27, pp. 449-455, 2015. DOI: https://doi.org/10.1016/j.ultsonch.2015.06.014
Y. Yin, J. Jia, T. Wang, and C. Wang, "Optimization of natural anthocyanin efficient extracting from purple sweet potato for silk fabric dyeing," Journal of Cleaner Production, vol. 149, pp. 673-679, 2017. DOI: https://doi.org/10.1016/j.jclepro.2017.02.134
G.E.P. Box, and K.B. Wilson, "On the experimental attainment of optimum conditions," Journal of the Royal Statistical Society. Series B (Methodological), vol. 13, pp. 1-45, 1951. DOI: https://doi.org/10.1111/j.2517-6161.1951.tb00067.x
M. Rehan, G. E. Ibrahim, H. M. Mashaly, M. Hasanin, H. G. Rashad, and S. Mowafi, "Simultaneous dyeing and multifunctional finishing of natural fabrics with Hibiscus flowers extract," Journal of Cleaner Production, vol. 374, p. 133992, 2022. DOI: https://doi.org/10.1016/j.jclepro.2022.133992
Y. Zhou, Z. Yang, and R. Tang, "Facile and green preparation of bioactive and UV protective silk materials using the extract from red radish (Raphanus sativus L.) through adsorption technique," Arabian Journal of Chemistry, vol. 13, pp. 3276-3285, 2020. DOI: https://doi.org/10.1016/j.arabjc.2018.11.003
N. Vuthiganond, M. Nakpathom, and R. Mongkholrattanasit, "Azoic deep dyeing of silk and uv protection using plant poly-phenols and diazonium coupling," Fibers and Polymers, vol. 21, pp. 1052-1060, 2020. DOI: https://doi.org/10.1007/s12221-020-9057-y
S. Benkhaya, S. Rabet, and A. E. Harfi, "A review on classifications, recent synthesis and applications of textile dyes," Inorganic Chemistry Communications, vol. 115, p. 107891, 2020. DOI: https://doi.org/10.1016/j.inoche.2020.107891
T. Manso, M. Lores M, and T. de Miguel, "Antimicrobial activity of polyphenols and natural polyphenolic extracts on clinical Isolates," Antibiotics, vol. 11, p. 46, 2022. DOI: https://doi.org/10.3390/antibiotics11010046
Z. Motaghi, "An economical dyeing process for cotton and wool fabrics and improvement their antibacterial properties and UV protection," Journal of natural fibers, vol. 15, pp. 777-788, 2018. DOI: https://doi.org/10.1080/15440478.2017.1364204
S. Huang, L. Wei, and H. Wang, "Dyeing and antibacterial properties of Liriope platyphylla fruit extracts on silk fabrics," Fibers and Polymers, vol. 18, pp. 758-766, 2017. DOI: https://doi.org/10.1007/s12221-017-5449-z
F.S. Ghaheh, M.K. Moghaddam, and M. Tehrani, “Comparison of the effect of metal mordants and bio‐mordants on the colorimetric and antibacterial properties of natural dyes on cotton fabric," Coloration Technology, vol. 137, pp. 689-698, 2021. DOI: https://doi.org/10.1111/cote.12569
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