A Study on Antimicrobial Finish on Textile Using Plant Extract

Authors

  • Loveleen Arora Assistant Professor, School of Bio Sciences, RIMT University, Mandi Gobindgarh, Punjab, India Author
  • Ramneet Kaur Assistant Professor, School of Bio Sciences, RIMT University, Mandi Gobindgarh, Punjab, India Author

DOI:

https://doi.org/10.55524/

Keywords:

Antimicrobial, Dyes, Microbes, Plant Extracts,, Textiles

Abstract

 The use of plant-based biological colorants  or other engaged biological extracts in textile coatings as  antibacterial textiles finishes is gaining traction. Numerous  plant-derived natural colors have potent antibacterial effects.  As a result, encapsulating linen textiles with antifungal main  organic colours and biologically aggressive extracts is a new  method in the creation of medicinal clothes. Exhaust painting  was shown to be more successful than wettability across the  numerous procedures examined. According to current  research, dependent on the kind of chemicals included in the  seed extractor, various plant extracts may be helpful towards  the other gram affirmative and staphylococcus. In today's  climate of environmentally awareness, new good criteria  stress not just the manufacturer's inherent performance and  extended operation lifespan, but also an environmentally  responsible manufacturing method. As a result, development  on environmentally acceptable bacterial compounds based  on natural ingredients for use in textiles is gathering traction  across the globe. This study presents a complete overview of  equation - based therapeutic compounds for microbiological  finishes of method involves, including glucosamine,  coloring agents, derives mainly, as well as other natural  items. The advantages and disadvantages of using native  food colorings on fabric, as well as alternative ways of  extracting biological food colorings, have all been explored.

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References

Bishnoi S, Huda N, Islam SMU, Pant A, Agarwal S, Dholariya R. Association between psychological status and functional outcome in surgically managed fractures around hip in geriatric patients-a prospective study. Malaysian Orthop J. 2021;

Bruzelius N, Flyvbjerg B, Rothengatter W. Big decisions, big risks. Improving accountability in mega projects. Transp Policy. 2002;9(2):143–54.

Catlos EJ, Perez TJ, Lovera OM, Dubey CS, Schmitt AK, Etzel TM. High-Resolution P-T-Time Paths Across Himalayan Faults Exposed Along the Bhagirathi Transect NW India: Implications for the Construction of the Himalayan Orogen and Ongoing Deformation. Geochemistry, Geophys Geosystems. 2020;

Chan M, Estève D, Escriba C, Campo E. A review of smart homes Present state and future challenges. Comput Methods Programs Biomed. 2008;91(1):55–81.

Chauhan A, Tyagi V V, Sawhney A, Anand S. Comparative enviro economic assessment and thermal optimization of two distinctly designed and experimentally validated PV/T collectors. J Therm Anal Calorim. 2021;

Rahman A, Ahsan T, Islam S. Antibacterial and antifungal properties of the methanol extract from the stem of Argyreia argentea. Bangladesh J Pharmacol. 2010;5(1):41–4.

Morais DS, Guedes RM, Lopes MA. Antimicrobial approaches for textiles: From research to market. Materials (Basel). 2016;9(6):1– 21.

Jennifer KC, Sangeetha K. A Comparative study on Antimicrobial Finish using Pisidium Guajava leaf Extraction on Cotton , Organic

Cotton and Bamboo Fabrics. Int Conf Inf Eng Manag Secur. 2016;1(Iciems):101–6.

Anand DC, Mishra P, Patni V. Quantitative evaluation of plant metabolites and dye extraction from leaves of Ampelocissus latifolia (Roxb.) planch. ~ 2260 ~ J Pharmacogn Phytochem. 2018;7(4):2260–4.

El-Shafei A, Shaarawy S, Motawe FH, Refaei R. Herbal extract as an ecofriendly antimicrobial finishing of cotton fabric. Egypt J Chem. 2018;61(2):317–27.

Chauhan P, Jindal R, Meena D. Intralesional measles, mumps, and rubella vaccine immunotherapy in molluscum contagiosum: A retrospective observational study from a tertiary care center in north India. Dermatol Ther. 2021;

Choi TM, Wallace SW, Wang Y. Big Data Analytics in Operations Management. Prod Oper Manag. 2018;

Cox TH, Lobel SA, McLeod PL. Effects of Ethnic Group Cultural Differences on Cooperative and Competitive Behavior On a Group Task. Acad Manag J. 1991;34(4):827–47.

Cox T, Blake S. Managing Cultural Diversity: implications for organisational effectiveness. Acad Manag Exec. 1991;5(3):45–56. [15]Cuzzocrea A, Song IY, Davis KC. Analytics over large-scale multidimensional data: The big data revolution! Int Conf Inf Knowl Manag Proc. 2011;101–3.

de Palma A, Picard N, Andrieu L. Risk in Transport Investments. Networks Spat Econ. 2012;12(2):187–204.

Dhingra M, Mudgal RK. Applications of Perceived Usefulness and Perceived Ease of Use: A Review. In: Proceedings of the 2019 8th International Conference on System Modeling and Advancement in Research Trends, SMART 2019. 2020.

Dhingra V, Mudgal RK, Dhingra M. Safe and Healthy Work Environment: A Study of Artisans of Indian Metalware Handicraft Industry. Manag Labour Stud. 2017;

Doloi H. Assessing stakeholders’ influence on social performance of infrastructure projects. Facilities. 2012;30(11):531–50. [20]Elgendy N, Elragal A. Big Data Analytics in Support of the Decision Making Process. Procedia Comput Sci. 2016;100:1071– 84.

Esty BC. Why study large projects? An introduction to research on project finance. Eur Financ Manag. 2004;10(2):213–24. [22]Esty BC, Sesia A. An Overview of Project Finance & Infrastructure Finance---2006 Update. Harvard Busines Sch. 2007;Case No. 2. [23]V K. Effect of Imparting Antimicrobial Coating on Organic Cotton Fabric Using Yashtimadhu for Medical Application. J Text Eng Fash Technol. 2017;3(3):650–2.

Prabhu KH, Teli MD. Eco-dyeing using Tamarindus indica L. seed coat tannin as a natural mordant for textiles with antibacterial activity. J Saudi Chem Soc. 2014;18(6):864–72.

Franco Modigliani; Merton H. Miller. The cost of capital, corporation finance and theory of investment. J Craniomandib Disord. 1958;5(1):19–27.

Ghai W, Kumar S, Athavale VA. Using gaussian mixtures on triphone acoustic modelling-based punjabi continuous speech recognition. In: Advances in Intelligent Systems and Computing. 2021.

Ghosh S, Rana A, Kansal V. Evaluating the Impact of Sampling Based Nonlinear Manifold Detection Model on Software Defect Prediction Problem. In: Smart Innovation, Systems and Technologies. 2020.

Prabhu KH, Teli MD, Waghmare NG. Eco-friendly dyeing using natural mordant extracted from Emblica officinalis G. Fruit on cotton and silk fabrics with antibacterial activity. Fibers Polym. 2011;12(6):753–9.

Sarkar RK, De P, Chauhan PD. Bacteria-resist finish on cotton fabrics using natural herbal extracts. Indian J Fibre Text Res. 2003;28(3):322–31.

Sathianarayanan MP, Bhat N V., Kokate SS, Walunj VE. Antibacterial finish for cotton fabric from herbal products. Indian J Fibre Text Res. 2010;35(1):50–8.

Vankar PS, Shukla D. Biosynthesis of silver nanoparticles using lemon leaves extract and its application for antimicrobial finish on fabric. Appl Nanosci. 2012;2(2):163–8.

Kavitha S, Ramachandran T. Antimicrobial Finish on Nonwoven Fabric using Sandalwood Extract. Int Conf Syst Sci Control Commun Eng Technol. 2016;2:855–60.

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Published

2022-03-30

How to Cite

A Study on Antimicrobial Finish on Textile Using Plant Extract . (2022). International Journal of Innovative Research in Computer Science & Technology, 10(2), 224–228. https://doi.org/10.55524/