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89732

Effect of Enzymatic Treatment Sequence on The Dyeability of Cellulosic Fabrics with Natural Dyes

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Last updated: 22 Jan 2023

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Abstract

This work focuses on the effect of enzymatic treatment sequence on the natural dye absorption by cellulosic fabrics. The extent of enzymatic treatment and the dye absorption by cellulose fabrics without seriously affecting its mechanical properties were studied. Attempts have been made to modify the conventional enzymatic treatment sequence of cellulose fabrics, i.e. enzymatic treatment and post dyeing in separate two baths, or dyeing and post enzymatic treatment, using three natural dyes, Curcuma Turmeric, Henna, and Tea. Enzyme treatment enhanced the natural dye absorption and gave the highest results in terms of dye fastness. The extents of bio-attacked as well as dye ability using Cellulosic fabrics with different weaving structure under investigated follows the decreasing order: Lenin > fibran > cotton. The differences among these substrates inweaving structure for a given enzyme treatment condition, decrease in the depth of shade, K/S, follows the descending order:  Henna dye > Tea dye > curcuma Turmeric dye. Further reveals that the effect of the used mordents on the depth of shade, K/S, follows the descending order:  Chrome > alum> tin. 

DOI

10.21608/idj.2016.89732

Authors

First Name

Ghada

Last Name

El Zaki

MiddleName

Mostafa

Affiliation

Weaving and Clothing Department, Faculty of Home economic, El Azhar university

Email

ghadaelzaki@yahoo.com

City

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Orcid

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Volume

6

Article Issue

4

Related Issue

12171

Issue Date

2016-10-01

Receive Date

2016-07-19

Publish Date

2016-10-01

Page Start

149

Page End

155

Print ISSN

2090-9632

Online ISSN

2090-9640

Link

https://idj.journals.ekb.eg/article_89732.html

Detail API

https://idj.journals.ekb.eg/service?article_code=89732

Order

14

Type

Original Article

Type Code

1,217

Publication Type

Journal

Publication Title

International Design Journal

Publication Link

https://idj.journals.ekb.eg/

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Article

Created At

22 Jan 2023