Risultati per 'booth for the control/exhaustion of the dye-print works’ powder':

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 exploring the requirements of reactive dyes in eco-friendly dyeing ...
Dye physical properties can be controlled by adjusting the diazo component of the chromophores. •. The high fixation rate (>93 %) of dye on cotton fabric can be achieved.

 compatibility analysis of reactive dyes by exhaustion-fixation and ...
Metrics. Abstract. Compatibility analysis was done by exhaustion, fixation and adsorption isotherm upon three reactive dyes; Remazol Red RR, Remazol Yellow RR and Remazol Blue RR.

 the choice of optimum dye exhaustion profiles in the direct control of ...
Christine R. Holdstock. To read the full-text of this research, you can request a copy directly from the authors. Citations (9) References (5) Abstract. New developments could substantially...



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 process control in dyeing of textiles - sciencedirect
Introduction. Dyeing and printing processes are value-added treatments for most textile materials. A dyeing process is the interaction between a dye and a fibre, as well as the movement of dye into the internal part of the fibre.

 eco-friendly salt/alkali-free exhaustion dyeing of cotton fabric with ...
Introduction. Cellulosic fibers are of main crops that are widely exploited in textile industries. Textile fabrics made from such fibers are superior in comfort and environmentally friendly....

 exhaust method - an overview | sciencedirect topics
The exhaust technique is the most common method for application of reactive dyes as it is resistant to small changes of system variables. It comprises two steps: exhaustion and fixation. During exhaustion the dyes are exhausted from the dyebath and come into the fibre phase.

 real-time dyebath monitoring of reactive dyeing on ... - springer
Real-time dyebath monitoring of reactive dyeing on cationized cotton for levelness control: part 1—influence of dye structure, temperature, and addition of soda ash. Original Paper. Published: 14 July 2016. Volume 23, pages 3319–3330, (2016) Cite this article. Download PDF. Sha Fu, Matthew J. Farrell, Peter J. Hauser, David Hinks,




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