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February 11, 2026Research Journal of Textile and Apparel0 citations

The effect of eco-friendly treatment on surface modifications and printing properties of modal and micromodal/cotton blended fabrics

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AAAsmaa M. AbdelhamidBeni-Suef UniversityAEAmal Mohamed El-MoursyBeni-Suef UniversityMMMohamed MosaadBenha University

Key Points

  • This research investigates how eco-friendly treatments improve the physical and printing properties of modal and micromodal cotton blended fabrics.
  • Blending Modal and Micromodal wefts with Cotton warps to create fabric samples.
  • Applying treatments: oxygen plasma, nitrogen plasma, and bio-enzymes to the fabric samples.
  • Testing properties using techniques like SEM, XRD, FTIR, and measuring colour strength and fastness.
  • MC/O2 exhibited significant roughness variation of 88% and crystallinity degree of 29.11%.
  • Wettability increased for all treated samples.
  • Colour strength increased significantly for MRC/N2 and MRC/Z by 20.63 and 18.56, respectively.
  • Fastness properties were rated very good to excellent, particularly with nitrogen plasma treatment.

Abstract

Purpose Environment-friendly materials and treatments have gained significant attention. This study aims to compare the effects of plasma and bio-enzyme treatments on the physical, chemical and printing properties of Modal and Micromodal fabrics blended with Cotton. Design/methodology/approach Modal (M) and Micromodal (MR) wefts were used and blended with Cotton (C) warps to produce fabric samples for each (MC and MRC). Each sample was treated with oxygen plasma, nitrogen plasma or an enzyme (MC/O2, MC/N2, MC/Z, MRC/O2, MRC/N2 and MRC/Z). Samples were printed using a reactive dye. Fabric properties were tested and measured, using scanning electron microscope(SEM) with image processing, X-ray diffraction (XRD), Fourier transform infra-red spectroscopy (FTIR), measured contact angles, colour strength (K/S) and fastness properties. Findings MC/O2 recorded the highest of both roughness variation (88%) and crystallinity degrees (Cx%) of 29.11%. Wettability of all samples increased. K/S of MRC/N2 and MRC/Z increased (20.63) and (18.56), respectively. Fastness properties were very good to excellent with nitrogen plasma. Practical implications Plasma and bio-enzymes were environmentally friendly, saved energy and water, were more effective with Microfibres, and enhanced the properties of fabrics and printing. Originality/value Printing MR fabric treated with plasma or enzyme, and assessing its properties relative to M. Surface roughness was measured using image processing.

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Cite This Study

Abdelhamid et al. (2026) studied this question.

synapsesocial.com/papers/698c1d1d267fb587c655fab5https://doi.org/10.1108/rjta-08-2025-0188
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