Engineering & Technologyarticle2026-08-09

Correlation between apparent solubility and dye exhaustion in carrier‐assisted dyeing of disperse dyeable polyester under normal pressure

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Abstract

Abstract Conventional dyeing of poly(ethylene terephthalate) (PET) typically necessitates energy‐intensive high‐temperature processes at approximately 130°C. In contrast, disperse dyeable polyester under normal pressure, modified with flexible ether‐bond segments, exhibits a significantly reduced crystallinity of 26.83% compared to 48.04% for PET, offering intrinsic potential for atmospheric‐pressure dyeing. This study establishes a mechanism‐guided strategy to overcome the trade‐off between solubility‐limited uptake and thermal migration risks. Microscopic mechanism elucidation via low‐field nuclear magnetic resonance quantified a critical free volume expansion between 70 and 98°C, creating physical channels for dye diffusion. To bridge the aqueous solubility gap, environmentally friendly bio‐based carriers were evaluated. The investigation revealed a crucial ‘solubilisation‐transfer trade‐off’: while excessive dye‐carrier affinity sequesters dye molecules in the bath, an optimised carrier system (1 g/L 4‐propylguaiacol at pH 5) successfully balances dye solubilisation and interfacial transfer. This carrier‐assisted protocol achieved a 20%–30% increase in exhaustion, ultimately delivering a final dye uptake exceeding 95% with colour fastness ≥Grade 4. This work provides a validated, low‐carbon methodology that facilitates the sustainable commercialisation of next‐generation polyesters.

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View paper (DOI)OpenAlexColoration TechnologyPublished 2026-08-09

Authors: Xueqin Ma, Xin Liu, Yalan Liu, Wei Wu, Liduo Rong, Linping Zhang, Yi Zhong, Bolin Ji, Hòng Xu, Zhiping Mao

Institutions: Donghua University, Cloud Computing Center