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2024-04

Textile Futurism Aiming for Low Energy Consumption

Many industry insiders believe that obtaining textiles from trees will be a good solution to reduce pollution. BARKTEX produces ancient textiles known to humanity, the traditional "bark cloth." It can be widely applied in clothing, furniture, and interior design. After stripping the bark from the tree, new bark grows back. The developed bark textile is characterized by low water usage and low energy consumption from a cultural perspective, and it is environmentally friendly and ecologically suitable.


Bark Fabric

Many industry insiders believe that obtaining textiles from trees will be a good solution to reduce pollution. BARKTEX company produces ancient textiles known to humanity, the traditional 'bark clothing'. It can be widely applied in clothing, furniture, and interior design. After stripping the bark from the tree, new bark grows back. The developed bark textile has characteristics of low water usage and low energy consumption from a cultural perspective, and it is environmentally friendly and ecologically suitable.

 

Mushroom Material

Scientists are actively looking for alternatives to environmentally harmful plastic foam packaging materials, and currently, eco-friendly mushroom materials are one of the ideal options. Ecovative combines mycelium with agricultural by-products to custom-produce packaging insulation materials that are sustainable, biodegradable, and competitively low-cost.

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Analysis of the Current Situation and Development Trends of the Dyeing and Finishing Market in 2025

Currently, the dyeing and printing industry is undergoing technological innovation, increasing demand, and intensifying market competition. With the recovery of the global economy, the demand for textiles continues to grow, and the dyeing and printing industry, as an important link in the textile industry chain, is also showing a steady development trend.

Current Situation of the Textile Printing and Dyeing Industry

The textile dyeing and printing industry is an important sector that is widely involved and closely connected to people's lives. Currently, with the development of the global economy and the improvement of living standards, the status of the textile dyeing and printing industry is also constantly changing. Below is a brief overview of the current situation in this industry.

Textile Printing and Dyeing Waste Gas Treatment Technology Solutions

The textile printing and dyeing industry generates a large amount of waste gas during the processing, which not only pollutes the environment but also poses a threat to human health. Therefore, adopting effective waste gas treatment technologies is crucial for the textile printing and dyeing industry. Below are some technical solutions for treating waste gas in textile printing and dyeing.

The three major processes of dyeing and printing.

The preparation of raw fabric includes raw fabric inspection, re-rolling (by batch, by box, printing), and seam sewing. The purpose of raw fabric inspection is to check the quality of the grey fabric and to address any issues promptly. The inspection content includes physical indicators and appearance defects. Burning off the fluff aims to remove the fluff on the fabric surface, making it smooth and aesthetically pleasing, and to prevent uneven dyeing and printing defects caused by the presence of fluff during dyeing and printing. To facilitate smooth weaving, textile factories often apply sizing to the warp yarn to enhance strength and abrasion resistance. The sizing on the grey fabric affects the fabric's water absorption properties, impacts the quality of dyed and finished products, and increases the consumption of dyeing chemicals. Therefore, the sizing should be removed before boiling and processing, a process known as desizing.

Types and Characteristics of Textile Coating and Finishing

Coating finishing is a common textile post-finishing technique, which generally includes the following methods.

The principle of dyeing

The dyeing process of fiber fabrics generally goes through three stages: surface adsorption, internal diffusion, and dye fixation.

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