来源:Textiles 发布时间:2026/5/15 15:02:09
选择字号:
解锁纺织品染色可持续路径——染色技术与废水处理研究文献合辑| MDPI Textiles

期刊名:Textiles

期刊主页:https://www.mdpi.com/journal/textiles

本清单旨在整理并收录“可持续纺织品染色与废水处理”相关的优秀文献,希望能为相关领域学者提供新的思路和参考,欢迎阅读。

1. Algae-Based Coatings for Fully Bio-Based and Colored Textile Products

基于藻类涂层的全生物基有色纺织产品

http://www.mdpi.com/2673-7248/5/1/3

Blanckart, L.; Munasinghe, E.A.; Bendt, E.; Rahaman, A.; Abomohra, A.; Mahltig, B. Algae-Based Coatings for Fully Bio-Based and Colored Textile Products. Textiles 2025, 5, 3.

2. Ultraviolet-Protective Textiles: Exploring the Potential of Cotton Knits Dyed with Natural Dyes

防紫外线纺织品:天然染料染色棉针织物的潜力探索

http://www.mdpi.com/2673-7248/5/3/33

Santiago, D.; Cunha, J.; Mendes, P.; Cabral, I. Ultraviolet-Protective Textiles: Exploring the Potential of Cotton Knits Dyed with Natural Dyes. Textiles 2025, 5, 33.

3. Dyeing Performance of a Synthesized and Ultrafiltrated Bifunctional Reactive Dye with Two Vinylsulfone Groups on Cotton Fabrics

一种经合成及超滤处理的双乙烯砜基双官能团活性染料在棉织物上的染色性能

http://www.mdpi.com/2673-7248/5/2/11

Lykidou, S.S.; Daniilidis, V.; Vouvoudi, E.C.; Nikolaidis, N.F. Dyeing Performance of a Synthesized and Ultrafiltrated Bifunctional Reactive Dye with Two Vinylsulfone Groups on Cotton Fabrics. Textiles 2025, 5, 11.

4. Sustainable Fabrication of Reddish Silk Fabric with Enhanced Color Intensity and Fastness Using Lycopene

利用番茄红素可持续制备具有提高色强度和色牢度的微红色真丝织物

http://www.mdpi.com/2673-7248/5/2/14

Zuo, J.; Zhou, Y. Sustainable Fabrication of Reddish Silk Fabric with Enhanced Color Intensity and Fastness Using Lycopene. Textiles 2025, 5, 14.

5. Performance Evaluation and Fastness Properties of Poly(Lactic Acid) Fibres Dyed with Commercial Disperse Dyes in Comparison to Polyester Fabric

聚乳酸纤维与涤纶织物采用商用分散染料染色性能及色牢度对比研究

http://www.mdpi.com/2673-7248/5/3/39

Lykidou, S.S.; Pachygiannaki, L.; Tzouratzoglou, E.; Vouvoudi, E.C.; Nikolaidis, N.F. Performance Evaluation and Fastness Properties of Poly(Lactic Acid) Fibres Dyed with Commercial Disperse Dyes in Comparison to Polyester Fabric. Textiles 2025, 5, 39.

6. A Novel Biodegradable Technology for Wool Fabric Restoration and Cotton Color Retention Based on Shikimic Acid and L-Arginine

基于莽草酸与L-精氨酸的羊毛织物修复与棉织物保色新型生物降解技术

http://www.mdpi.com/2673-7248/4/4/32

Latypova, T.; Kosovskaya, D.; Lovygin, M.; Evseev, G.; Olkhovskaya, M.; Filatov, V. A Novel Biodegradable Technology for Wool Fabric Restoration and Cotton Color Retention Based on Shikimic Acid and L-Arginine. Textiles 2024, 4, 549-560.

7. Wood Extracts for Dyeing of Cotton Fabrics—Special View on Mordanting Procedures

木材提取物用于棉织物染色——媒染工艺专题研究

https://www.mdpi.com/2673-7248/4/2/10

Mai, T.H.; Grethe, T.; Mahltig, B. Wood Extracts for Dyeing of Cotton Fabrics—Special View on Mordanting Procedures. Textiles 2024, 4, 138-164.

8. Chitosan/Pectin Layer-by-Layer Coatings Enriched with Strawberry Pomace Extract: A Path to Obtaining Sustainable Bio-Colored Healthcare Cotton Fabric

富含草莓果渣提取物的壳聚糖/果胶逐层涂覆:一种制备可持续生物着色医用棉织物的途径

http://www.mdpi.com/2673-7248/5/4/68

Ivanovska, A.; Corovic, M.; Ladarevic, J.; Dimic-Mišic, K.; Jordanov, I. Chitosan/Pectin Layer-by-Layer Coatings Enriched with Strawberry Pomace Extract: A Path to Obtaining Sustainable Bio-Colored Healthcare Cotton Fabric. Textiles 2025, 5, 68.

9. Effective Dye Removal from Post-Consumer Cotton Textiles and Its Influence on the Quality of the Textiles

废旧棉纺织品的有效脱色处理及其对纺织品品质的影响

http://www.mdpi.com/2673-7248/5/4/62

Munasinghe Arachchilage, E.A.; Stegschuster, G.; Cetin, M.; Rabe, M. Effective Dye Removal from Post-Consumer Cotton Textiles and Its Influence on the Quality of the Textiles. Textiles 2025, 5, 62.

10. Recent Progress on Green-Derived Tin Oxide (SnO2) for the Degradation of Textile Dyes: A Review

绿色衍生氧化锡(SnO2)降解纺织染料的研究进展

https://www.mdpi.com/2673-7248/5/3/36

Mahlaule-Glory, L.M.; Hintsho-Mbita, N.C. Recent Progress on Green-Derived Tin Oxide (SnO2) for the Degradation of Textile Dyes: A Review. Textiles 2025, 5, 36.

11. Biosynthesis of Gold- and Silver-Incorporated Carbon-Based Zinc Oxide Nanocomposites for the Photodegradation of Textile Dyes and Various Pharmaceuticals

生物合成法制备金、银掺杂碳基氧化锌纳米复合材料,并用于光降解纺织染料和多种药物

https://www.mdpi.com/2673-7248/4/1/8

Bopape, D.A.; Motaung, D.E.; Hintsho-Mbita, N.C. Biosynthesis of Gold- and Silver-Incorporated Carbon-Based Zinc Oxide Nanocomposites for the Photodegradation of Textile Dyes and Various Pharmaceuticals. Textiles 2024, 4, 104-125.

12. Radical and Catalyst Effect on Fenton-like Textile Dyes’ Degradation Process and Techno-Economical Consideration

自由基与催化剂对类芬顿纺织染料降解过程的影响及技术经济分析

http://www.mdpi.com/2673-7248/5/3/37

Ismail, G.A.; Sakai, H. Radical and Catalyst Effect on Fenton-like Textile Dyes’ Degradation Process and Techno-Economical Consideration. Textiles 2025, 5, 37.

13. Electrochemical Oxidation of Pollutants in Textile Wastewaters Using BDD and Ti-Based Anode Materials

基于掺硼金刚石(BDD)及钛基阳极材料的电化学氧化处理纺织废水中的污染物http://www.mdpi.com/2673-7248/4/4/30

Afonso, C.; Sousa, C.Y.; Farinon, D.M.; Lopes, A.; Fernandes, A. Electrochemical Oxidation of Pollutants in Textile Wastewaters Using BDD and Ti-Based Anode Materials. Textiles 2024, 4, 521-529.

期刊介绍

Textiles (ISSN 2673-7248)是一个国际性、开放获取的纺织科学领域期刊,涵盖纺织材料、纺织工程、智能纺织品、功能性纤维、绿色纺织技术等研究方向。期刊以高质量的同行评审和快速发表为特色、致力于为全球学者提供前沿的学术交流平台。

主编: 范金土教授,香港理工大学

2025年度发布的期刊引证报告中,Textiles 期刊获得首个影响因子:4.9,在JCR纺织材料学科 (Materials Science, Textiles) 中处于Q1分区 (排名2/31)。

 
 
 
特别声明:本文转载仅仅是出于传播信息的需要,并不意味着代表本网站观点或证实其内容的真实性;如其他媒体、网站或个人从本网站转载使用,须保留本网站注明的“来源”,并自负版权等法律责任;作者如果不希望被转载或者联系转载稿费等事宜,请与我们接洽。
 
 打印  发E-mail给: 
    
 
相关新闻 相关论文

图片新闻
在“亚洲水塔”,他们有失败,也有泪水 “九章四号”建立最强“量子计算优越性”
连香树雄性个体比雌性更早开花展叶 科学网2026年4月十佳博文榜单公布!
>>更多
 
一周新闻排行
 
编辑部推荐博文