以农作物废料为基础的天然染料的环保提取与利用

IF 3.5 3区 工程技术 Q3 ENERGY & FUELS
Nimra Amin, Fazal-ur- Rehman, Shahid Adeel, Muhammad Ibrahim, Rony Mia
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引用次数: 0

摘要

国际社会越来越多地建议将废弃的植物残留物纳入实际应用,特别是作为纺织品中绿色染料的可持续来源。本研究通过环保方法探讨了仰光爬山虎花和茜草根对丝绸染色的潜力。因此,提取程序在合适的介质中进行,并在微波(MW)处理前后应用于织物,持续时间长达10分钟。同样,采用响应面法评估各种染色参数的重要性,这些参数会影响显色性和提高色牢度。结果表明,将仰光攀山虎花和茜草根的酸性二元提取物与丝绸织物一起在700 W的辐射下照射6 min是获得不褪色色调的有效条件,特别是在用Al, Fe盐和单宁酸及其二元溶液作为生态化学剂熏染前后。MW处理后的酸提物色强最高(K/S = 15.0)。因此,基于ISO耐光牢度、耐洗牢度和耐摩擦牢度协议等标准方法的评估表明,采用在环保条件下生产的选定色调既省时又节能,可以产生从良好到优异的稳定色牢度。这项研究表明,除了利用统计方法(如中心复合设计)探索新的染料生产植物外,利用微波处理,再加上生态染色技术,有望获得理想的不褪色色调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Eco-Friendly Extraction and Utilization of Agro Crop Wastes Based Natural Dye for Textile Dyeing

Eco-Friendly Extraction and Utilization of Agro Crop Wastes Based Natural Dye for Textile Dyeing

The incorporation of waste plant residues into practical applications, particularly as a sustainable source of green dyes in textiles, is increasingly recommended by the global community. This research investigates the potential of Rangoon creeper flowers and madder roots for silk dyeing through environmentally friendly methodologies. Therefore, extraction procedures were conducted in suitable mediums and applied to the fabric before and after microwave (MW) treatment for durations of up to 10 min. Similarly, response surface methodology was employed to assess the significance of various dyeing parameters, which influence shade development and enhance colorfastness. The results indicate that subjecting acidic binary extracts of Rangoon creeper flowers and madder roots, along with silk fabric, to 6 min of radiation at 700 W is an effective condition for achieving colorfast shades, particularly when applied before and after mordanting with Al, Fe salts, and tannic acid single and their binary solution as eco-chemical agents. The highest color strength (K/S = 15.0) was obtained using an acidic extract after MW treatment. Hence, evaluation based on standard methods such as ISO protocols for lightfastness, wash fastness, and rub fastness demonstrates that employing selected shades produced under environmentally friendly conditions is both time and energy-efficient, yielding stable colorfast hues rated from good to excellent. This study suggests that utilizing microwave treatment in addition to statistical methodologies like the central composite design for exploring novel dye-yielding plants, coupled with eco-mordanting techniques, holds promise for obtaining desirable colorfast shades.

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来源期刊
Energy Science & Engineering
Energy Science & Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
6.80
自引率
7.90%
发文量
298
审稿时长
11 weeks
期刊介绍: Energy Science & Engineering is a peer reviewed, open access journal dedicated to fundamental and applied research on energy and supply and use. Published as a co-operative venture of Wiley and SCI (Society of Chemical Industry), the journal offers authors a fast route to publication and the ability to share their research with the widest possible audience of scientists, professionals and other interested people across the globe. Securing an affordable and low carbon energy supply is a critical challenge of the 21st century and the solutions will require collaboration between scientists and engineers worldwide. This new journal aims to facilitate collaboration and spark innovation in energy research and development. Due to the importance of this topic to society and economic development the journal will give priority to quality research papers that are accessible to a broad readership and discuss sustainable, state-of-the art approaches to shaping the future of energy. This multidisciplinary journal will appeal to all researchers and professionals working in any area of energy in academia, industry or government, including scientists, engineers, consultants, policy-makers, government officials, economists and corporate organisations.
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