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猕猴桃皮废料作为一种可回收吸附剂用于去除水中的纺织染料:直接蓝78的去除与回收

Kiwi peel waste as a recyclable adsorbent to remove textile dyes from water: Direct Blue 78 removal and recovery.

作者信息

Gubitosa Jennifer, Rizzi Vito, Fini Paola, Nuzzo Sergio, Cosma Pinalysa

机构信息

Dipartimento di Chimica, Università degli Studi di Bari "Aldo Moro", Via Orabona, 4-70126 Bari, Italy.

Consiglio Nazionale delle Ricerche CNR-IPCF, UOS Bari, Via Orabona, 4-70126 Bari, Italy.

出版信息

Phys Chem Chem Phys. 2024 Mar 27;26(13):9891-9905. doi: 10.1039/d4cp00174e.

DOI:10.1039/d4cp00174e
PMID:38465407
Abstract

According to circular bioeconomy principles, the use of kiwi peels to remove Direct Blue 78 (DB) from water is investigated during this work, proposing food waste as a recyclable adsorbent substrate. Direct Blue 78 (DB) was adopted as a model pollutant, employing its visible spectrum to monitor its adsorption. The adsorption process was thus fully characterized, investigating the roles of ionic strength, pH values, adsorbent/pollutant amounts, and temperature. The thermodynamics, kinetics, and adsorption isotherms were also studied. To extend the kiwi peels' lifetime, quite complete desorption was obtained by adopting hot water as a safe and eco-friendly strategy. Despite the relatively low kiwi peels' maximum adsorption capacity (6 mg g) for DB when adsorbed in the presence of NaCl, 10 cycles of adsorption/desorption were attempted, proposing the recycling of both the dye and kiwi peels as dictated by circular economy principles. Dyeing experiments were also performed, evidencing the dye's ability to color cotton fabrics after its recycling. Finally, the removal of other textile dyes, Direct Red 83 : 1 and Direct Yellow 86, was demonstrated in a mixture with DB. A preliminary investigation was performed to find the best working conditions for inducing the solid-state dye photodegradation, proposing a possible alternative for the adsorbent regeneration.

摘要

根据循环生物经济原则,在这项工作中研究了利用猕猴桃皮从水中去除直接蓝78(DB)的方法,提出将食物废料作为一种可回收的吸附剂基质。采用直接蓝78(DB)作为模型污染物,利用其可见光谱监测其吸附情况。通过研究离子强度、pH值、吸附剂/污染物用量和温度的作用,对吸附过程进行了全面表征。还研究了热力学、动力学和吸附等温线。为了延长猕猴桃皮的使用寿命,采用热水作为一种安全且环保的策略实现了相当完全的解吸。尽管在NaCl存在下吸附时,猕猴桃皮对DB的最大吸附容量相对较低(6 mg/g),但仍尝试进行了10次吸附/解吸循环,按照循环经济原则提出了染料和猕猴桃皮的循环利用方案。还进行了染色实验,证明了染料回收后对棉织物的染色能力。最后,展示了在与DB的混合物中去除其他纺织染料直接红83:1和直接黄86的情况。进行了初步研究以找到诱导固态染料光降解的最佳工作条件,为吸附剂再生提出了一种可能的替代方法。

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