Cationic waste hemp fibers-based membrane: Case study of anionic pollutants removal through environmentally friendly processes.

IF 8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Journal of Environmental Management Pub Date : 2024-11-05 DOI:10.1016/j.jenvman.2024.123174
Nataša Knežević, Marija M Vuksanović, Katarina Banjanac, Krstimir Pantić, Zlate Veličković, Ilija Cvijetić, Aleksandar Marinković, Milena Milošević
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Abstract

In this study, waste hemp fibers were transformed into cationically modified lignocellulosic adsorbent through a three-step process. First, a delignification/defibrillation pretreatment was performed, followed by quaternization of fibers using the synthesized ionic liquid chlorocholine chloride-urea (CCC-U). Pressure-assisted cross-linking of modified fibres, using a citric acid, produced new membrane (CCC-UHM). The removal of anionic dyes (Acid Yellow 36 (AY36), Congo Red (CR), Acid Green 25 (AG25), and Acid Blue 92 (AB92)), and oxyanions (As(V) and Cr(VI)) was tested in batch and column system. The structural characteristics and chemical properties of the syntesised materials were investigated by SEM, FTIR, Raman, XPS, XRD, specific density, porosity and point of zero charges analysis. The endothermic and spontaneous equilibration of the system resulted in high capacity (qm), i.e., 302.9 mg g-1 (AY36), 456.8 mg g-1 (CR), 812.8 mg g-1 (AG25), 587.6 mg g-1 (AB92), 107.9 mg g-1 (As(V)), and 67.84 mg g-1 (Cr(VI)) at 25 °C, using the Langmuir model. The optimum pH for the adsorption process was 7. The multi-cycle adsorption/desorption process was followed by either decolorization, using laccase from M. thermophile expressed in Aspergillus oryzae (Novozym 51,003® laccase) immobilized on amino-modified fibers as biocatalyst, or photocatalytic degradation, in the presence of zinc oxide. The high decolorization efficiency (96%) observed for AG25 and AB92 underscores the considerable potential of laccase immobilized preparations as sustainable and eco-friendly approach for treating dye-contaminated wastewater. Photodegradation process provided low environmental threat of processed water, and biodegradabilty of exhausted membrane confirmed the circularity of the developed technology with implemented principles of sustainability.

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阳离子废麻纤维膜:通过环保工艺去除阴离子污染物的案例研究。
本研究通过三步法将废麻纤维转化为阳离子改性木质纤维素吸附剂。首先进行脱木素/脱纤预处理,然后使用合成的离子液体氯代胆碱脲(CCC-U)对纤维进行季铵化处理。使用柠檬酸对改性纤维进行压力辅助交联,生成新膜(CCC-UHM)。在批处理和柱处理系统中测试了阴离子染料(酸性黄 36 (AY36)、刚果红 (CR)、酸性绿 25 (AG25) 和酸性蓝 92 (AB92))和氧阴离子(As(V) 和 Cr(VI))的去除率。通过扫描电镜、傅立叶变换红外光谱、拉曼光谱、XPS、XRD、比密度、孔隙率和零电荷点分析,研究了合成材料的结构特征和化学特性。根据兰缪尔模型,在 25 °C 时,系统的内热和自发平衡产生了高容量(qm),即 302.9 mg g-1(AY36)、456.8 mg g-1(CR)、812.8 mg g-1(AG25)、587.6 mg g-1(AB92)、107.9 mg g-1(As(V))和 67.84 mg g-1(Cr(VI))。吸附过程的最佳 pH 值为 7。多循环吸附/解吸过程之后,使用固定在氨基改性纤维上的生物催化剂--嗜热黑曲霉的漆酶(Novozym 51,003® 漆酶)进行脱色,或在氧化锌存在下进行光催化降解。在 AG25 和 AB92 中观察到的高脱色效率(96%)凸显了固定化漆酶制剂作为处理染料污染废水的可持续和生态友好型方法的巨大潜力。光降解过程对被处理水的环境威胁较小,而耗尽膜的生物降解性证实了所开发技术的循环性,符合可持续发展原则。
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来源期刊
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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Machine learning for enhancing prediction of biogas production and building a VFA/ALK soft sensor in full-scale dry anaerobic digestion of kitchen food waste Phosphate, magnesium containing additives and biochar regulate compost maturity and synergistically reduce odor emission in chicken manure composting: Role of physicochemical, bacterial and fungal dynamics A review on algal biomass dewatering and recovery of microalgal-based valuable products with different membrane technologies. Biochar for sustainable agriculture: Improved soil carbon storage and reduced emissions on cropland. Cationic waste hemp fibers-based membrane: Case study of anionic pollutants removal through environmentally friendly processes.
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