Arginine-Polyaniline Embedded Jujube Shells Composite for Outstanding Cr(VI) Detoxification from aqueous solution

IF 3.8 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Kamal Ait El Bacha, Abdelaziz Imgharn, Abdelghani Hsini, Hamid Zouggari, Fatima-zahra Mahir, Belaid Selhami, Rajae Lakhmiri, Mohamed Laabd, Habiba Ejazouli, Abdallah Albourine
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Abstract

A hybrid composite, denoted as arginine-functionalized polyaniline@jujube shells (Arg-PANI@JS), was designed by oxidative polymerization of monomer-aniline on the surface of jujube shells matrix in the occurrence of arginine. This adsorbent was subsequently characterized and used in hexavalent chromium Cr(VI) adsorption assays. An experimental batch adsorption setup was utilized to assess the effectiveness of the newly developed adsorbent in detoxifying Cr(VI) ions from the solution. The experimental results were successfully anticipated by a pseudo-second-order model (PSO) and the Freundlich isotherm with a maximum uptake capacity of 1142.86 mg.g−1. The thermodynamic investigation showed that the process was both spontaneous and endothermic. The pivotal driving force behind elucidating the binding mechanism of Cr(VI) species was determined to be electrostatic interactions. Furthermore, our assessment demonstrated that the Arg-PANI@JS composite can be readily regenerated using a NaOH solution and effectively reutilized for removing Cr(VI) from aqueous solutions. Consequently, these findings underscore the promising practical utilization of the Arg-PANI@JS composite in wastewater treatment.

Abstract Image

精氨酸-多苯胺包埋枣壳复合材料对水溶液中六价铬的出色解毒作用
在精氨酸存在的情况下,通过在枣壳基质表面氧化聚合单体-苯胺,设计出一种混合复合材料,称为精氨酸功能化聚苯胺@枣壳(Arg-PANI@JS)。随后对这种吸附剂进行了表征,并将其用于六价铬的吸附试验。利用批量吸附实验装置来评估新开发的吸附剂从溶液中解毒六价铬离子的效果。假二阶模型(PSO)和 Freundlich 等温线成功地预测了实验结果,最大吸附容量为 1142.86 mg.g-1。热力学研究表明,这一过程既是自发的,又是内热的。阐明六价铬结合机制的关键驱动力是静电相互作用。此外,我们的评估表明,Arg-PANI@JS 复合材料可使用 NaOH 溶液轻松再生,并可有效地重新用于去除水溶液中的六(七)铬。因此,这些发现强调了 Arg-PANI@JS 复合材料在废水处理中的实际应用前景。
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来源期刊
Water, Air, & Soil Pollution
Water, Air, & Soil Pollution 环境科学-环境科学
CiteScore
4.50
自引率
6.90%
发文量
448
审稿时长
2.6 months
期刊介绍: Water, Air, & Soil Pollution is an international, interdisciplinary journal on all aspects of pollution and solutions to pollution in the biosphere. This includes chemical, physical and biological processes affecting flora, fauna, water, air and soil in relation to environmental pollution. Because of its scope, the subject areas are diverse and include all aspects of pollution sources, transport, deposition, accumulation, acid precipitation, atmospheric pollution, metals, aquatic pollution including marine pollution and ground water, waste water, pesticides, soil pollution, sewage, sediment pollution, forestry pollution, effects of pollutants on humans, vegetation, fish, aquatic species, micro-organisms, and animals, environmental and molecular toxicology applied to pollution research, biosensors, global and climate change, ecological implications of pollution and pollution models. Water, Air, & Soil Pollution also publishes manuscripts on novel methods used in the study of environmental pollutants, environmental toxicology, environmental biology, novel environmental engineering related to pollution, biodiversity as influenced by pollution, novel environmental biotechnology as applied to pollution (e.g. bioremediation), environmental modelling and biorestoration of polluted environments. Articles should not be submitted that are of local interest only and do not advance international knowledge in environmental pollution and solutions to pollution. Articles that simply replicate known knowledge or techniques while researching a local pollution problem will normally be rejected without review. Submitted articles must have up-to-date references, employ the correct experimental replication and statistical analysis, where needed and contain a significant contribution to new knowledge. The publishing and editorial team sincerely appreciate your cooperation. Water, Air, & Soil Pollution publishes research papers; review articles; mini-reviews; and book reviews.
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