化学修饰的水藻:去除废水中重金属的可持续解决方案

IF 1 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES Global Nest Journal Pub Date : 2023-09-19 DOI:10.30955/gnj.005258
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引用次数: 0

摘要

本研究以藤蔓生物吸附剂为有机吸附剂,进行了间歇吸附工艺,用于去除废水中的重金属离子(特别是铬、镍、锌)。为了检测生物吸附剂的表面形貌和官能团,我们使用FTIR、SEM和amp;谱技术。为了了解吸附过程的性质,进行了几项等温研究。这些研究旨在确定吸附过程在本质上是均匀的还是非均匀的。此外,通过动力学研究考察了金属离子在吸附剂上吸附的物理或化学性质。我们还进行了热力学研究,以评估金属离子的吸附是放热还是吸热,并得出该过程的自发性。值得注意的是,研究结果表明,0.3N HCl的加入导致解吸率最高,表明其在释放吸附金属离子方面的有效性。在批量研究的最佳条件下,AN -褐藻对目标金属离子(Cr(VI)、Ni(II)、Zn(II))的吸附率分别为93.55%、87.56%和83.27%。
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CHEMICALLY MODIFIED ASCOPHYLLUM NODOSUM SEAWEED: A SUSTAINABLE SOLUTION FOR HEAVY METAL REMOVAL FROM WASTEWATER

In this study, a batch adsorption process was conducted utilizing Ascophyllum Nodosum biosorbent as an organic adsorbent used for the elimination of heavy metal ions (specifically chromium, nickel, and zinc) from wastewater. To examine the surface morphology and functional groups, the biosorbent underwent analysis using FTIR, SEM &amp; EDX technologies. To understand the nature of the adsorption process, several isothermal studies were conducted. These studies aimed to determine whether the adsorption process was homogeneous or heterogeneous in nature. Furthermore, the physical or chemical nature of the metal ion adsorption on the adsorbent was investigated through kinetic studies. Thermodynamic investigations were also carried out to assess whether the adsorption of metal ions was exothermic or endothermic, as well as to conclude the spontaneity of the process. Notably, the findings indicated that the inclusion of 0.3N HCl resulted in the highest rate of desorption, indicating its effectiveness in releasing the adsorbed metal ions. The AN – Brown Algae adsorbs targeted metal ions (Cr(VI), Ni(II), Zn(II)) at percentage of 93.55%, 87.56% and 83.27% respectively from the synthetic solution under the optimum conditions in batch study.

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来源期刊
Global Nest Journal
Global Nest Journal 环境科学-环境科学
CiteScore
1.50
自引率
9.10%
发文量
100
审稿时长
>12 weeks
期刊介绍: Global Network of Environmental Science and Technology Journal (Global NEST Journal) is a scientific source of information for professionals in a wide range of environmental disciplines. The Journal is published both in print and online. Global NEST Journal constitutes an international effort of scientists, technologists, engineers and other interested groups involved in all scientific and technological aspects of the environment, as well, as in application techniques aiming at the development of sustainable solutions. Its main target is to support and assist the dissemination of information regarding the most contemporary methods for improving quality of life through the development and application of technologies and policies friendly to the environment
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