Potassium nickel hexacyanoferrate–polyacrylonitrile composite for removing cobalt, strontium, and cesium from radioactive laundry wastewater

IF 1.5 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES
Ardie Septian, Md Abdullah Al Masud, Won Sik Shin
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Abstract

The applicability of potassium nickel hexacyanoferrate–polyacrylonitrile (KNiFC–PAN) for the sorption of Co2+, Sr2+, and Cs+ from radioactive laundry wastewater generated in nuclear power plants was investigated. Competitive sorption of Co2+, Sr2+, and Cs+ onto KNiFC–PAN was studied for single, binary, and ternary solutions. The Langmuir, Freundlich, Kargi–Ozmıhci, Koble–Corrigan, and Langmuir–Freundlich models predicted the single-sorption data (R2 ≥ 0.942, sum of squared error ≤ 0.105). The sorption isotherms were nonlinearly favorable (Freundlich coefficient, NF = 0.288–0.842). According to the Langmuir, Freundlich, Kargi–Ozmıhci, Koble–Corrigan, and Langmuir–Freundlich models, at pH 5 (C0 = 20 mM), KNiFC−PAN exhibited the highest maximum sorption capacity (qmL) for Cs+ among the investigated cations, wherein the primary mechanism was physical sorption. The competition between the metal ions in the binary and ternary systems reduced the respective sorption capacities. Binary and ternary sorption models, such as the ideal adsorbed solution theory (IAST) model coupled with Freundlich (IAST–Freundlich), IAST–Langmuir, and IAST–Langmuir–Freundlich models, were fitted to the experimental data; among these, the IAST–Freundlich model was the most accurate for the binary and ternary systems. The presence of sodium 4-n-octylbenzenesulfonate and dodecylbenzene–sulfonic acid sodium salt as anionic surfactants strongly affected the sorption capacity on KNiFC–PAN owing to increased distribution coefficients (Kd) of Cs+, Sr2+, and Co2+. Thus, KNiFC–PAN is promising for removing Cs+, Sr2+, and Co2+ from radioactive laundry wastewater.

Abstract Image

Abstract Image

用于从放射性洗衣废水中去除钴、锶和铯的六氰铁酸钾镍-聚丙烯腈复合材料
研究了六氰铁酸钾镍-聚丙烯腈(KNiFC-PAN)对核电站放射性洗衣废水中Co2+、Sr2+和Cs+的吸附性能。研究了KNiFC-PAN在单、二、三元溶液中对Co2+、Sr2+和Cs+的竞争性吸附。Langmuir、Freundlich、Kargi-Ozmıhci、Koble-Corrigan和Langmuir - Freundlich模型预测单吸附数据(R2≥0.942,误差平方和≤0.105)。吸附等温线呈非线性有利(Freundlich系数,NF = 0.288 ~ 0.842)。根据Langmuir, Freundlich, Kargi-Ozmıhci, Koble-Corrigan和Langmuir - Freundlich模型,在pH为5 (C0 = 20 mM)时,KNiFC−PAN对Cs+的最大吸附能力(qmL)在所研究的阳离子中最高,其中主要机制是物理吸附。二元和三元体系中金属离子之间的竞争降低了各自的吸附能力。拟合了理想吸附溶液理论(IAST)与Freundlich (IAST - Freundlich)、IAST - langmuir和IAST - langmuir - Freundlich模型耦合的二元和三元吸附模型;其中,IAST-Freundlich模型对二元和三元体系最准确。4-正辛基苯磺酸钠和十二烷基苯磺酸钠盐作为阴离子表面活性剂的存在,通过增加Cs+、Sr2+和Co2+的分配系数(Kd),强烈影响了KNiFC-PAN的吸附能力。因此,KNiFC-PAN有望从放射性洗衣废水中去除Cs+, Sr2+和Co2+。
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来源期刊
Clean-soil Air Water
Clean-soil Air Water 环境科学-海洋与淡水生物学
CiteScore
2.80
自引率
5.90%
发文量
88
审稿时长
3.6 months
期刊介绍: CLEAN covers all aspects of Sustainability and Environmental Safety. The journal focuses on organ/human--environment interactions giving interdisciplinary insights on a broad range of topics including air pollution, waste management, the water cycle, and environmental conservation. With a 2019 Journal Impact Factor of 1.603 (Journal Citation Reports (Clarivate Analytics, 2020), the journal publishes an attractive mixture of peer-reviewed scientific reviews, research papers, and short communications. Papers dealing with environmental sustainability issues from such fields as agriculture, biological sciences, energy, food sciences, geography, geology, meteorology, nutrition, soil and water sciences, etc., are welcome.
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