Pengfei Zong , Ming Xu , Ning Yan , Min Shao , Xuejuan Xu , Yixuan Yang , Jiahao Chen , Zhengrong Qiu , Shoufang Wang
{"title":"含钴隐黑烷型锰氧化物分子筛作为一种高效吸附剂对废水系统中铕的去除效果的综合评价","authors":"Pengfei Zong , Ming Xu , Ning Yan , Min Shao , Xuejuan Xu , Yixuan Yang , Jiahao Chen , Zhengrong Qiu , Shoufang Wang","doi":"10.1016/j.envres.2022.113965","DOIUrl":null,"url":null,"abstract":"<div><p><span>Extraction of radionuclide<span><span> contaminants from wastewater systems has recently drawn widespread attention, and then developing a novel and green extracting technology<span> has also become an enormous challenge. Herein, a facile hydrothermal method was employed to fabricate cobalt-incorporated cryptomelane-type manganese oxide molecular sieve (Co-OMS-2) for extraction Eu(III) from wastewater under diverse experimental conditions. All kinds of characterized techniques, such as </span></span>SEM<span>, TEM, XRD, FTIR, BET, EDS and XPS had verified the qualified synthesis process and splendid structural features of the Co-OMS-2. The maximum adsorption capacity of Co-OMS-2 was 7.62 × 10</span></span></span><sup>−4</sup><span> mol/g for Eu(III) at 298 K, which was superior than primarily traditional materials reported previous literatures. The high adsorption capacity of Eu(III) onto Co-OMS-2 was primarily attributed to high specific surface area and abundant surface functional groups, and the interactions were mainly contributed to strong surface complexation and electrostatic attraction. Under the condition of low pH, the outer-sphere surface complexation and cation exchange were primary mechanisms to Eu(III) adsorption onto Co-OMS-2 composites, while inner-sphere surface complexation was mainly assigned to Eu(III) adsorption onto Co-OMS-2 under the high pH sections. The Co-OMS-2 composite achieved equilibrium in a relatively short time, and this excellent performance was conducive to the treatment of Eu(III) under the extreme emergency conditions. In view of the extraordinary adsorption capacity and recycled reusability, the Co-OMS-2 composites can be as prospective adsorbents adopted for the extraction of Eu(III) in real wastewater management.</span></p></div>","PeriodicalId":312,"journal":{"name":"Environmental Research","volume":"214 ","pages":"Article 113965"},"PeriodicalIF":7.7000,"publicationDate":"2022-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":"{\"title\":\"Comprehensive evaluation of cobalt incorporated cryptomelane-type manganese oxide molecular sieve as an efficient adsorbent for enhanced removal of europium from wastewater systems\",\"authors\":\"Pengfei Zong , Ming Xu , Ning Yan , Min Shao , Xuejuan Xu , Yixuan Yang , Jiahao Chen , Zhengrong Qiu , Shoufang Wang\",\"doi\":\"10.1016/j.envres.2022.113965\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p><span>Extraction of radionuclide<span><span> contaminants from wastewater systems has recently drawn widespread attention, and then developing a novel and green extracting technology<span> has also become an enormous challenge. Herein, a facile hydrothermal method was employed to fabricate cobalt-incorporated cryptomelane-type manganese oxide molecular sieve (Co-OMS-2) for extraction Eu(III) from wastewater under diverse experimental conditions. All kinds of characterized techniques, such as </span></span>SEM<span>, TEM, XRD, FTIR, BET, EDS and XPS had verified the qualified synthesis process and splendid structural features of the Co-OMS-2. The maximum adsorption capacity of Co-OMS-2 was 7.62 × 10</span></span></span><sup>−4</sup><span> mol/g for Eu(III) at 298 K, which was superior than primarily traditional materials reported previous literatures. The high adsorption capacity of Eu(III) onto Co-OMS-2 was primarily attributed to high specific surface area and abundant surface functional groups, and the interactions were mainly contributed to strong surface complexation and electrostatic attraction. Under the condition of low pH, the outer-sphere surface complexation and cation exchange were primary mechanisms to Eu(III) adsorption onto Co-OMS-2 composites, while inner-sphere surface complexation was mainly assigned to Eu(III) adsorption onto Co-OMS-2 under the high pH sections. The Co-OMS-2 composite achieved equilibrium in a relatively short time, and this excellent performance was conducive to the treatment of Eu(III) under the extreme emergency conditions. 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引用次数: 1
摘要
近年来,污水系统中放射性核素污染物的提取受到了广泛的关注,开发一种新型的绿色提取技术也成为一个巨大的挑战。在不同的实验条件下,采用水热法制备钴掺杂隐黑烷型氧化锰分子筛(Co-OMS-2),用于废水中Eu(III)的萃取。通过SEM、TEM、XRD、FTIR、BET、EDS、XPS等各种表征技术验证了Co-OMS-2的合成工艺合格,结构特征优良。在298 K下,co - om -2对Eu(III)的最大吸附量为7.62 × 10−4 mol/g,优于以往文献报道的主要传统材料。Co-OMS-2对Eu(III)的高吸附能力主要是由于其高比表面积和丰富的表面官能团,其相互作用主要是由于强的表面络合和静电吸引。低pH条件下,Co-OMS-2复合材料吸附Eu(III)的主要机理是外球表面络合和阳离子交换;高pH条件下,Co-OMS-2复合材料吸附Eu(III)的主要机理是内球表面络合。Co-OMS-2复合材料在相对较短的时间内达到平衡,这种优异的性能有利于在极端紧急条件下处理Eu(III)。鉴于Co-OMS-2复合材料具有优异的吸附能力和可循环利用性,在实际废水处理中可以作为有前途的吸附剂用于Eu(III)的提取。
Comprehensive evaluation of cobalt incorporated cryptomelane-type manganese oxide molecular sieve as an efficient adsorbent for enhanced removal of europium from wastewater systems
Extraction of radionuclide contaminants from wastewater systems has recently drawn widespread attention, and then developing a novel and green extracting technology has also become an enormous challenge. Herein, a facile hydrothermal method was employed to fabricate cobalt-incorporated cryptomelane-type manganese oxide molecular sieve (Co-OMS-2) for extraction Eu(III) from wastewater under diverse experimental conditions. All kinds of characterized techniques, such as SEM, TEM, XRD, FTIR, BET, EDS and XPS had verified the qualified synthesis process and splendid structural features of the Co-OMS-2. The maximum adsorption capacity of Co-OMS-2 was 7.62 × 10−4 mol/g for Eu(III) at 298 K, which was superior than primarily traditional materials reported previous literatures. The high adsorption capacity of Eu(III) onto Co-OMS-2 was primarily attributed to high specific surface area and abundant surface functional groups, and the interactions were mainly contributed to strong surface complexation and electrostatic attraction. Under the condition of low pH, the outer-sphere surface complexation and cation exchange were primary mechanisms to Eu(III) adsorption onto Co-OMS-2 composites, while inner-sphere surface complexation was mainly assigned to Eu(III) adsorption onto Co-OMS-2 under the high pH sections. The Co-OMS-2 composite achieved equilibrium in a relatively short time, and this excellent performance was conducive to the treatment of Eu(III) under the extreme emergency conditions. In view of the extraordinary adsorption capacity and recycled reusability, the Co-OMS-2 composites can be as prospective adsorbents adopted for the extraction of Eu(III) in real wastewater management.
期刊介绍:
The Environmental Research journal presents a broad range of interdisciplinary research, focused on addressing worldwide environmental concerns and featuring innovative findings. Our publication strives to explore relevant anthropogenic issues across various environmental sectors, showcasing practical applications in real-life settings.