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首页> 外文期刊>Chemistry, an Asian journal >Effective, Low-Cost Recovery of Toxic Arsenate Anions from Water by Using Hollow-Sphere Geode Traps
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Effective, Low-Cost Recovery of Toxic Arsenate Anions from Water by Using Hollow-Sphere Geode Traps

机译:通过使用空心球凸滴水阱从水中有效,低成本回收毒性杂散阴离子

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Because of the devastating impact of arsenic on terrestrial and aquatic organisms, the recovery, removal, disposal, and management of arsenic-contaminated water is a considerable challenge and has become an urgent necessity in the field of water treatment. This study reports the controlled fabrication of a low-cost adsorbent based on microscopic C-, N-doped NiO hollow spheres with geode shells composed of poly-CN nanospherical nodules (100 nm) that were intrinsically stacked and wrapped around the hollow spheres to form a shell with a thickness of 500-700 nm. This C-, N-doped NiO hollow-sphere adsorbent (termed CNN) with multiple diffusion routes through open pores and caves with connected open macro/ meso windows over the entire surface and well-dispersed hollow-sphere particles that create vesicle traps for the capture, extraction, and separation of arsenate (AsO43-) species from aqueous solution. The CNN structures are considered to be a potentially attractive adsorbent for AsO43- species due to 1) superior removal and trapping capacity from water samples and 2) selective trapping of AsO43- from real water samples that mainly contained chloride and nitrate anions and Fe2+, and Mn2+, Ca-2+,Ca- and Mg2+ cations. The structural stability of the hierarchal geodes was evident after 20 cycles without any significant decrease in the recovery efficiency of AsO43- species. To achieve low-cost adsorbents and toxic-waste management, this superior CNN AsO43- dead-end trapping and recovery system evidently enabled the continuous control of AsO43- disposal in water-scarce environments, presents a low-cost and eco-friendly adsorbent for AsO43- species, and selectively produced water-free arsenate species. These CNN geode traps show potential as excellent adsorbent candidates in environment remediation tools and human healthcare.
机译:由于砷对陆地和水生生物的破坏性影响,砷污染水的恢复,拆除,处置和管理是一个相当大的挑战,并已成为水处理领域的迫切需要。本研究报告了基于微观C-,N掺杂的NIO空心球的低成本吸附剂的受控制造,该凸壳由具有聚-CN纳米球结节(100nm)组成的凸胚,所述颈部球体结节(100nm)内部堆叠并缠绕在空心球周围形成厚度为500-700nm的壳。该C-,n掺杂的NIO空心球体吸附剂(称为CNN),具有多个扩散途径通过开口孔隙和洞穴,在整个表面和井分散的空心球粒子上,具有良好的分散的空心球颗粒,产生囊泡陷阱从水溶液中捕获,提取和分离砷酸酯(ASO43-)物种。 CNN结构被认为是由于1)优异的去除和捕获容量,从水样和捕获容量,从水样和硝酸和硝酸根阴离子和Fe2 +的实际水样的选择诱捕,选择性诱捕ASO43-的潜在吸引力的吸附剂。 Mn2 +,Ca-2 +,Ca和Mg2 +阳离子。在20个循环后,沉默地区的结构稳定性明显,没有任何显着降低ASO43-物种的回收效率。为了实现低成本的吸附剂和毒性废物管理,这种优越的CNN ASO43-死端捕获和回收系统明显使得对水资源稀缺环境中的ASO43消失的连续控制,呈现出低成本和生态友好的吸附剂aso43-物种,并选择性地生产无水砷酸盐物种。这些CNN Geode Traps在环境修复工具和人类医疗保健中显示出优异的吸附剂候选者。

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