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首页> 外文期刊>ACS Omega >Gradient Adsorption of Methylene Blue and Crystal Violet onto Compound Microporous Silica from Aqueous Medium
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Gradient Adsorption of Methylene Blue and Crystal Violet onto Compound Microporous Silica from Aqueous Medium

机译:亚甲基蓝色和晶体紫的梯度吸附来自含水介质的化合物微孔二氧化硅

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Microporous silica (MS) materials are a kind of an emerging and promising adsorbent precursor. MS prepared from vermiculite has the advantages of easy preparation, low cost, and low layer charge. In this study, organo-MS (OMS) modified by a typical gemini surfactant 1,2-bis(hexadecyldimethylammonio)ethane dibromide (G_(16)) is first synthesized and proved to have effective retention capacity toward cationic dyes. Fourier transform infrared spectroscopy, TG-DTG, X-ray diffraction, scanning electron microscopy, transmission electron microscopy, and Brunauer–Emmett–Teller are used to explore the structural characters of adsorbents. Gradient adsorption of compound MS (MS and OMS) in a binary dye system [methylene blue (MB) and crystal violet (CV)] was investigated. In a single system, the relationship between the adsorption capacity and influencing factors (dye concentration, contact time, temperature, and pH), adsorption kinetics, isotherms, as well as thermodynamics was comprehensively compared to reveal the adsorption mechanism. The adsorption values of MB and CV on MS and OMS are 308 mg g~(–1) (R = 77.0%, 15 min) and 250 mg g~(–1) (R = 83.3%), respectively, which may be caused by various intermolecular interactions (electrostatic or hydrophobic interactions) between the dye and adsorbent surface. In a binary system, the improved first spectroscopy method is used to calculate the individual concentration of the dye in the binary system. The total removal efficiency of gradient adsorption reaches as high as 89.5% (MB) and 86.4% (CV). In addition, compound MS can be effectively regenerated by HCl solution for several cycles.
机译:微孔二氧化硅(MS)材料是一种新兴和有前途的吸附剂前体。由蛭石制备的MS具有易于制备,低成本和低层电荷的优点。在该研究中,首先合成通过典型的Gemini表面活性剂1,2-Bis(十六烷基二甲基氨基嘧啶)乙烷二溴化物(G_(16))修饰的有机MS(OMS),并证明对阳离子染料具有有效的保留能力。傅里叶变换红外光谱,TG-DTG,X射线衍射,扫描电子显微镜,透射电子显微镜和Brunauer-Emmett-Teller用于探索吸附剂的结构特征。研究了二进制染料系统中化合物MS(MS和OMS)的梯度吸附[亚甲基蓝(MB)和晶体紫(CV)]。在单一系统中,与揭示吸附机制相比,全面地综立了吸附容量和影响因子(染料浓度,接触时间,温度和pH),吸附动力学,等温和热力学之间的关系。 MB和OMS上的Mb和Cv的吸附值为308mg g〜(-1)( r = 77.0%,15分钟)和250mg g〜(-1)( r = 83.3%)分别由染料和吸附表面之间的各个分子间相互作用(静电或疏水相互作用)分别引起。在二元系统中,改进的第一光谱方法用于计算二元系统中染料的个体浓度。梯度吸附的总去除效率达到89.5%(MB)和86.4%(CV)。此外,HCl溶液可以通过HCl溶液进行几个循环有效地再生化合物MS。

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