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首页> 外文期刊>Journal of Hazardous Materials >Sorption of hydrophobic organic contaminants on functionalized biochar: Protagonist role of π-π electron-donor-acceptor interactions and hydrogen bonds
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Sorption of hydrophobic organic contaminants on functionalized biochar: Protagonist role of π-π electron-donor-acceptor interactions and hydrogen bonds

机译:疏水性有机污染物在功能化生物炭上的吸附:π-π电子-供体-受体相互作用和氢键的主角作用

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摘要

The sorption of five potent endocrine disruptors as representative hydrophobic organic contaminants (HOCs) namely estrone (E1), 17 beta-estradiol (E2), estriol (E3), 17 alpha-ethynylestradiol (EE2) and bisphenol A (SPA) on functionalized biochar (fBC) was systematically examined, with a particular focus on the importance of n electron-donor (phenanthrene: PHEN) and pi-electron-acceptors (1,3-dinitrobenzene: DNB, p-amino benzoic acid: PABA) on sorption. Experimental results suggested that hydrogen-bond formation and pi-pi-electron-donor acceptor (EDA) interactions were the dominant sorption mechanisms. The sorption of HOCs decreased as E1 E2 EE2 E3 BPA based on the Freundlich and Polanyi-Mane-models. The comparison of adsorption coefficient (K-d) normalized against hexadecane-water partition coefficient (K-HW) between HOCs and PHEN indicated strong pi-pi-EDA interactions. pi-pi interactions among DNB, PHEN and HOCs were verified by the observed upfield frequency (Hz) shifts using proton nuclear magnetic resonance (H-1 NMR) which identified the specific direction of pi-pi interactions. UV-vis spectra showed charge-transfer bands for pi-donors (PHEN and HOCs) with the model pi-acceptor (DNB) also demonstrating the role of pi-pi EDA interactions. The role of n electron-donor and pi-electron-acceptor domains in fBC was identified at different solution pH.
机译:五个强效内分泌干扰物作为代表性的疏水性有机污染物(HOC)的吸附在功能化生物炭上为雌酮(E1),17β-雌二醇(E2),雌三醇(E3),17α-乙炔基雌二醇(EE2)和双酚A(SPA) (fBC)进行了系统检查,特别关注n电子给体(菲:PHEN)和pi电子受体(1,3-二硝基苯:DNB,对氨基苯甲酸:PABA)对吸附的重要性。实验结果表明,氢键形成和pi-pi-电子供体受体(EDA)相互作用是主要的吸附机理。根据Freundlich和Polanyi-Mane模型,随着E1> E2> EE2> E3> BPA,HOC的吸附降低。相对于HOC和PHEN的十六烷-水分配系数(K-HW)归一化的吸附系数(K-d)的比较表明,强烈的pi-pi-EDA相互作用。 DNB,PHEN和HOC之间的pi-pi相互作用通过使用质子核磁共振(H-1 NMR)观察到的高场频率(Hz)位移进行了验证,该位移确定了pi-pi相互作用的特定方向。 UV-vis光谱显示pi-供体(PHEN和HOC)的电荷转移带,模型pi-受体(DNB)也证明了pi-pi EDA相互作用的作用。在不同溶液pH下,确定了fBC中n个电子供体和pi电子受体域的作用。

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