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Sorption Selectivity in Natural Organic Matter Studied with Nitroxyl Paramagnetic Relaxation Probes

机译:硝基顺磁性弛豫探针研究天然有机物的吸附选择性

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摘要

Sorption site selectivity and mechanism in natural organic matter (NOM) were addressed spectroscopically by the sorption of paramagnetic nitroxyl compounds (spin probes) of different polarity, TEMPO (2,2,6,6-tetramethylpiper-idine-1-oxyl) and HTEMPO (4-hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl). The sorbents were Pahokee peat, Beulah-Zap lignite, and a polystyrene-poly(vinyl methyl ether) (PS-PVME) polymer blend representing the mixed aliphatic-aromatic, polar-nonpolar character of NOM. Nuclear-electron spin interaction serves as an efficient relaxation pathway, resulting in attenuation of the ~(13)C-CP/ TOSS NMR signal for ~(13)C nuclei in proximity to the N-O. group (r~(-6) dependence). In the natural solids the spin probes sorbed more specifically (greater isotherm nonlinearity) and had lower rotational mobility (broader electron paramagnetic resonance signals) than in PS-PVME. Titration with spin probe indicated almost no selectivity for the different carbon functional groups of PS-PVME, and little to no selectivity for the different carbon moieties of Pahokee and Beulah, including aromatic, alkyl, O-alkyl, di-O-alkyl, and O-methyl. In any case, sorption site selectivity of spin probes to NOM was always weaker than partition selectivity found in model solvent-water (toluene, hexadecane, anisole, octanol) and cellulose-water systems. The results indicate little or no preferential sorption in NOM based on functional group chemistry or putative microdomain character, but rather are consistent with the filling of pores whose walls have an average chemical environment reflecting the bulk chemical composition of the solid. This work demonstrates for the first time the use of paramagnetic probes to study sorption specificity.
机译:通过吸附不同极性的顺磁性硝基氧基化合物(自旋探针),TEMPO(2,2,6,6-四甲基哌啶-1-氧基)和HTEMPO,以光谱法解决了天然有机物(NOM)中的吸附位点选择性和机理。 (4-羟基-2,2,6,6-四甲基哌啶-1-氧基)。吸附剂为Pahokee泥炭,Beulah-Zap褐煤和代表NOM混合脂肪族-芳香族,极性-非极性特征的聚苯乙烯-聚(乙烯基甲基醚)(PS-PVME)聚合物共混物。核-电子自旋相互作用充当有效的弛豫途径,导致邻近N-O的〜(13)C核的〜(13)C-CP / TOSS NMR信号衰减。组(r〜(-6)依赖性)。与PS-PVME中相比,在天然固体中,自旋探针更特异性地吸附(更大的等温线非线性)并且具有更低的旋转迁移率(更宽的电子顺磁共振信号)。用自旋探针滴定表明对PS-PVME的不同碳官能团几乎没有选择性,对Pahokee和Beulah的不同碳部分(包括芳族,烷基,O-烷基,二-O-烷基和邻甲基。无论如何,自旋探针对NOM的吸附位点选择性始终弱于在模型溶剂-水(甲苯,十六烷,苯甲醚,辛醇)和纤维素-水系统中发现的分配选择性。结果表明,基于官能团化学或推定的微畴特征,NOM几乎没有或没有优先吸附,但与孔的填充相一致,孔的壁具有反映固体的大部分化学组成的平均化学环境。这项工作首次证明了使用顺磁性探针来研究吸附特异性。

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  • 来源
    《Environmental Science & Technology》 |2012年第23期|12814-12822|共9页
  • 作者单位

    Department of Environmental Sciences, The Connecticut Agricultural Experiment Station, P.O. Box 1106, New Haven, Connecticut 06504, United States;

    Department of Chemistry and Biochemistry, Old Dominion University, 4541 Hampton Boulevard, Norfolk, Virginia 23529, United States;

    Department of Chemistry and Biochemistry, Old Dominion University, 4541 Hampton Boulevard, Norfolk, Virginia 23529, United States;

    Department of Chemistry and Biochemistry, Old Dominion University, 4541 Hampton Boulevard, Norfolk, Virginia 23529, United States;

    Department of Chemistry, Iowa State University, Hach Hall, Ames, Iowa, 50010, United States;

    Environmental Laboratory, U.S. Army Corps of Engineers, 3909 Halls Ferry Road, Vicksburg, Mississippi 39180, United States;

    Environmental Laboratory, U.S. Army Corps of Engineers, 3909 Halls Ferry Road, Vicksburg, Mississippi 39180, United States;

    LSU Superfund Research Center, Louisiana State University, Baton Rouge, Louisiana 70802, United States;

    Department of Environmental Sciences, The Connecticut Agricultural Experiment Station, P.O. Box 1106, New Haven, Connecticut 06504, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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