首页> 外文期刊>Journal of Agricultural and Food Chemistry >Thermospectroscopic Study of the Adsorption Mechanism of the Hydroxamic Siderophore Ferrioxamine B by Calcium Montmorillonite
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Thermospectroscopic Study of the Adsorption Mechanism of the Hydroxamic Siderophore Ferrioxamine B by Calcium Montmorillonite

机译:蒙脱土钙吸附异羟肟铁铁胺B的机理的热光谱研究。

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The behavior of iron-chelating agents in soils is highly affected by interactions with the solid phase.Still this aspect is frequently ignored.In this research the adsorption of the siderophore ferrioxamine B by Ca-montmorillonite,as a free ligand (desferrioxamine B,DFOB) and as a complex with Fe~(3+) (ferrioxamine B,FOB),was studied,using thermo X-ray diffraction (thermo-XRD) in the temperature range 25-360 deg C and thermo-FTIR spectroscopy in the temperature range 25-170 deg C.The effect of pH (4-7.5) on the adsorption was examined.Extensive use of curve-fitting analysis was required due to significant overlapping of the characteristic absorption bands of the various functional groups.Thermo-XRD analysis showed that both DFOB and FOB penetrated into the interlayer space of Ca-montmorillonite.FTIR results indicated strong interactions of DFOB within the interlayer,which involved all functional groups (NH_3~+,secondary amide groups,and hydroxamate groups).In contrast,the folded Fe complex of FOB retained its molecular configuration upon adsorption,and the basal spacing of the clay increased correspondingly.FOB interacted in the interlayer space of the clay,mainly through the NH of the secondary amide groups and NH_3~+,while the functional groups bound to the central Fe cation remained unchanged.The suspension pH had no significant effect on both DFOB and FOB adsorption at the examined range.Adsorption protected the adsorbates from thermal degradation compared to the nonadsorbed samples up to 105 deg C.At 170 deg C both DFOB and FOB were already partially degraded,but to a lesser extent than the nonadsorbed samples.Degradation of the molecules occurred mainly through the hydroxamic groups,which constitute the Fe-chelating center in the hydroxamic siderophore.
机译:铁螯合剂在土壤中的行为受固相相互作用的影响很大,但这一方面经常被忽略。在这项研究中,钙-蒙脱石作为游离配体(去铁草胺B,DFOB)吸附铁载体铁草胺B )并与Fe〜(3+)(铁氧胺B,FOB)形成络合物,在25-360摄氏度的温度范围内使用热X射线衍射(thermo-XRD)并在该温度下使用热FTIR光谱进行了研究温度范围为25-170摄氏度。检查了pH(4-7.5)对吸附的影响。由于各个官能团的特征吸收带明显重叠,因此需要大量使用曲线拟合分析。结果表明DFOB和FOB均渗入钙蒙脱土的层间空间.FTIR结果表明DFOB在层间具有强相互作用,涉及所有官能团(NH_3〜+,仲酰胺基和异羟肟酸酯基)。折叠铁板FOB的复合物在吸附时保持其分子构型,并且粘土的基础间距相应增加。FOB在粘土的层间空间中相互作用,主要通过仲酰胺基团的NH和NH_3〜+相互作用,而官能团与在检测范围内,悬浮液的pH值对DFOB和FOB的吸附均无显着影响。与未吸附的样品相比,在高达105℃的温度下,吸附都能保护被吸附物免受热降解。在170℃时,DFOB和FOB FOB已经部分降解,但是比未吸附样品降解的程度要小。分子的降解主要是通过异羟肟基发生的,异羟肟基构成了异羟肟铁载体中的Fe螯合中心。

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