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首页> 外文期刊>F.O. Licht's International Sugar & Sweetener Report >Adsorption characteristics of tetracycline by two soils: assessing role of soil organic matter
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Adsorption characteristics of tetracycline by two soils: assessing role of soil organic matter

机译:两种土壤对四环素的吸附特性:评估土壤有机质的作用

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The adsorption characteristics of tetracycline by 2 soils including a clay-rich soil (cinnamon soil) and an iron oxide-rich soil (red soil) were investigated as a function of soil organic matter (SOM). SOM is the main adsorbent for tetracycline in the soil environment. The results indicated that the adsorption kinetics of tetracycline by the different soils with or without organic matter was described by the Elovich equation and the exponent equation. The adsorption of tetracycline on red soil was quite rapid and equilibrium could be reached after 5h. In contrast, the concentration of tetracycline in cinnamon soil reached equilibrium after 11h. The difference in equilibrium time in cinnamon soil and red soil was caused by their dominant components for adsorption, including clays, organic matter, and Al/Fe hydrous oxides. It took longer for the penetration of tetracycline into the interlayers between clays and organic matter in cinnamon soil, but tetracycline needed less time for adsorption through surface complexation on oxide surfaces of red soil. Removing SOM from soil markedly shortened the equilibrium time (7h) of adsorption and reduced the equilibrium concentration (Cs) in cinnamon soil, but not in red soil, because of different dominant components for adsorption in the 2 natural soils. In natural and SOM-free soils, >98% of tetracycline in solution could be sorbed. The adsorption of tetracycline on natural and SOM-free soils was well described by Freundlich adsorption isotherms. Batch adsorption experiments showed that the adsorption of tetracycline on natural red soil was stronger than that on natural cinnamon soil. Adsorption capacity (KF) decreased with an increase in SOM removed from soil, which is attributed to the effect of tetracycline sorbed by SOM in different soils. However, SOM affected the adsorption intensity (n) of different soils diversely; there was a decrease for red soil and an increase for cinnamon soil. In particular, red soil with high Al/Fe hydrous oxides had higher adsorption affinities than cinnamon soil.
机译:研究了四环素在两种土壤中的吸附特性,包括粘土质丰富的土壤(肉桂土)和氧化铁质丰富的土壤(红土)与土壤有机质(SOM)的关系。 SOM是土壤环境中四环素的主要吸附剂。结果表明,用Elovich方程和指数方程描述了四环素在有或无有机物的不同土壤上的吸附动力学。四环素在红壤上的吸附非常迅速,5h后即可达到平衡。相反,肉桂土壤中四环素的浓度在11h后达到平衡。肉桂土和红土平衡时间的差异是由于它们的主要吸附成分(包括粘土,有机物和Al / Fe含水氧化物)引起的。四环素渗透到肉桂土壤中粘土和有机物之间的中间层所需的时间更长,但是四环素通过红土氧化物表面的表面络合吸附所需的时间更少。从土壤中去除SOM明显缩短了肉桂的吸附平衡时间(7h),降​​低了肉桂土壤中的平衡浓度(Cs),但在红壤中却没有,因为两种天然土壤中吸附的主要成分不同。在天然和不含SOM的土壤中,溶液中> 98%的四环素可能被吸附。 Freundlich吸附等温线很好地描述了四环素在天然和不含SOM的土壤上的吸附。分批吸附实验表明,四环素在天然红壤上的吸附作用强于天然肉桂土。吸附能力(KF)随从土壤中去除的SOM的增加而降低,这归因于SOM在不同土壤中吸附的四环素的作用。但是,SOM对不同土壤的吸附强度(n)有不同的影响。红色土壤减少,肉桂土壤增加。特别是铝/铁水合氧化物含量较高的红壤比肉桂土具有更高的吸附亲和力。

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