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邻苯二甲酸和水杨酸的吸附及其对可变电荷土壤交换性铝容量的影响。

Adsorption of phthalic acid and salicylic acid and their effect on exchangeable Al capacity of variable-charge soils.

作者信息

Li Jiuyu, Xu Renkou

机构信息

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, P.O. Box 821, Nanjing, China.

出版信息

J Colloid Interface Sci. 2007 Feb 1;306(1):3-10. doi: 10.1016/j.jcis.2006.10.003. Epub 2006 Nov 13.

Abstract

Low-molecular-weight (LMW) organic acids may be adsorbed by soils and the adsorption could affect their biodegradation and efficiency in many soil processes. In the present study, the adsorption of phthalic acid and salicylic acid and their effect on the exchangeable Al capacity of variable-charge soils were investigated. The results indicated that phthalic acid and salicylic acid were adsorbed by four variable-charge soils to some extent, oxisols showed a greater adsorption capacity for organic acids than ultisols, and the ability of the four variable-charge soils to adsorb the organic acids at different pH generally followed the order Kunming oxisol > Xuwen oxisol > Jinxian ultisol > Lechang ultisol, which was closely related to their content of free iron oxides and amorphous iron and aluminum oxides. The adsorption of organic acids induced a decrease in the zeta potentials of soils and oxides. Goethite has greater adsorption capacity for organic acid than Xuwen oxisol and the adsorption of organic acids resulted in a bigger decrease in the zeta potential of goethite suspensions. After free iron oxides were removed, less organic acid was adsorbed by Xuwen oxisol and no change was observed in zeta potential for the soil suspension after organic acid was added. The presence of phthalic acid increased the capacity of exchangeable Al and the increment in the four variable-charge soils also followed the order Kunming oxisol > Xuwen oxisol > Lechang ultisol and Jinxian ultisol. The presence of salicylic acid increased the capacity of exchangeable Al in Kunming oxisol, Xuwen oxisol, and Jinxian ultisol, but decreased it in Lechang ultisol due to less adsorption of the acid and formation of soluble Al-salicylate complexes in solution. After free iron oxides were removed, less effect of organic acid on exchangeable Al was observed for Xuwen oxisol, which further confirmed that the iron oxides played a significant role in organic acid adsorption and had a consequent effect on the capacity of exchangeable Al in variable-charge soils. Therefore, the higher the content of iron oxides, the greater the adsorption of organic acids by soils and the greater the increase in soil exchangeable Al induced by the organic acids.

摘要

低分子量(LMW)有机酸可能会被土壤吸附,这种吸附会影响它们的生物降解以及在许多土壤过程中的效能。在本研究中,研究了邻苯二甲酸和水杨酸的吸附及其对可变电荷土壤交换性铝容量的影响。结果表明,邻苯二甲酸和水杨酸在一定程度上被四种可变电荷土壤吸附,氧化土对有机酸的吸附能力大于老成土,四种可变电荷土壤在不同pH值下吸附有机酸的能力一般遵循以下顺序:昆明氧化土>徐闻氧化土>进贤老成土>乐昌老成土,这与它们的游离铁氧化物以及无定形铁和铝氧化物的含量密切相关。有机酸的吸附导致土壤和氧化物的ζ电位降低。针铁矿对有机酸的吸附能力大于徐闻氧化土,有机酸的吸附导致针铁矿悬浮液的ζ电位下降幅度更大。去除游离铁氧化物后,徐闻氧化土吸附的有机酸减少,添加有机酸后土壤悬浮液的ζ电位未观察到变化。邻苯二甲酸的存在增加了交换性铝的容量,四种可变电荷土壤中的增量也遵循昆明氧化土>徐闻氧化土>乐昌老成土>进贤老成土的顺序。水杨酸的存在增加了昆明氧化土、徐闻氧化土和进贤老成土中交换性铝的容量,但在乐昌老成土中却降低了,这是由于该酸的吸附较少以及溶液中形成了可溶性铝 - 水杨酸盐络合物。去除游离铁氧化物后,徐闻氧化土中有机酸对交换性铝的影响较小,这进一步证实了铁氧化物在有机酸吸附中起重要作用,并对可变电荷土壤中交换性铝的容量产生相应影响。因此,铁氧化物含量越高,土壤对有机酸的吸附量越大,有机酸引起的土壤交换性铝增加量也越大。

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