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首页> 外文期刊>European Journal of Soil Science >The effect of cation-anion interactions on soil pH and solubility of organic carbon
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The effect of cation-anion interactions on soil pH and solubility of organic carbon

机译:阳离子-阴离子相互作用对土壤pH和有机碳溶解度的影响

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Alkaline soil is widely distributed and cultivated throughout the agricultural regions of the world. Organic carbon (OC) concentrations in alkaline soil are often small, partly because of the limitations of a high pH on the productivity of crops and pastures together with the effects of high pH on the chemistry of soil OC. Soil pH is often hypothesized to be a major factor in regulating OC turnover in agricultural soil, but there are few detailed studies on the effects of high pH on carbon cycling in alkaline soil. Sodium, K+, Mg2+ and Ca2+ are the major cations in alkaline soil, whereas Cl-, SO42-, HCO3- and CO32- are the major anions. The effect of different combinations of these cations and anions on soil pH and OC is not well described in the literature. The objectives of this study were to evaluate the effect of cations and anions on soil pH and to quantify the dissolution of OC in relation to these changes in pH. The results showed that HCO3- (Na+, K+ and Mg2+) salts and CaCO3 dominate in the pH range 7.0-8.5, and CO32- salts of Na+ and K+ dominate above pH 8.5. The amount of dissolved OC (DOC) increased significantly as pH increased. Therefore, the presence of large concentrations of HCO3- and CO32- not only increased pH but also promoted the dissolution of soil OC. The concentration of Ca2+ modified this effect; large concentrations of Ca2+ increased the adsorption and reduced the concentration of DOC.
机译:碱性土壤在世界各地的农业地区广泛分布和种植。碱性土壤中的有机碳(OC)浓度通常很小,部分原因是高pH值对农作物和草场生产力的局限性以及高pH值对土壤OC化学性质的影响。人们通常认为土壤pH是调节农业土壤中OC转化的主要因素,但很少有关于高pH对碱性土壤中碳循环的影响的详细研究。钠,K +,Mg2 +和Ca2 +是碱性土壤中的主要阳离子,而Cl-,SO42-,HCO3-和CO32-是主要阴离子。这些阳离子和阴离子的不同组合对土壤pH和OC的影响在文献中没有很好地描述。这项研究的目的是评估阳离子和阴离子对土壤pH的影响,并量化与这些pH变化有关的OC溶解。结果表明,在pH范围7.0-8.5中,HCO3-(Na +,K +和Mg2 +)盐和CaCO3占主导,而在pH 8.5以上时,Na +和K +的CO32-盐占主导。随着pH值的增加,溶解的OC(DOC)的量显着增加。因此,高浓度的HCO3-和CO32-的存在不仅增加了pH值,而且还促进了土壤OC的溶解。 Ca 2+的浓度改变了这种作用。高浓度的Ca2 +会增加吸附并降低DOC的浓度。

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