可溶性有机质对三峡库区土壤胶体颗粒凝聚的影响

    Effect of Dissolved Organic Matter on Aggregation of Soil Colloidal Particles in the Three Gorges Reservoir Area

    • 摘要: 可溶性有机质(DOM)与土壤胶体颗粒相互作用将控制着紫色土胶体颗粒的凝聚过程, 对三峡库区水土保持具有重要影响。以三峡库区3种紫色土胶体为研究对象, 采用zeta电位仪和光散射技术研究不同浓度DOM对土壤胶体表面zeta电位和胶体颗粒凝聚过程的影响。结果表明: (1)随着DOM浓度的升高, 3种紫色土都表现出从慢速凝聚(线性增长)转化为快速凝聚(幂函数增长); 3种紫色土总体平均凝聚速率(TAA)存在明显差异, 中性、石灰性和酸性紫色土临界聚沉浓度(CCC)分别为4.74、2.72和1.77 mg·L-1, 中性紫色土CCC分别是石灰性、酸性紫色土的1.74、2.68倍。(2)随着DOM浓度的升高, 中性、石灰性和酸性紫色土胶体zeta电位分别从-20.08、-18.89和-16.44 mV降至-10.60、-6.86和-5.62 mV, 3种紫色土胶体zeta电位(绝对值)减小, 颗粒间静电排斥势能降低, 同时, 3种紫色土胶体zeta电位随DOM浓度变化存在一个临界值, 分别为5.0、2.5和1.7 mg·L-1, 此与CCC值大小排序一致; 在相同DOM浓度下, 中性紫色土胶体zeta电位(绝对值)最大, 其次是石灰性紫色土, 酸性紫色土最小。(3)随着DOM浓度的升高, 3种紫色土胶体颗粒间相互作用活化能均不断降低, 特别是在较低浓度范围内, 活化能下降更加显著, 在相同DOM浓度条件下表现为中性紫色土>石灰性紫色土>酸性紫色土。DOM浓度的变化引起紫色土胶体颗粒zeta电位、活化能和CCC值发生改变, 进而影响紫色土胶体颗粒的凝聚过程

       

      Abstract: The interaction between dissolved organic matter (DOM) and soil colloidal particles will control the aggregation process of purple soil colloid, which further play an important role in soil and water conservation in the Three Gorges Reservoir Area. The effects of DOM concentrations on the zeta potentials and aggregation processes of colloidal particles, extracted from three types of purple soils in the Three Gorges Reservoir Area, were respectively determined by the zeta potential meter and light scattering techniques. The results show that (1) The aggregation of three purple soil colloids exhibited a conversion from slow aggregation (linear growth) to fast aggregation (power function growth) with increasing DOM concentrations. The total average aggregation rates (TAA) of the three purple soil colloids were significantly different, and the critical aggregation concentration (CCC) of neutral, alkaline and acidic purple soil colloids were 4.74, 2.72 and 1.77 mg·L-1, respectively, and the CCC of neutral purple soil colloids was 1.74 and 2.68 times those of alkaline and acidic purple soil colloids, respectively. (2) With the increase of DOM concentrations, zeta potentials of neutral, alkaline and acidic purple soil colloids decreased from -20.08, -18.89 and -16.44 mV to -10.60, -6.86 and -5.62 mV, respectively. As a result, the electrostatic repulsive potential energies between colloidal particles decreased with decreasing zeta potentials (absolute value). Meanwhile, critical DOM concentration values existed for the variation of zeta potential of the three purple soil colloids, which were 5.0, 2.5 and 1.7 mg·L-1, respectively, basically consistent with the CCC values. At the same DOM concentration, zeta potential (absolute value) of the neutral purple soil colloids was the largest, followed by that of the alkaline purple soil, and the acidic purple soil. (3) Activation energies for the three purple soils colloids aggregation decreased continuously with increasing DOM concentrations, in particular, the decreasing trend of activation energies was more obvious in the lower concentration range. Given the same DOM concentration, activation energies for aggregation showed the order of neutral purple soil > alkaline purple soil > acidic purple soil. With changed DOM concentrations, zeta potentials, activation energies as well as CCC values for purple soil colloids aggregation varied to some extent, thereby affecting the aggregation processes of purple soil colloids.

       

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