Klinkert Susan, Comans Rob N J
Soil Chemistry and Chemical Soil Quality , Wageningen University , P.O. Box 47, Wageningen 6700 AA , The Netherlands.
Environ Sci Technol. 2020 Feb 18;54(4):2467-2475. doi: 10.1021/acs.est.9b04104. Epub 2020 Feb 5.
Knowledge on organic matter (OM) concentration and composition is of major importance for predicting Zn speciation and bioavailability in soils, especially for low-Zn soils. However, comprehensive knowledge on the effect of soil-like organic amendments such as compost on metal speciation is limited. For the first time, multisurface modeling is applied on compost to study the effect of solid and dissolved OM composition on the speciation of reactive Zn as influenced by conditions applied in frequently used extractions to estimate Zn bioavailability. First, compost OM composition was determined by fractionation in operationally defined humic, fulvic, and hydrophilic acid pools under various extraction conditions, and subsequently, Zn speciation was modeled using the generic non-ideal competitive adsorption-Donnan (NICA-Donnan) model in addition to adsorption to hydrous ferric oxide (HFO) and clay. The results show a strong effect of extraction conditions on OM concentration and composition and related dissolved Zn speciation. Model predictions show that Zn in solution is mainly bound to dissolved humic acids. Analysis of deviations between measured and modeled Zn concentrations reveal specific limitations of the current generic model parameters, particularly with regard to Zn binding to OM at low concentrations and Ca-Zn competition, that is, typical conditions that occur in low-Zn soils.
了解土壤中有机质(OM)的浓度和组成对于预测锌的形态及生物有效性至关重要,特别是对于低锌土壤而言。然而,关于堆肥等类似土壤的有机改良剂对金属形态影响的全面知识却很有限。首次将多表面模型应用于堆肥,以研究固体和溶解态OM组成对活性锌形态的影响,该影响受常用于估算锌生物有效性的提取条件的制约。首先,通过在不同提取条件下将堆肥OM分级为操作定义的腐殖酸、富里酸和亲水酸池来确定其组成,随后,除了使用水合氧化铁(HFO)和粘土吸附外,还使用通用非理想竞争吸附-唐南(NICA-Donnan)模型对锌形态进行建模。结果表明,提取条件对OM浓度、组成及相关溶解态锌形态有强烈影响。模型预测表明,溶液中的锌主要与溶解态腐殖酸结合。对实测和模拟锌浓度之间偏差的分析揭示了当前通用模型参数的特定局限性,特别是在低浓度下锌与OM的结合以及钙-锌竞争方面,即低锌土壤中出现的典型情况。