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Changes in chemical forms of lead in temperate and semiarid soils in sterile and unsterile conditions

机译:无菌和非无菌条件下温带和半干旱土壤中铅化学形态的变化

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Sequential extraction has been used as a suitable method for fractionation of chemical forms of trace elements and study of their plant availability. Surface soils were sampled from Guilan and Hamadan provinces in north and northwest of Iran with temperate and semiarid climates. The chemical forms of Pb in the Pb(NO3)2-trea-ted (400 μg Pb g~(-1)) soils have been studied in solid state incubation (FC) at 27°C in sterile and unsterile conditions. After 20 min and 3600 h a sequential extraction scheme was also used to fractionate Pb of incubated samples into soluble-exchangeable (Sol-Exch), carbonates associated (ACar), organic matter associated (AOM), Mn oxide associated (AMnOx), Fe oxide associated (AFeOx), and residual (Res) forms. Temperate soil samples had higher clay content, cation exchange capacity (CEC), dichromate oxidable organic carbon (OC), total Kjeldahl-nitrogen (TN), biological activity, amorphous and crystalline Fe and Al, but semiarid soil samples had higher sand content, pH, equivalent calcium carbonate (ECC), available P and K. Soil lead fractionation revealed that in both groups of soils Pb largely changed to exchangeable, carbonates associated and organic associated forms after 20 min. The chemical forms of Pb differed widely among soils after 3600-h incubation. The conversion rate of Pb from more available forms to less available forms was higher in temperate soils with higher Fe-Mn oxides and OM contents compared to semiarid soils. In temperate soils after 3600-h incubation, greater content of Pb was observed in Res (68%), AOM (14%), ACar (7%), and AMnOx (5%) fractions. However,in semiarid soils greater content of Pb was observed in Res (61%), ACar (16%), Sol-Exch (8%), and AOM (8%) fractions. The sum of AMnOx and AFeOx chemical forms for Pb in semiarid soils compared to temperate soils was lower. It was only 7% against 9% in temperate soils. Soil microorganisms in unsterile soils had significant effect on AOM, AFeOx and Res fractions of Pb. They not only increased AOM and AFeOx fractions of Pb in soils but also decreased Res fraction of Pb significantly.
机译:顺序提取已被用作分离微量元素化学形式和研究其植物利用率的合适方法。地表土壤是从伊朗北部和西北部的吉兰和哈马丹省取样的,气候温和和半干旱。在无菌和非无菌条件下,于27°C的固态孵育(FC)中研究了处理过Pb(NO3)2的(400μgPb g〜(-1))土壤中Pb的化学形式。在20分钟和3600公顷后,还使用顺序萃取方案将孵育的样品中的Pb分为可溶交换(Sol-Exch),碳酸盐缔合(ACar),有机物缔合(AOM),Mn氧化物缔合(AMnOx),Fe氧化物相关(AFeOx)和残留(Res)形式。温带土壤样品具有较高的粘土含量,阳离子交换容量(CEC),重铬酸盐可氧化有机碳(OC),凯氏定氮总量(TN),生物活性,非晶态和结晶态的铁和铝,而半干旱土壤样品具有较高的砂含量, pH,当量碳酸钙(ECC),有效磷和钾。土壤铅的分馏表明,两组土壤中的铅在20分钟后都主要变为可交换的碳酸盐缔合形式和有机缔合形式。孵育3600小时后,土壤中Pb的化学形式差异很大。与半干旱土壤相比,在具有较高Fe-Mn氧化物和OM含量的温带土壤中,Pb从更多可用形式向更少可用形式的转化率更高。在温育3600小时后的温带土壤中,在Res(68%),AOM(14%),ACar(7%)和AMnOx(5%)馏分中观察到更高的Pb含量。但是,在半干旱土壤中,Res(61%),ACar(16%),Sol-Exch(8%)和AOM(8%)组分中的Pb含量更高。与温带土壤相比,半干旱土壤中Pb的AMnOx和AFeOx化学形式的总和较低。在温带土壤中,这一比例仅为7%,而只有9%。无菌土壤中的土壤微生物对铅的AOM,AFeOx和Res组分具有显着影响。它们不仅增加了土壤中铅的AOM和AFeOx含量,而且显着降低了铅的Res含量。

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