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Effect of liming and seasonal variation on lead concentration of tea plant (Camellia sinensis (L.) O. Kuntze)

机译:时限和季节变化对茶树(Camellia sinensis(L.)O. Kuntze)铅含量的影响

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摘要

Tea is a widely consumed beverage. However, recent studies revealed that there were an increasing number of cases of tea products exceeding the former maximum permissible concentration (MPC) in China for Pb (2 mg kg~(-1)). Tea Pb contamination is an issue affecting trade and consumer confidence. Root uptake of Pb could contribute significantly to Pb accumulation in tea leaves due to the strong acidity of many tea garden soils. We conducted pot and field experiments to evaluate the effect of liming on Pb uptake by tea plants on two highly acidic soils (pH 3.6). Additions of CaCO_3 significantly increased soil pH by up to 1 unit and decreased soil extractable Pb by up to 32%. Liming resulted in a decrease in the proportion of Pb in the exchangeable and carbonate-bound fractions, with a concurrent increase in the fractions bound to Fe/Mn oxides and residues. Liming significantly decreased Pb concentrations of fine roots, stems and new shoots of tea plants in the pot experiment. In the field experiments, the effect of liming was not significant during the first year following CaCO_3 application, but became significant during the second and third years and Pb concentration in the new shoots was decreased by approximately 20-50%, indicating that liming of acidic tea garden soils is an effective way to reduce Pb contamination of tea. The study also reveals a distinct seasonal variation, with Pb concentration in the new shoots following the order of spring > autumn > summer.
机译:茶是一种广泛消费的饮料。然而,最近的研究表明,中国有越来越多的茶叶产品超过铅的最高允许浓度(MPC)(2 mg kg〜(-1))。茶铅污染是影响贸易和消费者信心的问题。由于许多茶园土壤的强酸性,Pb的根吸收可显着促进茶叶中Pb的积累。我们进行了盆栽和田间试验,以评估石灰对两种高度酸性土壤(pH 3.6)上茶树对Pb吸收的影响。 CaCO_3的添加使土壤pH值增加多达1个单位,并使土壤可提取的Pb减少多达32%。石灰化导致可交换馏分和碳酸盐结合馏分中Pb的比例降低,同时与Fe / Mn氧化物和残留物结合的馏分同时增加。在盆栽实验中,石灰显着降低了茶树细根,茎和新芽的Pb浓度。在田间试验中,在施用CaCO_3后的第一年,浸灰效果并不显着,但是在第二年和第三年中,浸灰效果变得显着,新芽中的Pb浓度降低了约20-50%,这表明酸性的浸灰效果茶园土壤是减少茶中铅污染的有效方法。该研究还揭示了明显的季节变化,新芽中的Pb浓度按照春季>秋季>夏季的顺序排列。

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