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Chemical characterization and phytotoxicity assessment of peri-urban soils using seed germination and root elongation tests

机译:种子萌发和根伸长率试验围城土壤的化学表征和植物毒性评估

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The peri-urban soil is exposed to pollutants because of its proximity to the city, which may influence the quality of agricultural products. In this study, the occurrence of 16 trace elements (TEs), 16 polycyclic aromatic hydrocarbons (PAHs), and 33 contaminants of emerging concern (CECs) was analyzed in two soil sites of the peri-urban area of Barcelona (Spain) (S2 and S3) and a pristine site (S1). Levels of Pb (S2 164 and S3 150 mg kg?1) are around 2.5 times higher than the guideline values. Values for Cu (178 mg kg?1) in S2 are 1.8-fold higher, whereas for Zn, levels are slightly above the threshold in S2 (208 mg kg?1) and S3 (217 mg kg?1). The total concentrations of PAHs are significantly below the limits: 24 ng g?1 dw (S1), 38 ng g?1 dw (S2), 49 ng g?1 dw (S3), whereas only some CECs are detected with low concentrations. We also developed a simple and rapid method to assess soil pollution. Here, we use two plant growth indexes (seed germination rate and root elongation at the initial stage) of three seeds (lettuce, tomato, and cauliflower) to assess soil chemical contamination on agriculture. In the peri-urban soil, the concentration of Pb was 2.5 times higher than the guideline values, whereas for Cu and Zn, values were slightly above their limits, while only few PAHs and CECs were detected. Results for principal component analysis suggest that root elongation is a more sensitive measurement endpoint than germination rate, especially for lettuce. The germination rate of tomato relied on the nitrate in the soil and decreased sharply in the site with pollution of Cu and As. Under the specific conditions of this study, cauliflower should not be recommended to assess environmental pollution due to its low sensitivity to pollutants. In conclusion, this is a low-cost, simple, and rapid method for evaluating the effects of chemical pollution of agriculture soils on seed growth.
机译:由于靠近城市,围城市土壤暴露于污染物,这可能影响农产品质量。在这项研究中,在巴塞罗那(西班牙)(S2)的两种土壤部位分析了16种微细胞素(TES),16个多环芳烃(PAH)和33个污染物的出现(CEC)(S2)(S2)和S3)和原始网站(S1)。 PB的水平(S2 164和S3 150mg kg×1)比指南值高约2.5倍。 S2中的Cu(178mg kgα1)的值较高1.8倍,而对于Zn,水平略高于S2(208mgkg≤1)和S3(217mg kgα1)中的阈值。 PAH的总浓度明显低于限制:24 ng〜DW(S1),38ngΔ1dw(S2),49ngg≤1dw(S3),而仅使用低浓度检测一些CECS 。我们还开发了一种简单快捷的方法来评估土壤污染。在这里,我们使用三种种子(莴苣,番茄和花椰菜的初始阶段的种子萌发率和根伸长)使用两种植物生长指标(种子萌发率和根伸长),以评估农业土壤化学污染。在围城市土壤中,Pb的浓度高出比准则值高2.5倍,而对于Cu和Zn,值略高于其限制,而仅少量PAHS和CEC。主要成分分析的结果表明,根伸长率是比萌发率更敏感的测量终点,尤其是莴苣。番茄的萌发率依赖于土壤中的硝酸盐,并且在网站上急剧下降,铜污染和污染。在本研究的具体条件下,由于其对污染物的敏感性低,应不应建议评估环境污染。总之,这是一种低成本,简单,快捷,快速评估农业土壤化学污染对种子生长的影响。

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