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Assessment of the air-soil partitioning of polycyclic aromatic hydrocarbons in a paddy field using a modified fugacity sampler

机译:使用改进的逸度采样器评估稻田中多环芳烃在土壤中的分配

摘要

Rice, one of the most widely cultivated crops, has received great attention in contaminant uptake from soil and air, especially for the special approaches used for its cultivation. The dry-wet alternation method can influence the air-soil partitioning of semivolatile organic compounds (SVOCs) in the paddy ecosystem. Here, we modified a fugacity sampler to investigate the air-surface in situ partitioning of ubiquitous polycyclic aromatic hydrocarbons (PAHs) at different growth stages in a suburban paddy field in South China. The canopy of rice can form a closed space, which acts like a chamber that can force the air under the canopy to equilibrate with the field surface. When we compared the fugacities calculated using a fugacity model of the partition coefficients to the measured fugacities, we observed similar trends in the variation, but significantly different values between different growing stages, especially during the flooding stages. However, the measured and calculated fugacity fractions were comparable when uncertainties in our calculations were considered, with the exception of the high molecular weight (HMW) PAHs. The measured fugacity fractions suggested that the HMW PAHs were also closed to equilibrium between the paddy field and atmosphere. The modified fugacity sampler provided a novel way of accurately determining the in situ air-soil partitioning of SVOCs in a wet paddy field.
机译:水稻是最广泛种植的农作物之一,在土壤和空气中的污染物吸收方面受到了极大的关注,特别是用于其种植的特殊方法。干湿交替方法会影响稻田生态系统中半挥发性有机化合物(SVOC)在空气中的分配。在这里,我们修改了一个逸度采样器,以研究中国南方郊区稻田中不同生长阶段普遍存在的多环芳烃(PAHs)在空气表面的原位分配。水稻冠层可以形成一个封闭的空间,就像一个腔室一样,可以迫使冠层下的空气与田间表面保持平衡。当我们将使用分配系数的逸度模型计算的逸度与测得的逸度进行比较时,我们观察到变化趋势相似,但不同生长期之间(尤其是在淹水阶段)的值存在明显差异。但是,当考虑到我们计算中的不确定性时,除了高分子量(HMW)PAH以外,测量和计算的逸度分数是可比的。测得的逸度分数表明,HMW PAHs也接近了稻田和大气之间的平衡。改进的逸度采样器提供了一种新颖的方法,可以准确地确定湿稻田中SVOC的原位气土分配。

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