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[河北省邯郸市钢铁冶炼行业附近玉米田表层土壤和小麦籽粒中多环芳烃的浓度及组分特征]

[Concentrations and Component Profiles PAHs in Surface Soils and Wheat Grains from the Cornfields Close to the Steel Smelting Industry in Handan, Hebei Province].

作者信息

Wu Di, Wang Yi-long, Liu Wei-jian, Chen Yuan-chen, Fu Xiao-fang, Tao Shu, Liu Wen-xin

出版信息

Huan Jing Ke Xue. 2016 Feb 15;37(2):740-9.

Abstract

In this study, paired surface soil and mature wheat grain samples were collected in the cornfields near the large Handan Steel Manufacturer; and the total concentrations and compositional profiles of the parent PAHs were measured, then the spatial distribution characteristics and correlation with total organic carbon fractions in soil were determined. Accordingly, a preliminary source identification was performed, and the association between PAHs in surface soil and wheat grain was briefly discussed. The median concentration of total PAHs in surface soils from the cornfields of Handan was 398.9 ng x g(-1) (ranged from 123.4 ng x g(-1) to 1626.4 ng x g(-1), where around 18% and 10% of all the studied soil samples were over the corresponding quality criteria for total PAHs and B [a] P in soils, respectively. The MMW and HMW species were the main components in the compositional profiles of surface soils. Based on the specific isomeric ratios of PAHs species, coal/biomass combustion and transportation fuel (tail gas) were the dominant mixed sources for the local PAHs emission. The fractions of surface soil TOC had significant positive correlations with the total PAHs and also with the individual components with different rings. In addition, the median concentration of total PAHs in wheat grains collected in the cornfields near the Handan Steel Manufacture was 27.0 ng x g(-1) (ranged from 19.0-34.0 ng x g(-1)). The levels in wheat grains were not high, and lower than the related hygienic standards of food proposed by EU and China. The LMW and MMW PAHs with 2 to 4 rings occupied a larger proportion, more than 84% of the total PAHs, which was largely different from the component profiles in surface soils. This situation suggested that the local sources of PAHs in wheat grains may originate not only from surface soil via root absorption and internal transportation, but also from ambient air through dry and wet deposition on the leaf surface (stoma).

摘要

在本研究中,在邯郸大型钢铁厂附近的玉米田中采集了配对的表层土壤和成熟小麦籽粒样本;测量了母体多环芳烃的总浓度和组成分布,然后确定了其空间分布特征以及与土壤中总有机碳组分的相关性。据此进行了初步的源解析,并简要讨论了表层土壤和小麦籽粒中多环芳烃之间的关联。邯郸玉米田表层土壤中总多环芳烃的中位浓度为398.9 ng x g(-1)(范围为123.4 ng x g(-1)至1626.4 ng x g(-1)),其中分别约有18%和10%的所有研究土壤样本超过了土壤中总多环芳烃和苯并[a]芘的相应质量标准。中分子量和高分子量物种是表层土壤组成分布中的主要成分。基于多环芳烃物种的特定异构体比例,煤/生物质燃烧和运输燃料(尾气)是当地多环芳烃排放的主要混合源。表层土壤总有机碳的组分与总多环芳烃以及不同环数的各个组分均具有显著正相关。此外,在邯郸钢铁厂附近玉米田中采集的小麦籽粒中总多环芳烃的中位浓度为27.0 ng x g(-1)(范围为19.0 - 34.0 ng x g(-1))。小麦籽粒中的含量不高,低于欧盟和中国提出的相关食品卫生标准。具有2至4个环的低分子量和中分子量多环芳烃占总多环芳烃的比例较大,超过84%,这与表层土壤中的组分分布有很大不同。这种情况表明,小麦籽粒中多环芳烃的本地来源可能不仅通过根系吸收和内部运输来自表层土壤,还可能通过叶面(气孔)的干湿沉降来自周围空气。

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