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铅对两个贝斯基迪景观公园土壤微生物活性的影响。

Influence of lead on the activity of soil microorganisms in two Beskidy landscape parks.

机构信息

Institute for Ecology of Industrial Areas, Kossutha 6, 40-844, Katowice, Poland.

Department of Water Protection, Central Mining Institute, pl. Gwarków 1, 40-166, Katowice, Poland.

出版信息

Environ Monit Assess. 2021 Nov 24;193(12):839. doi: 10.1007/s10661-021-09503-2.

Abstract

The aim of the study was to assess the potential impact of lead on soil metabolism in two landscape parks localized in the Beskid Śląski and Beskid Żywiecki mountains which were affected, among others, by air pollution from the Upper Silesian Industrial Region, the largest industrial zone in Poland. The study was carried out in six locations with different lead levels in the soil environment. Each plot was equipped with four pairs of vacuum ceramic lysimeters to assess the mobility of Pb in the soil. The metabolic activity was assessed by measuring: soil enzyme activity, soil respiration and by studying community-level physiological profiling (CLPP) using Biolog EcoPlates technique. The soil to the examination was collected near the stands with the lysimeters from two soil horizons (A and B layer). The analyses carried out showed that the factors that had the greatest influence on lead mobility were the organic carbon content and the soil pH. The elevated lead level in the topsoil (layer A) could affect the functional biodiversity of soil microorganisms, but low soil pH was a more likely limiting factor. In the subsoil (layer B), lower lead content was found and its probable effect on soil microbial activity was small. In summary, it can be concluded that the assessment of the influence of heavy metals on soil metabolism is not easy, and the Biolog system has proven to be a sensitive tool for assessing the potential impact of heavy metals on the soil environment.

摘要

本研究旨在评估铅对位于波兰最大工业区域——上西里西亚工业区影响下的两个山地景观公园(包括波兰的贝斯基德山区和贝斯基德山区)土壤代谢的潜在影响。研究在土壤环境中铅含量不同的六个地点进行。每个地块都配备了四对真空陶瓷渗滤计,以评估 Pb 在土壤中的迁移率。通过测量土壤酶活性、土壤呼吸以及使用 Biolog EcoPlates 技术研究群落水平生理特征(CLPP)来评估代谢活性。为了进行检查,在带有渗滤计的林带附近采集了两个土壤层(A 层和 B 层)的土壤。分析结果表明,对铅迁移率影响最大的因素是有机碳含量和土壤 pH 值。表土层(A 层)中铅含量升高可能会影响土壤微生物的功能多样性,但低土壤 pH 值可能是一个更具限制作用的因素。在底土(B 层)中,发现铅含量较低,其对土壤微生物活性的可能影响较小。总的来说,可以得出结论,评估重金属对土壤代谢的影响并不容易,Biolog 系统已被证明是评估重金属对土壤环境潜在影响的敏感工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc49/8613082/ed7578549281/10661_2021_9503_Fig1_HTML.jpg

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