Ecological and Geochemical Assessment of the State of Soils in the City of Baikal’sk according to the Content of Polycyclic Aromatic Hydrocarbons

IF 1.4 4区 农林科学 Q4 SOIL SCIENCE
N. E. Kosheleva, E. M. Nikiforova, N. B. Zhaxylykov
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Abstract

The pollution of the topsoil in the city of Baikal’sk (Irkutsk oblast) under the influence of industrial emissions and wastes of the Baikal Pulp and Paper Mill (BPPM) was studied. The contents of 16 individual polycyclic aromatic hydrocarbons (PAHs) in samples of urban and background soils taken during the soil geochemical survey in the summer of 2019 were analyzed. Relatively low contents of PAHs were found in lignin sludge from the BPPM and ash from the combined heat and power station (CHPS). The concentration of total PAHs in CHPS ash reaches 46 mg/kg with a predominance of low molecular weight compounds (the proportion of naphthalene and its homologues is 24% and 34% of the total PAHs, respectively). Among high molecular weight PAHs, 5-nuclear benzo(b)fluoranthene dominates (16%). In lignin sludge, the amount of PAHs is 7.16 mg/kg with a predominance of benzo(b)fluoranthene (83%). In soils of Baikal’sk, the mean total content of PAHs (38.4 mg/kg) is five times higher than the background content. In urban soils, 4–5-nuclear fluoranthene (61.1%) and benzo(b)fluoranthene (29.4%) prevail. This enables us to assign soil pollution to the fluoranthene type. Soils of the motor traffic (total content of PAHs is 105 mg/kg) and industrial (59.5 mg/kg) zones are most strongly polluted and display contrasting geochemical anomalies of PAHs. Land use zones of the city may be arranged in the following sequence with respect to the amount of PAHs: motor traffic > industrial > residential single-story > railway transport > residential multi-story > recreational zone. Several local anomalies with increased contents of PAHs form two large pollution halos in the west and east of the city. The leading factors in the accumulation of high molecular weight PAHs in soils include acid–alkaline conditions and soil organic matter, while the accumulation of low molecular weight polyarenes is mainly controlled by pH. The environmental hazard of pollution of Baikal’sk soils with polyarenes is by 83.5% related to benzo(b)fluoranthene.

Abstract Image

根据多环芳香烃含量对贝加尔斯克市土壤状况进行生态和地球化学评估
摘要 研究了贝加尔斯克市(伊尔库茨克州)表层土壤受贝加尔纸浆造纸厂(BPPM)工业排放物和废物影响的污染情况。研究分析了 2019 年夏季土壤地球化学调查期间采集的城市土壤和背景土壤样本中 16 种多环芳烃(PAHs)的含量。研究发现,BPPM 的木质素污泥和热电联产站(CHPS)的灰烬中的多环芳烃含量相对较低。热电站灰渣中的多环芳烃总含量达到 46 毫克/千克,其中以低分子量化合物为主(萘及其同系物分别占多环芳烃总含量的 24% 和 34%)。在高分子量 PAHs 中,5-核苯并(b)荧蒽占主导地位(16%)。在木质素污泥中,多环芳烃的含量为 7.16 毫克/千克,其中以苯并(b)荧蒽为主(83%)。在贝加尔湖的土壤中,多环芳烃的平均总含量(38.4 毫克/千克)是背景含量的五倍。在城市土壤中,主要是 4-5 核荧蒽(61.1%)和苯并(b)荧蒽(29.4%)。因此,我们可以将土壤污染归为氟蒽类型。汽车交通区(多环芳烃的总含量为 105 毫克/千克)和工业区(59.5 毫克/千克)的土壤污染最为严重,多环芳烃的地球化学异常现象也截然不同。根据多环芳烃的含量,该市的土地利用区可按以下顺序排列:汽车交通区;工业区;单层住宅区;铁路交通区;多层住宅区;休闲区。多环芳烃含量增加的几个局部异常点在城市西部和东部形成了两个大的污染晕。高分子量多环芳烃在土壤中积累的主要因素包括酸碱条件和土壤有机质,而低分子量多烯烃的积累主要受 pH 值控制。贝加尔湖土壤受到多烯烃污染的环境危害中,83.5%与苯并(b)荧蒽有关。
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来源期刊
Eurasian Soil Science
Eurasian Soil Science 农林科学-土壤科学
CiteScore
2.70
自引率
35.70%
发文量
137
审稿时长
12-24 weeks
期刊介绍: Eurasian Soil Science publishes original research papers on global and regional studies discussing both theoretical and experimental problems of genesis, geography, physics, chemistry, biology, fertility, management, conservation, and remediation of soils. Special sections are devoted to current news in the life of the International and Russian soil science societies and to the history of soil sciences. Since 2000, the journal Agricultural Chemistry, the English version of the journal of the Russian Academy of Sciences Agrokhimiya, has been merged into the journal Eurasian Soil Science and is no longer published as a separate title.
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