Mud matters: exploring the quality and composition of Estonia's curative mud deposits.

IF 3.2 3区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Environmental Geochemistry and Health Pub Date : 2024-10-05 DOI:10.1007/s10653-024-02250-6
Galina Kapanen, Tiit Vaasma, Egert Vandel, Jaanus Terasmaa
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Abstract

The study focuses on the current state of curative mud deposits in Estonia as of 2022, examining changes over the past decade and providing essential information on curative mud quality. Total of 64 curative mud samples were collected in 2022, marking the first investigation into hazardous substances such as phenols, petroleum products, and pesticides. The study encompassed analyses of organic and mineral matter content, grain size, microbiology, and heavy metal concentrations, totalling 1649 measurements. Comparisons with previous data revealed stable organic matter concentrations in lake and marine sediments over the last decade. Microbiological contamination in curative mud samples was relatively low, indicating cleanliness. Petroleum product concentrations varied, with Haapsalu at 42 mg/kg, Värska at 118.6 mg/kg, and Käina below the limit of quantification. Phenol concentrations were generally below the limit of quantification, except for Värska. Pesticides were found in Värska samples, but in other sediments, levels were below the limit of quantification. Average heavy metal concentrations in curative mud decreased between 2013-2014 and 2022, remaining below the target value. The study's results are crucial for curative mud-related entrepreneurship in Estonia, facilitating compliance with the new regulatory standards. The comprehensive data obtained will contribute to the consistency and efficacy of curative mud-related practices in the country.

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泥浆问题:探索爱沙尼亚治疗性泥浆矿藏的质量和组成。
研究重点是爱沙尼亚截至 2022 年的疗养泥沉积现状,考察过去十年的变化,并提供有关疗养泥质量的基本信息。2022 年共采集了 64 个淤泥样本,这是首次对酚类、石油产品和杀虫剂等有害物质进行调查。这项研究包括有机物和矿物物质含量、粒度、微生物学和重金属浓度分析,共计 1649 项测量。与以前的数据进行比较后发现,在过去十年中,湖泊和海洋沉积物中的有机物浓度保持稳定。淤泥样本中的微生物污染相对较低,表明淤泥是清洁的。石油产品的浓度各不相同,哈普萨卢(Haapsalu)为 42 毫克/千克,韦尔斯卡(Värska)为 118.6 毫克/千克,凯纳(Käina)低于定量限。除韦尔斯卡外,苯酚浓度普遍低于定量限。在韦尔斯卡的样本中发现了杀虫剂,但在其他沉积物中,杀虫剂的含量低于定量限。在 2013-2014 年至 2022 年期间,净化泥中的重金属平均浓度有所下降,但仍低于目标值。研究结果对于爱沙尼亚与保护泥相关的创业至关重要,有助于遵守新的监管标准。获得的全面数据将有助于提高该国与疗泥相关的实践的一致性和有效性。
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来源期刊
Environmental Geochemistry and Health
Environmental Geochemistry and Health 环境科学-工程:环境
CiteScore
8.00
自引率
4.80%
发文量
279
审稿时长
4.2 months
期刊介绍: Environmental Geochemistry and Health publishes original research papers and review papers across the broad field of environmental geochemistry. Environmental geochemistry and health establishes and explains links between the natural or disturbed chemical composition of the earth’s surface and the health of plants, animals and people. Beneficial elements regulate or promote enzymatic and hormonal activity whereas other elements may be toxic. Bedrock geochemistry controls the composition of soil and hence that of water and vegetation. Environmental issues, such as pollution, arising from the extraction and use of mineral resources, are discussed. The effects of contaminants introduced into the earth’s geochemical systems are examined. Geochemical surveys of soil, water and plants show how major and trace elements are distributed geographically. Associated epidemiological studies reveal the possibility of causal links between the natural or disturbed geochemical environment and disease. Experimental research illuminates the nature or consequences of natural or disturbed geochemical processes. The journal particularly welcomes novel research linking environmental geochemistry and health issues on such topics as: heavy metals (including mercury), persistent organic pollutants (POPs), and mixed chemicals emitted through human activities, such as uncontrolled recycling of electronic-waste; waste recycling; surface-atmospheric interaction processes (natural and anthropogenic emissions, vertical transport, deposition, and physical-chemical interaction) of gases and aerosols; phytoremediation/restoration of contaminated sites; food contamination and safety; environmental effects of medicines; effects and toxicity of mixed pollutants; speciation of heavy metals/metalloids; effects of mining; disturbed geochemistry from human behavior, natural or man-made hazards; particle and nanoparticle toxicology; risk and the vulnerability of populations, etc.
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