Use of high-energy ionizing radiation for microbiological decontamination of coastal soil in the Kolubara river basin, Serbia

IF 0.9 4区 工程技术 Q3 NUCLEAR SCIENCE & TECHNOLOGY
Vuk Gajić, Ivica Vujčić, G. Dražić, J. Milovanović, S. Mašić
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Abstract

The Kolubara river pollutes the coastal land in the river basin and makes it unsuitable for agricultural activities in that area. Also, contaminated land poses a risk to the environment. Different methods can be used for soil decontamination. These methods include biological treatment/bioremediation, chemical oxidation, soil stabilization, physical methods, such as soil leaching, or treatment with high-energy ionizing radiation. Gamma irradiation of soil is a well-known method of inhibiting microbial activity. This paper investigated the influence of different doses and dose rates of gamma irradiation on microorganisms' decontamination of coastal soil, in the Kolubara river basin. The irradiation effects on reducing the total number of microorganisms and removing mold and pathogenic bacteria from soil samples were examined. Gamma radiation affects the soil's organic matter, causing the formation of free reactive radicals, which act as reducing and oxidizing agents, cleaving C-C bonds, and depolymerizing carbohydrates. It was found that a dose of 3 kGy of gamma radiation, neutralizes all pathogenic bacteria, a dose of 5 kGy deactivates mold in soil samples, and a dose of 10 kGy is optimal to kill all microorganisms in the samples and sterilize exposed soil. The research showed that the dose rate does not significantly affect microbiological decontamination of soil using gamma irradiation. The content of heavy metals in soil was determined, and the obtained values were compared with the remediation limit values prescribed by the regulations. It was concluded that the content of heavy metals in the analyzed soil samples is below the limit of remediation values. The only exception is the slightly increased copper content in one sample. The result of this research is the conclusion that the coastal land from the Kolubara basin can be decontaminated by gamma radiation treatment. This advanced soil treatment technology is available in Serbia because there is an industrial plant for gamma radiation treatment within the Vinca Institute.
使用高能电离辐射对塞尔维亚科卢巴拉河流域沿海土壤进行微生物净化
Kolubara河污染了河流域的沿海土地,使其不适合该地区的农业活动。此外,受污染的土地对环境构成威胁。土壤净化可以采用不同的方法。这些方法包括生物处理/生物修复、化学氧化、土壤稳定、物理方法,如土壤淋滤或高能电离辐射处理。土壤辐照是一种众所周知的抑制微生物活性的方法。本文研究了不同剂量和剂量率的伽马辐射对科鲁巴拉河流域滨海土壤微生物去污的影响。考察了辐照对土壤样品中微生物总数的减少作用以及对霉菌和致病菌的去除作用。伽马辐射影响土壤的有机物,导致自由基的形成,自由基作为还原剂和氧化剂,破坏碳-碳键,解聚碳水化合物。结果表明,3 kGy的伽马辐射剂量可以中和所有致病菌,5 kGy的剂量可以使土壤样品中的霉菌失活,10 kGy的剂量可以杀死样品中的所有微生物并对暴露的土壤进行灭菌。研究表明,辐照剂量率对土壤微生物净化效果无显著影响。测定了土壤中重金属的含量,并与法规规定的修复极限值进行了比较。结果表明,分析的土壤样品中重金属含量低于修复限值。唯一的例外是其中一个样品的铜含量略有增加。研究结果表明,科洛巴拉盆地的沿海土地可以通过伽玛射线处理进行净化。这种先进的土壤处理技术在塞尔维亚是可行的,因为在温卡研究所内有一个伽马射线处理的工业工厂。
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来源期刊
Nuclear Technology & Radiation Protection
Nuclear Technology & Radiation Protection NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.00
自引率
41.70%
发文量
10
审稿时长
6-12 weeks
期刊介绍: Nuclear Technology & Radiation Protection is an international scientific journal covering the wide range of disciplines involved in nuclear science and technology as well as in the field of radiation protection. The journal is open for scientific papers, short papers, review articles, and technical papers dealing with nuclear power, research reactors, accelerators, nuclear materials, waste management, radiation measurements, and environmental problems. However, basic reactor physics and design, particle and radiation transport theory, and development of numerical methods and codes will also be important aspects of the editorial policy.
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