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Use of solar water heating system for oil contaminated soil treatment

机译:利用太阳能热水系统处理油污土壤

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Bioremediation is one of the most efficient and widely applied methods of biotechnology, which also plays an important role in cleaning the environment from pollution by oil and oil products as well as rehabilitating the soil. Time is a limiting factor which prevents the effective use of biological treatment method, since the biodegradation of oil products is highly dependent on the season of a year and takes place only during the warm period, when the microorganisms act as active decomposers. Biodegradation of oil and its products takes about 9 months in a temperate climate zone. By properly organizing the modern biological systems of treatment of soil polluted by oil products, considerably better result can be achieved compared to previously used methods. Soil heating is one of ways to increase the intensity of biodegradation process of oil products. For this purpose the solar energy, one of the alternative energy sources, was used. Changes of diesel fuel and heavy fuel oil concentrations in soil during cold and warm season were studied. In order to determine the heat transfer process in soil, the modeling of the part of defined solar system had been done. The modeling realized using FEM (Finite Element Method) computer software constituted on numerical solution of heat equation. Simulation results indicate the dependency of contaminated soil temperature from the outer air temperature as well as comparing the physical experiments with the modeling results. To summarize the results we can state, that the outcome of biological treatment of samples using solar-based heating system during cold and warm seasons was better in both cases of pollutants. Heat produced by solar collector intensified the process of degradation of pollutants: in samples with solar-based water heating system, the diesel fuel removal level reached 70 %, in case of heavy fuel oil - 46 %, and in control samples it was 54 % for diesel fuel and 26% for heavy fuel oil. The treatment time of soil co- taminated with oil products decreased accordingly. The obtained results allow to propose new technological principles of remediation of polluted soil, which decrease the treatment time, and thus the cost, and extends the area of application of alternative energy sources.
机译:生物修复是生物技术中最有效,应用最广泛的方法之一,在清洁环境以免受到石油和石油产品的污染以及修复土壤方面也发挥着重要作用。时间是限制有效处理生物处理方法的限制因素,因为油品的生物降解高度依赖于一年中的季节,并且仅在温暖的时期发生,而微生物是活性分解剂。在温带气候区,石油及其产品的生物降解过程大约需要9个月。与以前使用的方法相比,通过适当地组织现代的生物系统来处理被油类产品污染的土壤,可以获得更好的结果。土壤加热是增加石油产品生物降解过程强度的方法之一。为此,使用了一种可替代能源之一的太阳能。研究了寒冷和温暖季节土壤中柴油和重油浓度的变化。为了确定土壤中的传热过程,已对定义的太阳系的一部分进行了建模。利用有限元方法计算机软件根据热方程的数值解实现了建模。仿真结果表明受污染的土壤温度与外界气温之间的相关性,并将物理实验与建模结果进行了比较。总结一下我们可以得出的结论,在两种污染物情况下,在寒冷和温暖季节使用太阳能加热系统对样品进行生物处理的结果都更好。太阳能集热器产生的热量加剧了污染物的降解过程:在采用太阳能水加热系统的样品中,柴油去除率达到70%,在重质燃油的情况下达到46%,在对照样品中达到54%。柴油和重油的26%。因此,被油品污染的土壤的处理时间相应减少了。获得的结果可以提出修复污染土壤的新技术原理,从而减少了处理时间,从而降低了成本,并扩展了替代能源的应用领域。

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