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BIOREMEDIATION OF AN OIL DEPOSIT IN A RELEVANT GEOLOGICAL MATRIX

机译:相关地质矩阵中的石油矿床生物修复

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The main scope of the work was to perform the clean up of the contaminated soil after the dismantling of an old oil deposit based on a hill close to the city of Genoa, Italy. The contaminants namely consisted of medium and heavy hydrocarbons diffused in the soil during the plant’s lifetime from various sources, I.e. Tanks/pipes leakage, loading and unloading spills, etc. According to a preliminary test report, biopiling was selected as the most appropriate technology. The concentration of the contaminants varied greatly from point to point within the whole site, depending on the particular geological structure of the soil, basically consisting of shale strongly interfering with the natural diffusion, so as highly polluted spots were intercalated with relatively clean zones. Soil excavation was therefore performed very carefully according to a fine mapping of small lots supported by a very precise and detailed analytical campaign, whilst contaminated soil to be submitted to the pile was previously pre-treated through a screening step and stored before piling. Parameters of the biopiling process were continuously monitored and maintained to the right values in compliance with the relevant soil nature (I.e. pile humidity had to help the biological process but had to be maintained at quite low levels in order to prevent from the natural shale mudding). No bulking agent and/or nutrients were used. The average concentration of the pile contaminants was about 800 ppm as total hydrocarbons (up to C25) and 7,000 ppm as mineral oils, whilst the after treatment value was ranging between 250 and 300 ppm of total hydrocarbons and 3,500 ppm of mineral oils, with a removal efficiency of about 66 and 50% respectively. This result was achieved in about six months of actual biopiling, while the rest of the time was devoted to civil works, excavation and contaminated soil preparation. Over one year of treatment, total hydrocarbons mass was degraded up to 80 – 90 ppm and mineral oils up to 850 ppm, reaching a global effectiveness around 85 – 90%. The above described experience shows that biopiling can be considered a successful and flexible technology even in the case of a very hard matrix, provided that the process is properly operated and monitored.
机译:这项工作的主要范围是执行基于山上靠近城市热那亚,意大利的老油藏的拆解后的清理被污染的土壤。这些污染物包括即从各种来源,即植物的生命周期过程中的土壤扩散中,重烃罐/管道泄漏,装卸泄漏,等等。根据初步的测试报告,biopiling被选为最合适的技术。所述污染物的浓度从点变化大大点整个网站内,这取决于土壤的特定地质结构,基本上由页岩与自然扩散强干扰,从而为高度污染斑点嵌入具有相对干净区。因此,进行土壤挖掘非常仔细地根据由一个非常精确和详细的分析运动支持小批量的精细作图,而被污染的土壤通过一个筛选步骤之前打桩提交给桩以前预处理并存储。该biopiling工艺参数进行了连续监测,并在符合相关土壤性质保持正确的价值观(即堆湿度只好求助生物过程却不得不为了从天然页岩泥化,以防止被维持在相当低的水平) 。没有填充剂和/或养分使用。桩污染物的平均浓度为约800ppm作为总烃(高达C25)和7,000ppm的矿物油,而治疗后值范围250和总烃的300ppm或3500 ppm的矿物油之间,具有分别为约66和50%的去除效率。这一结果是在半年左右的实际biopiling的实现,而其余时间则专门土建工程,挖掘和污染土壤的准备。在一年的治疗,总碳氢化合物质量被降解高达80 - 90个PPM和矿物油高达850 ppm时,达到约85全球效益 - 90%。上述经验表明,biopiling可以被认为是成功的和灵活的技术,即使在非常硬的矩阵的情况下,只要该过程被适当地操作和监视。

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