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Characteristics and Utilizations of a Pilot Scale Aquifer Model

机译:导频含水层模型的特征和利用

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A pilot scale aquifer model consisted of a lank with five types of unscreened sediments involving gravel, medium sand, fine sand, silt, and clay was constructed in the laboratory. The average porosity of the aquifer was estimated at 0.1463 and 0.1459 by water supply and drainage tests, respectively. Among these material layers in the tank, medium sand laver was the main aquifer with a thickness of 40 cm approximately and specific yield ranged from 0.20 to 0.22. The leaching of clay soil layer on the top of fine sand had an obvious effect on the formation of hydrochemical characteristics of the aquifer. The detections of dissolved oxygen from monitoring wells indicated that there were biodegradation processes that degraded organic chemical from day soil in the aquifer. With the functions of supplying, draining, monitoring, abstracting, injecting and so on, the pilot scale aquifer model is being used to study on renovating groundwater system contaminated by leaks of gasoline. So far, the distributions of BTEX contaminants have detected m the aquifer by destroyed experiments that 4 L gasoline was injected to the aquifer. The detected results will play a basic role in studying on intrinsic biodegradation and enhanced engineered Biodegradation technologies continuously.
机译:试点规模含水层模型包括一个带有五种类型的未筛选沉积物,涉及砾石,中沙,细砂,淤泥和粘土在实验室中构建。含水层的平均孔隙率估计在0.1463和0.1459点,供水和排水试验。在罐中的这些材料层中,中等沙子紫菜是厚度为40厘米的主要含水层,大约且比产率的约0.20至0.22。细砂顶部粘土土层的浸出对含水层的水化学特性形成显而易见。监测孔中溶解氧的检测表明,生物降解过程从含水层中的污染土壤中降解有机化学方法。随着供应,排水,监测,抽象,注射等的功能,试点规模含水层模型用于研究汽油泄漏污染的地下水系统。到目前为止,BTEX污染物的分布已经通过破坏的实验检测了M含水层,即将4 L汽油注入含水层。检测到的结果将在研究内部生物降解和持续增强的工程生物降解技术上发挥基本作用。

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