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STARx Hottpad for smoldering treatment of waste oil sludge: Proof of concept and sensitivity to key design parameters

机译:STARx Hottpad用于阴燃废油污泥:概念验证和对关键设计参数的敏感性

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Growing stockpiles of waste oil sludge (WOS) are an outstanding problem worldwide. Self-sustaining Treatment for Active Remediation applied ex situ (STARx) is a treatment technology based on smoldering combustion. Pilot-scale experiments for the STARx Hottpad prove this new concept for the mobile treatment of WOS mixed intentionally with sand or contaminated soil. The experiments also allowed for the calibration and validation of a smoldering propagation numerical model. The model was used to systematically explore the sensitivity of Hottpad performance to system design, operational parameters, and environmental factors. Pilot-scale (~1.5 m width) simulations investigated sensitivity to injected air flux, WOS saturation, heterogeneity of intrinsic permeability, and heterogeneity of WOS saturation. Results reveal that Hottpad design is predicted to be successful for WOS treatment across a wide range of scenarios. The operator can control the rate of WOS destruction and extent of treatment by increasing the air flux injected into the bed. The potential for smoldering channeling to develop was demonstrated for the first time. Under certain conditions, such as WOS saturations of 80%, high heterogeneity of WOS saturations, or moderate to high heterogeneity of soil permeability, smoldering channeling was predicted to accelerate to the point that remedial performance was degraded. Field-scale simulations (~10 m width) predicted successful treatment, with WOS destruction rates an order of magnitude higher than the pilot-scale and treatment times increasing only linearly with bed height. This work is a key step toward the design and effective operation of field STARx Hottpad systems for eliminating WOS.
机译:废油污泥(WOS)库存的增长是世界范围内的突出问题。异地主动修复的自我维持治疗(STARx)是一种基于阴燃的处理技术。 STARx Hottpad的中试实验证明了这种新概念,可用于移动处理与沙子或受污染土壤故意混合的WOS。实验还允许对阴燃传播数值模型进行校准和验证。该模型用于系统地研究Hottpad性能对系统设计,操作参数和环境因素的敏感性。中试规模(约1.5 m宽)模拟研究了对注入空气通量的敏感性,WOS饱和度,固有渗透率的非均质性和WOS饱和度的非均质性。结果表明,Hotpad设计预计可在多种情况下成功进行WOS治疗。操作员可以通过增加注入床中的空气流量来控制WOS破坏的速度和治疗程度。首次证明了闷燃通道的发展潜力。在某些条件下,例如80%的WOS饱和度,WOS饱和度的高非均质性或土壤渗透性的中度到高度非均质性,闷烧通道被预测会加速到补救性能下降的程度。现场规模的模拟(约10 m宽)预示了成功的治疗方法,WOS破坏率比中试规模高一个数量级,并且处理时间仅随床高度线性增加。这项工作是实现STARx Hottpad现场系统设计和有效运行以消除WOS的关键一步。

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