Remediation of Lubricant Contaminated Soils by Cavitation Microjet Shock Wave Soil Washing System with Ozonation

Colin S. Chen, C. Tien
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引用次数: 1

Abstract

ABSTRACT Adopting soil washing to clean up petroleum hydrocarbon contaminated soils with high sand content is considered as a fast and economical method. Cavitation microjet shock wave soil washing system (CMS) enhanced by the use of ozonation was developed for remediation of aged lubricant contaminated soil in this study. Contaminated soil with total petroleum hydrocarbon (TPH) ranging from 1890 mg/kg to 15735 mg/kg were applicable for CMS soil washing system. The impacts of factors including initial TPH concentration hydrocarbon (TPH) concentration, soil particle size, soil washing time, and ozone treatment time onto soil washing were investigated through a 21-month period of field operation. The contaminated soils with particle size between 0.074 mm and 0.25 mm, mainly very fine sand and find sand, demonstrated 31% to 98% of TPH removal by air-injected CMS and 19% to 92% of TPH removal by CMS with ozone addition. The optimal cavitation washing time was 20 minutes. The study indicated that optimal ozone concentration in the slurry was 1.08 mg/L which require air of 27 L/min for ozone produced. However, given the short contact time in the CMS system, ozone addition in the slurry did not improve TPH removal effectively. Considering the compatible TPH removal efficiency and energy cost of ozone addition in the soil washing system, use of air-injected CMS soil washing system may be considered as an alternative way.
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臭氧化空化微射流冲击波洗土系统修复润滑油污染土壤
采用洗土法治理高含沙量石油烃污染土壤被认为是一种快速、经济的方法。研究了臭氧化强化的空化微射流冲击波洗土系统(CMS),用于修复老化润滑油污染土壤。总石油烃(TPH)为1890 ~ 15735 mg/kg的污染土壤适用于CMS洗土系统。通过21个月的野外作业,研究了初始TPH浓度、土壤粒径、土壤洗涤时间、臭氧处理时间等因素对土壤洗涤的影响。对于粒径在0.074 ~ 0.25 mm之间的污染土壤,以极细砂和粗砂为主,空气注入CMS对TPH的去除率为31% ~ 98%,添加臭氧的CMS对TPH的去除率为19% ~ 92%。最佳空化洗涤时间为20分钟。研究表明,污泥中臭氧的最佳浓度为1.08 mg/L,臭氧产生所需空气量为27 L/min。然而,由于CMS系统中的接触时间较短,在料浆中添加臭氧并没有有效地提高TPH的去除率。考虑到适宜的TPH去除效率和在洗土系统中添加臭氧的能源成本,可以考虑采用空气注入CMS洗土系统作为替代方法。
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