Huang Zhaolu, Wang Daoyuan, Tripathi Indu, Chen Zhao, Zhou Juan, Chen Quanyuan
School of Environmental Science and Engineering, Donghua University, Shanghai, China.
Illinois Sustainable Technology Center, Prairie Research Institute, University of Illinois at Urbana Champaign, Champaign, Illinois, USA.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2020;55(13):1475-1483. doi: 10.1080/10934529.2020.1808412. Epub 2020 Sep 17.
Seven surfactants were selected as candidate agents for soil column flushing. Column flushing lacks the interaction between surfactants and contaminants, so efficiency is not easy to improve. Microbubbles generated may adhere to the contaminant diesel. Thereafter, the bubbles were mobilized to lift the multi-system oil to the top layer. This process must be attributed to the increased column flushing efficiency of diesel removal. Compared with a single solution, using randomly methylated beta-cyclodextrin (RAMEB) and microbubble enhancement, the diesel removal of column flushing increased by 30.7%. Compared with the existing conditions (5.25 × 10cm s), the hydraulic conductivity of loam soil (3.74 × 10cm s) increased by 7.1 times after the continued operation of the two processes. The oil layer was collected for further reuse. After three treatments, the effluent for the RAMEB was more than 85%. The collected effluent was treated with a synthetic absorbent and then qualifiedly discharged with a TOC value of only 2.6 mg L. By combining surfactant flushing with microbubbles and other equipment, not only can the reaction time be effectively saved, but organic pollutants could be concentrated and reused in the soil, so no additional treatment was required.
选择了七种表面活性剂作为土壤柱冲洗的候选试剂。土壤柱冲洗缺乏表面活性剂与污染物之间的相互作用,因此效率不易提高。产生的微气泡可能会附着在污染物柴油上。此后,气泡被调动起来将多系统油提升到顶层。这个过程必然归因于柴油去除的土壤柱冲洗效率提高。与单一溶液相比,使用随机甲基化β-环糊精(RAMEB)和微气泡增强,土壤柱冲洗的柴油去除率提高了30.7%。与现有条件(5.25×10cm/s)相比,壤土的水力传导率(3.74×10cm/s)在两个过程持续运行后提高了7.1倍。油层被收集以便进一步再利用。经过三次处理后,RAMEB的出水率超过85%。收集的出水用合成吸附剂处理,然后合格排放,总有机碳(TOC)值仅为2.6mg/L。通过将表面活性剂冲洗与微气泡及其他设备相结合,不仅可以有效节省反应时间,而且有机污染物可以在土壤中浓缩并再利用,因此无需额外处理。