Li Hengzhen, Hu Liming, Song Dejun, Al-Tabbaa Abir
Department of Hydraulic Engineering, Tsinghua University, Beijing 100084, China.
Int J Environ Res Public Health. 2013 Dec 30;11(1):473-86. doi: 10.3390/ijerph110100473.
Micro-nano bubbles (MNBs) are tiny bubbles with diameters on the order of micrometers and nanometers, showing great potential in environmental remediation. However, the application is only in the beginning stages and remains to be intensively studied. In order to explore the possible use of MNBs in groundwater contaminant removal, this study focuses on the transport of MNBs in porous media and dissolution processes. The bubble diameter distribution was obtained under different conditions by a laser particle analyzer. The permeability of MNB water through sand was compared with that of air-free water. Moreover, the mass transfer features of dissolved oxygen in water with MNBs were studied. The results show that the bubble diameter distribution is influenced by the surfactant concentration in the water. The existence of MNBs in pore water has no impact on the hydraulic conductivity of sand. Furthermore, the dissolved oxygen (DO) in water is greatly increased by the MNBs, which will predictably improve the aerobic bioremediation of groundwater. The results are meaningful and instructive in the further study of MNB research and applications in groundwater bioremediation.
微纳米气泡(MNBs)是直径在微米和纳米量级的微小气泡,在环境修复方面显示出巨大潜力。然而,其应用尚处于初始阶段,仍有待深入研究。为了探索微纳米气泡在去除地下水中污染物方面的可能用途,本研究聚焦于微纳米气泡在多孔介质中的传输及溶解过程。通过激光粒子分析仪在不同条件下获得了气泡直径分布。将含微纳米气泡水通过沙子的渗透率与无气水的渗透率进行了比较。此外,还研究了含微纳米气泡水中溶解氧的传质特性。结果表明,气泡直径分布受水中表面活性剂浓度影响。孔隙水中微纳米气泡的存在对沙子的水力传导率没有影响。此外,微纳米气泡使水中的溶解氧(DO)大幅增加,这有望改善地下水的好氧生物修复。这些结果对于微纳米气泡在地下水生物修复中的进一步研究和应用具有重要意义和指导作用。