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Effects of organic compounds and recycling on ozone absorption in a portable water purification unit

机译:便携式净水装置中有机化合物和再循环对臭氧吸收的影响

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The absorption of ozone gas in a portable bubbling unit was investigated. First, six types of bubblers were tested under identical operating conditions with a gas flow rate of 1 L/min and a water volume of 1.5 L. A simple mass transfer model with the liquid phase assumed to be completely mixed and the axial ozone gas concentration gradient neglected was used to obtain the overall mass transfer coefficient, K_La, by fitting experimental data. The effect of organic compounds in the water on ozone absorption and liquid ozone concentration buildup was investigated experimentally using phenol as a model compound. It was found that the existence of phenol significantly reduced the liquid ozone concentration because absorbed ozone is consumed for the destruction of phenol, leading to the delay in liquid phase ozone concentration buildup. The implication is that the disinfection time was prolonged when water of high organic compounds concentration is to be purified. Using the completely stirred tank reactor model, the gas recycling is simulated and demonstrated to be effective for enhancing ozone utilization efficiency in the small portable water purification unit.
机译:研究了便携式鼓泡装置中臭氧气体的吸收。首先,在相同的工作条件下对六种类型的起泡器进行了测试,气体流速为1 L / min,水量为1.5L。一个简单的传质模型,假定液相完全混合并且轴向臭氧气体浓度较高通过拟合实验数据,使用被忽略的梯度来获得总传质系数K_La。以苯酚为模型化合物,通过实验研究了水中有机化合物对臭氧吸收和液体臭氧浓度增加的影响。发现苯酚的存在显着降低了液体臭氧浓度,因为吸收的臭氧被消耗以破坏苯酚,导致液相臭氧浓度建立的延迟。这意味着当要净化高有机化合物浓度的水时,消毒时间会延长。使用完全搅拌釜反应器模型,模拟了气体再循环,并证明了这种气体再循环对于提高小型便携式净水装置中的臭氧利用效率有效。

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