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Modeling Cryptosporidium parvum oocyst inactivation and bromate in a flow-through ozone contactor treating natural water

机译:在处理天然水的流通臭氧接触器中模拟小隐孢子虫卵囊失活和溴酸盐

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摘要

A reactive transport model was developed to simultaneously predict Cryptosporidium parvum oocyst inactivation and bromate formation during ozonation of natural water. A mechanistic model previously established to predict bromate formation in organic-free synthetic waters was coupled with an empirical ozone decay model and a one-dimensional axial dispersion reactor (ADR) model to represent the performance of a lab-scale flow-through ozone bubble-diffuser contactor. Dissolved ozone concentration, bromate concentration (in flow-through experiments only), hydroxyl radical exposure and C. parvum oocyst survival were measured in batch and flow-through experiments performed with filtered Ohio River water. The model successfully represented ozone concentration and C. parvum oocyst survival ratio in the flow-through reactor using parameters independently determined from batch and semi-batch experiments. Discrepancies between model prediction and experimental data for hydroxyl radical concentration and bromate formation were attributed to unaccounted for reactions, particularly those involving natural organic matter, hydrogen peroxide and carbonate radicals. Model simulations including some of these reactions resulted in closer agreement between predictions and experimental observations for bromate formation.
机译:建立了反应性运输模型,以同时预测天然水臭氧化过程中小隐孢子虫卵囊的失活和溴酸盐的形成。先前建立的用于预测无有机合成水中溴酸盐形成的机理模型与经验性臭氧衰减模型和一维轴向弥散反应器(ADR)模型相结合,以代表实验室规模的流通式臭氧气泡的性能。扩散接触器。分批进行的溶解臭氧浓度,溴酸盐浓度(仅在流通实验中),羟基自由基暴露和小球藻卵囊存活率的测定是使用经过滤的俄亥俄河水进行的。该模型使用独立于分批和半分批实验确定的参数,成功地代表了流通式反应器中的臭氧浓度和小球藻卵囊存活率。羟基自由基浓度和溴酸盐形成的模型预测与实验数据之间的差异归因于无法解释的反应,特别是那些涉及天然有机物,过氧化氢和碳酸盐自由基的反应。包括其中一些反应在内的模型模拟导致溴酸盐形成的预测结​​果与实验观察结果更加吻合。

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