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In this case, the biodegradability of the treated solutions occurred rapidly.
It was also found that treated solutions presented oxidation-resistant intermediates as final products in all cases.
LC-MS analysis of treated solutions allowed the identification of 25 aromatic and heteroaromatic products and 30 hydroxylated derivatives.
The reduction in toxicity was directly correlated to a decrease in the concentration of 2,4-DCP in the treated solutions, as measured by high-performance liquid chromatography.
The application of ultrafiltration process results in separation of photocatalyst from the treated solutions whereas during nanofiltration and membrane distillation high retention of degradation products was obtained.
The reduced concentrations of 2,4-DCP in the treated solutions could be correctly predicted based on the relationship between the specific growth rates and the 2,4-DCP concentrations in untreated solutions.
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Toxicity of BDD treated solution was significantly higher than Ti/RuO2 treated solution at the end of the process.
The volume ratio of treated solution and exhausted adsorbent was almost 7000.
The acid treated solution was re-treated by electrochemical oxidation (EO) and electro-Fenton (EF) techniques using graphite electrodes.
Although by-product formation was found, no halogenated by-products were found in the treated solution.
In addition, the acute toxicity of TC and PPC treated solution significantly decreased after treatment by electrochemical oxidation.
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