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Aquatic toxicity evaluation of TiO2 nanoparticle produced from sludge of TiCl4 flocculation of wastewater and seawater

机译:废水和海水絮凝的TiCl4污泥产生的TiO2纳米颗粒的水生毒性评价

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摘要

Flocculation using titanium tetrachloride (TiCl4) as a coagulant is an efficient and economical application because the flocculated sludge can be recycled to produce a valuable byproduct, namely titanium dioxide (TiO2) nanoparticles. However, toxicity of TiCl4 has not yet been assessed while it is used in water treatment. The aquatic toxicity of TiCl4 flocculation process was investigated to assess the environmental safety of the coagulant. D. magna and V. fischeri bioassays were carried out to evaluate the supernatant toxicity after TiCl4 flocculation. Artificial wastewater, biologically treated sewage effluent, and seawater were used to study the toxicity of TiCl4 flocculation. Results showed that supernatant toxicity was very low when TiCl4 flocculation was conducted (no observed effect concentration = 100 mg/L and lowest observed effect concentration = 150 mg/L exposed to D. magna and V. fischeri, respectively). Similarly, TiO2 nanoparticles recovered from wastewater and seawater flocculated sludge were also found to have low toxicity. The regenerated TiO2 nanoparticles indicated low toxicity values when compared to the commercial-TiO2 nanoparticle, P-25
机译:使用四氯化钛(TiCl4)作为混凝剂进行絮凝是一种高效且经济的应用,因为可以将絮凝的污泥进行再循环以产生有价值的副产物,即二氧化钛(TiO2)纳米颗粒。但是,TiCl4用于水处理时尚未评估其毒性。研究了TiCl4絮凝过程的水生毒性,以评估混凝剂的环境安全性。进行了D. magna和费氏弧菌生物测定,以评估TiCl4絮凝后上清液的毒性。用人造废水,经过生物处理的污水和海水来研究TiCl4絮凝的毒性。结果显示,当进行TiCl4絮凝时,上清液的毒性非常低(未观察到的效应浓度= 100 mg / L,最低观察到的效应浓度= 150 mg / L暴露于D. magna和V. fischeri)。同样,从废水和海水絮凝污泥中回收的TiO2纳米颗粒也被发现毒性低。与商用TiO2纳米颗粒P-25相比,再生的TiO2纳米颗粒显示出低毒性值

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