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A multifaceted aggregation and toxicity assessment study of sol-gel-based TiO2 nanoparticles during textile wastewater treatment

机译:溶胶-凝胶基二氧化钛纳米粒子在纺织废水处理中的多方面聚集与毒性评估研究

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摘要

Innovative textiles have been concern of emerging risk of nanoparticles (NPs) to human and environment. This study aimed to investigate the aggregation, removal and biological, and ecotoxicological effects of sol-gel-based TiO2 NPs while the treatment of textile wastewater. Fe(II) and alum coagulants were applied for the removal of spiked TiO2 NPs from textile wastewater. Particle size distribution, absorbance values (UV-vis range), and residual TiO2 NPs were followed to define aggregation mechanism, including pH variation during treatment of wastewater. The effect of TiO2 on activated sludge treatment was followed by monitoring of oxygen uptake rate (OUR). Ecotoxicity of sol-gel and coagulated samples was observed by Ceriodaphnia magna immobilization test. Adjustment of pH to 8 enlarged mean particle size distribution of sol-gel-based TiO2 NPs from 30 to 450nm. After alum and Fe(II) coagulations, average particle size distributions were observed to be 650 and 960nm, respectively. Coagulation with alum and Fe(II) resulted over >95% removal of TiO2 from biologically treated textile wastewater (BTTWW). The value for residual TiO2 concentration in BTTWW was reduced from 120g/L to around 8g/L TiO2 NPs exhibited slighto toxicity on the OUR while toxicity to Ceriodaphnia dubia increased in some coagulated samples, most probably due to higher residual coagulant concentrations.
机译:创新的纺织品一直关注着纳米颗粒(NPs)对人类和环境的新兴风险。这项研究旨在调查在处理纺织废水时,溶胶-凝胶基TiO2 NP的聚集,去除以及生物学和生态毒理作用。 Fe(II)和明矾凝结剂用于从纺织废水中去除加标的TiO2 NP。遵循粒度分布,吸光度值(紫外可见范围)和残留的TiO2 NPs定义聚集机制,包括废水处理过程中的pH值变化。 TiO2对活性污泥处理的影响随后是对氧气吸收率(OUR)的监测。通过大步藻的固定化试验观察到了溶胶-凝胶和凝结样品的生态毒性。将pH值调整为8,可将基于溶胶-凝胶的TiO2 NP的平均粒径分布从30扩大到450nm。在明矾和Fe(II)凝结后,平均粒径分布分别为650nm和960nm。与明矾和Fe(II)混凝可从生物处理的纺织废水(BTTWW)中去除超过95%的TiO2。 BTTWW中残留TiO2的浓度值从120g / L降低至8g / L左右。TiO2 NPs对OUR的毒性很小/没有毒性,而在某些凝结样品中对杜鹃藻的毒性增加了,这很可能是由于残留凝结剂浓度较高所致。

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