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首页> 外文期刊>Journal of Hazardous Materials >Process development for the removal and recovery of hazardous dye erythrosine from wastewater by waste materials—Bottom Ash and De-Oiled Soya as adsorbents
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Process development for the removal and recovery of hazardous dye erythrosine from wastewater by waste materials—Bottom Ash and De-Oiled Soya as adsorbents

机译:利用废料(底灰和脱油大豆作为吸附剂)从废水中去除和回收有害染料赤藓红的工艺开发

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摘要

Erythrosine is a water-soluble xanthene class of dye. It is widely used as colorant in foods, textiles, drugs and cosmetics. It is highly toxic, causes various types of allergies, thyroid activities, carcinogenicity, DNA damage behaviour, neurotoxicity and xenoestrogen nature in the humans and animals. The photochemical and biochemical degradation of the erythrosine is not recommended due to formation of toxic by-products. The present paper is an attempt to remove erythrosine from wastewater using adsorption over Bottom Ash—a power plant waste and De-Oiled Soya—an agricultural waste. Under the batch studies, effect of concentration of dye, temperature, pH of the solution, dosage of adsorbents, sieve size of adsorbents, etc., have been studied for the uptake of the dye over both adsorbents. The adsorption process verifies Langmuir and Freundlich adsorption isotherms in both the cases and based on the data different thermodynamic parameters have been evaluated. Batch studies also include kinetic measurements, rate constant study, mass transfer behaviour and establishment of mechanistic pathway for both the cases. For the bulk removal of the dye column operations have been carried out and breakthrough capacities of the Bottom Ash and De-Oiled Soya columns have been calculated. Attempts have also been made for the recovery of the adsorbed dye from exhausted columns by eluting dilute NaOH and more than 90% of the dye was recovered.
机译:赤藓红是水溶性x吨类染料。它被广泛用作食品,纺织品,药品和化妆品中的着色剂。它具有剧毒,会引起人类和动物各种类型的过敏,甲状腺活动,致癌性,DNA损伤行为,神经毒性和异雌激素性质。由于形成有毒副产物,不建议赤藓红的光化学和生物化学降解。本文试图通过吸附在电厂废渣和农业用废油大豆上的底灰来去除废水中的赤藓红。在分批研究中,已经研究了染料浓度,温度,溶液的pH,吸附剂的剂量,吸附剂的筛孔尺寸等对两种吸附剂上染料吸收的影响。在两种情况下,吸附过程均验证了Langmuir和Freundlich吸附等温线,并根据数据评估了不同的热力学参数。批处理研究还包括动力学测量,速率常数研究,传质行为和这两种情况的机械途径的建立。为了大批量除去染料塔,已经进行了操作,并计算了底灰和脱油大豆塔的突破能力。还尝试通过洗脱稀NaOH从耗尽的柱中回收吸附的染料,并且回收了超过90%的染料。

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