预处理固定化Chara Algae (C. vulgaris)对水溶液中铜和铅的生物吸附效果

Salah N. Farhan
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引用次数: 0

摘要

本研究评估了化学修饰的固定化藻(C. vulgaris)去除水溶液中铜和铅的潜力。制备了Chara藻类,并对其去除重金属离子的能力进行了研究。在间歇式模式下,研究了pH、温度、接触时间和藻类剂量等因素对吸附效率的影响。结果表明:在pH值(5.0 ~ 6.0)、温度(25 ~ 30)℃条件下,金属吸附过程发生迅速,吸附金属离子的顺序为Cu>pb;结果表明,在解吸金属离子过程中,采用0.05正态浓度的低浓度硝酸处理是有效的。因此,对于藻类的再生,0.2 M的氢氧化钠是非常有效的。再生藻类进行了5次循环生物吸附,脱矿效果不受影响。FTIR吸收光谱分析表明,藻类中存在的所有基团都对金属离子的主要生物吸收负责。当采用改性工艺时,吸附工艺规范更有效,因为使用碱性处理时,藻类对铅和铜的最大吸附在每克藻类6.5-10.3 mg之间。而酸处理使吸附剂的用量减少4.2 ~ 5.8 mg / g藻类;吸附过程很快,在前15分钟内吸附率达到90%。在pH低至2.0的极低水平下,观察到重金属的吸附。藻类对废水中的铅、铜等轻金属离子有较好的去除效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficiency of Pre-Treated Immobilized Chara Algae (C. vulgaris) for Biosorption of Copper and Lead from Aqueous Solutions
The present study evaluates the potential of chemically modified, immobilized Chara algae (C. vulgaris) to remove copper and lead from aqueous solutions. Chara algae were prepared and studied for their ability to remove heavy metal ions prepared solutions. In a batch mode, several factors affecting the adsorption process such pH, temperature, contacting period and algal dose on adsorption efficiency were studied. Results showed that the metal adsorption process takes place quickly at pH values (5.0-6.0), temperature level (25-30) oC and the order of the accumulated metal ions is Cu>pb.The results showed that the handling with low concentration of nitric acid at 0.05 normality was effective in the process of desorbing metal ions. So as for regeneration of algae, 0.2 M sodium hydroxide is very effective. The regenerative algae were used for five cycles of biosorption, without losing its demineralization efficacy. FTIR absorption spectroscopic analyzes showed that all groups that present in the algae are responsible for the main biological absorption of metal ions.Adsorption process specifications are more effective when using modification processes, as the maximum adsorption of algae for both lead and copper was within a range of 6.5-10.3 mg per gram of algae when using the alkaline treatment. While the acid treatment reduced the amount of adsorbent by 4.2-5.8 mg per gram algae; The adsorption process is fast and occurs by 90% within the first 15 min. Heavy metal adsorption was observed at very low levels at pH values as low as 2.0. Algae are effective in removing lead, copper and other light metal ions from wastewater.
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