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An ecofriendly approach towards remediation of high lead containing toxic industrial effluent by a combined biosorption and microfiltration process: a total reuse prospect

机译:结合生物吸附和微滤工艺修复高铅含毒工业废水的环保方法:总的再利用前景

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An environment friendly approach involving biosorption, integrated with ceramic membrane-based microfiltration, was employed for treatment of high lead-containing printing industry effluent. Dried sludge from a common effluent treatment plant of a tannery was used for the preparation of a cost-effective biosorbent. The biosorption capacity for lead obtained was about 199mg/g at pH 4.2 in a synthetic solution with initial lead concentration of about 1,000mg/L. With a significantly high concentration of lead in effluent, i.e. about 1,000mg/L, about 99% removal could be achieved using 5g/L of biosorbent dose. Microfiltration study was conducted using indigenously developed ceramic membranes. The combined process resulted in 99.9-99.5% reduction of total organic carbon and chemical oxygen demand, respectively. The treated effluent was applied in agriculture by conducting the seed quality assessment test. It was observed that germination (%) of three types of seeds, viz. chickpea, soybean, and dry white peas on exposure to treated effluent was comparable to that of control. In the case of the untreated effluent germination, (%) decreased with increasing concentration, i.e. 5-25%. The treated effluent did not affect the protein content of the seeds as compared to the control. The spent biosorbent was utilized for manufacturing of bricks. About 30% of the spent biosorbent in clay could be used to prepare bricks with reasonable compressive strength. The overall study indicated potential of the integrated process with complete recycling approach with respect to a toxic industrial effluent.
机译:一种涉及生物吸附的环保方法与基于陶瓷膜的微滤技术相结合,用于处理含铅量高的印刷工业废水。来自制革厂常见废水处理厂的干污泥用于制备经济高效的生物吸附剂。在pH值为4.2的合成溶液中,初始铅浓度约为1,000mg / L时,所获得的铅的生物吸附能力约为199mg / g。当废水中的铅浓度很高时,即约1,000mg / L,使用5g / L的生物吸附剂剂量可以实现约99%的去除。使用本地开发的陶瓷膜进行微滤研究。合并的过程分别使总有机碳和化学需氧量减少了99.9-99.5%。通过进行种子质量评估测试,将处理后的废水用于农业。观察到三种种子的发芽率(%)。鹰嘴豆,大豆和干白豌豆暴露于处理过的废水后,与对照组相当。在未经处理的废水中发芽的情况下,(%)随着浓度的增加而降低,即5-25%。与对照相比,处理后的流出物不影响种子的蛋白质含量。用过的生物吸附剂被用于制造砖块。粘土中约30%的废生物吸附剂可用于制备具有合理抗压强度的砖块。总体研究表明,针对有毒工业废水,采用完整回收方法的集成工艺具有潜力。

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