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Application of Chemically Modified and Unmodified Waste Biological Sorbents in Treatment of Wastewater

机译:化学改性和未改性废物生物吸附剂在废水处理中的应用

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Protein wastes (feathers, goat hair) and cellulosic wastes (corn cob, coconut husks) were collected and washed with detergent solution, thoroughly rinsed and sun dried for 2 days before drying in an oven, and then ground. One-half of ground material was carbonized at a maximum temperature of 500°C after mixing with H2SO4. The carbonized parts were pulverized; both carbonized and uncarbonized sorbents were sieved into two particle sizes of 325 and 625 μm using mechanical sieve. Sorbents of a given particle size were packed into glass column.Then, textile wastewater that had its physicochemical parameters previously determined was eluted into each glass column and a contact time of 60 and 120 mins was allowed before analysis. Results showed 48.15–99.98 percentage reduction ofNO3−, EC, Cl−, BOD, COD, DO, TSS, and TDS, 34.67–99.93 percentage reduction ofNO3−, EC, Cl−, BOD, COD, DO, TSS, and TDS, 52.83–97.95 percentage reduction of Pb2+, Ni2+, Cr3+and Mn2+and 34.59–94.87 percentage reduction of Pb2+, Ni2+, Cr3+and Mn2+. Carbonization, small particle, size and longer contact time enhanced the sorption capabilities of the sorbents. These show that protein and cellulosic wastes can be used to detoxify wastewater.
机译:收集蛋白质废物(羽毛,山羊发)和纤维素废物(玉米棒,椰子壳)并用洗涤剂溶液洗涤,彻底冲洗并在烘箱中干燥之前晒干2天,然后研磨。在用H 2 SO 4混合后,将一半的接地材料在500℃的最高温度下碳化。碳化部件粉碎;使用机械筛,将碳化和非碳化的吸附剂筛分成325和625μm的两种粒度。将给定粒径的吸附剂填充到玻璃柱中。然后,将先前确定其物理化学参数的纺织废水洗脱到每个玻璃柱中,并且在分析之前允许接触时间为60和120分钟。结果表明,NO3 - ,EC,CL-,BOD,COD,TSS和TDS的百分比减少了48.15-99.98百分比,NO3-,EC,CL-,BOD,COD,DO,TSS和TDS减少了34.67-99.93百分比, 52.83-97.95 Pb2 +,Ni2 +,Cr3 +和Mn2 +和34.59-94.87百分比减少Pb2 +,Ni2 +,Cr3 +和Mn2 +的百分比。碳化,小颗粒,尺寸和更长的接触时间增强了吸附剂的吸附能力。这些表明蛋白质和纤维素废物可用于解毒废水。

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