吸附剂表征及反应指标对废水中镉(II)、铬(VI)离子吸附的影响

D O Ochi, A K Babayemi, L O Ekebafe
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引用次数: 1

摘要

研究了改性壳聚糖和车前草皮碳基吸附剂对废水中重金属吸附性能的影响。将大蕉皮炭化,磷酸活化,活性炭按不同比例分离,并浸渍不同比例的壳聚糖,制成复合生物吸附剂。采用脱蛋白、脱矿和脱乙酰技术从蜗牛壳中提取壳聚糖。采用傅里叶变换红外(FTIR)、能量色散x射线(EDAX)、x射线衍射(XRD)、扫描电镜(SEM)和Brunauer-Emmett-Teller (BET)技术对吸附剂进行了分析。考察了工艺参数对废水pH、吸附剂投加量、温度、初始浓度和接触时间的影响。在生物吸附剂配比中,75%草酸改性壳聚糖-25%活化大蕉皮(ht - app5)为最佳配比,影响去除率的最佳工艺参数为时间(60 ~ 65min)、吸附剂用量(2 ~ 2.125g/dm3)、pH(6 ~ 6.5)、废水初始浓度(20 ~ 85mg/dm3)和温度(308 ~ 325k)。结果表明:对Cr(VI)的最大吸附量分别为90.9090、55.5556和142.8571mg/g;对CHT、APP1和CHT- app5的最大吸附量分别为62.500、83.3333和43.4783mg/g;结果表明,该共混物具有作为高效低成本生物吸附剂去除废水中重金属的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorbents Characterization and Effect of Reaction Indices on The Uptake of Cadmium (II) and Chromium (VI) Ions From Wastewater
The effect of reaction variables on the uptake of heavy metals from wastewater using modified chitosan and plantain peels carbon based adsorbents was explored in this study. Plantain peels were carbonized, activated with phosphoric acid and the activated carbon was separated into various proportions and impregnated with various percentages of chitosan to make the composite biosorbents. Deproteinization, deminerization, and deacetylation techniques were used to extract chitosan from a snail shell. Fourier transform infrared (FTIR), energy dispersive X-ray (EDAX), X-ray diffraction (XRD), scanning electron microscopy (SEM) and Brunauer-Emmett-Teller (BET) techniques were used to analyze the adsorbents. Effects of process parameters: pH of wastewater, adsorbent dosage, temperature, initial concentration and contact time were determined. In the blending ratios of the biosorbents, 75% oxalic acid modified chitosan-25% activated plantain peel (CHT-APP5) was best blend and the optimum process variables for the removal efficiency were time (60-65mins), adsorbent dosage (2-2.125g/dm3), pH(6-6.5), initial concentration of wastewater(20-85mg/dm3) and temperature (308-325K). The results obtained showed that the maximum adsorption capacities of 90.9090, 55.5556 and 142.8571mg/g for Cr(VI) while 62.500, 83.3333 and 43.4783mg/g Cd(II) were obtained for CHT, APP1 and CHT-APP5 respectively. The results showed that blends have the potential to be used as alternative efficient low-cost biosorbent in the removal of heavy metals from wastewater.
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