比较了不同活化剂对不同农基炭对氰化物体外吸附的影响

Ofor Casimir Chijioke, Erejuwa Omotayo O, Akuodor Godwin Christian, Ramalan Mansur Aliyu, Aja Daniel Ogbonna, Ohanme Eugene Ohams, Shuneba Irene, Shu Elvis Neba
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引用次数: 0

摘要

目的:研究不同活化剂硝酸、氯化锌和磷酸对活性炭吸附氰化钾的影响。我们还研究了不同剂量的不同农源活性炭(椰子壳、稻壳、蓖麻籽壳、食用粘土和大蕉皮)对氰化物吸附的体外影响。材料与方法:制备的活性炭样品,每样0.5 g ~ 2.0 g,取1M氰化钾50ml移液至两个烧杯中。所得混合物搅拌1小时,并在室温下静置24小时。混合物用whatman滤纸过滤。滤液采用茚三酮法测定氰化物浓度,紫外分光光度法测定吸光度。然后使用标准氰化物浓度图将吸光度转换为氰化物浓度(mg/dl)。结果:除椰壳用氯化锌活化外,不同活性炭样品对氰化钾的吸附效果差异有统计学意义。无论实验中使用的剂量如何,从不同来源制备的活性炭样品的氰化物吸附都在相同的范围内。结论:不同活性炭样品的吸附能力随活性炭活化所用化学活化剂的类型而有显著差异。用HNO3和H3P04活化椰壳,其吸附能力最好。结果表明,本地制备的活性炭对氰化物的吸附效果优于标准的市售活性炭。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comparative study of the effects of various locally-prepared agro-based carbons on the In vitro adsorption of cyanide using different activating agents
Aim: The study investigated the effect of using different activating agents- Nitric acid, Zinc chloride and Phosphoric acid on the adsorption of potassium cyanide by activated charcoal. We also investigated the In vitro effect of various doses of activated charcoal from different agro-based sources (Coconut shell, Rice husk, Castor oil seed shell, Edible clay and Plantain peels) on the adsorption of cyanide. Materials and methods: 50ml of 1M potassium cyanide was pipetted into two beakers for each sample of the prepared activated charcoal ranging from 0.5 g to 2.0 g. The resultant mixtures were agitated for 1 hour and allowed to stand for 24 hours at room temperature. The mixtures were filtered using whatman filter paper. The filtrates were analyzed for cyanide concentration using ninhydrin method and the absorbance read with ultraviolet-spectrophotometry. The absorbance was then converted to cyanide concentrations in mg/dl using standard cyanide concentrations graphs. Results: The results showed some statistically significant differences in the potassium cyanide adsorption by the different samples of prepared carbon materials activated with different activating agents except for coconut shell activated with zinc chloride. The cyanide adsorption was found to be in the same range for the activated charcoal samples prepared from different sources irrespective of the doses used in the experiment. Conclusion: The adsorptive capacities of different samples of activated charcoal varied significantly with the type of chemical activating agents used in the activation of the carbon. Coconut shell activated with HNO3 and H3P04 showed the best adsorption capacity. The cyanide adsorption by the locally-prepared activated charcoal was found to be better than that of the standard commercial activated charcoal.
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