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Removal of Lead and Cadmium from Aqueous Solutions by Banana Peel Biochar

机译:由香蕉剥离生物炭加上水溶液中的铅和镉

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Heavy metals are ubiquitous environmental pollutants to influence on changing the different environmental compartments including air, water and soil. Due to the toxicity, persistence and bioavailability status, metal contamination is a serious issue for environment especially in terrestrial and aquatic systems. Biosorption of heavy metals is the physicochemical removal process of heavy ions or their compounds, from wastewater by using biosorbents. In this point of view, to remove lead and cadmium byeco-friendly manner banana peel biochar powder based biosorbents has been taken for the present investigation, and used Atomic Adsorption Spectrophotometer for metal estimation. Different electrochemical and biochemical characterizations such as pH, EC,CEC, particle size, zeta potential, organic carbon, crude protein, moisture content, dry matter, ash content and elemental composition of banana peel biochar was analyzed through standard methods. The SEM images determined that banana peel biochar contain irregular porous surface area, and also the FTIR peaks showed that banana peel biochar has C-H, =CHand C-CI functional groups which has important role in adsorption of metals. The batch experiment was conducted to the effect of pH, metal ion concentration and contact time. The highest adsorption of Pb (83.45%) and Cd (89.87%) was observed at pH 7 and 75 ppm concentration, and the maximum adsorption of both elements recorded at 6 hours contact time. The banana peel biochar has high capacity of heavy metals adsorption from wastewater such as Pb (II) and Cd (II), but the adsorption efficiency of Cd was higher than Pb.
机译:重金属是普遍存在的环境污染物,以影响改变不同的环境隔离区,包括空气,水和土壤。由于毒性,持久性和生物利用度地位,金属污染是环境的严重问题,特别是在陆地和水生系统中。重金属的生物吸附是通过使用生物吸收性来自废水的重离子或其化合物的物理化学除去方法。在这一观点来看,为了除去铅和镉,镉通过Eyec友好的方式Banana Peel Biochar粉末的生物吸收剂已被用于本发明的研究,并使用原子吸附分光光度计进行金属估计。通过标准方法分析了不同的电化学和生化特征,例如pH,EC,CEC,粒度,Zeta电位,有机碳,粗蛋白质,水分含量,干物质,灰分含量和基元组成。 SEM图像确定香蕉剥离生物炭含有不规则的多孔表面积,并且FTIR峰也显示出香蕉皮生物炭具有C-H,= CANC C-CI官能团,其在金属的吸附中具有重要作用。批量实验是对pH,金属离子浓度和接触时间的影响。在pH7和75ppm浓度下观察到Pb(83.45%)和Cd(89.87%)的最高吸附,并且在6小时接触时间内记录的两个元素的最大吸附。香蕉剥离生物炭具有高容量从废水的重金属吸附,如Pb(II)和CD(II),但CD的吸附效率高于Pb。

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