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Residual Organic Compound Removal from Aqueous Solution Using Commercial Coconut Shell Activated Carbon Modified by a Mixture of Seven Metal Salts

机译:使用七种金属盐混合物改性的商用椰壳活性炭从水溶液中去除残留的有机化合物

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The modified activated carbon (MAC) derived from commercial coconut shell activated carbon (AC) with mixture of seven metal salts was used as an adsorbent to remove target residual organic compound (sucrose) from aqueous solutions in batch modes. The results indicated that the highest adsorption capacity of sucrose onto MAC reached when the AC was modified at the ratio of impregnation of AC with mixture of seven metal salts, including nitrate silver (AgNO3), manganese nitrate (Mn (NO3)(2)), potassium bichromate (K2Cr2O7), nitrate cobalt (Co (NO3)(2)center dot 6H(2)O), nitrate copper (Cu (NO3)(2)center dot 3H(2)O), nitrate nickel (Ni (NO3)(2)center dot 6H(2)O) and nitrate iron (Fe (NO3)(2)center dot 9H(2)O) of 3% (w/w). The most appropriate conditions for sucrose adsorption onto MAC in batch experiments obtained at pH 7, contact time of 120 min, 800 mg MAC/50 mL of sucrose solution with initial concentration of 1500 mg/L. At this condition, the highest adsorption capacity of sucrose onto MAC reached 28.28 mg/g. The Langmuir, Freundlich, and Sips adsorption isothermal equilibrium models can adequately describe the adsorption properties of sucrose on MAC. The adsorption kinetic of sucrose onto MAC obeyed pseudo-first-order and pseudo-second-order models with the chemical sorption process. The saturated MAC was recovered by heat from an oven. The highest recovery efficiency of saturated MAC obtained at 180 A degrees C in 120 min. The highest adsorption capacity of sucrose onto recovered MAC was 24.31 mg/g, appropriately adsorption capacity of initial MAC.
机译:衍生自商业椰子壳活性炭(AC)和七种金属盐混合物的改性活性炭(MAC)被用作吸附剂,以分批方式从水溶液中去除目标残留有机化合物(蔗糖)。结果表明,以硝酸盐银(AgNO3),硝酸锰(Mn(NO3)(2))的7种金属盐的混合物以AC的浸渍比对AC进行改性时,达到了蔗糖对MAC的最高吸附容量。 ,重铬酸钾(K2Cr2O7),硝酸盐钴(Co(NO3)(2)中心点6H(2)O),硝酸盐铜(Cu(NO3)(2)中心点3H(2)O),硝酸镍(Ni( NO3)(2)中心点6H(2)O)和3%(w / w)的硝酸铁(Fe(NO3)(2)中心点9H(2)O)。在pH为7的分批实验中,最合适的蔗糖吸附在MAC上的条件是,接触时间为120分钟,800 mg MAC / 50 mL蔗糖溶液的初始浓度为1500 mg / L。在此条件下,蔗糖对MAC的最高吸附容量达到28.28 mg / g。 Langmuir,Freundlich和Sips吸附等温平衡模型可以充分描述蔗糖在MAC上的吸附特性。蔗糖在MAC上的吸附动力学遵循化学吸附过程,遵循伪一级和伪二级模型。通过从烤箱加热回收饱和的MAC。在120分钟内于180 A摄氏度下获得的饱和MAC的最高回收效率。蔗糖在回收的MAC上的最高吸附容量为24.31 mg / g,适当地满足初始MAC的吸附容量。

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