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Effect of pH and complementary ion concentration on nitrate removal using puroliteA400 Resin impregnated Cu in batch system

机译:pH与互补离子浓度对批料中丙烯酸浸渍Cu的硝酸盐去除的影响

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The total nitrogen content in water bodies should be below 50 mg NO3~-/L (11.3 mgN/l) World Health Organization (WHO) 2006. The content of nitrogen exceeding the quality standard threshold will cause damage to the aquatic ecosystem and be carcinogenic to humans. The Purolite A-400 resin will be modified with Cu metal by batch method to see the adsorption allowance of nitrate in synthetic liquid waste with nitrate concentration of 50 mg/l. This study will evaluate the effect of pH and complementary ions on the adsorption process. From the result of the research, the second order pseudo model is the most suitable adsorption kinetics model. For the adsorption isotherms the most suitable model is the Freundlich adsorption isotherm model. The optimum pH conditions were at the range of 8.5. The addition of complementary ions sulfate and phosphate did not show any significant change, but sulfate is the most effective complementary ion with a content of 20 mg/l.
机译:水体的总氮含量应低于50毫克NO3〜 - / L(11.3 Mgn / L)世界卫生组织(世卫组织)2006年。超过质量标准阈值的氮素含量将对水生生态系统造成致癌物质对人类。通过分批方法将铜矿A-400树脂用Cu金属进行改性,以便在合成液体废物中用硝酸盐浓度的50mg / L进行硝酸盐的吸附余量。本研究将评估pH和互补离子对吸附过程的影响。从研究结果来看,二阶伪模型是最合适的吸附动力学模型。对于吸附等温线,最合适的模型是Freundlich吸附等温模型。最佳pH条件为8.5。添加互补离子和磷酸盐并未显示出任何显着的变化,但硫酸盐是最有效的互补离子,其含量为20mg / l。

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