Remoción de fosfato de ambientes acuáticos utilizando nanopartículas modificadas de Fe-Co/Quitosan

Tadeh Issaian, Julia Costanza Relles Cuellar
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引用次数: 3

Abstract

Chitosan modified iron-cobalt nanoparticles (CMNPs) were used for phosphate adsorption in synthetic wastewater and river water from the Jordan river in Tunja, Boyacá, Colombia. Phosphate adsorption by CMNPs reached 52.7% in synthetic wastewater and 58.7% in water taken from the Jordan river. This indicates that the CMNPs ability to adsorb phosphates is independent of other components in river water. Additionally, adsorption measurements were taken using the average pH, temperature, and phosphate concentration of the river water in order to ensure results comparable to those of (Kim 2017). A maximum adsorption rate of 0.138mg of phosphate per gram of adsorbent was found with the majority of adsorption taking place within the first 15 minutes of contact with the adsorbent. The adsorption of phosphates using CMNPs presents an effective and environmentally friendly solution to reducing phosphates in aquatic ecosystems without altering the characteristics of river water.
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用改性Fe-Co/壳聚糖纳米颗粒从水生环境中去除磷酸盐
研究了壳聚糖修饰铁钴纳米粒子(CMNPs)对合成废水和约旦河水中的磷酸盐的吸附效果。CMNPs对合成废水和约旦河水的磷酸盐吸附率分别为52.7%和58.7%。这表明CMNPs对磷酸盐的吸附能力与河水中的其他成分无关。此外,利用河水的平均pH值、温度和磷酸盐浓度进行吸附测量,以确保与(Kim 2017)的结果相当。每克吸附剂对磷酸盐的最大吸附率为0.138mg,大部分吸附发生在与吸附剂接触的前15分钟内。在不改变河流水质特性的前提下,利用CMNPs吸附磷酸盐是一种有效且环保的水生生态系统中磷酸盐的解决方案。
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