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首页> 外文期刊>ACS Omega >Adsorptive Removal of Se(IV) by Citrus Peels: Effect of Adsorbent Entrapment in Calcium Alginate Beads
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Adsorptive Removal of Se(IV) by Citrus Peels: Effect of Adsorbent Entrapment in Calcium Alginate Beads

机译:柑橘皮吸附(IV)的吸附:吸附剂在藻酸钙珠粒中的抑制效果

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Selenium (Se) contamination in natural waters impacted by anthropogenic activities is becoming a prevalent and widespread problem. Investigation of novel, low-cost, and sustainable food-waste-sourced adsorbents for Se removal has largely been unexplored. Here, we report on the Se(IV) biosorption from a liquid solution using three waste-derived/low-cost biosorbents, namely citrus peels (bare), Ca-alginate gel beads, and Ca-alginate-citrus peels composite beads ([email?protected]). The entrapment of citrus peels by Ca-alginate not only provided a structural framework for the citrus peel particles but also preserved the high-efficiency Se(IV) removal property of the citrus peels. From the modeling results, it was established that Se(IV) biosorption followed the fixed-film diffusion model, along with pseudo-second-order kinetics. Investigation of pH impacts along with initial dosing of sorbent/sorbate demonstrated that all of the three biosorbents exhibited optimum biosorption of Se(IV) at pH 6?8, 50–75 mg·L~(–1) of Se(IV), and 1–5 mg·L~(–1) of biosorbent. Overall, the maximum Se(IV) biosorption capacities were measured to be 116.2, 72.1, and 111.9 mg·g~(–1) for citrus peels, Ca-alginate, and [email?protected], respectively, with citrus peels (bare and immobilized) showing among the highest reported values in the literature for Se(IV) adsorption. This work provides a platform for the future development of an efficient filtration system using [email?protected] as an inexpensive, novel, and sustainable biosorbent to treat Se(IV) contaminated water.
机译:受到人为活动影响的天然水域中的硒污染正在变得普遍,普遍存在。对新型,低成本和可持续的食物废弃物 - 废气吸水剂的调查在很大程度上是未开发的。在此,我们向使用三种废物衍生/低成本的生物吸收剂,即柑橘剥离(裸),Ca-藻酸盐凝胶珠和Ca-藻酸盐 - 柑橘剥离复合珠子([电子邮件?受保护])。通过Ca-藻酸盐夹杂物的夹杂物不仅为柑橘剥离颗粒提供了结构框架,而且还保留了柑橘皮的高效SE(IV)去除性。从建模结果来看,建立了SE(IV)的生物吸附,然后是固定膜扩散模型以及伪二阶动力学。对pH撞击的研究以及初始给药的吸附剂/山梨酸酯的调查表明,所有三种生物吸水剂在pH 6〜8,50-75mg·l〜(-1)的SE(IV)下表现出最佳的SE(IV)生物吸附,生物吸附剂的1-5毫克·L〜(-1)。总的来说,测量最大SE(IV)生物吸收能力为116.2,72.1和111.9 mg·g〜(-1)分别用于柑橘皮,CA-alaIn酸盐和[电子邮件?保护],柑橘皮(裸露)并固定)显示SE(IV)吸附文献中的最高报道的值。这项工作为未来使用[电子邮件吗?保护]作为一种廉价,新颖,可持续的生物吸附剂来治疗SE(IV)受污染水的平台。

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