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首页> 外文期刊>Journal of Cleaner Production >Application of ecofriendly cation exchangers (Gracilaria caudata and Gracilaria cervicornis) for metal ions separation and recovery from a synthetic petrochemical wastewater: Batch and fixed bed studies
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Application of ecofriendly cation exchangers (Gracilaria caudata and Gracilaria cervicornis) for metal ions separation and recovery from a synthetic petrochemical wastewater: Batch and fixed bed studies

机译:生态友好型阳离子交换剂(Gracilaria caudata和Gracilaria cervicornis)在合成石油化工废水中分离和回收金属离子中的应用:分批和固定床研究

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摘要

Red macro-algae Gracilaria caudata and Gracilaria cervicornis were used as cation exchangers for transition metals (copper, nickel and zinc) from a synthetic petrochemical wastewater. Scarce information is available in the literature about the use of red algae as natural cation exchanger and the effect of multicomponent aqueous matrix on the treatment performance. In the present work, the transition metals separation and recovery were evaluated considering the matrix effect. The ion exchange capacities for both red algae were near 1.2 mEq/g, which corresponds to the total amount of light metals present on the surface of raw algae. A heterogeneous model, considering 3 inflection points, was developed to enable the identification and quantification of the functional groups present on the biomass surface and the results obtained are in agreement with the total amount of light metals obtained by biomass digestion. Equilibrium and kinetic experiments were conducted using both raw algae and calcium loaded G. cervicornis. Cation exchange equilibrium was described by a Langmuir multicomponent model. The equilibrium affinity constants for the functional groups increases in the following order: nickel zinc copper. G. cervicornis showed a higher selectivity for the transition metals present in the synthetic petrochemical wastewater and it was used in the following tests. Calcium loaded G. cervicornis showed a higher affinity to copper than for zinc and nickel. Biomass regeneration was evaluated using several eluents (ultrapure water and 0.1 M solutions of hydrochloric acid, nitric acid, sulfuric acid, sodium chloride, calcium chloride and sodium hydroxide) and regenerant solutions (0.5 M solutions of calcium chloride and sodium chloride). Cation exchange breakthrough curves obtained from a column packed with raw G. cervicornis, led to a useful capacity of 0.25 and 0.24 mEq/g for the first and second operation cycles. A mass transfer model, considering a linear driving force model for intraparticle diffusion, was able to predict well the ion exchange process for all species studied at batch and packed bed systems. A treatment strategy using a column system in series was proposed to increase the treated water volume using G. cervicornis as a natural cation exchange resin, being possible the recovery of transition metals from separate solutions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:红色的大型藻类江南小菜和江西小菜用作合成石化废水中过渡金属(铜,镍和锌)的阳离子交换剂。文献中缺乏有关使用红藻作为天然阳离子交换剂以及多组分水性基质对处理性能的影响的信息。在目前的工作中,过渡金属的分离和回收率要考虑基质效应。两种红藻的离子交换容量均接近1.2 mEq / g,这与生藻表面上存在的轻金属总量相对应。建立了考虑3个拐点的异构模型,以能够鉴定和定量生物质表面上存在的官能团,并且获得的结果与通过生物质消化获得的轻金属总量一致。使用未加工的藻类和钙负载的G. cervicornis进行平衡和动力学实验。阳离子交换平衡用Langmuir多组分模型描述。官能团的平衡亲和常数按以下顺序增加:镍<锌铜。 G. cervicornis对合成石油化工废水中存在的过渡金属显示出更高的选择性,并在以下测试中使用。钙加载的G. cervicornis与铜和锌相比,对铜的亲和力更高。使用几种洗脱液(超纯水和0.1 M盐酸,硝酸,硫酸,氯化钠,氯化钙和氢氧化钠溶液)和再生溶液(0.5 M氯化钙和氯化钠溶液)评估生物质再生。从填充有原始G.cervicornis的柱子获得的阳离子交换穿透曲线导致在第一个和第二个操作循环中的有用容量分别为0.25和0.24 mEq / g。考虑到颗粒内扩散的线性驱动力模型,传质模型能够很好地预测在分批和填充床系统中研究的所有物种的离子交换过程。提出了使用串联的柱系统的处理策略,以使用宫颈葡萄球菌(G.cervicornis)作为天然阳离子交换树脂来增加处理后的水量,有可能从单独的溶液中回收过渡金属。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production 》 |2018年第2期| 1928-1945| 共18页
  • 作者单位

    Univ Fed Santa Catarina, Lab Transferencia Massa & Simulacao Numer Sistema, POB 476, BR-88040900 Florianopolis, SC, Brazil;

    Univ Fed Santa Catarina, Lab Transferencia Massa & Simulacao Numer Sistema, POB 476, BR-88040900 Florianopolis, SC, Brazil;

    Univ Porto, Chem Engn Dept, Fac Engn, Lab Separat & React Engn,Lab Catalysis & Mat LSRE, Rua Dr Roberto Frias, P-4200465 Oporto, Portugal;

    Univ Fed Santa Catarina, Lab Transferencia Massa & Simulacao Numer Sistema, POB 476, BR-88040900 Florianopolis, SC, Brazil;

    Univ Fed Santa Catarina, Lab Transferencia Massa & Simulacao Numer Sistema, POB 476, BR-88040900 Florianopolis, SC, Brazil;

    Univ Porto, Chem Engn Dept, Fac Engn, Lab Separat & React Engn,Lab Catalysis & Mat LSRE, Rua Dr Roberto Frias, P-4200465 Oporto, Portugal;

    Univ Fed Santa Catarina, Lab Transferencia Massa & Simulacao Numer Sistema, POB 476, BR-88040900 Florianopolis, SC, Brazil;

    Univ Fed Santa Catarina, Lab Transferencia Massa & Simulacao Numer Sistema, POB 476, BR-88040900 Florianopolis, SC, Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Natural cation exchanger; Red macro-algae; Multi-metal systems; Fixed-bed column; Treatment strategy;

    机译:天然阳离子交换剂;红色大型藻类;多金属系统;固定床色谱柱;处理策略;

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