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首页> 外文期刊>Reactive & Functional Polymers >Kinetic study of acid red 'dye' removal by activated carbon and hyper-cross-linked polymeric sorbents Macronet Hypersol MN200 and MN300
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Kinetic study of acid red 'dye' removal by activated carbon and hyper-cross-linked polymeric sorbents Macronet Hypersol MN200 and MN300

机译:活性炭和超交联聚合物吸附剂去除酸性红“染料”的动力学研究Macronet Hypersol MN200和MN300

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摘要

The search for suitable sorbents for persistent organic pollutants (like dyes) removal from aqueous solutions has prompted the evaluation of polymeric resins incorporating new properties that solve many of the existing problems when using granular activated carbon (GAC). A new type of non-functionalized macroporous hyper-cross-linked polymers Hypersol Macronet (MN200 and MN300) has been evaluated and kinetics measurements on the extraction of azo dye (Acid red 14) were made. Analyses of the respective batch rate data with two kinetic models, the homogenous particle diffusion model (HPDM) and the shell progressive model (SPM) were carried out. Sorbent phase was confirmed as the rate-determining step of the dye sorption process. Effective particle diffusion coefficients (D-(eff)) were determined from the rate data proposed by both models. The D_(eff) values from both HPMD and SPM equations varied from 5 × 10~(13) to 4 × 10~(16) m~2 s~(-1). Weber and Morris intra-particle diffusion model showed a double contribution of the surface and pore diffusivities to the sorption process. Pore and surface diffusivities were calculated using a heterogeneous model. Hyper-cross-linked polymers reported a double contribution (pore and surface) to the overall diffusion process meanwhile GAC coefficients indicate a surface diffusion as the controlling mechanism.
机译:寻找从水溶液中去除持久性有机污染物(如染料)的合适吸附剂,促使人们对具有新特性的聚合树脂进行了评估,这些新特性解决了使用颗粒状活性炭(GAC)时存在的许多问题。评估了一种新型的非功能化大孔超交联聚合物Hypersol Macronet(MN200和MN300),并进行了偶氮染料(酸性红14)的萃取动力学测量。用两种动力学模型,均质颗粒扩散模型(HPDM)和壳层渐进模型(SPM),对各自的批处理率数据进行了分析。吸收相被确定为染料吸附过程的速率决定步骤。有效粒子扩散系数(D-(eff))由两个模型提出的速率数据确定。 HPMD和SPM方程的D_(eff)值从5×10〜(13)到4×10〜(16)m〜2 s〜(-1)不等。 Weber和Morris的颗粒内扩散模型显示了表面和孔扩散率对吸附过程的双重贡献。使用异质模型计算孔和表面扩散率。超交联聚合物对整个扩散过程有双重贡献(孔和表面),而GAC系数表明表面扩散是控制机制。

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