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Adsorption of Maillard reaction products from aqueous solutions and sugar syrups using adsorbent resin

机译:使用吸附树脂从水溶液和糖浆中吸附美拉德反应产物

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摘要

Adsorption of the Maillard reaction products (MRP) onto a styrene-divinylbenzene copolymer based adsorbent resin (AR) was studied. The effects of various parameters such as temperature, AR concentration, contact time, and sugar concentration were investigated. Among various isotherms, the equilibrium data fitted best to the GAB isotherm which indicated a multilayer adsorption of MRP onto AR. The temperature strongly influenced the adsorption process. The thermodynamic parameters E_a, ΔH, ΔG and ΔS indicated that the adsorption process was exothermic and spontaneous process which is favored at lower temperatures, and also occurred by both physical adsorption and weak chemical interactions. Adsorption of MRP onto AR obeyed the pseudo-second-order kinetic model and occurred by both surface sorption and intraparticle diffusion. The pore diffusion controlled the adsorption process at low sugar concentrations while the film diffusion governed the adsorption mechanism at high sugar concentrations. It was concluded that the adsorption process should be performed at sugar concentrations lower than 50% to overcome the film resistance.
机译:研究了美拉德反应产物(MRP)在苯乙烯-二乙烯基苯共聚物基吸附树脂(AR)上的吸附。研究了温度,AR浓度,接触时间和糖浓度等各种参数的影响。在各种等温线中,最适合GAB等温线的平衡数据表明MRP在AR上有多层吸附。温度强烈影响吸附过程。热力学参数E_a,ΔH,ΔG和ΔS表明,吸附过程是放热和自发过程,在较低的温度下更有利,并且也是物理吸附和弱化学相互作用共同发生的。 MRP在AR上的吸附遵循伪二级动力学模型,并且通过表面吸附和颗粒内扩散而发生。在低糖浓度下,孔扩散控制了吸附过程,而在高糖浓度下,膜扩散决定了吸附机理。结论是,吸附过程应在糖浓度低于50%的条件下进行,以克服膜阻力。

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