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Recovery of benzaldehyde from aqueous streams using extractant impregnated resins

机译:使用萃取剂浸渍树脂从水流中回收苯甲醛

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The performance of Extractant Impregnated Resin (EIR) technology for extraction of aldehydes from aqueous solutions has been investigated. The extraction capabilities of several different aliphatic and aromatic primary amines towards aldehydes were tested and compared. Aliphatic amines showed high affinity. The most promising extractant, Primene~® JMT, was immobilized in a porous particle. As a solid support three different macroporous adsorbents were tested, XAD-16, MPP and Stamypor. Their capacities for the removal of aldehydes were compared with the non-impregnated resin and the resin impregnated with the non-reactive solvent. It was shown that the addition of a reactive extractant can increase the adsorption capacity of an otherwise poor adsorbent for several orders of magnitude. The capacity for the removal of aldehydes was increased with the increase of amine loading on the particle. Temperature influence on the sorption of benzaldehyde on fully impregnated MPP was studied. It was shown that with temperature increase, sorption capacity is increased. The stability of EIRs regarding the loss of the extractant due to the leakage in water was also studied. It was shown that immobilization reduces the extractant's solubility in water. Sorption kinetics was investigated for fully impregnated XAD-16 and MPP. The modified shrinking core model was used to determine the rate controlling step and it was shown that this sorption is most likely controlled by both chemical reaction and diffusion in the particle.
机译:研究了萃取剂浸渍树脂(EIR)技术从水溶液中萃取醛的性能。测试并比较了几种不同的脂肪族和芳香族伯胺对醛的萃取能力。脂肪胺显示出高亲和力。最有前途的萃取剂Primene JMT固定在多孔颗粒中。作为固体载体,测试了三种不同的大孔吸附剂XAD-16,MPP和Stamypor。将它们除去醛的能力与未浸渍的树脂和用非反应性溶剂浸渍的树脂进行了比较。结果表明,添加反应性萃取剂可以将原本较差的吸附剂的吸附能力提高几个数量级。醛的去除能力随颗粒上胺含量的增加而增加。研究了温度对完全浸渍MPP吸附苯甲醛的影响。结果表明,随着温度的升高,吸附量增加。还研究了由于水渗漏而引起的萃取剂损失的EIR稳定性。结果表明,固定化降低了萃取剂在水中的溶解度。研究了完全浸渍的XAD-16和MPP的吸附动力学。修改后的收缩核模型用于确定速率控制步骤,结果表明这种吸附最有可能通过化学反应和颗粒中的扩散来控制。

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