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Preparation of N,N,N-trimethyl-1-adamantylammonium hydroxide with high purity via bipolar membrane electrodialysis

机译:通过双极膜电渗析制备N,N,N-三甲基-1-氢氧化铵氢氧化铵,PIPOL膜电渗析

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摘要

N,N,N-trimethyl-1-adamantylammonium hydroxide (TMAdaOH) is an organic alkali compound with important applications in the catalyst industry. In this study, bipolar membrane electrodialysis (BMED) was employed for the preparation of TMAdaOH from its halide with a BP-C1-Al-C2-BP four-compartment configuration. The effects of operating conditions (feed concentration and current density) on the performance of BMED were investigated. The results indicated that at optimum operational conditions (feed concentration of 0.3 mol/L and current density of 8 mA.cm(-2)), a conversion rate of 76.8% can be obtained, with an energy consumption of only 3.22 kWh/kg. The purity of product is extremely high and Cl- content in the TMAdaOH solution can reach as low as 68 ppm. Due to the importance of cation-exchange membrane to the process, different types of cation membrane were compared. In addition, repeated experiments were conducted to prove the stability of BMED process.
机译:N,N,N-三甲基-1-金刚氨基铵(TMADAOH)是一种有机碱化合物,具有催化剂行业的重要应用。 在该研究中,使用BP-C1-Al-C2-BP四室构造,使用双极膜电渗析(BMED)从其卤化物中制备TmadaOH。 研究了操作条件(进料浓度和电流密度)对BMED性能的影响。 结果表明,在最佳操作条件下(进料浓度为0.3 mol / L和电流密度为8 mA.CM(-2)),可以获得76.8%的转化率,能量消耗仅为3.22千瓦时/千克 。 产品的纯度极高,TMADAOH溶液中的CL-含量可达68ppm。 由于阳离子交换膜对该过程的重要性,比较了不同类型的阳离子膜。 另外,进行重复的实验以证明BMED过程的稳定性。

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