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首页> 外文期刊>Separation and Purification Technology >Obtaining high-added value products from the technical cashew-nut shell liquid using electrochemical oxidation with BDD anodes
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Obtaining high-added value products from the technical cashew-nut shell liquid using electrochemical oxidation with BDD anodes

机译:使用电化学氧化与BDD阳极从技术腰果壳液中获得高附加值产品

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摘要

The electro-organic synthesis is currently experiencing a renaissance due to the tremendous contributions of various electrocatalytic materials as well as the use of electric current as an inexpensive and suitable reagent to drive the electrosynthetic transformations, avoiding conventional chemical oxidizers or reducing agents. Consequently, electrosynthesis has a significant technical impact due to its advantages such as versatility, environmental compatibility (possibility of recovering and recycling non-converted substrates), automation (switching on or off electric current), inherent safety and potential cost effectiveness among others. Although many novel electrode materials have been developed and established in electro-organic synthesis, diamond films (as boron doped diamond (BDD) electrodes) emerge as a novel and sustainable solution in selective electrochemical transformations for value-added organic products. For this reason, in this work, the use of BDD to treat technical cashew-nut shell liquid (t-CNSL) was proposed to favor its conversion on high-added value products such as carboxylic acids. The evolution of five carboxylic acids was followed over time for the experiments of the three different current densities using 0.1% of t-CNSL in 1.00 mol L-1 NaOH. At 40 mA cm(-2) , the most notorious increase in the organic acids concentrations took place during the two last hours achieving electrochemical conversions of about 144, 120, and 75 mg L-1 for the acetic, formic and oxalic acids, respectively. The results are discussed in light of the existing literature.
机译:由于各种电催化材料的巨大贡献以及使用电流作为廉价且合适的试剂来驱动电动交换,因此电气有机合成目前正在经历一种文艺复兴,以避免常规化学氧化剂或还原剂。因此,电气合成具有显着的技术影响,这是由于其优势,例如多功能性,环境兼容性(可能回收和回收和再循环基板),自动化(开启或关闭电流),固有的安全性和潜在成本效益等优点。虽然已经在电 - 有机合成中开发并建立了许多新型电极材料,但是金刚石膜(作为硼掺杂金刚石(BDD)电极)作为一种新的和可持续的溶液,可用于增值有机产物的选择性电化学转化。因此,在这项工作中,提出了使用BDD来治疗技术腰果壳液(T-CNSL),以支持其对高附加值产品如羧酸的转化。随后使用0.1%的T-CNSL在1.00mol L-1 NaOH中进行三种不同电流密度的实验的时间随时间的推移。在40 mA cm(-2)中,在最后几小时发生的有机酸浓度的最臭名昭着的增加,分别达到约144,120和75mg L-1的电化学转换,分别用于乙型酸,甲酸和草酸的电化学转换。根据现有文献讨论了结果。

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