Department of Chemistry Ugo Schiff, University of Florence, Via della Lastruccia 3-13, 50019, Sesto Fiorentino, Italy.
Anal Bioanal Chem. 2022 Sep;414(21):6295-6307. doi: 10.1007/s00216-022-04062-y. Epub 2022 Apr 26.
The reutilization of waste and the reduction of the general environmental impact of every production are fundamental goals that must be achieved in the framework of a circular economy. Recycled carbon-rich materials may represent a promising alternative to other less-sustainable carbonaceous materials used in the production of electrochemical sensing platforms. Herein, we propose an innovative carbon paste electrode (CPE) composed of biochar derived from biological sludge obtained from municipal and industrial wastewater treatment plants. The physicochemical properties of the biochar after a chemical treatment with an acidic solution obtained from industrial by-products were investigated. The electrode surface characterization was carried out by analyzing common redox probes and multiple phenols bearing varying numbers of -OH and -OCH groups in their structure. Furthermore, the CPE was also tested on the evaluation of the phenolic fingerprints of Vaccinium myrtillus, Vaccinium uliginosum subsp. gaultherioides, and Fragaria × ananassa. Standard anthocyanin mixtures and extracts of the aforementioned fruits were analyzed to provide a phenolic characterization of real samples. The obtained results show that the sewage sludge-derived biochar can be a promising material for the development of electroanalytical sensors.
废物再利用和降低每种生产对环境的总体影响是循环经济框架下必须实现的基本目标。富含碳的回收材料可能是在电化学传感平台生产中替代其他不太可持续的含碳材料的有前途的选择。在此,我们提出了一种由生物炭组成的新型碳糊电极 (CPE),生物炭是从城市和工业污水处理厂获得的生物污泥中提取的。研究了用工业副产物得到的酸性溶液进行化学处理后生物炭的物理化学性质。通过分析常见的氧化还原探针和带有不同数量-OH 和-OCH 基团的多种酚类物质,对电极表面进行了表征。此外,还对越桔、鹿蹄草越桔亚种和草莓的酚指纹进行了 CPE 测试。分析了标准花青素混合物和上述水果的提取物,以对实际样品进行酚类特征分析。结果表明,污水污泥衍生的生物炭可以成为开发电分析传感器的有前途的材料。