School of Geography and Environment, Key Laboratory of Poyang Lake Wetland and Watershed Research, Ministry of Education, Jiangxi Normal University, 99 Ziyang Road, Nanchang, 330022, China.
School of Geography and Environment, Key Laboratory of Poyang Lake Wetland and Watershed Research, Ministry of Education, Jiangxi Normal University, 99 Ziyang Road, Nanchang, 330022, China.
Environ Pollut. 2024 May 1;348:123867. doi: 10.1016/j.envpol.2024.123867. Epub 2024 Mar 29.
A comprehensive understanding of the characteristics of biochar released-dissolved organic matter (BDOM) derived from an invasive plant and its impact on the binding behavior of pharmaceuticals is essential for the application of biochar, yet has received less attention. In this study, the binding behavior of BDOM pyrolyzed at 300-700 °C with sulfathiazole, acetaminophen, chloramphenicol (CAP), and carbamazepine (CMZ) was investigated based on a multi-analytical approach. Generally, the pyrolysis temperature exhibited a more significant impact on the spectral properties of BDOM and pharmaceutical binding behavior than those of the molecular weight. With increased pyrolysis temperature, the dissolved organic carbon decreased while the proportion of the protein-like substance increased. The highest binding capacity towards the drugs was observed for the BDOM pyrolyzed at 500 °C with the molecular weight larger than 0.3 kDa. Moreover, the protein-like substance exhibited higher susceptive and released preferentially during the dialysis process and also showed more sensitivity and bound precedingly with the pharmaceuticals. The active binding points were the aliphatic C-OH, amide II N-H, carboxyl CO, and phenolic-OH on the tryptophan-like substance. Furthermore, the binding affinity of the BDOM pyrolyzed at 500 °C was relatively high with the stability constant (logK) of 4.51 ± 0.52.
全面了解源自入侵植物的生物炭释放溶解有机物 (BDOM) 的特性及其对药物结合行为的影响对于生物炭的应用至关重要,但这方面的研究还较少。在这项研究中,采用多种分析方法研究了在 300-700°C 下热解的 BDOM 与磺胺噻唑、对乙酰氨基酚、氯霉素 (CAP) 和卡马西平 (CMZ) 的结合行为。一般来说,热解温度对 BDOM 的光谱特性和药物结合行为的影响比分子量的影响更大。随着热解温度的升高,溶解有机碳减少,而类蛋白物质的比例增加。在分子量大于 0.3 kDa 的情况下,500°C 热解的 BDOM 对药物的结合能力最高。此外,类蛋白物质在透析过程中优先表现出较高的亲和力和释放性,并且与药物结合时表现出更高的敏感性和优先结合性。活性结合点是色氨酸样物质上的脂肪族 C-OH、酰胺 II N-H、羧基 CO 和酚-OH。此外,500°C 热解的 BDOM 的结合亲和力相对较高,稳定常数 (logK) 为 4.51±0.52。