School of Mechanical and Power Engineering, Nanjing Tech University, Nanjing 211816, PR China.
School of Energy Science and Engineering, Nanjing Tech University, Nanjing 211816, PR China.
Bioresour Technol. 2022 May;351:126968. doi: 10.1016/j.biortech.2022.126968. Epub 2022 Mar 8.
Nitrogen has a vital influence on the properties of the microwave-assisted hydrothermal carbonization (MHTC) products of Spirulina platensis (SP). The effects of hydrothermal temperature (140-220 °C) and time (1-4 h) on the product distribution and nitrogen migration of SP in MHTC were studied. Increasing temperature led to an increase in the carbon content, and a decrease in the nitrogen content in hydrochar. Protein-N was the major nitrogen-containing species in hydrochar. The total nitrogen in liquid phase increased significantly with increasing temperature. Carbon dots were found to be one of the valuable products in the liquid phase. Higher temperatures improved the amine-N level and reduced the quaternary-N content in carbon dots. A close correspondence was found between the N-containing species and the luminescence centers of carbon dots. A possible nitrogen migration mechanism was proposed to provide guidance for the potential application of the products.
氮对螺旋藻(SP)的微波辅助水热碳化(MHTC)产物的性质有重要影响。研究了水热温度(140-220°C)和时间(1-4 小时)对 MHTC 中 SP 的产物分布和氮迁移的影响。升高温度会导致水热炭中的碳含量增加,氮含量减少。蛋白氮是水热炭中主要的含氮物种。液相中的总氮含量随温度的升高显著增加。在液相中发现了碳点是一种有价值的产物。较高的温度提高了胺-N 水平,并降低了碳点中的季铵-N 含量。含氮物种与碳点的发光中心之间存在密切对应关系。提出了一种可能的氮迁移机制,为产品的潜在应用提供了指导。