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超声辅助溶胶-凝胶法制备的Ni/SBA-15上绿色微藻的催化热解

Catalytic Pyrolysis of the Green Microalgae over Ni/SBA-15 Prepared by the Ultrasonic-Assisted Sol-Gel Method.

作者信息

Subagyono R R Dirgarini J N, Putri Sri A, Manawan Maykel, Mollah Mamun, Nugroho Rudy A, Gunawan Rahmat

机构信息

Physical Chemistry Laboratory, Chemistry Department, Mulawarman University, Samarinda, East Kalimantan 75123, Indonesia.

Indonesia Defense University, Bogor, West Java 16810, Indonesia.

出版信息

ACS Omega. 2023 Feb 24;8(9):8582-8595. doi: 10.1021/acsomega.2c07748. eCollection 2023 Mar 7.

Abstract

The pyrolysis of the green microalgae in the absence and the presence of Ni/SBA-15 prepared by the ultrasonic-assisted sol-gel was investigated using pyrolysis-gas chromatography-mass spectroscopy (Py-GC/MS). Pyrolysis experiments were performed at 350, 450, and 550 °C under helium (He) flow. In the absence of a catalyst, the chemical composition of pyrolysis products at different temperatures, based on the relative peak area, comprised protein/amino acid derivative products of 9-15%, carbohydrate derivative products of 5-10%, lipid derivative products of 13-26%, and chlorophyll derivative products of 24-26%. For catalytic pyrolysis, the chemical composition of pyrolysis products comprised protein/amino acid derivative products of 5-15%, carbohydrate derivative products of 18-19.5%, lipid derivative products of 14-27%, and chlorophyll derivative products of 15-20%. The addition of 10% Ni/SBA-15 enhanced the production of aromatic compounds, such as furans, furfurals, alkyl aromatics, and nitrogen aromatic compounds. These were the thermal degradation products of carbohydrates and proteins. However, the amount of fatty acids and phytol fragments in the pyrolysis of decreased in the presence of catalyst. Thermogravimetric analyses showed that the temperature range for the pyrolysis of was 135-547 °C, while that of the catalyzed pyrolysis was 135-532 °C. There was a decrease in pyrolysis yield after incorporating Ni/SBA-15, which may be due to coke formation.

摘要

采用热解-气相色谱-质谱联用仪(Py-GC/MS)研究了在有无超声辅助溶胶-凝胶法制备的Ni/SBA-15存在下绿色微藻的热解情况。热解实验在350、450和550℃的氦气流下进行。在无催化剂的情况下,基于相对峰面积,不同温度下热解产物的化学组成包括9%-15%的蛋白质/氨基酸衍生物产物、5%-10%的碳水化合物衍生物产物、13%-26%的脂质衍生物产物和24%-26%的叶绿素衍生物产物。对于催化热解,热解产物的化学组成包括5%-15%的蛋白质/氨基酸衍生物产物、18%-19.5%的碳水化合物衍生物产物、14%-27%的脂质衍生物产物和15%-20%的叶绿素衍生物产物。添加10%的Ni/SBA-15提高了呋喃、糠醛、烷基芳烃和含氮芳烃等芳香族化合物的产量。这些是碳水化合物和蛋白质的热降解产物。然而,在催化剂存在下,热解中脂肪酸和叶绿醇片段的量减少。热重分析表明,热解的温度范围为135-547℃,而催化热解的温度范围为135-532℃。加入Ni/SBA-15后热解产率降低,这可能是由于积炭形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41a0/9996767/f3da55c9360f/ao2c07748_0001.jpg

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