Pütün Ersan, Uzun Basak Burcu, Pütün Ayşe Eren
Material Science and Engineering Department, Faculty of Engineering and Architecture, Anadolu University, 26555 Eskisehir, Turkey.
Bioresour Technol. 2006 Mar;97(5):701-10. doi: 10.1016/j.biortech.2005.04.005. Epub 2005 Jun 13.
Catalyzed pyrolysis of cotton-seed cake was studied under different experimental conditions. Variables investigated were pyrolysis temperature, zeolite content and sweeping gas flow rate. Experiments were carried out isothermally. Liquids, gases and char were obtained as products of pyrolysis. The distributions of these products were determined for various contents (1, 5, 10, 20 wt.% of raw material) of zeolite at four different pyrolysis temperatures. The maximum liquid yield obtained was 30.84% at a pyrolysis temperature of 550 degrees C with a sweeping gas flow rate of 100 cm(3) min(-1) in the presence of clinoptilolite (20% based on raw material) as catalyst. The pyrolytic and catalytic liquid products were analysed in detail to determine the predominant chemical classes and the identities of the major compounds present.
在不同实验条件下研究了棉籽饼的催化热解。研究的变量有热解温度、沸石含量和吹扫气流速。实验在等温条件下进行。热解产物有液体、气体和焦炭。测定了在四种不同热解温度下,沸石不同含量(占原料的1%、5%、10%、20%重量)时这些产物的分布。在550℃热解温度、100 cm³ min⁻¹吹扫气流速以及以斜发沸石(占原料20%)为催化剂的条件下,获得的最大液体产率为30.84%。对热解液体产物和催化液体产物进行了详细分析,以确定主要化学类别和其中主要化合物的种类。