Xu Pinjing, Li Hui, Chen Yanxin
College of Materials Science and Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
Materials (Basel). 2021 Feb 27;14(5):1120. doi: 10.3390/ma14051120.
Phosphogypsum (PG) is not only a solid waste discharged from the phosphate fertilizer industry, but also a valuable resource. After high-temperature heat treatment, it can be decomposed into SO and CaO; the former can be used to produce sulfuric acid, and the latter can be used as building materials. In this paper, the catalytic thermal decomposition conditions of phosphogypsum were optimized, and the effects of the reaction temperature, reaction atmosphere, reaction time and carbon powder content on the decomposition of phosphogypsum were studied. The research shows that the synergistic effect of carbon powder and CO reducing atmosphere can effectively reduce the decomposition temperature of phosphogypsum. According to the results of the orthogonal test under simulated suspended laboratory conditions, the factors affecting the decomposition rate of phosphogypsum are temperature, time, atmosphere and carbon powder content in turn, and the factors affecting the desulfurization rate are time, temperature, atmosphere and carbon powder content in turn. Under laboratory conditions, the highest decomposition rate and desulfurization rate of phosphogypsum are 97.73% and 97.2%, and the corresponding reaction conditions are as follows: calcination temperature is 1180 °C, calcination time is 15 min, carbon powder content is 4%, and CO concentration is 6%. The results of thermal analysis of phosphogypsum at different temperature rising rates show that the higher the temperature rising rate, the higher the initial temperature of decomposition reaction and the temperature of maximum thermal decomposition rate, but the increase in the temperature rising rate will not reduce the decomposition rate of phosphogypsum.
磷石膏(PG)不仅是磷肥工业排放的固体废弃物,也是一种宝贵资源。经过高温热处理后,它可分解为SO和CaO;前者可用于生产硫酸,后者可作为建筑材料。本文对磷石膏的催化热分解条件进行了优化,研究了反应温度、反应气氛、反应时间和炭粉含量对磷石膏分解的影响。研究表明,炭粉与CO还原气氛的协同作用可有效降低磷石膏的分解温度。根据模拟悬浮实验室条件下的正交试验结果,影响磷石膏分解率的因素依次为温度、时间、气氛和炭粉含量,影响脱硫率的因素依次为时间、温度、气氛和炭粉含量。在实验室条件下,磷石膏的最高分解率和脱硫率分别为97.73%和97.2%,相应的反应条件如下:煅烧温度为1180℃,煅烧时间为15分钟,炭粉含量为4%,CO浓度为6%。不同升温速率下磷石膏的热分析结果表明,升温速率越高,分解反应的初始温度和最大热分解速率温度越高,但升温速率的增加不会降低磷石膏的分解率。