Preparation of complex physicochemical synergistic inhibitors and study on inhibition of spontaneous combustion of coal

化学 自燃 废物管理 燃烧 制浆造纸工业 环境科学 食品科学 有机化学 工程类
作者
Qianru Du,Xiaogang Mu,Cunbao Deng,Hongfei Duan,Peng Jing,Ling Qiao,Yanrui Guo
出处
期刊:International Journal of Coal Preparation and Utilization [Taylor & Francis]
卷期号:: 1-24 被引量:3
标识
DOI:10.1080/19392699.2024.2350435
摘要

To efficiently isolate oxygen and block free radical reactions, sodium alginate (SA), sodium polyacrylate (PAAS), attapulgite (ATP), and melatonin (MLT) were selected to develop an oxygen-insulating physicochemical synergistic inhibitor. The water loss experiment, EPR experiment, and programmed temperature rise experiment were used to characterize the performance of the inhibitor. The results show that the optimal ratio of the oxygen barrier physicochemical synergistic inhibitor is 2.5 wt% SA, 1.5 wt‰ PAAS, 9 wt% ATP, 6 wt% MLT, and 3 wt% CaCl2. In the oxygen-insulating physicochemical synergistic inhibitor, the MLT can react with oxidizing radicals in the coal to slow down the process of the oxidation reaction of the coal, and the SA gel can fill the pore space to prevent oxygen adsorption on the coal surface, the inhibition rate of the inhibitor reaches 70% at 120°C. Compared with the original coal, the CO concentration of the treated coal samples is reduced by 253.9ppm compared with that of the original coal, the generation rate is reduced by 1. 13 × 10−11 mol·cm−3·s−1, and the rate of oxygen consumption is reduced by 90. 65 × 10−11 mol·cm−3·s−1 at 120°C. The above results show that the oxygen-insulating physicochemical synergistic inhibitor developed in this paper can effectively improve the fire extinguishing efficiency is environmentally friendly and pollution-free, and has good application prospects.
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