Journal of Liaoning Petrochemical University
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THPS Dissolve Iron Sulfide in Oil Tank
LIU Chang-bo, LI Ping*, ZHANG Zhen-hua
Abstract494)      PDF (309KB)(306)      
 
The pyrophoric iron sulfides in oil tank was eliminated under THPS(tetrakis(hydroxymethyl)phosphonium sulfate) and ammonium chloride. It was investigated the effect of mass ratio of THPS and ammonium chloride,the concentration and acidity of dissolution agent, temperature, and reaction time on the efficiency of dissolution. The results show that the efficiency of dissolution to iron sulfide is best when mass ratio of THPS and ammonium chloride is 6.5∶0.6,temperature is 80 ℃, pH is 5, reaction time is 8 h, the dissolution of iron sulfide is best. When the concentration of dissolution agent is 14.0%, the efficiency of dissolution to iron sulfide is reach 92.50%.
2010, 30 (1): 1-3. DOI: 10.3696/j.issn.1672-6952.2010.01.001
Spontaneous Combustion Behavior of Ferrous Sulfide
LIU Hong-jin, LI Ping, ZHANG Zhen-hua, ZHAO Shan-lin, YANG Shu-yi, SHANG Li-yan
Abstract390)      PDF (581KB)(258)      
 
The reaction between rust of oil tank inner wall and dry H2S gas was simulated.The influence of sulfidation temperature and time,air speed and water was investigated.The oxidation tendency of sulfurized products was investigated by changing oxidation temperature. The results show that the sulfurized products have great oxidation tendency. With the increase of sulfidation temperature, sulfidation time and air speed, the oxidation tendency increase.And the existence of water has remarkable influence on the oxidation tendency of sulfurized products.
2009, 29 (1): 1-3.
Formation of Iron Sulfides in Sour Oil Tanks and Its Spontaneous Combustion
ZHANG Zhen-hua, CHEN Bao-zhi, QIN Hua-li, ZHAO Zeng-hua,WANG Chan, ZHANG Ying
Abstract409)      PDF (165KB)(241)      
The spontaneous combustion of iron sulfides in sour oil tanks is thought to be the main reason to cause fire and explosion accidents in oil tanks. Sulfur hydrogen dissolving in water to form hydro-sulfuric acid reacts with iron to give iron sulfides. The gas of sulfur hydrogen was continuously passed through the water, at a flow rate of 300 mL/min for 6 h, in trigonal beaker contained 8 g iron powder to produce the iron sulfide samples at 25, 50 and 75 ℃ respectively. The deposit was filtered and dried. The reaction product was analyzed by chemical and XRD analysis. The results show the iron sulfide in reaction product is FeS. Air passed through the dry and moist reaction product at a flow rate of 300 mL/min respectively. The experimental results show that all the reaction products are of high spontaneous combustion nature. When sulfuration temperature is increased, the sulfuration reaction rate rose and the spontaneous combustion nature of reaction product are also raised.
2007, 27 (3): 1-3.