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煤低温氧化动力学参数测试方法对比研究 被引量:1
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作者 候飞 曹威虎 +1 位作者 王艺 仲晓星 《工矿自动化》 北大核心 2021年第9期58-64,69,共8页
针对现有研究缺乏对不同煤低温氧化动力学参数测试方法的对比分析,采用Coats-Redfern法、q/m法及Starink等转化率法3种测试方法分别计算煤低温氧化动力学参数,并以煤氧化自热反应时间和自燃临界堆积厚度作为对比参量比较3种方法的准确... 针对现有研究缺乏对不同煤低温氧化动力学参数测试方法的对比分析,采用Coats-Redfern法、q/m法及Starink等转化率法3种测试方法分别计算煤低温氧化动力学参数,并以煤氧化自热反应时间和自燃临界堆积厚度作为对比参量比较3种方法的准确性。通过绝热氧化装置和同步热分析仪进行了煤样在纯氧和贫氧条件下的绝热氧化实验、多升温速率实验和恒温实验。根据热分析实验结果,分别采用3种方法计算煤低温氧化动力学参数。依据获得的动力学参数计算煤氧化自热反应时间和自燃临界堆积厚度。将计算结果与实测的煤氧化自热反应时间和采空区实际遗煤厚度进行对比,评价3种方法的准确性。实验结果表明:①通过绝热氧化实验实测的煤氧化自热温度变化率随时间的推移均逐渐增大;采用Coats-Redfern法计算得到的温度在0~8 h(q/m法为0~10 h)内几乎不发生变化,超过这一时间段后温度迅速升高;采用Starink等转化率法获得的温度变化趋势与绝热氧化实验实测结果类似。②采空区实际遗煤厚度大于Coats-Redfern法计算得到的临界堆积厚度;采用q/m法获得的临界堆积厚度超过了该工作面所在煤层厚度,与实际明显不符;采用Starink等转化率法获得的计算结果与实际较为接近。③采用Starink等转化率法获得的预测结果与实测结果更为接近,表明Starink等转化率法得到的煤低温氧化动力学参数较其他2种测试方法更为准确。 展开更多
关键词 煤自燃 低温氧化动力学参数 Coats-Redfern法 q/m法 Starink等转化率法 氧化自热反应时间 自燃临界堆积厚度
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胜利油田注空气提高采收率数模研究 被引量:22
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作者 于洪敏 任韶然 +2 位作者 王杰祥 杨宝泉 邵红云 《石油钻采工艺》 CAS CSCD 北大核心 2008年第3期105-109,共5页
根据胜利油田轻质油样的室内氧化实验,通过拟合动态氧化实验产出的O2与CO2含量,建立其低温氧化(LTO)动力学模型,并结合组分模型、PVT模型及相渗模型,研究低渗透油藏注空气低温氧化工艺的数值模拟方法;以胜利渤南油田罗36块为例,初步评... 根据胜利油田轻质油样的室内氧化实验,通过拟合动态氧化实验产出的O2与CO2含量,建立其低温氧化(LTO)动力学模型,并结合组分模型、PVT模型及相渗模型,研究低渗透油藏注空气低温氧化工艺的数值模拟方法;以胜利渤南油田罗36块为例,初步评价了油藏参数、开发参数及工艺参数等因素对注空气驱油效果的影响,同时分析了注空气提高采收率机理,并对比注空气与氮气工艺的驱油效果及经济可行性,对注空气开发矿场试验具有一定指导作用。结果表明,实验模拟与实际气体含量拟合较好,从而确定动力学参数;油藏初始温度、初始含油饱和度等是影响注空气效果的重要参数,而油藏倾角、网格大小、射孔位置等对采收率也有影响;注空气相对于氮气而言成本低,驱油效果好。 展开更多
关键词 轻质油田 低渗透 注空气 低温氧化动力学 数值模拟 敏感性分析
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Preparation of α-Bi_2O_3 from bismuth powders through low-temperature oxidation 被引量:4
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作者 夏纪勇 唐谟堂 +2 位作者 陈萃 金胜明 陈永明 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第9期2289-2294,共6页
α-Bi2O3 powders were prepared from nanometer Bi powders through low-temperature oxidation at less than 873.15 K. XRD, SEM, TEM and HRTEM were used to characterize the structure and morphology of Bi powders and Bi2O3 ... α-Bi2O3 powders were prepared from nanometer Bi powders through low-temperature oxidation at less than 873.15 K. XRD, SEM, TEM and HRTEM were used to characterize the structure and morphology of Bi powders and Bi2O3 particles. Kinetic studies on the bismuth oxidation at low-temperatures were carried out by TGA method. The results show that bismuth beads should be reunited and oxidized to become irregular Bi2O3 powders. The bismuth oxidation follows shrinking core model, and its controlling mechanism varies at different reaction time. Within 0-10 min, the kinetics is controlled by chemical reaction, after that it is controlled by O2 diffusion in the solid α-Bi2O3 layer. The apparent activation energy is determined as 55.19 kJ/mol in liquid-phase oxidation. 展开更多
关键词 bismuth powder low-temperature oxidation α-Bi2O3 oxidation kinetics
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Exploring the Low-Temperature Oxidation Chemistry of Cyclohexane in a Jet-Stirred Reactor:an Experimental and Kinetic Modeling Study 被引量:3
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作者 Jia-biao Zou Wei Li +4 位作者 Li-li Ye Xiao-yuan Zhang Yu-yang Li Jiu-zhong Yang Fei Qi 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第4期537-546,615,共11页
We report the investigation on the low-temperature oxidation of cyclohexane in a jet-stirred reactor over 500-742 K. Synchrotron vacuum ultraviolet photoionization mass spectrometry (SVUV-PIMS) was used for identify... We report the investigation on the low-temperature oxidation of cyclohexane in a jet-stirred reactor over 500-742 K. Synchrotron vacuum ultraviolet photoionization mass spectrometry (SVUV-PIMS) was used for identifying and quantifying the oxidation species. Major products, cyclic olefins, and oxygenated products including reactive hydroperoxides and high oxygen compounds were detected. Compared with n-alkanes, a narrow low-temperature window (-80 K) was observed in the low-temperature oxidation of cyclohexane. Besides, a kinetic model for cyclohexane oxidation was developed based on the CNRS model [Combust. Flame 160, 2319 (2013)], which can better capture the experimental results than previous models. Based on the modeling analysis, the 1,5-H shift dominates the crucial isomerization steps of the first and second O2 addition products in the low-temperature chain branching process of cyclohexane. The negative temperature coefficient behavior of cyclohexane oxidation results from the reduced chain branching due to the competition from chain inhibition and propagation reactions, i.e. the reaction between cyclohexyl radical and O2 and the de- composition of cyclohexylperoxy radical, both producing cyclohexene and HO2 radical, as well as the decomposition of cyclohexylhydroperoxy radical producing hex-5-en-l-al and OH radical. 展开更多
关键词 CYCLOHEXANE Low-temperature oxidation Synchrotron vacuum ultravioletphotoionization mass spectrometry Kinetic rnodel Negative temperature coefficient behavior
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Effect of low curing temperature on the anticorrosion performance of composite coatings reinforced with modified Fe_(3)O_(4)
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作者 CHEN Xiao-hua SUN Yi-xiang +1 位作者 MAN Cheng CUI Hong-zhi 《Journal of Central South University》 SCIE EI CAS 2024年第10期3435-3446,共12页
In this manuscript,the neat epoxy(EP)and functionalized Fe_(3)O_(4)(G-Fe_(3)O_(4))reinforced epoxy(G-Fe_(3)O_(4)/EP)coatings were cured under different temperatures,and the effect of the low curing temperature on the ... In this manuscript,the neat epoxy(EP)and functionalized Fe_(3)O_(4)(G-Fe_(3)O_(4))reinforced epoxy(G-Fe_(3)O_(4)/EP)coatings were cured under different temperatures,and the effect of the low curing temperature on the anticorrosion performance was investigated.The experimental results show that the epoxy-amine ring-open addition reaction mainly exists in the curing process,and the activation energies of the reaction for the two coatings are 55.84 and 53.29 kJ/mol,respectively.For the coatings cured at the low temperature,almost no pores could be detected on the fracture surface,but the presentence of the rough regions reflects the poor curing state.As compared with the samples cured at the high temperature,the anticorrosion performance of the coatings with the low curing temperature is worse,and the decrease rate of the anticorrosion performance is slower,because of the poor curing state and low adhesion obtained at the low temperature. 展开更多
关键词 low-temperature curing epoxy coating curing kinetics anticorrosion performance
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