燃烧科学与技术
燃燒科學與技術
연소과학여기술
Journal of Combustion Science and Technology
2015年
5期
464-470
,共7页
刘鹏刚%蒲万芬%贾虎%刘哲知%赵帅%李林林%刘国栋%杨金川
劉鵬剛%蒲萬芬%賈虎%劉哲知%趙帥%李林林%劉國棟%楊金川
류붕강%포만분%가호%류철지%조수%리림림%류국동%양금천
轻质原油%注空气%催化氧化%热分解%热重分析%岩屑/黏土
輕質原油%註空氣%催化氧化%熱分解%熱重分析%巖屑/黏土
경질원유%주공기%최화양화%열분해%열중분석%암설/점토
light oil%air injection%catalytic oxidation%thermal decomposition%thermal gravimetric analysis%cutting/clay
采用静态氧化管实验结合热分析方法(TG/DTG/DTA)分别从原油氧化速率、组分变化及热重放热角度,考察了油藏岩屑存在下原油氧化热解特性及反应机理.并通过 TG/DTG/DTA 分析测试结果与多孔介质中原油氧化实验的结论进行对比分析,判断两种方法用于原油氧化热解机理研究方面是否具有一致性.结果表明,黏土对原油氧化有较好的催化效果,其含量越高,原油耗氧速率和碳键剥离速率越大;氧化反应后,原油中重组分(C22+)含量降低,中、轻质组分(C7~21)含量上升;热重分析显示,原油经历了低温氧化、燃料沉积及高温氧化 3 个阶段;原油在低温氧化阶段一般呈现吸热趋势,质量损失越高,吸热量越大.
採用靜態氧化管實驗結閤熱分析方法(TG/DTG/DTA)分彆從原油氧化速率、組分變化及熱重放熱角度,攷察瞭油藏巖屑存在下原油氧化熱解特性及反應機理.併通過 TG/DTG/DTA 分析測試結果與多孔介質中原油氧化實驗的結論進行對比分析,判斷兩種方法用于原油氧化熱解機理研究方麵是否具有一緻性.結果錶明,黏土對原油氧化有較好的催化效果,其含量越高,原油耗氧速率和碳鍵剝離速率越大;氧化反應後,原油中重組分(C22+)含量降低,中、輕質組分(C7~21)含量上升;熱重分析顯示,原油經歷瞭低溫氧化、燃料沉積及高溫氧化 3 箇階段;原油在低溫氧化階段一般呈現吸熱趨勢,質量損失越高,吸熱量越大.
채용정태양화관실험결합열분석방법(TG/DTG/DTA)분별종원유양화속솔、조분변화급열중방열각도,고찰료유장암설존재하원유양화열해특성급반응궤리.병통과 TG/DTG/DTA 분석측시결과여다공개질중원유양화실험적결론진행대비분석,판단량충방법용우원유양화열해궤리연구방면시부구유일치성.결과표명,점토대원유양화유교호적최화효과,기함량월고,원유모양속솔화탄건박리속솔월대;양화반응후,원유중중조분(C22+)함량강저,중、경질조분(C7~21)함량상승;열중분석현시,원유경력료저온양화、연료침적급고온양화 3 개계단;원유재저온양화계단일반정현흡열추세,질량손실월고,흡열량월대.
In order to expand the enhanced oil recovery(EOR)technology of air injection to light oil reservoir, experiments were conducted using static oil oxidation tube and by thermal analysis methods such as TG/DTGand DTA. The oxidation pyrolysis characteristics and oxidation reaction mechanism of crude oil in the presence ofcutting were analyzed from the perspectives of crude oil oxidation rate(relative oxygen consumption rate and relative carbon bond broken rate),change of crude oil components,thermogravimetry and heat release.At last,the resultsof thermal analysis methods and static oil oxidation tube experiment in porous media were compared to ascertain whether the two methods are consistent in low temperature oil oxidation mechanism,aiming at comparing and analyzing the similarities and differences of the two researching methods.Results show thatclay has a good catalytic effect on crude oil oxidation. The higher the content of clay in cutting is,the greater the rate of oxygen consumption and carbon bond peeling will be.Besides,the content of heavy fractions(C22+)in crude oil decreases while that of middle and light fractions(C7~21)in crude oil increases after several days' oxidation reaction.Thermal analysis results show that oil undergoes low-temperature oxidation,fuel deposition and high-temperature oxidation.Clay in reservoir cutting plays a catalytic role during oil oxidation reaction.Crude oil generally shows an endothermic trend at low-temperature stage,and the higher the mass loss,the greater the heat absorption.It is shown that,in some cases the understand-ing from the study of oil oxidation,cracking and combustion mechanism by using qualitative oxidation kinetics analysis methods(TG/DTG/DTA)is consistent with the conclusion from low-temperature oil oxidation experiment in porous media.