全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

漠河盆地生物气形成条件及存在证据

Keywords: 生物气,生存环境,营养底物,地球化学,生烃模式,漠河盆地

Full-Text   Cite this paper   Add to My Lib

Abstract:

?生物气不仅能以常规生物气藏的形式存在,而且还能以水合物、页岩气或煤层气等非常规形式存在,是非常重要的天然气资源。通过分析漠河盆地微生物生存所需的温度、盐度、酸碱度、生存空间和营养底物来源等条件,并结合微生物生命活动的证据认为:①漠河盆地地层水盐度不高、酸碱度适中、营养底物充足,具备微生物生命活动所需的基本条件;②饱和烃气相色谱出现“鼓包”现象,检测出25-降藿烷、乙烯和丙烯,δ13c1值小于-60‰,以及相邻地区发现生物气等现象是该区存在生物气的证据;③第四系受季节变换的影响,可周期性生成乙酸发酵型原生生物气;上侏罗统微裂缝发育段可形成co2还原型次生生物气。生物气不仅是漠河盆地重要的天然气资源类型,也是天然气水合物潜在的气源之一。

References

[1]  scottar,kaiserwr,ayerswb.thermogenicandsecondarybiogenicgases,sanjuanbasin,coloradoandnewmexico-implicationsforcoalbedgasproducibility[j].aapgbulletin,1994,78(8):1186-1209.
[2]  whiticarmj,fabere,schoellm.biogenicmethaneformationinmarineandfreshwaterenvironment:co2reductionvs.acetatefermentation-isotopeevidence[j].geochimicaetcosmochimicaacta,1986,50(5):693-709.
[3]  yakushevvs,chuvilinem.naturalgasandgashydrateaccumulationswithinpermafrostinrussia[j].coldregionsscienceandtechnology,2000,31(3):189-197.
[4]  lorensontd,collettts,hunterrb.gasgeochemistryofthemountelbertgashydratestratigraphictestwell,alaskanorthslope:implicationsforgashydrateexplorationinthearctic[j].marineandpetroleumgeology,2011,28(2):343-360.
[5]  weishuijian,wangjinpeng,guanzhiqiang,etal.geneticmechanismsandcontrollingfactorsofterrestrialbiogeneticgasinthequaternaryoftheqaidambasin[j].oil&gasgeology,2009,30(3):310-315.[魏水建,王金鹏,管志强,等.柴达木盆地第四系陆相生物气形成机理与控制因素[j].石油与天然气地质,2009,30(3):310-315.]
[6]  ronalddd,christopherjs,williamhpj.methaneproductioninmississippiriverdeltaicplainpeat[j].organicgeochemistry,1986,10(4):193-197.
[7]  zehnderajb,wuhrmannk.physiologyofamethanobacteriumstrainaz[j].archivesofmicrobiology,1977,111(3):199-205.
[8]  zhangyigang,chenhuanjiang.conceptsonthegenerationandaccumulationofbiogenicgas[j].oil&gasgeology,1983,4(2):160-170.[张义纲,陈焕疆.论生物气的生成和聚集[j].石油与天然气地质,1983,4(2):160-170.]
[9]  zhaoxingmin,dengjian,lijinping,etal.gashydrateformationanditsaccumulationpotentialinmohepermafrostarea,china[j].actageologicasinica,2011,85(9):1536-1550.[赵省民,邓坚,李锦平,等.漠河多年冻土区天然气水合物的形成条件及成藏潜力研究[j].地质学报,2011,85(9):1536-1550.]
[10]  gengweihua,yangnaifeng,maxiaoyang.thepreliminaryclassificationofgeochemicalsublandscapetypesintheforest-swampareaofheilongjiangprovince[j].geophysical&geochemicalexploration,2006,30(4):293-297.[耿卫华,杨乃峰,马晓阳.黑龙江森林沼泽区地球化学亚景观类型划分[j].物探与化探,2006,30(4):293-297.]
[11]  wangyutao.characteristicsofheavyoilbiodegradationinthenorthwesternmarginofjunggarbasin[j].actasedimentologicasinica,1994,12(1):81-88.[王屿涛.准噶尔盆地西北缘稠油生物降解特征[j].沉积学报,1994,12(1):81-88.]
[12]  gaogang,huangzhilong,lianghao,etal.analysisonselectivitybiodegradationofnaturalgasinyanmuxioilfieldoftuhabasin[j].actapetroleisinica,2008,29(4):494-498.[高岗,黄志龙,梁浩,等.吐哈盆地雁木西油田天然气的选择性生物降解作用[j].石油学报,2008,29(4):494-498.]
[13]  shuaiyanhua,songnana,zhangshuichang,etal.gasofbiodegradationoriginandtheirpoolingcharacteristicsinnorthernsongliaobasin[j].oil&gasgeology,2011,32(5):659-670.[帅燕华,宋娜娜,张水昌,等.松辽盆地北部生物降解成因气及其成藏特征[j].石油与天然气地质,2011,32(5):659-670.]
[14]  mattavellil,ricchiutot,grignanid,etal.geochemistryandhabitatofnaturalgasesinpobasin,northernitaly[j].aapgbulletin,1983,67(12):2239-2254.
[15]  panxianzhuang,zhangguohua,huangbaojia,etal.biodegradationandmixedsourcesofshallowgasfieldsinyinggehaibasin[j].chinaoffshoreoilandgas:geology,2002,16(3):189-195.[潘贤庄,张国华,黄保家,等.莺歌海盆地浅层天然气生物降解及混源特征[j].中国海上油气:地质,2002,16(3):189-195.]
[16]  limingzhai,zhanghongnian,liuhua,etal.advancesinsimulatedtestofbiogas[j].oil&gasgeology,1996,17(2):117-122.[李明宅,张洪年,刘华,等.生物气模拟试验的进展[j].石油与天然气地质,1996,17(2):117-122.]
[17]  parkesj.crackinganaerobicbacteria[j].nature,1999,401:217-218.
[18]  shuaiyanhua,zhangshuichang,zhaowenzhi,etal.longitudinaldistributionsoftwoformationpathwaysofbiogenicgasesincontinentaldeposits:acasestudyfromsebei1gasfieldintheqaidambasin,westernchina[j].scienceinchina:seriesd,2007,50(2):221-227.[帅燕华,张水昌,赵文智,等.陆相生物气纵向分布特征及形成机理研究——以柴达木盆地涩北一号为例[j].中国科学:d辑,2007,37(1):46-51.]
[19]  zhangxiaojun,taomingxin,wangwanchun,etal.geochemicalbehaviorsofsecondarybiogasinpanjiandzhangjicoalminesinhuainancoalfield[j].naturalgasindustry,2008,28(7):34-38.[张小军,陶明信,王万春,等.淮南潘集、张集煤矿次生生物气地球化学特征[j].天然气工业,2008,28(7):34-38.]
[20]  xuziyuan,xieli,zhangdaowei,etal.explorationcoursesandreservesstateofquaternarybiogasinqaidambasin[j].xinjiangpetroleumgeology,2005,26(4):437-440.[徐子远,谢丽,张道伟,等.柴达木盆地第四系生物气的勘探历程与储量现状[j].新疆石油地质,2005,26(4):437-440.]
[21]  zhangxiang,jizonglan,yangyinshan,etal.thediscussionuponsealingmechanismofquaternarycaprockinqaidambasin[j].naturalgasgeoscience,2004,15(4):383-386.[张祥,纪宗兰,杨银山,等.试论柴达木盆地第四系盖层的封盖机理[j].天然气地球科学,2004,15(4):383-386.]
[22]  lixianqi,zhangshuichang,zhuguangyou,etal.typesandresearchdirectionofbiogenicgasinchina[j].naturalgasgeoscience,2005,16(4):477-484.[李先奇,张水昌,朱光有,等.中国生物成因气的类型划分与研究方向[j].天然气地球科学,2005,16(4):477-484.]
[23]  whiticarmj.carbonandhydrogenisotopesystematicsofbacterialformationandoxidationofmethane[j].chemicalgeology,1999,161(1/3):291-314.
[24]  lianglinheng,zhouyouwu,wangjiacheng,etal.changesofpermafrostenvironmentingreatxianridgesafterdisastrousforestfire:takeinggulianminingareaasanexample[j].journalofglaciologyandgeocryology,1991,13(1):17-25.[梁林恒,周幼吾,王家澄,等.大兴安岭林区火灾后冻土环境的变化——以古莲河煤矿地区为例[j].冰川冻土,1991,13(1):17-25.]
[25]  
[26]  linchunming,zhuohongchun,liguangyue,etal.estimatesofshallowbiogasresourcesinhangzhoubayareaanditsgeologicalimplications[j].oil&gasgeology,2005,26(6):823-830.[林春明,卓弘春,李广月,等.杭州湾地区浅层生物气资源量计算及其地质意义[j].石油与天然气地质,2005,26(6):823-830.]
[27]  dinganna,wangmingming,libenliang,etal.biogasformingmechanismandgeochemicalcharacteristicsofitssourcerock[j].naturalgasgeoscience,2003,14(5):402-407.[丁安娜,王明明,李本亮,等.生物气的形成机理及源岩的地球化学特征——以柴达木盆地生物气为例[j].天然气地球科学,2003,14(5):402-407.]
[28]  linchunming,liyanli,qibinwen.researchstatusandexplorationpotentialofbiogenicgas[j].journalofpalaeogeography,2006,8(3):317-330.[林春明,李艳丽,漆滨汶.生物气研究现状与勘探前景[j].古地理学报,2006,8(3):317-330.]
[29]  ricedd,claypoolge.generation,accumulation,andresourcepotentialofbiogenicgas[j].aapgbulletin,1981,65(1):5-25.
[30]  weiguoqi,liudelai,zhangying,etal.formationmechanism,distributionfeatureandexplorationprospectofthequaternarybiogenicgasinqaidambasin,nwchina[j].petroleumexplorationanddevelopment,2005,32(4):84-89.[魏国齐,刘德来,张英,等.柴达木盆地第四系生物气形成机理、分布规律与勘探前景[j].石油勘探与开发,2005,32(4):84-89.]
[31]  martiniam,walterlm,kutcw,etal.microbialproductionandmodificationofgasesinsedimentarybasins:ageochemicalcasestudyfromadevonianshalegasplay,michiganbasin[j].aapgbulletin,2003,87(8):1355-1375.
[32]  taomingxin,wangwanchun,xieguangxin,etal.secondarybiogeniccoalbedgasinsomecoalfieldsofchina[j].chinesesciencebulletin,2005,50(supplement1):24-29.
[33]  limingcheng,lijian,zhangfengmin,etal.quantitativeresearchonbiogasmigration-accumulationandpool-forminginthequaternaryofsanhuareainqaidambasin[j].actapetroleisinica,2009,30(6):809-815.[李明诚,李剑,张凤敏,等.柴达木盆地三湖地区第四系生物气运聚成藏的定量研究[j].石油学报,2009,30(6):809-815.]
[34]  guozeqing,libenliang,zengfuying,etal.distributioncharacteristicsandreservoirformationconditionsofthebiogeneticgas[j].naturalgasgeoscience,2006,17(3):407-413.[郭泽清,李本亮,曾富英,等.生物气分布特征和成藏条件[j].天然气地球科学,2006,17(3):407-413.]
[35]  guanzhiqiang,xiabin,lvbaofeng.elementaryfactorsandtheirconfigurationofbiogasaccumulationineasternqaidambasin[j].naturalgasgeoscience,2008,19(2):165-170.[管志强,夏斌,吕宝凤.柴达木盆地三湖地区生物气成藏基本要素及其配置性[j].天然气地球科学,2008,19(2):165-170.]
[36]  gaoyang,jinqiang,shuaiyanhua,etal.genetictypesandaccumulationconditionsofbiogasinbohaiwanbasin[j].naturalgasgeoscience,2011,22(3):407-414.[高阳,金强,帅燕华,等.渤海湾盆地生物气成因类型与成藏条件[j].天然气地球科学,2011,22(3):407-414.]
[37]  zhangxiaobao,duanyi,zhoushixin,etal.geologicalandgeochemicalevidencesofthetertiarybiogenicgasinqaidambasin[j].petroleumexplorationanddevelopment,2002,29(2):39-41.[张晓宝,段毅,周世新,等.柴达木盆地第三系生物气的地质地球化学证据[j].石油勘探与开发,2002,29(2):39-41.]
[38]  yuanhaiyi,liuxuekui.permafrostcharacteristicandtheexploitationandutilizationofgroundwaterinhanjiayuanarea,dahingganling[j].journalofglaciologyandgeocryology,1993,15(2):242-245.[元海义,刘学奎.大兴安岭韩家园地区多年冻土特征及其地下水的开采和利用[j].冰川冻土,1993,15(2):242-245.]
[39]  xiongyongqiang,gengansong.carbonisotopiccompositionofindividualcompoundsofasphaltenepyrolysatesfrombiodegradedcrudeoilsinliaohebasin[j].geochimica,1998,27(6):532-536.[熊永强,耿安松.辽河油田生物降解原油沥青质热解产物中单体化合物碳同位素组成[j].地球化学,1998,27(6):532-536.]

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133