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1.
9月27日,叶县国土资源局会同遵化店镇人民政府和该镇祁营村两委,组织相关人员,对100余亩存量国有土地进行勘测定界和地上附着物清点登记。随着该宗地近期挂牌出让,投资兴趣很浓的香港富铭集团甲烷氯化物项目有望很快在此落地生根。 相似文献
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自20世纪60年代以来,人们陆续在冻土带和自海洋深处发现了一种可以燃烧的“冰”,就是天然气水合物,即后来被人们称作“可燃冰”的物质。可燃冰中甲烷含量占80%~99.9%,燃烧污染比煤、石油、天然气都小得多,而且其广泛分布在大陆永久冻土、岛屿的斜坡地带、活动和被动大陆边缘的隆起处、极地大陆架以及海洋和一些内陆湖的深水环境,在全球范围内的储量是现有天然气、石油储量的两倍,足够人类使用1000年,因而被各国视为未来石油、天然气的替代能源。 相似文献
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依据地热资料研究天然气水合物稳定带厚度在东海海域的分布情况。东海在地质构造上位于新生代环太平洋构造带西部边缘岛弧的内侧,又是欧亚板块、太平洋板块和菲律宾海板块的相互作用带。依据国际热流委员会(IHFC)提供的东海地热数据,经过统计确定出该区域的热流分布,热流平均值为121·0mW/m2,最小值为73·0mW/m2,最大值为168·0mW/m2。同时利用天然气水合物温压模型计算了稳定带厚度,数据显示稳定带厚度平均值为92·2m,最小值为1·4m,最大值为190·6m,薄于其他已经发现的海洋天然气水合物稳定带厚度(约400m)。天然气水合物大部分分布在条件适宜的陆坡和岛坡上,冲绳海槽底部水合物稳定带厚度相对较薄。统计分析表明本区热流值与水合物稳定带厚度相关性很差,相关系数仅有0·12。这是由于天然气水合物所在海域水深较浅时,海底温度的变化迫使运算所应用的非线性方程影响因子迅速积累,从而导致相关系数降低。最后结合东海陆坡的地质条件,探讨了在天然气水合物存在的情况下,陆坡失稳的可能性及其造成的环境影响。 相似文献
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俄勒冈州外海水合物脊现代甲烷渗漏区的发现,为研究甲烷对活体有孔虫生态和地球化学方面的影响提供了机会。2002年在水合物脊南部高点获取一批岩心。样品经保存和染色后用来测定Uvigerina peregrina、Cibicidoidesmckannai和Globobuliminaauriculata3个底栖有孔虫属种的活体(经染色)和死体的碳同位素(δ13C)组成。有孔虫样经光学显微镜和扫描电镜检查,未发现有成岩作用或自生碳酸盐沉淀作用的迹象。渗漏区活底栖有孔虫单体记录的乎δ13C值在-0.4%--21.2%0之间,说明受高浓度甲烷碳同位素的影响。渗漏区底栖有孔虫护C平均值(由单体样品计算)范围在-1.28%--5.64%0之间,而背景区(没有甲烷渗漏)的介于-0.81%--0.85%之间。为了解环境因素对底栖有孔虫δ13C值的影响,对细菌席和蛤床两种截然不同的甲烷渗漏环境的底栖有孔虫进行研究。细菌席区的有孔虫单体比蛤床区的具有更负的δ13C值。我们解释这种差异是食物来源或共生细菌对底栖有孔虫δ13C值影响的结果,通过溶解无机碳(DIC)作用于底栖有孔虫,使其δ13C值负偏移。对比活体和死体底栖有孔虫的δ13C值,并未发现统计上的差异。这说明自生碳酸盐沉淀作用未在观测到的同位素组成中起主导作用。然而,少量极度亏损δ13C(〈-12%)的死体底栖有孔虫确实显示了自生碳酸盐岩沉积对有孔虫δ13C值影响的潜在证据。 相似文献
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在20世纪80年代后期 ,冰核记录揭示出大约每隔100ka发生的由冰期到暖期的急剧气候变化可通过温室气体甲烷浓度的快速增加加以对比。最初 ,这些增高被认为是湿地环境的细菌作用造成的。Nisbet(1990)根据以水合物形式贮存在永冻地区和大陆边缘的数量巨大的甲烷提供了一个选择解释。他认为这种甲烷的大量释放可能触发冰期—间冰期的气候变化。Kennett等(2000)提供证据说明快速气候变化确实与加利福尼亚海岸滨外圣巴巴拉海盆水合物中的甲烷释放有关。在高压、低温以及足够高的气体浓度情况下 ,水分子形成笼形… 相似文献
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The northern slope of the South China Sea is a gas-hydrate-bearing region related to a high deposition rate of organic-rich sediments co-occurring with intense methanogenesis in subseafloor environments.Anaerobic oxidation of methane(AOM) coupled with bacterial sulfate reduction results in the precipitation of solid phase minerals in seepage sediment,including pyrite and gypsum.Abundant aggregates of pyrites and gypsums are observed between the depth of 667 and 850 cm below the seafloor(cmbsf) in the entire core sediment of HS328 from the northern South China Sea.Most pyrites are tubes consisting of framboidal cores and outer crusts.Gypsum aggregates occur as rosettes and spheroids consisting of plates.Some of them grow over pyrite,indicating that gypsum precipitation postdates pyrite formation.The sulfur isotopic values(δ~(34) S) of pyrite vary greatly(from –46.6‰ to –12.3‰ V-CDT) and increase with depth.Thus,the pyrite in the shallow sediments resulted from organoclastic sulfate reduction(OSR) and is influenced by AOM with depth.The relative high abundance and δ~(34) S values of pyrite in sediments at depths from 580 to 810 cmbsf indicate that this interval is the location of a paleo-sulfate methane transition zone(SMTZ).The sulfur isotopic composition of gypsum(from–25‰ to –20.7‰) is much lower than that of the seawater sulfate,indicating the existence of a 34 S-depletion source of sulfur species that most likely are products of the oxidation of pyrites formed in OSR.Pyrite oxidation is controlled by ambient electron acceptors such as MnO_2,iron(Ⅲ) and oxygen driven by the SMTZ location shift to great depths.The δ~(34) S values of gypsum at greater depth are lower than those of the associated pyrite,revealing downward diffusion of 34 S-depleted sulfate from the mixture of oxidation of pyrite derived by OSR and the seawater sulfate.These sulfates also lead to an increase of calcium ions from the dissolution of calcium carbonate mineral,which will be favor to the formation of gypsum.Overall,the mineralogy and sulfur isotopic composition of the pyrite and gypsum suggest variable redox conditions caused by reduced seepage intensities,and the pyrite and gypsum can be a recorder of the intensity evolution of methane seepage. 相似文献
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CARBON DYNAMICS OF WETLAND IN THE SANJIANG PLAIN 总被引:2,自引:0,他引:2
SONG Chang-chun WANG Yi-yong WANG Yue-si YAN Bai-xing WANG De-xuan ZHAO Zhi-chun LOU Yan-jing 《中国地理科学(英文版)》2003,13(3):228-231
1INTRODUCTIONWetlandsplayanimportant roleintheprocessofcar-bonstorage.Thetotalcarbonstoredindifferentkindsofwetlandsisabout15%-35%ofthetotalcarboninthegloballandsoils(POSTetal.,1982;GORHAM,1991).Inaddition,wetlandsaresignificantnaturalsources fortheatmospheric CH4 (MOORE,1994).It isestimatedthatabout110×1012gCH4 originates fromanaerobicdecompositioninthenaturalwetlands,CH4 emission fromthenaturalwetlandsis15%-30%oftheglobalCH4 emission andtheCH4 emission from thepeat land at hi… 相似文献
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The amount of methane leaked from deep sea cold seeps is enormous and potentially affects the global warming,ocean acidification and global carbon cycle. It is of great significance to study the methane bubble movement and dissolution process in the water column and its output to the atmosphere. Methane bubbles produce strong acoustic impedance in water bodies, and bubble strings released from deep sea cold seeps are called "gas flares"which expressed as flame-like strong backscatter in the water column. We characterized the morphology and movement of methane bubbles released into the water using multibeam water column data at two cold seeps. The result shows that methane at site I reached 920 m water depth without passing through the top of the gas hydrate stability zone(GHSZ, 850 m), while methane bubbles at site II passed through the top of the GHSZ(597 m) and entered the non-GHSZ(above 550 m). By applying two methods on the multibeam data, the bubble rising velocity in the water column at sites I and II were estimated to be 9.6 cm/s and 24 cm/s, respectively. Bubble velocity is positively associated with water depth which is inferred to be resulted from decrease of bubble size during methane ascending in the water. Combined with numerical simulation, we concluded that formation of gas hydrate shells plays an important role in helping methane bubbles entering the upper water bodies, while other factors, including water depth, bubble velocity, initial kinetic energy and bubble size, also influence the bubble residence time in the water and the possibility of methane entering the atmosphere. We estimate that methane gas flux at these two sites is 0.4×10~6–87.6×10~6 mol/a which is extremely small compared to the total amount of methane in the ocean body, however, methane leakage might exert significant impact on the ocean acidification considering the widespread distributed cold seeps. In addition, although methane entering the atmosphere is not observed, further research is still needed to understand its potential impact on increasing methane concentration in the surface seawater and gas-water interface methane exchange rate, which consequently increase the greenhouse effect. 相似文献
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