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71.
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腾冲马鞍山、打鹰山、黑空山火山岩浆来源与演化 总被引:10,自引:6,他引:4
本文对马鞍山、打鹰山、黑空山火山岩主微量和Sr、Nd、Pd同位素地球化学研究认为,腾冲火山岩浆源区具有MORB与富集地幔混合之特征,推测为新特提斯俯冲洋壳重新熔融,导致腾冲地区的高钾钙碱性岩浆的火山活动,解释了腾冲在新生代大陆板内构造环境背景下出现岛弧或活动大陆边缘火山岩地球化学特征的现象。马鞍山、打鹰山和黑空山火山高钾钙碱性岩浆经历了岩浆房阶段辉石、钛铁矿的结晶分离作用和岩浆上升过程中斜长石的结晶分离作用,导致岩浆成分从中基性向中酸性演化,火山岩从玄武质粗安岩→粗安岩→粗面质英安岩演化。 相似文献
73.
本文构建以掺硼金刚石(Boron-doped diamond,BDD)为阳极、不锈钢为阴极、硫酸盐为电解质的电化学体系,考察了电流密度、pH值、硫酸盐浓度以及初始四环素浓度等四个因素对电化学氧化降解废水中四环素的影响,运用响应曲面法对运行参数进行优化;通过电子自旋共振检测技术分析电化学反应中产生的自由基,探究了间歇通电模式下电化学体系持续氧化机理。结果表明,四个因素对TOC去除率的影响大小次序为:电流密度>初始四环素浓度>初始pH值>硫酸盐浓度,其中初始pH值和硫酸盐浓度与电流密度和初始四环素浓度的交互作用对TOC去除率的影响较为显著;最佳运行参数为pH值为5,电流密度为100 mA·cm-2,硫酸盐浓度为0.25 mol·L-1,初始四环素浓度为1000 mg·L-1;间歇通电模式下,BDD电极表面产生的SO4·-等高活性物质间相互转化提供了体系的可持续氧化能力。该研究结果为电化学氧化技术的实际应用提供了节省能耗的有效途径。 相似文献
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Sulfate chitosan derivatives have good solubility and therapeutic effect on the cell model of NAFLD. The aim of this study was to examine the therapeutic effect of sulfate chitosan derivatives on NAFLD. The male Wistar rats were orally fed high fat emulsion and received sulfate chitosan derivatives for 5 weeks to determine the pre-treatment effect of sulfate chitosan derivatives on NAFLD. To evaluate the therapeutic effect of sulfate chitosan derivatives on NAFLD, the rats were orally fed with high concentration emulsion for 5 weeks, followed by sulfate chitosan derivatives for 3 weeks. Histological analysis and biomedical assays showed that sulfate chitosan derivatives can dramatically prevent the development of hepatic steatosis in hepatocyte cells. In animal studies, pre-treatment and treatment with sulfate chitosan derivatives significantly protected against hepatic steatohepatitis induced by high fat diet according to histological analysis. Furthermore, increased TC, ALT, MDA, and LEP in NAFLD were significantly ameliorated by pre-treatment and treatment with sulfate chitosan derivatives. Furthermore, increased TG, AST, and TNF-α in NAFLD were significantly ameliorated by treatment with sulfate chitosan derivatives. Sulfate chitosan derivatives have good pre-treatment and therapeutic effect on NAFLD. 相似文献
76.
Intense thermochemical sulfate reduction (TSR) and up to 18% H2S are found in the Upper Permian Changxing Formation (P3ch) in the northeast (NE) Sichuan Basin, China, despite that rare gypsum or anhydrite was found in this formation. Here, we present new concentration data of carbonate-associated sulfate (CAS) from carbonate host rocks, C, O, and Sr isotope data for TSR-related calcites, and S isotope data for sulfur compounds obtained during this study. These data along with spatial-temporal changes in palaeogeopressure conditions, hydraulic conductivity and the physical capacity indicate that the H2S was generated locally from TSR within the P3ch reservoirs. We propose that the reactive sulfates were derived from CAS released during dolomitization and recrystallization of earlier dolomite within the P3ch Fm. and from the cross-formational migration of evaporative brines from the Lower Triassic Feixianguan Formation (T1f) to P3ch Fm. Our calculation shows that the two sources could provide enough SO42− for the generation of H2S within the P3ch reservoirs. Early downward migration of sulfate-rich evaporative brines from the T1f formation occurred in near-surface and shallow burial diagenetic settings (mainly <1000 m). The evaporative brines seeped into porous grainstones and displaced preexisting seawater, causing pervasive dolomitization within the P3ch Fm. Subsequently, TSR calcites precipitated from the pore water have high Sr concentrations (up to 7767 ppm), close to the T1f TSR calcites, and 87Sr/86Sr ratios mainly from 0.7074 to 0.7078, which are significantly higher than those of Late Permian seawater but within the range of early Triassic seawater. 相似文献
77.
Gas occurrences consisting of carbon dioxide (CO2), hydrogen sulfide (H2S), and hydrocarbon (HC) gases and oil within the Dodan Field in southeastern Turkey are located in Cretaceous carbonate reservoir rocks in the Garzan and Mardin Formations. The aim of this study was to determine gas composition and to define the origin of gases in Dodan Field. For this purpose, gas samples were analyzed for their molecular and isotopic composition. The isotopic composition of CO2, with values of −1.5‰ and −2.8‰, suggested abiogenic origin from limestone. δ34S values of H2S ranged from +11.9 to +13.4‰. H2S is most likely formed from thermochemical sulfate reduction (TSR) and bacterial sulfate reduction (BSR) within the Bakuk Formation. The Bakuk Formation is composed of a dolomite dominated carbonate succession also containing anhydrite. TSR may occur within an evaporitic environment at temperatures of approximately 120–145 °C. Basin modeling revealed that these temperatures were reached within the Bakuk Formation at 10 Ma. Furthermore, sulfate reducing bacteria were found in oil–water phase samples from Dodan Field. As a result, the H2S in Dodan Field can be considered to have formed by BSR and TSR.As indicated by their isotopic composition, HC gases are of thermogenic origin and were generated within the Upper Permian Kas and Gomaniibrik Formations. As indicated by the heavier isotopic composition of methane and ethane, HC gases were later altered by TSR. Based on our results, the Dodan gas field may have formed as a result of the interaction of the following processes during the last 7–8 Ma: 1) thermogenic gas generation in Permian source rocks, 2) the formation of thrust faults, 3) the lateral-up dip migration of HC-gases due to thrust faults from the Kas Formation into the Bakuk Formation, 4) the formation of H2S and CO2 by TSR within the Bakuk Formation, 5) the vertical migration of gases into reservoirs through the thrust fault, and 6) lateral-up dip migration within reservoir rocks toward the Dodan structure. 相似文献
78.
钾盐是关乎国计民生的大宗急缺矿产; 稀有金属、稀土金属、稀散金属、萤石、晶质石墨、金刚石等矿产是国内外公认的战略性新兴矿产。根据国家建设的需求,2015年中国地质调查局设立了“大宗急缺矿产和战略性新兴产业矿产调查工程”。该工程以查明重要矿种的资源潜力,取得找矿突破为目标,以矿调为手段,以“五位一体”为部署原则,进行了全国重点地区大型资源基地和重要矿集区相关矿种的成矿规律和找矿方法创新研究,同时开展了矿产资源的综合利用研究。经过3年的努力已取得了一批找矿成果,丰富了成矿理论,创新了找矿方法,支撑了赣南、闽西等革命老区脱贫攻坚,带动了川西等地区的经济发展,对保障国家农业安全和战略性新兴产业顺利发展发挥了积极作用。概要介绍了在钾盐找矿、华南“三稀”金属矿产调查、川西大型锂矿资源基地建设、新疆奇台超大型晶质石墨矿找矿等方面取得的新进展; 介绍了在华南、华北、中西部等主要成矿带“三稀”矿产、晶质石墨、萤石等关键矿种成矿规律研究、成矿模式构建、资源潜力评价、重点靶区优选、技术方法组合等方面取得的成果; 介绍了在公益性基础性调查研究中所起到的示范引领作用。钾盐“二层楼”成矿模式和锂矿“五层楼+地下室层脉组合”成矿理论和找矿模型得以完善,新发现靶区40处,矿产地14处,大型资源基地2处,新增KCl资源量3.5亿t,伟晶岩型锂资源量31.75万t,铍资源量1.6万t,石墨资源量7 378万t,脉石英56万t,萤石1 159万t,金刚石资源量2.29万克拉,新增重稀土资源量12万t,含磷锂铝石岩体型锂资源量38万t。该工程取得的进展与成果对保障国家资源安全和战略性新兴产业的顺利发展具有重要的现实意义。 相似文献
79.
沸石具有选择性吸附钾离子的特性,吸钾量是沸石应用中一项重要的物化性能,温度是影响吸钾量测量结果准确度的重要因素。在现有的吸钾量测试方法中,由于对测试温度的规定较为模糊,基本不作设定或只注明室温,而室温随季节变化较大,测试方法的准确度和精密度无法得到保证。为完善吸钾量的测试方法,本文研究了实际温度对沸石吸钾量的影响。结果表明,在试验的温度范围内(11.5~80℃),沸石样品的吸钾量与温度呈稳定且相对固定的负相关,由此提出了吸钾量计算公式:E20=Et+k(t-t20)。根据该定量关系,本文提出吸钾量测试方法中需要明确规定吸钾量的测试温度为20℃;如果是在非20℃的实际温度下测量得到的吸钾量,可根据温度校正系数(k)转换到20℃条件下的吸钾量。这种吸钾量测试方法可在实际室温下进行,操作简单,无需使用控温装置;又能消除因时间和地域差异导致的室温波动的影响,使吸钾量测试结果具有更好的精密度和准确度。 相似文献
80.