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991.
Strata behaviors are mainly affected by regional geodynamic background. The influence of rock mass stress and energy distribution on strata behaviors in the Tongxin mine is studied in terms of regional tectonic movement, seismic activity and tectonic stress field. The results show that the extrusion lifting movement of Kouquan fault adjacent to the Tongxin mine results in the stress concentration in the rock of the Carboniferous coal bed and accumulation of a large amount of elastic energy and forms structural background of Tongxin mine. Due to various seismic activities in the mine area, the strain energy is known to reach much higher levels, up to 0.5×108 J1/2. Since the stratigraphic structure is sensitive to the mining operation, the strain energy could cause strong strata behaviors. A special geological structure model of the Tongxin mine is established based on the geodynamic division method. The distribution of regional structure stress field is determined by the rock mass stress analysis system. Based on this model, Tongxin mine is divided into five areas with high stress, eight areas with low stress and eight areas with gradient stress. The strong strata behaviors mostly occur in high stress areas. These results could provide guidance to predict the strength of regional or mine pressure and control strata behavior in different areas.  相似文献   
992.
The Fengjia barite–fluorite deposit in southeast Sichuan is a stratabound ore deposit which occurs mainly in Lower Ordovician carbonate rocks. Here we present results from fluid inclusion and oxygen and hydrogen isotope studies to determine the nature and origin of the hydrothermal fluids that generated the deposit. The temperature of the ore‐forming fluid shows a range of 86 to 302 °C. Our detailed microthermometric data show that the temperature during mineralization of the fluorite and barite in the early ore‐forming stage was higher than that during the formation of the calcite in the late ore‐forming stage. The salinity varied substantially from 0.18% to 21.19% NaCl eqv., whereas the density was around 1.00 g/cm3. The fluid composition was mainly H2O (>91.33%), followed by CO2, CH4 and traces of C2H6, CO, Ar, and H2S. The dominant cation was Na+ and the dominant anion Cl, followed by Ca2+, SO42‐, K+, and Mg2+, indicating a mid–low‐temperature, mid‐low‐salinity, low‐density NaCl–H2O system. Our results demonstrate that the temperature decreased during the ore‐forming process and the fluid system changed from a closed reducing environment to an open oxidizing environment. The hydrogen and oxygen isotope data demonstrate that the hydrothermal fluids in the study area had multiple sources, primarily formation water, as well as meteoric water and metamorphic water. Combined with the geological setting and mineralization features we infer that the stratabound barite–fluorite deposits originated from mid–low‐temperature hydrothermal fluids and formed vein filling in the fault zone.  相似文献   
993.
994.
995.
Typhoon Morakot brought extreme rainfall and initiated numerous landslides and debris flows in southern Taiwan in August of 2009. The purpose of this study is to identify the extreme rainfall-induced landslide frequency-area distribution in the Laonong River Basin in southern Taiwan and debris flow-initiated conditions under rainfall. Results of the analysis show that debris flows were initiated under high cumulative rainfall and long rainfall duration or high rainfall intensity. The relationship of mean rainfall intensity and duration threshold could reflect debris flow initiation characteristics under high rainfall intensity in short rainfall duration conditions. The relationship of cumulative rainfall and duration threshold could reflect debris flow initiation characteristics under high cumulative rainfall in long rainfall duration. Defining rainfall events by estimating rainfall parameters with different methodologies could reveal variations among intermittent rainfall events for the benefit of issuing debris flow warnings. The exponent of landslide frequency-area distribution induced by Typhoon Morakot is lower than that induced by the Chi-Chi earthquake. The lower exponent of landslide frequency-area distribution can be attributed to the transportation and deposition areas of debris flow that are included in the landslide area. Climate change induced high rainfall intensity and long duration of precipitation, for example, Typhoon Morakot brought increased frequency of debris flow and created difficulty in issuing warnings from rainfall monitoring.  相似文献   
996.
Incubation experiments were adopted to characterize the rates and pathways of iron reduction and the contributions to anaerobic organic matter mineralization in the upper 0–5 cm of sediments along a landscape-scale inundation gradient in tidal marsh sediments in the Min River Estuary, Southeast China. Similar sediment characteristics, single-species vegetation, varied biomass and bioturbation, distinct porewater pH, redox potential, and electrical conductivity values have resulted in a unique ecogeochemical zonation along the inundation gradient. Decreases in solid-phase Fe(III) and increases in nonsulfidic Fe(II) and iron sulfide were observed in a seaward direction. Porewater Fe2+ was only detected in the upland area. High rates of iron reduction were observed in incubation jars, with significant accumulations of nonsulfidic Fe(II), moderate accumulations of iron sulfides, and negligible accumulations of porewater Fe2+. Most of the iron reduction was microbially mediated rather than coupled to reduced sulfides. Microbial iron reduction accounted for 20–89 % of the anaerobic organic matter mineralization along the inundation gradient. The rate and dominance of microbial iron reduction generally decreased in a seaward direction. The contributions of microbial iron reduction to anaerobic organic matter mineralization depended on the concentrations of bioavailable Fe(III), the spatial distribution of which was significantly related to tidal inundation. Our results clearly showed that microbial iron reduction in the upper sediments along the gradient is highly dependent on spatial scales controlled primarily by tidal inundation.  相似文献   
997.
海洋水下文化遗产是不可再生的文化资源,在全球海洋开发的浪潮中,做好海洋水下文化遗产的调查和保护是迫切和急需的。文章概述世界上传统海洋大国对海洋水下文化遗产保护和管理的经验,分析我国海洋水下文化遗产保护和管理存在的问题,并提出相关对策:查清海洋水下文化遗产的分布、数量和特征等信息,了解海洋水下文化遗产分布区的地质地貌环境、水动力环境和保存环境条件,建立海洋水下文化遗产档案馆和数据库系统;完善与海洋水下文化遗产保护相关的法规、政策和标准规范等,提升执法效率,做好海洋水下文化遗产保护和海洋开发利用的协调工作;建立海洋水下文化遗产保护示范区,传承和弘扬蓝色文明,实现海洋水下文化遗产的社会利用和可持续保护。  相似文献   
998.
文章对我国能源供求现状进行概述,在此基础上根据《中国统计年鉴》中的数据,利用1990-2013年的能源需求总量时间序列构建ARIMA模型,进行相关拟合与检验,并运用此模型对2016-2018年的能源需求量进行预测,揭示我国面临的能源供求形势。结果表明,未来我国能源需求量将持续增长,在能源供给相对不足的情况下需依赖大量进口,而进口能源的稳定供应又受到各种威胁制约。在此背景下讨论北极航道开通为我国能源供应带来的机遇,以及对缓和我国能源供求形势产生的影响,进而提出相关政策建议。  相似文献   
999.
本研究以硫酸镁作为麻醉剂,比较了在不同水温条件下硫酸镁对仿刺参幼参的麻醉效果,分析了不同浓度硫酸镁对仿刺参幼参的麻醉效果。实验水温设置11℃、13℃、15℃、17℃、19℃和21℃六个温度梯度,实验用仿刺参幼参规格分为大规格(L)40.26±1.84g、中规格(M)21.83±1.72g、小规格(S)11.03±1.63g。实验结果显示:1.在硫酸镁麻醉剂浓度相同时,仿刺参规格越大麻醉所需时间越长,复苏时间却越短;随着麻醉剂浓度增加,对仿刺参幼参麻醉时间相应缩短,但复苏时间呈现逐渐延长。不同浓度硫酸镁麻醉剂对不同规格仿刺参的麻醉效果具有显著差异(P0.05)。2.在水温11℃~20℃范围内,随着水温的升高,对仿刺参幼参的麻醉时间从26.13±17.78min缩短到21.47±3.52min,但复苏时间从26.13±17.78min增加到71.05±12.32min,不同水温条件下硫酸镁对仿刺参幼参麻醉效果影响显著(P0.05)。研究表明,仿刺参体重在20g以下的适宜麻醉浓度为0.1~0.25mol·L-1,体重在20g以上的适宜麻醉浓度为0.25~0.35mol·L~(-1)。  相似文献   
1000.
随着国家对长江流域实施环境综合整治、浙江省委省政府开展“五水共治”等环境整治工程,陆源入海污染物总量总体呈下降趋势,近几年舟山近岸海域环境质量呈好转态势。2007—2013年舟山近岸海域水质均不符合第一类海水水质标准,2014年符合第一类海水水质标准的海域有1 269 km2,仅占全市海域面积的6.1%,海水质量总体形势不容乐观,水体富营养化程度较高,海洋功能区水质达标率较低。通过对舟山海域84个二级类基本功能区水质达标率进行统计分析,2012—2014年海洋功能区水质达标率分别为35.7%、38.1%和44.0%,超标因子为无机氮和活性磷酸盐。  相似文献   
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