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71.
尉氏县地热资源开发尚处于起步阶段,为适应大规模地热资源开发需求,当前急需探明该区地热资源赋存情况。研究区位于太康隆起次级构造单元中部鼻状构造带及尉氏—薛店次凹带结合部位,本文通过尉氏县城西部所采集的220个大地电磁测深点的二维及三维反演工作,结合二维反射地震剖面,分析了研究区地层、断裂展布构造,并对地热资源远景区进行了预测。维性分析结果表明研究区主构造走向为北西向,二维及三维大地电磁测深反演结果表明研究区4 km以浅地层由上到下可分为四层:新近系—第四系、三叠系、石炭系—二叠系、寒武系—奥陶系;综合二维反射地震及大地电磁测深资料,剖面位置处可识别出三条正断层。选择断裂带周边或穿过断裂带钻井,对水量有一定保证。  相似文献   
72.
贵州省沿河县耕地土壤酸化现状及改良对策   总被引:1,自引:0,他引:1       下载免费PDF全文
夏瑞  谢东明  张与伦 《贵州地质》2020,37(3):409-415
土壤酸化是耕地退化的一种表现形式,在酸性、强酸性土壤中,多数农作物的生长会受到影响,会明显降低作物的生产能力。本文通过对比沿河县1980—1981年第二次土壤普查和2017—2019年耕地质量地球化学调查评价成果数据,分析全县土壤酸化现状和规律。结果表明,全县耕地土壤pH值分布于399880之间,平均为610。与1980—1981年第二次土壤普查时期相比,全县主要耕地土壤类型pH平均值均有下降,其中黄壤pH值降幅为591%;石灰土降幅为759%,从中性下降为酸性;紫色土降幅为2209%,从碱性降为酸性;全县主要土地利用类型土壤酸化范围变大,主要从中性转化为酸性,酸性转化为强酸性,耕地土壤酸化程度加深,水田酸化程度高于旱地。建议通过推进测土配方施肥工作合理调整化肥施用比例,大力提高耕地土壤有机质含量,积极推广使用石灰、白云石、粉煤灰、碱渣、生物质碳等生物改良剂,因地制宜建立土壤改良示范点等多项对策来缓解和治理耕地土壤酸化。  相似文献   
73.
2017年河套盆地临河坳陷油气勘探取得重要发现,基于区域中生代以来大地构造演化系统梳理,以钻井与地震对照、研究区与邻近盆地类比为研究方法,划分河套盆地临河坳陷南部吉兰泰凹陷中生代构造层,并绘制其分布范围,探讨其赋存特征与意义。结果表明:研究区中生界除三叠系外发育齐全,厚度巨大,且白垩系自上而下可细分为K1 I、K1 II和K1III三个构造层;除K1I构造层全区广覆式发育外,其它构造层呈楔状—缓楔状,长轴沿主控断裂NNE向延伸;研究区自中生代以来盆地性质经历了早中侏罗世断陷、早白垩世早期断陷、早白垩世中期断拗转换和早白垩世晚期拗陷的演化过程;F 3和F 7断层之间的K1 II和K1 III构造层、F 7断层东部的J构造层均具良好的油气勘探前景。  相似文献   
74.
张贵宝 《地质与勘探》2020,56(3):502-511
冀北隆化县小罗卜沟中型金银矿床的发现是该地区找矿的重大突破。勘查区位于1∶20万和1∶5万Au、Ag等多元素综合异常内,通过以钻探、硐探为主的探矿工程,基本查明了矿体赋存于早白垩世九佛堂组复成分角砾岩和义县组安山岩及安山质火山角砾岩的构造裂隙内。矿体受断裂带控制,与围岩界线明显,对围岩没有选择性,矿床属燕山期与岩体有关的浅成中低温热液矿床。矿区内共圈定17个矿体,矿体长28~788 m,斜深8~489 m,平均厚度0.80~3.96 m,Ag平均品位68.44×10~(-6)~447.50×10~(-6),共生Au平均品位1.16×10~(-6)~6.25×10~(-6);伴生Au平均品位0.20×10~(-6)~1.00×10~(-6),伴生S平均品位2.34%~11.10%。主要矿体Ⅳ-1银资源储量达中型。矿区内及外围仍存在寻找多金属矿床的潜力。该矿床的发现对寻找同类矿床具有重要指示意义。  相似文献   
75.
Quartz-in-garnet inclusion barometry integrated with trace element thermometry and calculated phase relations is applied to mylonitized schists of the Pinkie unit cropping out on the island of Prins Karls Forland, western part of the Svalbard Archipelago. This approach combines conventional and novel techniques and allows deciphering of the pressure–temperature (P–T) evolution of mylonitic rocks, for which the P–T conditions could not have been easily deciphered using traditional methods. The results obtained suggest that rocks of the Pinkie unit were metamorphosed under amphibolite facies conditions at 8–10 kbar and 560–630°C and mylonitized at ~500 to 550°C and 9–11 kbar. The P–T results are coupled with in-situ Th–U-total Pb monazite dating, which records amphibolite facies metamorphism at c. 359–355 Ma. This is the very first evidence of late Devonian–early Carboniferous metamorphism in Svalbard and it implies that the Ellesmerian Orogeny on Svalbard was associated with metamorphism up to amphibolite facies conditions. Thus, it can be concluded that the Ellesmerian collision between the Franklinian margin of Laurentia and Pearya and Svalbard caused not only commonly accepted brittle deformation and weak greenschist facies metamorphism, but also a burial and deformation of rock complexes at much greater depths at elevated temperatures.  相似文献   
76.
Low temperature is an important limiting factor for alpine ecosystems on the Tibetan Plateau. This study is based on data from on-site experimental warming platforms (open top chambers, OTC) at three elevations (4300 m, 4500 m, 4700 m) on the Qinghai-Tibet Plateau. The carbon and nitrogen stoichiometry characteristics of plant communities, both above-ground and below-ground, were observed in three alpine meadow ecosystems in August and September of 2011 and August of 2012. Experimental warming significantly increased above-ground nitrogen content by 21.4% in September 2011 at 4500 m, and reduced above-ground carbon content by 3.9% in August 2012 at 4300 m. Experimental warming significantly increased below-ground carbon content by 5.5% in August 2011 at 4500 m, and the below-ground ratio of carbon to nitrogen by 28.0% in September 2011 at 4300 m, but reduced below-ground nitrogen content by 15.7% in September 2011 at 4700 m, below-ground carbon content by 34.3% in August 2012 at 4700 m, and the below-ground ratio of carbon to nitrogen by 37.9% in August 2012 at 4700 m. Experimental warming had no significant effect on the characteristics of community carbon and nitrogen stoichiometry under other conditions. Therefore, experimental warming had inconsistent effects on the carbon and nitrogen stoichiometry of plant communities at different elevations and during different months. Soil ammonium nitrogen and nitrate nitrogen content were the main factors affecting plant community carbon and nitrogen stoichiometry.  相似文献   
77.
陈钰嘉  田淑芳 《现代地质》2020,34(3):626-634
矿山地质环境的评价对于矿产资源的开发利用、矿山环境的恢复治理有重要意义,在评价工作中最佳评价尺度的确定有助于提高评价结果的精确性和统一性。本次研究从矿山地质环境的评价内容出发,提出一种最佳评价尺度的确定方法。在不同尺度下,将评价区域按照边界划分成网格评价单元,通过定量化评价指标的尺度效应表现(异质性、一致性、信息量、破碎度),求出其随尺度变化的拟合函数,进而建立最佳评价尺度函数,并求出其评价适宜区间和最佳评价尺度。将该方法应用到福建省龙岩市新罗区、三明市大田县矿山地质环境评价中,得到新罗区和大田县的最佳评价尺度适宜区间分别为[997.8 m,1 194 m]、[955.5 m,1 297.8 m],最佳评价尺度分别为1 049.6 m、1 182.1 m。在该评价尺度区间内,所得到的评价结果基本一致,并且在最佳评价尺度下评价结果的效果更好,从而证明了该方法的可行性。研究表明,最佳评价尺度函数受到研究区范围、评价内容分布情况、自然地理情况等因素的综合影响。该研究成果可以为矿山地质环境评价工作中评价尺度的确定提供理论依据。  相似文献   
78.
The effects of land use changes on the ecology and hydrology of natural watersheds have long been debated. However, less attention has been given to the hydrological effects of forest roads. Although less studied, several researchers have claimed that streamflow changes related to forest roads can cause a persistent and pervasive effect on hillslope hydrology and the functioning of the channel system. The main potential direct effects of forest roads on natural watersheds hydrologic response are runoff production on roads surfaces due to reduced infiltration rates, interruption of subsurface flow by road cutslopes and rapid transfer of the produced runoff to the stream network through roadside ditches. The aforementioned effects may significantly modify the total volume and timing of the hillslope flow to the stream network. This study uses detailed field data, spatial data, hydro‐meteorological records, as well as numerical simulation to investigate the effects of forest roads on the hydrological response of a small‐scale mountain experimental watershed, which is situated in the east side of Penteli Mountain, Attica, Greece. The results of this study highlight the possible effects of forest roads on the watersheds hydrological response that may significantly influence direct runoff depths and peak flow rates. It is demonstrated that these effects can be very important in permeable watersheds and that more emphasis should be given on the impact of roads on the watersheds hydrological response. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   
79.
Surface soil moisture has been extensively studied for various land uses and landforms. Although many studies have reported potential factors that control surface soil moisture over space or time, the findings have not always been consistent, indicating a need for identification of the main factors. This study focused on the static controls of topographic, soil, and vegetation features on surface soil moisture in a steep natural forested headwater catchment consisting of three hillslope units of a gully area, side slope, and valley‐head slope. Using a simple correlation analysis to investigate the effects of the static factors on surface soil moisture at depths of 0–20 cm at 470 points in 13 surveys, we addressed the characteristics of surface soil moisture and its main controlling factors. The results indicated that the mean of surface soil moisture was in the decreasing order of gully area > valley‐head slope > side slope. The relationship between the mean and standard deviation of surface soil moisture showed a convex‐upward shape in the headwater catchment, a negative curvilinear shape in the gully area, and positive curvilinear shapes at the side and valley‐head slopes. At the headwater catchment and valley‐head slope, positive contributions of soil porosity and negative contributions of slope gradient and saturated hydraulic conductivity were the main controlling factors of surface soil moisture under wetter conditions, whereas positive contributions of topographic wetness index and negative contributions of vegetation density were the main controlling factors of surface soil moisture under drier conditions. At the side slope underlain by fractured bedrocks, only saturated hydraulic conductivity and vegetation density were observed to be the controlling factors. Surface soil moisture in the gully area was mainly affected by runoff rather than were static features. Thus, using hillslope units is effective for approximately estimating the hydrological behaviours of surface moisture on a larger scale, whereas dependency between the main static factors and moisture conditions is helpful for estimating the spatial distributions of surface moisture on a smaller scale.  相似文献   
80.
Stemflow (Sf) measurements in tropical rain and montane forests dominated by large trees rarely include the understory and small trees. In this study, contributions of lower (1‐ to 2‐m height) and upper (>2‐m height and <5‐cm diameter at breast height [DBH]) woody understory, small trees (5 < DBH < 10 cm), and canopy trees (>10‐cm DBH) to Sf per unit ground area (Sfa) of a Mexican lower montane cloud forest were quantified for 32 days with rainfall (P) during the 2014 wet season. Rainfall, stemflow yield (Sfy), vegetation height, density, and basal area were measured. Subsequently, stemflow funneling ratios (SFRs) were calculated, and three common methods to scale up Sfy from individual trees to the stand level (tree‐Sfy correlation, P‐Sfy correlation, and mean‐Sfy extrapolation) were used to calculate Sfa. Understory woody plants, small trees, and upper canopy trees represented 96%, 2%, and 2%, respectively, of the total density. Upper canopy trees had the lowest SFRs (1.6 ± 0.5 Standard Error (SE) on average), although the lower understory had the highest (36.1 ± 6.4). Small trees and upper understory presented similar SFRs (22.9 ± 5.4 and 20.2 ± 3.9, respectively). Different Sf scaling methods generally yielded similar results. Overall Sfa during the study period was 22.7 mm (4.5% of rainfall), to which the understory contributed 70.1% (15.9 mm), small trees 10.6% (2.4 mm), and upper canopy trees 19.3% (4.4 mm). Our results strongly suggest that for humid tropical forests with dense understory of woody plants and small trees, Sf of these groups should be measured to avoid an underestimation of overall Sf at the stand level.  相似文献   
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