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101.
武汉市碳排放的测算及影响因素分解研究 总被引:1,自引:0,他引:1
研究基于14个主要方面碳源,测算了武汉市1996—2009年碳排放量。发现自1996年以来武汉市碳排放呈现"平稳—上升—平稳"的三阶段特征。进一步基于LMDI模型分解碳排放的影响因素,结果表明,能源结构、能源效率因素对碳排放量具有一定抑制作用,但效果不够显著且波动性较强,1997—2009年与基期相比,能源结构、能源效率因素分别累计实现了0.95%,11.30%的碳减排;而经济因素与人口规模因素则对碳排放具有较强推动作用,分别累计产生了64.65%,19.65%的碳增量。最后,据此提出推进武汉市碳减排的对策建议。 相似文献
102.
森林砍伐和恢复改变了流域洪水形成条件,将影响河流洪水的总量与洪峰形态,但是选择合适的技术来进行准确的分析评价仍然是个难题.采用流域分布式水文数学模型(SWAT)对四川梭磨河径流过程进行模拟,得到不同森林覆被率的洪水过程和洪峰的频率分布.针对各种森林情境下的洪水过程模拟,发现对于中小尺度流域,良好的森林覆被可以减小洪水大小30%~ 40%,而且其中森林覆被率在35% ~ 40%之内具有最显著的滞蓄洪效益,它与完全的森林覆被对在洪水的影响差异仅在5%以内,这对于我国西南生态保护与恢复工程的实施决策具有重要参考价值. 相似文献
103.
分析了楚雄市1965-2010年的降雨特点,采用同时期城区(楚雄站)与郊区(南华站、双柏站)雨量横向对比和城市化发展不同时期同一站雨量纵向对比的方法,研究了城市化对年降雨量、季节雨量和不同类型降雨发生次数等的影响.通过研究发现:城市化发展对城市年雨量、汛期雨量有不同程度的增加作用;受城市化发展的影响,降雨年内分配集中雨季的趋势更加明显;城市化发展使不同类型降雨发生次数有增加或减少,对大雨和暴雨有增加作用,小雨和中雨有所减少.城市化发展使城市大雨和暴雨增多,所以要加强城市洪涝、滑坡和泥石流灾害的防治工作. 相似文献
104.
K.K. Phoon J.V. Retief 《Georisk: Assessment and Management of Risk for Engineered Systems and Geohazards》2015,9(3):125-127
ISO2394:2015 contains a new informative Annex D on “Reliability of Geotechnical Structures”. The emphasis in Annex D is to identify and characterize critical elements of the geotechnical reliability-based design process, while respecting the diversity of geotechnical engineering practice. This paper highlights the main features of Annex D and gaps for future work. 相似文献
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以陕西潼关、大柳塔及辽宁阜新矿区为例,采用对比分析的方法研究矿产资源开发中矿山地质环境问题差异性响应的主要因素。上述3个矿区矿产资源开发中矿山地质环境问题主要包括:20世纪90年代以前,陕西潼关金矿区是中国矿产资源开发秩序十分混乱的矿区之一,地下开采的采矿废石随意堆排导致了极为严重的矿山泥石流地质灾害及其隐患,"三废"无序排放导致土壤、河水及其底泥的重金属及氰化物污染严重,严重影响人体健康;地处生态环境脆弱带的陕西大柳塔煤矿区,20年大型机械化地下煤炭资源开采导致大面积地面塌陷及其链生的地下水含水层破坏严重,但矿区土地沙漠化程度总体没有呈现加重的趋势,水土环境重金属呈轻度污染;具有百年开发历史的辽宁阜新煤矿区,露天开采使土地生态破坏严重、边坡滑坡灾害频发、土地压占与破坏突出,地下开采引起的地面塌陷对地表建筑物及人居安全影响严重,但相对于金属矿区,该矿区水土环境重金属污染相对轻得多。对比上述3个矿区矿山地质环境问题,得到其差异性响应主要因素:矿产资源种类、原生地质环境条件、开采方式及矿山环境保护意识等。 相似文献
107.
108.
In this paper the spatial and temporal responses of the Some?u Mic River (Romania) to natural and anthropogenic controls over the past 150 years are analysed, based on a series of morphometric parameters extracted from five successive sets of topographic maps and one set of orthophotos. Prior to the intensive hydrotechnical interventions of the last four decades, the river was characterized by a complex alternation of different channel types, resulting in a mixture of alluvial and mixed sinuous – meandering – sinuous anabranched – meandering anabranched reaches, each a few hundred metres to a few kilometres long. The main cause for this spatial behaviour was the local geology. Its effects were intensified by a larger scale slope, slightly higher than along a longitudinal profile with normal concavity, as a consequence of the presence of a 400 m elevation knick‐point located in the catchment area. A generalized maintenance of river in the floodplain perimeter during the entire interval of study (centennial scale), with local planform adjustments and lack of median scale avulsion in lateral tilting areas and along the anabranched reaches, channel lengthening and meander development during hydrological stable periods and channel shortening and increasing of natural cutoffs during periods with higher incidence of floods (decadal scale), and the incapacity of local morphologic changes resulted from human interventions to completely counterbalance general trends (decadal scale), supports the idea of decreasing the amplitude and frequency of important floods, after the end of the Little Ice Age. Channel metamorphosis by canalization, diminishing/elimination of overflows and medium‐scale avulsions by changes in flow regimes (dams) and the presence of dykes in the floodplain perimeter, channel narrowing (43%) and incision (at least after 1945) downstream from dams, and probably because of in‐channel gravel mining are the main anthropically induced changes along the Some?u Mic River. Even if human impact is important, both at the drainage basin scale and along the Some?u Mic River, it has only local impacts, subordinated to climate. The low level of human impact on this river could be the consequence of the higher general slope downstream from 400 m elevation knick‐point, which probably forces the positioning of its effects under an important internal threshold of the fluvial system. This boundary condition defines Some?u Mic River as an atypical river. This study supports the idea that climate has a more important role in the post‐Little Ice Age (LIA) rivers' behaviour than currently accepted. Copyright © 2011 John Wiley & Sons, Ltd. 相似文献
109.
Changes of P, Ca, Al and Fe contents in fringe marshes along a pedogenic chronosequence in the Pearl River estuary, South China 总被引:2,自引:0,他引:2
Rong Xiao Honggang ZhangHaifeng Gao Xinhui LiuAndreas Wilkes 《Continental Shelf Research》2011,31(6):739-747
Soil and plant samples were collected in four fringe marsh zones (i.e., A, B, C and D zones) along a pedogenic chronosequence in the Pearl River estuary in the Spring of 2009. Samples were subjected to a total digestion technique and analyzed for P, Ca, Al and Fe in order to study the changes of nutrient contents, storages in soils and their bioavailabilities to wetland plants (e.g. Cyperus malaccensis) in four zones. Results showed that soil Ca increased with depth along soil profiles, while P, Al and Fe generally kept constant in soil profiles in four zones. Al and Fe contents in the top 10 cm soils showed significant decreases from D to A zone, while a significant increase in Ca contents (P<0.05). Significant increases along pedogenic chronosequence for P, Al and Fe at 30-40 cm soil horizons were also observed. Ca was mainly accumulated in plant aboveground parts; Al and Fe were accumulated in the belowground parts; while P was homogenously distributed among the tissues of C. malaccensis. C. malaccensis in D zone had lower Bio-concentration factors (BCFs) of P in the shoots and Al and Fe in the roots, and higher values of Ca in the shoots than those in older zones (P<0.05). Compared to Al and Fe, both Ca and P had relatively higher translocation capacities for C. malaccensis, while only lower TFs for P and higher values for Al and Fe in D zone were observed than those in A and B zones (P<0.05). Except for Al with no significant changes, the total BCFs for P and Fe showed an increasing trend with soil ages, while a decreasing trend for Ca. The total bio-storage factors (TBSFs) of P and Ca declined with the pedogenic time, whereas an increase for Fe. The results of this study can contribute to the wetland conservation and management in the Pearl River estuarine region. 相似文献
110.