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971.
正6月25日是第24个全国"土地日"。这天阴雨绵绵,小到中雨从头天傍晚开始就一直下个不停。叶县国土资源局地质环境股的同志冒雨对全县比较严重的地质灾害隐患点进行了再次排查。他们首先来到了辛店乡桐树庄滑坡治理现场,由于该治理点正在施工,现场已经被挖开,滑坡体极不稳定,这个时候遇到强降雨也是最容易发生问题的时候。他们百般叮嘱施工人员和附近群众一定要随时提高警惕,24小时不  相似文献   
972.
斑岩型铜矿床是一类与浅成、超浅成中酸性侵入体(斑岩)有关的规模大、品位低的铜矿床。它是世界上最主要的铜矿类型,目前占世界铜资源量和产量的一半以上。据其所含的金属,可将其划分为斑岩铜钼型和斑岩铜金型,  相似文献   
973.
<正>碳循环不仅是生态系统对全球变化响应的综合表现,还直接和大气CO_2浓度的变化相关,从而影响到全球气候的稳定,因而成为全球变化研究的重要内容之一。随着科学研究的深入和社会发展的需求,碳循环研究已逐渐从人类CO_2排放到海洋与陆地全球分布的基本问题,转变为区域碳收支的确定,以及在气候变化与人类活动双重影响下全球碳循环的响应及反馈。IPCC第五次评估报告(AR5)~([1])采用大量、独立的数据进一步明确了自工业革命以来,大  相似文献   
974.
单体分子放射性碳同位素分析(CSRA)是近十几年来发展起来的一项新兴的分析手段,将所需的单体分子(生物标志物)从复杂的环境样品基质中分离并富集,再进行加速质谱仪(AMS)的放射性碳(14C)测定。这种分子水平的放射性碳同位素测定技术能够揭示出总有机质同位素组成的异质性,为解释有机碳的来源、迁移和转化等提供了新型的手段。在海洋科学研究中,单体分子放射性碳同位素分析已应用于计算碳在全球各储库的逗留时间并揭示和定量估算化石源有机碳的输入、指示沉积物的搬运过程、示踪微生物的代谢途径、改进沉积物年代学等;在环境科学研究中,单体分子放射性碳同位素分析可用于有毒物质(如多环芳烃)的源解析,示踪有机污染环境中微生物的代谢途径等。伴随着单体分子分离技术的改进及AMS灵敏度的提高,CSRA技术的应用会更加广泛。  相似文献   
975.
南大西洋沉积物中多环芳香化合物的组成特征研究   总被引:1,自引:0,他引:1  
10 samples of sediments obtained from the South Mid-Atlantic Ridge were measured for the abundances and distributions of polycyclic aromatic compounds(PAHs). The total concentrations of PAHs(∑PAHs) ranged from 2.768 to 9.826 μg/g dry sediment. The ∑PAHs was higher in sample 22V-TVG10 and sample 26V-TVG05 which were close to hydrothermal fields, with the lowest value in sample 22V-TVG14 which was farthest from hydrothermal fields, suggesting a probable hydrothermal origin of ∑PAHs of samples. Approximately nine kinds of PAHs were identified, and low molecular mass tricyclic and tetracyclic aromatic compounds were predominant in the samples. The concentrations of fluoranthene which were typical as hydrothermal alteration compounds were the highest among PAHs with dry weight between 0.913–3.157 μg/g. The phenanthrene homologue was most abundant in the samples, and the ratios between parent phenanthrene and methylphenanthrene which probably reflected the degree of hydrothermal alteration ranged from 0.097 to 1.602. The sample 22V-TVG10 possessing a maximum ratio value showed the intense influence of the hydrothermal alteration on this sample, which might further imply that PAHs in sediments were mainly derived from the hydrothermal alteration.  相似文献   
976.
An in vivo three-dimensional fluorescence method for the determination of algae community structure was developed by parallel factor analysis(PARAFAC) and CHEMTAX. The PARAFAC model was applied to fluorescence excitation-emission matrix(EEM) of 60 algae species belonging to five divisions and 11 fluorescent components were identified according to the residual sum of squares and specificity of the composition profiles of fluorescent. By the 11 fluorescent components, the algae species at different growth stages were classified correctly at the division level using Bayesian discriminant analysis(BDA). Then the reference fluorescent component ratio matrix was constructed for CHEMTAX, and the EEM–PARAFAC–CHEMTAX method was developed to differentiate algae taxonomic groups. The correct discrimination ratios(CDRs) when the fluorometric method was used for single-species samples were 100% at the division level, except for Bacillariophyta with a CDR of 95.6%. The CDRs for the mixtures were above 94.0% for the dominant algae species and above 87.0% for the subdominant algae species. However, the CDRs of the subdominant algae species were too low to be unreliable when the relative abundance estimated was less than 15.0%. The fluorometric method was tested using the samples from the Jiaozhou Bay and the mesocosm experiments in the Xiaomai Island Bay in August 2007. The discrimination results of the dominant algae groups agreed with microscopy cell counts, as well as the subdominant algae groups of which the estimated relative abundance was above 15.0%. This technique would be of great aid when low-cost and rapid analysis is needed for samples in a large batch. The fluorometric technique has the ability to correctly identify dominant species with proper abundance both in vivo and in situ.  相似文献   
977.
Stable carbon and nitrogen isotopic composition of particulate organic matter(POM) were measured for samples collected from the Bering Sea in 2010 summer. Particulate organic carbon(POC) and particulate nitrogen(PN) showed high concentrations in the shelf and slope regions and decreased with depth in the slope and basin, indicating that biological processes play an important role on POM distribution. The low C/N ratio and heavy isotopic composition of POM, compared to those from the Alaska River, suggested a predominant contribution of marine biogenic organic matter in the Bering Sea. The fact that δ13C and δ15N generally increased with depth in the Bering Sea basin demonstrated that organic components with light carbon or nitrogen were decomposed preferentially during their transport to deep water. However, the high δ13C and δ15N observed in shelf bottom water were mostly resulted from sediment resuspension.  相似文献   
978.
979.
980.
宋迪  徐佳  单宝田  王栋 《海洋科学》2014,38(2):102-106
<正>随着我国工厂化养殖业的飞速发展,养殖规模与日俱增,如何实现养殖废水的有效循环使用,避免由此导致的水生态环境问题引起广泛关注。由于养殖过程中需向水体中投放饵料和化学品,作为养殖生物的营养和消毒剂,所以养殖废水中除含有剩余饵料外,还含有化学物质及富含氮、磷的养殖生物排泄物等有害物质。若不处理直接排放,可加剧邻近水域富营养  相似文献   
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