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61.
62.
生态系统生产总值核算:概念、核算方法与案例研究 总被引:26,自引:0,他引:26
生态系统产品与服务功能是人类生存与发展的基础。生态系统生产总值(GEP)可以定义为生态系统为人类福祉和经济社会可持续发展提供的产品与服务价值的总和,包括生产系统产品价值、生态调节服务价值和生态文化服务价值。生态系统生产总值核算的基本任务有3个,即核算生态系统产品与服务的功能量、确定生态系统产品与服务的价格、核算生态系统产品与服务的价值量。生态系统生产总值核算可以用于揭示生态系统为经济社会发展和人类福祉的贡献,分析区域之间的生态关联,评估生态保护成效和效益。以贵州省为例,探讨了生态系统生产总值核算的应用方法,评价了贵州省生态系统为贵州和其他地区人们福祉和支撑经济社会发展所提供的产品和服务及其经济价值总和。评价结果显示,贵州省2010年全省生态系统生产总价值为20013.46亿元,人均GEP 57526元,是当年该省国民生产总值和人均GDP的4.3倍。研究表明,生态系统生产总值的核算可以反映生态系统对经济社会发展的支撑作用,并为建立生态系统保护效益与成效的考核机制提供基础。 相似文献
63.
北京城区道路沉积物污染特性 总被引:3,自引:0,他引:3
为了解城市道路沉积物污染物的浓度水平及可能造成的生态环境危害,在北京城区的生活区、文教区、交通干线和公园绿地这四种功能区的道路沉积物进行了取样监测,并分析了道路沉积物中总氮(TN)、总磷(TP)、重金属铜(Cu)、铬(Cr)、铅(Pb)、锌(Zn)和有机质(TOC)的污染特性.研究结果表明,各类功能区道路沉积物中TN、TP和TOC的含量较高.交通干线、文教区、生活区和公园绿地道路沉积物TN均值分别为0.1009、0.1440、0.1071、0.0974mg/kg,文教区道路沉积物的TN显著高于其他类型道路沉积物;TP均值分别为0.0695、0.0729、0.0665、0.0608mg/kg,以文教区最高,但未达显著水平.交通干线和文教区道路沉积物TOC浓度显著高于生活区和公园绿地,交通干线、文教区和生活区道路沉积物重金属的含量高于公园绿地.主要原因可能是人类活动和车辆交通量的影响.四类功能区氮主要以可溶态赋存,磷主要以颗粒态赋存在沉积物中,并且交通干线道路沉积物中溶解态磷比例最低.溶解态的重金属占总量的比例均较低,只有溶解态Cu达到5%以上,表明重金属主要赋存在颗粒态存在的沉积物中.道路沉积物或者外界带入的固体物质是地表径流污染物的重要来源,研究结果为城市地表污染控制提供重要参考. 相似文献
64.
北京城区气传花粉季节分布特征 总被引:7,自引:2,他引:5
研究北京城区气传花粉种类、数量及季节消长规律,为防治花粉症及建设合理城市绿地提供有效资料.应用Burkard采样器于2010年12月31日至2011年12月31日对北京城区气传花粉浓度进行监测,并对花粉浓度进行统计学分析.研究结果显示,2011年北京城区的花粉季节从3月20日起始,至10月18日截止,持续213d,占全年天数的58%;全年花粉含量月分布呈现两个高峰,第1个高峰为3-4月,主要花粉为木犀科、杨属、柳属等树木花粉,占全年花粉总量的30%;第2个高峰为8-9月,主要花粉为菊科、藜科及苋科等莠草花粉,占全年花粉总量的50%;2011年度北京城区最具代表性的气传花粉来自于菊科,比重占了收集到气传花粉的35%.研究结果还表明,秋季的气传花粉致敏性强,所以北京花粉症的高发季节主要集中在秋季,以8-9月为最高,其中有95%的病人在此期间出现花粉症症状.花粉浓度及飘散规律受当地植被状况及气候等多种因素影响,因此,北京城区空气中气传花粉飘散种类、数量及季节分布规律的调查结果,可以为本地区花粉症防治及绿化品种的选择提供可靠依据. 相似文献
65.
自然景观提供给人们观赏、娱乐和休闲的效用和价值,长期以来,人们对自然景观的价值忽略并低估,导致在开发利用自然资源过程中出现资源浪费和生态破坏的问题.如果赋予自然景观合适的经济价值,能为其开发利用提供决策支持.为评价张家界武陵源风景区的景观价值,构建了相应的指标体系.自然景观价值乃使用价值与非使用价值之和,并对这两种价值分别运用旅行费用法和条件价值法进行评估.结果表明:2011年武陵源风景区的自然景观价值为89.01亿元,其中使用价值为79.30亿元,非使用价值为9.71亿元.分析表明,武陵源风景区的自然景观价值要远高于以往的研究及近年的旅游收入,建议景区当局全面认识其景观价值,在旅游人次不断攀升的形势下,全力保护该地生态环境,探究武陵源风景区的可持续发展道路. 相似文献
66.
The clinical use of pluripotent stem cell (PSC)‐derived neural cells requires an efficient differentiation process for mass production in a bioreactor. Toward this goal, neural differentiation of murine embryonic stem cells (ESCs) in three‐dimensional (3D) polyethylene terephthalate microfibrous matrices was investigated in this study. To streamline the process and provide a platform for process integration, the neural differentiation of ESCs was induced with astrocyte‐conditioned medium without the formation of embryoid bodies, starting from undifferentiated ESC aggregates expanded in a suspension bioreactor. The 3D neural differentiation was able to generate a complex neural network in the matrices. When compared to 2D differentiation, 3D differentiation in microfibrous matrices resulted in a higher percentage of nestin‐positive cells (68% vs. 54%) and upregulated gene expressions of nestin, Nurr1, and tyrosine hydroxylase. High purity of neural differentiation in 3D microfibrous matrix was also demonstrated in a spinner bioreactor with 74% nestin + cells. This study demonstrated the feasibility of a scalable process based on 3D differentiation in microfibrous matrices for the production of ESC‐derived neural cells. © 2013 American Institute of Chemical Engineers Biotechnol. Prog., 29:1013–1022, 2013 相似文献
67.
Background
Microtubules, microfilaments, and neurofilaments are cytoskeletal elements that affect cell morphology, cellular processes, and mechanical structures in neural cells. The objective of the current study was to investigate the contribution of each type of cytoskeletal element to the mechanical properties of axons of dorsal root and sympathetic ganglia cells in chick embryos.Results
Microtubules, microfilaments, and neurofilaments in axons were disrupted by nocodazole, cytochalasin D, and acrylamide, respectively, or a combination of the three. An atomic force microscope (AFM) was then used to compress the treated axons, and the resulting corresponding force-deformation information was analyzed to estimate the mechanical properties of axons that were partially or fully disrupted.Conclusion
We have found that the mechanical stiffness was most reduced in microtubules-disrupted-axons, followed by neurofilaments-disrupted- and microfilaments-disrupted-axons. This suggests that microtubules contribute the most of the mechanical stiffness to axons.68.
Chanjuan Zhang Bo Ouyang Changxian Yang Xiaohui Zhang Hui Liu Yuyang Zhang Junhong Zhang Hanxia Li Zhibiao Ye 《PloS one》2013,8(4)
As a vital antioxidant, L-ascorbic acid (AsA) affects diverse biological processes in higher plants. Lack of AsA in cell impairs plant development. In the present study, we manipulated a gene of GDP-mannose pyrophosphorylase which catalyzes the conversion of D-mannose-1-P to GDP-D-mannose in AsA biosynthetic pathway and found out the phenotype alteration of tomato. In the tomato genome, there are four members of GMP gene family and they constitutively expressed in various tissues in distinct expression patterns. As expected, over-expression of SlGMP3 increased total AsA contents and enhanced the tolerance to oxidative stress in tomato. On the contrary, knock-down of SlGMP3 significantly decreased AsA contents below the threshold level and altered the phenotype of tomato plants with lesions and further senescence. Further analysis indicated the causes for this symptom could result from failing to instantly deplete the reactive oxygen species (ROS) as decline of free radical scavenging activity. More ROS accumulated in the leaves and then triggered expressions of defence-related genes and mimic symptom occurred on the leaves similar to hypersensitive responses against pathogens. Consequently, the photosynthesis of leaves was dramatically fallen. These results suggested the vital roles of AsA as an antioxidant in leaf function and defence response of tomato. 相似文献
69.
70.
Junjun Zhu Linli Shi Lingling Zhang Yong Xu Qiang Yong Jia Ouyang Shiyuan Yu 《Bioprocess and biosystems engineering》2016,39(10):1619-1626
The difference in the enzymatic hydrolysis yield of acid-catalyzed steam-exploded corn stover (ASC) before and after washing with water reached approximately 15 % under the same conditions. The reasons for the difference in the yield between ASC and washed ASC (wASC) were determined through the analysis of the composition of ASC prehydrolyzate and sugar concentration of enzymatic hydrolyzate. Salts produced by neutralization (CaSO4, Na2SO4, K2SO4, and (NH4)2SO4), sugars (polysaccharides, oligosaccharides, and monosaccharides), sugar-degradation products (weak acids and furans), and lignin-degradation products (ethyl acetate extracts and nine main lignin-degradation products) were back-added to wASC. Results showed that these products, except furans, exerted negative effect on enzymatic hydrolysis. According to the characteristics of acid-catalyzed steam explosion pretreatment, the five sugar-degradation products’ mixture and salts [Na2SO4, (NH4)2SO4] showed minimal negative inhibition effect on enzymatic hydrolysis. By contrast, furans demonstrated a promotion effect. Moreover, soluble sugars, such as 13 g/L xylose (decreased by 6.38 %), 5 g/L cellobiose (5.36 %), 10 g/L glucose (3.67 %), as well as lignin-degradation products, and ethyl acetate extracts (4.87 %), exhibited evident inhibition effect on enzymatic hydrolysis. Therefore, removal of soluble sugars and lignin-degradation products could effectively promote the enzymatic hydrolysis performance. 相似文献