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1.
在分析了一次性木筷生产和消费以及它对我国的森林资源保护和生态系统影响的基础上,提出了4点解决一次性木筷问题的途径,希望能解决一次性木筷在现实生活中存在的诸多问题。 相似文献
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生态意识及其主要特点 总被引:7,自引:0,他引:7
一、生态意识产生的时代背景生态意识作为人类思想的先进观念,产生于20世纪后半叶。产业革命以来二百多年,人类依据先进科学技术武装的强大生产力,无限制地向自然进 相似文献
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《人与生物圈》2012,(Z1):22-35
生态摄影,不是生态在左、摄影在右的平衡,虽然摄影是展示生态的形式,但生态应该是摄影的前提。生态,意味着摄影人应该了解、尊重和体现摄影的对象在生态系统中本真的状态,摄影人需要抓拍的是自然而然发生的瞬间,而不能为了人类的审美需要刻意营造所谓的具有美感和艺术性的氛围。这不是要摒弃生态摄影的艺术性,而是强调不能为了艺术性变得非生态。因为生态摄影的目的是用摄影真实地展现动物、植物、微生物的生命过程。当然,自然并不总是平和、美丽的,所以并非只有美丽的摄影才是生态提影,那些展现自然的残酷、毁灭、荒芜的摄影作品,只要真实地记录生态、只要是从保护生物的多样性出发,都可以是生态摄影。 相似文献
6.
基于价值评估的黄山市生境质量时空演变特征分析 总被引:2,自引:0,他引:2
评价与分析特定区域的生境质量及其时空变化对其生态安全格局构建、可持续发展意义重大。本文以典型旅游城市黄山市为研究区,综合生态系统服务价值评价模型、基于NPP与NDVI的生境质量指数评价、InVEST生境质量评价模型、空间分析等模型与方法对黄山市1987-2017年生境质量进行研究。结果表明:(1)1987-2007年,黄山市生境质量总值持续下降,2017出现回升,但生境受到的威胁仍增加,生境最优区为北部太平湖区域,生境质量低值主要分布在各县区主城区;生境质量栅格等级变化以4等级转变为3等级为主。(2)1987-2017年,黄山市105个乡镇(街道)中有84个乡镇(街道)生境质量有所下降,主要分布在东部区域;北部环太平湖区域的乡镇为生境质量"高高"型聚集区及热点区域,屯溪区、徽州区南部、歙县、休宁县主城区的各镇为生境质量"低低"型聚集区及冷点区域。(3)黄山市城市发展对生境质量影响较大,大体上距离城市中心点越近的圈层,生境质量越差;距离黄山市旅游中心点10-20、30-40、40-50 km的3个圈层形成生境质量低值点,为旅游与城区互助发展的结果;黄山市旅游与生境质量空间分布相关性较强,旅游设施、景区核密度越高,低等级生境质量占比越高。 相似文献
7.
格网尺度下典型旅游城市生态服务价值估算和时空分异特征——以三亚为例 总被引:2,自引:0,他引:2
以典型旅游城市三亚市为案例地,利用2006-2018年4期Landsat遥感影像数据,借助ENVI、ArcGIS平台定量识别土地利用演变特征,在1km×1km格网尺度下估算旅游地生态系统服务价值,并结合空间探索性数据分析揭示生态系统服务价值时空分异特征及其与旅游地发展的时空耦合关系。结果表明:(1)2006-2018年间,三亚市生态系统服务价值总量呈逐年下降趋势,由6.73×109元降至5.76×109元,累计减少9.78×108元;(2)空间格局上,三亚市呈"南低北高"空间分异格局,2006-2018年增值区域连片分布于崖州区、天涯区、吉阳区南部区域,且呈逐年减少趋势,减值区域集聚于天涯区东北部、海棠区;(3)空间集聚上,生态系统服务价值截面各年份均呈显著空间正相关且相关性先降后增。高高集聚区位于天涯区北部区域,低低集聚区分布于沿海、海湾地区;(4)旅游发展与生态系统服务价值时空演化特征关联性较强。三亚市天涯区北部林地生态环境良好,生态系统服务价值略有下降但绝对数值稳定,是生态系统服务价值主要来源;旅游发展较为迅速的三亚湾、崖州湾以及海棠湾,相对增值区域较多,但绝对生态系统服务价值损失显著,严重滞后于其他区域。 相似文献
8.
为研究青藏高原草地承载力的空间演变特征并对其进行预警,以已有的青藏高原净初级生产力数据为基础,核算了该地区的草地理论载畜量及演变趋势,并结合县域实际存栏量,划定了草地承载力的预警等级。结果表明:(1)青藏高原草地承载力整体呈东高西低的格局,其中高寒草原和高寒草甸是该地区草地承载力的主要组成部分;(2)2000-2015年,青藏高原理论载畜量由8614.89万羊单位增至9451.53万羊单位;(3)青藏高原整体处于超载状态,2000-2010年超载状况加剧,至2015年超载状况稍有缓解,草畜平衡指数由67.88%增至79.90%,再降至67.91%。目前亟需优先控制72个红色预警县(超载状态正在加剧)的牲畜存栏量,避免超载状况进一步恶化。未来需要通过控制牲畜存栏量、调整畜牧区发展布局和提高草地生产力等多项措施的结合来改善青藏高原地区的草地承载状况,维持草地生态系统的可持续发展。 相似文献
9.
The relationship between the reduction of nonstructural carbohydrate induced by defoliator and the growth and mortality of trees 下载免费PDF全文
《植物生态学报》2016,40(9):958
Large scale herbivorous insect outbreaks can cause death of regional forests, and the events are expected to be exacerbated with climate change. Mortality of forest and woodland plants would cause a series of serious consequences, such as decrease in vegetation production, shifts in ecosystem structure and function, and transformation of forest function from a net carbon sink into a net carbon source. There is thus a need to better understand the impact of insects on trees. Defoliation by insect pests mainly reduces photosynthesis (source decrease) and increases carbon consumption (sink increase), and hence causes reduction of nonstructural carbohydrate (NSC). When the reduction in NSC reaches to a certain level, trees would die of carbon starvation. External environment and internal compensatory mechanisms can also positively or negatively influence the process of tree death. At present, the research of carbon starvation is a hotspot because the increase of tree mortality globally with climate change, and carbon starvation is considered as one of the dominating physiological mechanisms for explaining tree death. In this study, we reviewed the definition of carbon starvation, and the relationships between the reduction of NSC induced by defoliation and the growth and death of trees, and the relationships among insect outbreaks, leaf loss and climate change. We also presented the potential directions of future studies on insect-caused defoliation and tree mortality. 相似文献
10.
《植物生态学报》2016,40(4):405
Aims
Plantations play important roles in modifying regional carbon budget and maintaining regional carbon balance. In this study, we assessed larch plantation (Larix gmelinii var. principis-rupprechtii) carbon dynamics in Weichang County from a perspective of the forest biomass-soil-wood-products chain. Our objectives were to elucidate the carbon sink capacity of larch plantation and the influences of biomass, soil and wood product pools on carbon balance.
Methods
CO2FIX model was used to evaluate the carbon storage and flow of larch plantation over a time span of 120 years. Input data for model were derived from practical investigations and published papers. We validated the simulated results and found that this model was suitable in the region and the simulated results were reliable.
Important findings
(1) Soil was the largest carbon pool for larch plantation and the wood product pool had the smallest carbon storage. Meanwhile, carbon storage in wood products gradually increased with time. (2) In a rotation of 50 years from secondary poplar-birch forest to larch plantation, 250 t C·hm-2 was sequestrated by the larch plantation. 70% of the carbon was transferred into soil in the form of litter and logging slash and the other 30% was transferred into wood products. (3) Larch plantation was a carbon sink during most of its growing period and turned to temporary carbon source when it was harvested. Larch plantation could sequestrate about 0.3 t C·hm-2·a-1 in the long term. Our results indicated the importance of wood product carbon pool in carbon dynamics of plantation, which facilitated our understanding in the carbon dynamics and capacity of plantation. 相似文献
Plantations play important roles in modifying regional carbon budget and maintaining regional carbon balance. In this study, we assessed larch plantation (Larix gmelinii var. principis-rupprechtii) carbon dynamics in Weichang County from a perspective of the forest biomass-soil-wood-products chain. Our objectives were to elucidate the carbon sink capacity of larch plantation and the influences of biomass, soil and wood product pools on carbon balance.
Methods
CO2FIX model was used to evaluate the carbon storage and flow of larch plantation over a time span of 120 years. Input data for model were derived from practical investigations and published papers. We validated the simulated results and found that this model was suitable in the region and the simulated results were reliable.
Important findings
(1) Soil was the largest carbon pool for larch plantation and the wood product pool had the smallest carbon storage. Meanwhile, carbon storage in wood products gradually increased with time. (2) In a rotation of 50 years from secondary poplar-birch forest to larch plantation, 250 t C·hm-2 was sequestrated by the larch plantation. 70% of the carbon was transferred into soil in the form of litter and logging slash and the other 30% was transferred into wood products. (3) Larch plantation was a carbon sink during most of its growing period and turned to temporary carbon source when it was harvested. Larch plantation could sequestrate about 0.3 t C·hm-2·a-1 in the long term. Our results indicated the importance of wood product carbon pool in carbon dynamics of plantation, which facilitated our understanding in the carbon dynamics and capacity of plantation. 相似文献