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121.
中国红十字会是中国整体灾害应急体系的重要组成部分,建立健全红十字会应急体系建设对备灾、应急工作至关重要。中国红十字会应急体系建设主要包括红十字会应急预案、应急物资储备系统、应急救援队伍、应急宣传培训与演练、信息传递系统等。红十字会应急体系建设也存在应急预案的不健全和缺乏针对性、物资储备系统有待健全、应急队伍建设有待加强、应急救护体系不协调等不足。本文从改革和健全红十字会应急预案、大力发展红十字应急组织、深入推进红十字会物资储备库建设、普及全民应急救护、健全红十字应急网络、学习西方国家经验等方面提出加强红十字会灾害应急工作的对策建议。 相似文献
122.
外源新碳对红壤团聚体及有机碳分布和稳定性的影响 总被引:9,自引:0,他引:9
以中国科学院长期定位试验站的红壤为研究对象,通过室内模拟实验,利用δ~(13)C示踪方法,将稳定同位素碳(δ13C)标记的水稻秸秆添加入红壤,研究水稻秸秆添加对红壤水稳性团聚体分布及稳定性的影响,探索水稻秸秆腐解过程中有机碳在不同粒级团聚体中的动态变化以及分布规律.研究结果表明:未添加水稻秸秆的红壤(对照组),微团聚体(250μm)占主体,2000μm粒级水稳性团聚体含量最少.与对照相比,添加水稻秸秆后(试验组)促进了2000μm粒级水稳性团聚体的团聚.不同培养时期,2000μm水稳性团聚体增加了108.3%~270.3%,促使大团聚体占主体,显著提高了红壤水稳性团聚体的平均重量直径(MWD)、几何平均直径(GMD)、R0.25值,降低了分形维数(D)值,土壤结构明显得到改善.各粒级团聚体有机碳含量也显著得到提高,2000μm团聚体有机碳含量比对照组增加了14.7%~41.5%.土壤有机碳在53μm粒级团聚体中分布随着粒级的增大而增大,即2000μm2000~250μm250~53μm.不同粒级团聚体δ13C值动态变化显著,有机碳的周转速率增大.外源新碳前期主要分配在2000μm、250~53μm粒级团聚体中,并促进了原有机碳的分解,后期主要分配在微团聚体中.红壤大团聚体有机碳含量与团聚体稳定性呈极显著的相关关系(p0.01). 相似文献
123.
Zhenyan Zhang Xiaoji Fan W.J.G.M. Peijnenburg Meng Zhang Liwei Sun Yujia Zhai Qi Yu Juan Wu Tao Lu Haifeng Qian 《环境科学学报(英文版)》2021,33(1):1-9
Freshwater cyanobacterial blooms have drawn public attention because they threaten the safety of water resources and human health worldwide. Heavy cyanobacterial blooms outbreak in Lake Taihu in summer annually and vanish in other months. To find out the factors impacting the cyanobacterial blooms, the present study measured the physicochemical parameters of water and investigated the composition of microbial community using the 16S rRNA gene and internal transcribed spacer amplicon sequencing in the months with or without bloom. The most interesting finding is that two major cyanobacteria, Planktothrix and Microcystis, dramatically alternated during a cyanobacterial bloom in 2016, which is less mentioned in previous studies. When the temperature of the water began increasing in July, Planktothrix appeared first and showed as a superior competitor for M. aeruginosa in NO3?-rich conditions. Microcystis became the dominant genus when the water temperature increased further in August. Laboratory experiments confirmed the influence of temperature and the total dissolved nitrogen (TDN) form on the growth of Planktothrix and Microcystis in a co-culture system. Besides, species interactions between cyanobacteria and non-cyanobacterial microorganisms, especially the prokaryotes, also played a key role in the alteration of Planktothrix and Microcystis. The present study exhibited the alteration of two dominant cyanobacteria in the different bloom periods caused by the temperature, TDN forms as well as the species interactions. These results helped the better understanding of cyanobacterial blooms and the factors which contribute to them. 相似文献
124.
Yang Zhaojun Guo Xiaoting Sun Jun Zhang Yali 《Environment, Development and Sustainability》2021,23(8):12056-12076
Environment, Development and Sustainability - Sustainable supply chain emerges as a major business trend essential to long-term competitive advantage. Relevant corporate decisions concern a broad... 相似文献
125.
Zhang Ming Sun Ruifeng Wang Wenwen 《Environment, Development and Sustainability》2021,23(9):12814-12827
Environment, Development and Sustainability - Air pollution treatment has become the priority in environmental management for Chinese government. However, environmental problems are closely related... 相似文献
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127.
Yingdan Zhang Na Liu Wei Wang Jianteng Sun Lizhong Zhu 《Frontiers of Environmental Science & Engineering》2020,14(6):103
128.
Changes Of Hydrological Environment And Their Influences On Coastal Wetlands InThe Southern Laizhou Bay, China 总被引:2,自引:0,他引:2
The structure and function of the coastal wetland ecosystem in the southern Laizhou Bay have been changed greatly and influenced by regional hydrological changes. The coastal wetlands have degraded significantly during the latest 30 years due to successive drought, decreasing of runoff, pollution, underground saline water intrusion, and aggravating marine disasters such as storm tides and sea level rising. Most archaic lakes have vanished, while artificial wetlands have been extending since natural coastal wetlands replaced by salt areas and ponds of shrimps and crabs. The pollution of sediments in inter-tidal wetlands and the pollution of water quality in sub-tidal wetlands are getting worse and therefore “red tides” happen more often than before. The biodiversity in the study area has been decreased. Further studies are still needed to protect the degraded coastal wetlands in the area. 相似文献
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