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福建省低质低效红树林类型划分及改造技术研究 被引量:2

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摘要 由于生物入侵、人为破坏、海洋污染、病虫危害等原因,福建沿海的红树林面积呈下降态势,已有的红树林也出现了不同程度的衰退现象,林分质量下降,形成低质低效林分,其生态功能及经济价值不能得到充分发挥。文章根据福建省目前低质低效红树林的实际状况和形成原因,将低质低效红树林划分为:低生长量类型、稀疏类型、病虫危害类型、生物入侵类型、老龄林类型等5种类型。再运用生态学原理和方法,提出了每个类型相应的改造技术。
作者 张年达
出处 《防护林科技》 2010年第5期73-76,共4页 Protection Forest Science and Technology
基金 福建省林业厅科技项目(闽林科[2007]4号)
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  • 1郑德璋,廖宝文,郑松发.红树林造林技术与防护效应[M]//郑德璋,廖宝文,郑松发.红树林主要树种造林与管理技术研究.北京:科学出版社,1999:6-28.
  • 2彭逸生,周炎武,陈桂珠.红树林湿地恢复研究进展[J].生态学报,2008,28(2):786-797. 被引量:87
  • 3Burchett M D, Field C D, Pulkownik A. Salinity, growth and root respiration in grey mangrove Avicennia marina [J]. Plant Physiology, 1984,60:113 - 118.
  • 4Ball M C. Salinity tolerance in the mangroves,Aegiceras corniculatum and Avicennia marina I. Water use in relation to growth, carbon partitioning and salt balance [ J ]. Australia Journal of Plant Physiology, 1988,15:447 -464.
  • 5莫竹承,范航清,何斌源.海水盐度对两种红树植物胚轴萌发的影响[J].植物生态学报,2001,25(2):235-239. 被引量:37
  • 6叶勇,卢昌义,胡宏友,谭凤仪.三种泌盐红树植物对盐胁迫的耐受性比较[J].生态学报,2004,24(11):2444-2450. 被引量:32
  • 7张乔民,于红兵,陈欣树,郑德璋.红树林生长带与潮汐水位关系的研究[J].生态学报,1997,17(3):258-265. 被引量:109
  • 8陈文沛,郑松发,黎锐成,陈玉军,郑德璋.番禺地区引种种植红树林的研究[J].林业科学研究,2001,14(3):307-314. 被引量:8
  • 9Ye Y, Tam N F Y, Wong Y S, et al. Growth and physiological responses of two mangrove species (Bruguiera gymnorrhiza and Kandelia candel) to waterlogging[ J ]. Environmental and Experimental Botany,2003,49:209 -221.
  • 10Ye Y, Tam N F Y, Wong Y S, et al. Does sea level rise influence propagule establishment, early growth and physiology of Kande//a candel and Bruguiera gymnorrhiza[ J ]. Joural of Experimental Marine Biology and Ecology,2004,306 : 197 - 215.

二级参考文献182

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  • 1沈世伟.红树林在福建省的分布、作用及造林技术[J].林业建设,2007(3):46-49. 被引量:5
  • 2ZhouL-J(周立江),LiB(李冰),ZengX-Z(曾宪芷),et al. Technical Regulations on Reconstruction ofLow-function Forest (LY/T 1690-2007). Beijing: Chi- na Standards Press, 2007 ( in Chinese).
  • 3Sardans J, Rivas-Ubach A, Penuelas J. The C: N: P stoichiometry of organisms and ecosystems in a changing world: A review and perspectives. Perspectives in Plant Ecology, Evolution and Systematics, 2012, 14:33-47.
  • 4Wildy DT, Pate JS, Bartle JR. Budgets of water use by Eucalyptus kochii tree belts in the semi-arid wheatbeh of Western Australia. Plant and Soil, 2004, 262: 129- 149.
  • 5Breugel M, Bongers F, Martfnez-Ramos M. Species dy- namics during early secondary forest succession: Re- cruitment, mortality and species turnover. Biotropica, 2007, 39:610-619.
  • 6Filer C, Keenan R J, Allen B J, et al. Deforestation and forest degradation in Papua New Guinea. Annals of For- est Science, 2009, tiff : 813-824.
  • 7ZengS-Q(曾思齐),SheJ-Y(佘济云).StudyonRenovation Technology of Low-quality and Low-benefit Secondary Forests in the Upper Reaches of the Yangtze River. Beijing: China Forestry Press, 2002 (in Chi- nese ).
  • 8XiaJ-B(夏江宝),XuJ-W(许景伟),LiC-R(李传荣),et al. Classification and evaluation of low-qualityand low-benefit Robinia pseudoacacia plantation inYellow River Delta area.水土保持通),2012,32(1):217-221.
  • 9Thomas FM, Foetzki A, Amdt SK, et al. Water use byperennial plants in the transition zone between river oa- sis and desert in NW China. Basic and Applied Ecology, 2006, 7:253-267.
  • 10Jiang ZM, Chen YX, Bao Y, et al. Population genetic structure of Tamarix chinensis in the Yellow River Delta, China. Plant Systematics and Evolution, 2012, 298: 147-153.

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