[1]仲秀娟,高 鹏,孙忠晓,等.赣榆丘陵山区植被退化机制生态修复技术[J].江苏水利,2021,(06):8-13.
 ZHONG Xiujuan,GAO Peng,SUN Zhongxiao,et al.Ecological restoration technology of vegetation degradation mechanism in hilly and mountainous areas of Ganyu[J].JIANGSU WATER RESOURCES,2021,(06):8-13.
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赣榆丘陵山区植被退化机制生态修复技术()
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《江苏水利》[ISSN:1006-6977/CN:61-1281/TN]

卷:
期数:
2021年06期
页码:
8-13
栏目:
农村水利
出版日期:
2021-06-23

文章信息/Info

Title:
Ecological restoration technology of vegetation degradation mechanism in hilly and mountainous areas of Ganyu
文章编号:
1007-7839(2021)06-0008-06
作者:
仲秀娟1 高 鹏2 孙忠晓1 王晓斌3 徐 坚4 高之栋1
(1.江苏省连云港市赣榆区夹谷山水土保持试验站, 江苏 连云港 222100; 2.华设设计集团水运检测所, 江苏 连云港 210004; 3.连云港市赣榆区防汛机动抢险队, 江苏 连云港 222100; 4.江苏省连云港市赣榆区海头水利管理服务站, 江苏 连云港 222100)
Author(s):
ZHONG Xiujuan1 GAO Peng2 SUN Zhongxiao1 WANG Xiaobin3 XU Jian4 GAO Zhidong1
(1.Jiagushan Water and Soil Conservation Test Station of Ganyu District,Lianyungang City,Lianyungang 222100,China;2.Water Transport Testing Institute,Huashe Design Group,Lianyungang 210004,China;3.Ganyu District Flood Control Mobile rescue Team of Lianyungang City,Lianyungang 210004,China;4.Haitou Water Resources Management Service Station of Ganyu District,Lianyungang 222100,China)
关键词:
丘陵山区 植被退化 机制 生态修复
Keywords:
hilly and mountainous areas vegetation degradation mechanism ecological restoration
分类号:
S157
文献标志码:
A
摘要:
以连云港市赣榆丘陵山区植被退化的太平山为依托,开展植被退化机制生态修复技术研究,采取封禁修复措施,构建黑松—元宝枫群落、黑松—榉树群落、黑松—黄栌群落、黑松单一群落4种群落结构。结果表明,封禁修复前3年,阳坡一些地带性多年生植物种逐渐增加,并占据优势,封禁修复第4年,乔、灌、草发生了新的变化,乔灌木及藤本品种随着人工补植树种的成林反而也减少了,乔木树种减少到5科6种,灌木减少到6科9种,藤本减少到3种,无论从数量还是生长量都呈减少的趋势,植被覆盖率由93.5%下降到92.4%。取得了采用营养钵育苗,在主汛期7月份造林,平均成活率达到96.2%,保存率达85.2%的技术经验; 项目区的林草植被平均覆盖率为93.1%,群落结构呈正向演替。
Abstract:
Based on vegetation degradation of Taiping Mountain in Ganyu hilly and mountainous areas of Lianyungang City, ecological restoration technology of vegetation degradation mechanism was studied, and four community structures of Pinus thunbergii-Acer truncatum community, Pinus thunbergii-Zelkova schneideriana community, Pinus thunbergii-Cotinus coggygria community and Pinus thunbergii single community were constructed by blocking restoration measures. The results showed that some zonal perennial plant species increased gradually and occupied the dominant position in the first three years of the closure restoration. In the fourth year of the closure restoration, new changes had taken place in arbor, shrub and grass. With the forestation of artificial supplementary tree species, arbor, shrub and vine varieties decreased. Arbor species decreased to 5 families and 6 species, shrubs decreased to 6 families and 9 species, and vines decreased to 3 species. Both quantity and growth showed a decreasing trend, and vegetation coverage decreased from 93.5% to 92.4%. The technical experience of cultivating seedlings with nutritive bowl and afforestation in July during main flood season was obtained, the average survival rate reached 96.2% and the preservation rate reached 85.2%. The average coverage rate of forest and grass vegetation in the project area was 93.1%, and the community structure showed positive succession.

参考文献/References:

[1] 李志斌. 河田山地土壤侵蚀区重建植物群落的研究[J]. 亚热带水土保持,2017,29(2):21-24.
[2] 王崇任,高菲,王斌,等. 朱稽河流域生态修复区植被动态变化情况分析[J]. 中国水土保持,2017(12):50-53.
[3] 丁友祥,李运昌,王运昌,等. 赣榆丘县陵山区生态修复效果监测[J]. 亚热带水土保持,2006,18(3):65-68.
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备注/Memo

备注/Memo:
收稿日期:2021-01-22
作者简介:仲秀娟(1979—),女,工程师,主要从事水土保持监测、研究工作。E-mail:528590120@qq.com
通信作者:高之栋(1962—),男,高级工程师,主要从事水土保持监测、研究工作。E-mail:gzhidong@163.com
更新日期/Last Update: 2021-06-23