人工岛机场填海工程对生态环境影响的综合评价

宋南奇, 黄杰, 李滨勇, 王权明, 马瑜, 黄小露

中国环境科学 ›› 2020, Vol. 40 ›› Issue (8) : 3703-3712.

PDF(2119 KB)
PDF(2119 KB)
中国环境科学 ›› 2020, Vol. 40 ›› Issue (8) : 3703-3712.
环境影响评价与管理

人工岛机场填海工程对生态环境影响的综合评价

  • 宋南奇, 黄杰, 李滨勇, 王权明, 马瑜, 黄小露
作者信息 +

Comprehensive evaluation of the impact of artificial island airport reclamation construction on marine eco-environment

  • SONG Nan-qi, HUANG Jie, LI Bin-yong, WANG Quan-ming, Ma Yu, Huang Xiao-lu
Author information +
文章历史 +

摘要

针对大型人工岛机场填海工程环境影响难以量化的问题,以我国某人工岛机场填海工程为例,从海洋生态系统的“生态响应”和“生境质量”两方面出发,构建了基于GIS的空间变化和建设周期动态变化的环境影响评价模型,根据工程海域的生态环境状况,确定了评价指标的等级、标准和权重,探究人工岛机场填海对生态环境造成的影响.结果显示:人工岛填海工程对海域生态环境的综合影响值为0.38,处于“严重”影响程度;空间分布上,严重影响区域主要集中于人工岛附近海域,约占研究区的54%.人工岛机场填海施工对海洋生态环境的影响主要体现为底栖生物量和鱼类资源的大幅度减少,在制定施工期环境保护和施工后生态修复等方案时应对此予以足够重视.

Abstract

It is difficult to quantify the environmental impact of large artificial island airport reclamation projects. Taking an artificial island airport reclamation project in China as an example, an environmental impact assessment model considering spatial change and dynamic change of construction period was established based on GIS, from the “ecological response” and “habitat quality” of marine ecosystem. According to the eco-environment of the construction sea area, the grades, standards and weights of the evaluation indicators were determined, so the impact of the artificial island airport reclamation on the eco-environment was evaluated. The results showed that, the comprehensive impact on the marine eco-environment was 0.38, indicating that the project had caused a serious impact on the environment. In terms of spatial distribution, the seriously affected areas were mainly concentrated in the sea area near the artificial island, accounting for 54% of the study area. The impact of the artificial island airport reclamation construction on the marine ecological environment was characterized by the substantial reduction of benthic and swimming biomass. This should be given enough attention to in the formulation of environmental protection during construction and ecological restoration after construction.

关键词

GIS / 环境影响 / 评价 / 人工岛机场 / 填海

Key words

artificial island airport / environment impact / evaluation / GIS / reclamation

引用本文

导出引用
宋南奇, 黄杰, 李滨勇, 王权明, 马瑜, 黄小露. 人工岛机场填海工程对生态环境影响的综合评价[J]. 中国环境科学. 2020, 40(8): 3703-3712
SONG Nan-qi, HUANG Jie, LI Bin-yong, WANG Quan-ming, Ma Yu, Huang Xiao-lu. Comprehensive evaluation of the impact of artificial island airport reclamation construction on marine eco-environment[J]. China Environmental Science. 2020, 40(8): 3703-3712
中图分类号: X171    X820.3   

参考文献

[1] 王诺.海上人工岛机场规划、设计与建设[M].北京:科学出版社, 2018. Wang N. Planning, design and construction of artificial island airport[M]. Beijing:Science Press, 2018.
[2] Xu Y, Cai Y, Sun T, et al. Development of an integrated indicator system to assess the impacts of reclamation engineering on a river estuary[J]. Marine Pollution Bulletin, 2017,119(2):50-59.
[3] 刘晴,徐敏.江苏省围填海综合效益评估[J].南京师大学报(自然科学版), 2013,36(3):125-130. Liu Q, Xu M. Comprehensive benefits evaluation for sea reclamation projects in Jiangsu province[J]. Journal of Nanjing Normal University (Natural Science Edition), 2013,36(3):125-130.
[4] 刘大海,丰爱平,刘洋,等.围海造地综合损益评价体系探讨[J].海岸工程, 2006,25(2):93-99. Liu D H, Feng A P, Liu Y, et al. A discussion on the comprehensive profit and loss assessment system for reclamation from the sea[J]. Coastal Engineering, 2006,25(2):93-99.
[5] 于永海,王延章,张永华,等.围填海适宜性评估方法研究[J].海洋通报, 2011,30(1):81-87. Yu Y H, Wang Y Z, Zhang Y H, et al. Research of evaluation methods for reclamation suitability[J]. Marine Science Bulletin, 2011,30(1):81-87.
[6] Feng L, Zhu X D, Sun X. Assessing coastal reclamation suitability based on a fuzzy-AHP comprehensive evaluation framework:A case study of Lianyungang, China[J]. Marine Pollution Bulletin, 2014,89(1/2):102-111.
[7] Feng L, He J, Ai J Y, et al. Evaluation for coastal reclamation feasibility using a comprehensive hydrodynamic framework:A case study in Haizhou Bay[J]. Marine Pollution Bulletin, 2015, 100(1):182-190.
[8] Zhang F, Su X, Zhou Y. Ecosystem health assessment in coastal waters by considering spatio-temporal variations with intense anthropogenic disturbance[J]. Environmental Modelling & Software, 2017,96:128-139.
[9] Lee Y K, Ryu J H, Choi J K, et al. Satellite-based observations of unexpected coastal changes due to the saemangeum dyke construction, Korea[J]. Marine Pollution Bulletin, 2015,97(1/2):150-159.
[10] 俞炜炜,陈彬,张珞平.海湾围填海对滩涂湿地生态服务累积影响研究--以福建兴化湾为例[J].海洋通报, 2008,27(1):88-94. Yu W W, Chen B, Zhang L P. Cumulative effects of reclamation on ecosystem services of tidal flat wetland--a case in the Xinghua Bay, Fujian, China[J]. Marine Science Bulletin, 2008,27(1):88-94.
[11] Wang N, Yan H K, Liu Z B, et al. Effects of Different Layout Schemes on the Marine Environment of the Dalian Offshore Reclaimed Airport Island[J]. Journal of Environmental Engineering, 2013,139(3):438-449.
[12] Yan H K, Wang N, Yu T L, et al. Hydrodynamic behavior and the effects of water pollution from Dalian's large-scale of fshore airport island in Jinzhou Bay, China[J]. Journal of Waterway Port Coastal and Ocean Engineering, 2015,141(1):335-339.
[13] 匡翠萍,俞露露,顾杰,等.人工岛对金梦海湾水体交换的影响[J].中国环境科学, 2019,39(2):757-767. Kuang C P, YU L L, Gu J, et al. Influences of artificial island on water exchange of Jinmeng Bay[J]. China Environmental Science, 2019, 39(2):757-767.
[14] Yan H K, Wang N, Yu T L, et al. Comparing effects of land reclamation techniques on water pollution and fishery loss for a large-scale of fshore airport island in Jinzhou Bay, Bohai Sea, China[J]. Marine Pollution Bulletin, 2013,71(1/2):29-40.
[15] 宋南奇,王诺,吴暖.基于数值模拟与卫星遥感的填海施工悬浮物监测--以大连海上人工岛机场建设为背景[J].海洋通报, 2018,37(2):58-63. Song N Q, Wang N, Wu N. Monitoring of suspended particulate matter diffusion during reclamation construction based on numerical model and satellite remote sensing--Taking the Dalian Offshore Airport as the background[J]. Marine Science Bulletin, 2018,37(2):58-63.
[16] 匡翠萍,董智超,顾杰,等.清淤疏浚工程对七里海潟湖湿地水体交换的影响[J].中国环境科学, 2019,39(1):343-350. Kuang C P, Dong Z C, Gu J, et al. Impact of dredging project on water exchange of Qilihai Lagoon wetland[J]. China Environmental Science, 2019,39(1):343-350.
[17] 王以斌,邵帅,马永星,等.连云港近海海洋环境营养状态时空变化研究[J].中国环境科学, 2017,37(10):3899-3909. Wang Y B, Shao S, Ma Y X, et al. Nutritional status and temporal spatial variations research in the Lianyungang coastal area[J]. China Environmental Science, 2017,37(10):3899-3909.
[18] Guo W, Li S H, Mao L, et al. A model for environmental impact assessment of land reclamation[J]. China Ocean Engineering, 2007,21(2):343-354.
[19] Yan J, Cui B, Zheng J, et al. Quantification of intensive hybrid coastal reclamation for revealing its impacts on macrozoobenthos[J]. Environmental Research Letters, 2015,10(1):14004.
[20] 刘大海,于莹,李晓璇,等.我国近岸围填海环境影响评价研究进展[J].海岸工程, 2016,35(3):74-82. Liu D H, Yu Y, Li X X, et al. Progress on the environmental impact assessment of coastal reclamation in China[J]. Coastal Engineering, 2016,35(3):74-82.
[21] 靳宇弯,杨薇,孙涛,等.围填海活动对黄河三角洲滨海湿地生态系统的影响评估[J].湿地科学, 2015,13(6):682-689. Jin Y W, Yang W, Sun T, et al. Assessment of ecological impact of seashore reclamation activities on coastal wetland ecosystems in the Yellow River Delta[J]. Wetland Science, 2015,13(6):682-689.
[22] 范小杉,何萍,陈帆,等.沿海港口总体规划生态承载力环评技术方案[J].中国环境科学, 2017,37(5):1971-1978. Fan X S, He P, Chen F, et al. Technical solutions for strategic environmental assessment on ecological carrying capacity-coastal ports master plan[J]. China Environmental Science, 2017,37(5):1971-1978.
[23] 花利忠,崔胜辉,黄云凤,等.海湾型城市半城市化地区空间扩展演化--以厦门市为例[J].生态学报, 2009,29(7):3509-3517. Hua L Z, Cui S H, Huang Y F, et al. Analyses of peri-urban landscape dynamics in the rapid urbanizing process:a case study of Xiamen[J]. Acta Ecologica Sinica, 2009,29(7):3509-3517.
[24] 周勇,马绍赛,曲克明,等.悬浮物对半滑舌鳎稚鱼的急性毒性效应[J].海洋环境科学, 2010,29(2):229-232. Zhou Y, Ma S S, Qu K M, et al. Acute toxic effects of suspended substances on juvenile of Cynoglossus semilaevis Günther[J]. Marine Environmental Science, 2010,29(2):229-232.
[25] 罗先香,朱永贵,张龙军,等.集约用海对海洋生态环境影响的评价方法[J].生态学报, 2014,34(1):25-36. Luo X X, Zhu Y G, Zhang L J, et al.The evaluation method in the impact of intensive sea use on the marine ecological environment[J]. Acta Ecologica Sinica, 2014,34(1):25-36.
[26] 国家海洋局.中国海洋环境质量公报[Z]. 2016. National Oceanic Administration. China marine environmental quality bulletin[Z]. 2016.
[27] 于大涛,高范,姜恒志.辽东湾西北部近岸海域水质现状调查及污染特征分析[J].海洋环境科学, 2016,35(4):52-58. Yu D T, Gao F, Jiang H Z. The current situation and pollution feather analysis of water quality on coastal waters of the northwest Liaodong bay[J]. Marine Environmental Science, 2016,35(4):52-58.
[28] GB3097-1997海水水质标准[S]. GB3097-1997 Sea water quality standard[S].
[29] GB 18668-2002海洋沉积物质量[S]. GB 18668-2002 Marine sediment quality[S].
[30] 蒲新明,傅明珠,王宗灵,等.海水养殖生态系统健康综合评价:方法与模式[J].生态学报, 2012,32(19):6210-6222. Pu X M, Fu M Z, Wang Z L, et al. Integrated assessment of marine aquaculture ecosystem health:framework and method[J]. Acta Ecologica Sinica, 2012,32(19):6210-6222.
[31] Song D, Gao Z, Zhang H, et al. GIS-based health assessment of the marine ecosystem in Laizhou Bay, China[J]. Marine Pollution Bulletin, 2017,125(1/2):242-249.
[32] Shen C C, Shi H H, Zheng W, et al. Study on the cumulative impact of reclamation activities on ecosystem health in coastal waters[J]. Marine Pollution Bulletin, 2016,103(1/2):144-150.
[33] GB 17378-2007海洋监测规范[S]. GB 17378-2007 Specification for marine monitoring[S].
[34] 徐进勇,张增祥,赵晓丽,等.围填海遥感监测方法研究[J].测绘通报, 2014,(5):60-62. Xu J Y, Zhang Z X, Zhao X L, et al. Remote sensing monitoring method of land reclamation[J]. Bulletin of Surveying and Mapping, 2014,(5):60-62.

基金

国家自然科学基金资助项目(41801195)

PDF(2119 KB)

Accesses

Citation

Detail

段落导航
相关文章

/