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Dissipation Theory-Based Ecological Protection and Restoration Scheme Construction for Reclamation Projects and Adjacent Marine Ecosystems

机译:基于耗散理论的填海工程和邻近海洋生态系统生态保护与恢复方案建设

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摘要

According to the 2017 results of the Special Inspector of Sea Reclamation, a substantial number of idle reclamation zones existed in 11 provinces (cities) along the coast of China. To improve the protection level of coastal wetlands and strictly control reclamation activities, it is necessary to carry out ecological restoration of reclamation projects and adjacent marine ecosystems. The characteristics of Guanghai Bay and its reclamation project are typical in China’s coastal areas, making it an optimal representative site for this study. The dissipative structure and entropy theory was used to analyze ecological problems and environmental threats. The analytic hierarchy process was applied to determine the order of the negative entropy flow importance. The entropy increase and decrease mechanism was used to determine an ecological protection and restoration scheme for the reclamation, including the reclamation of wetland resource restoration, shoreline landscape restoration, environmental pollution control, and marine biological resource restoration. Finally, based on system logic, a typical ecological restoration system was constructed east of Guanghai Bay, with the mangrove wetland area as the model in the north and the artificial sandbeach recreation area as the focus in the south.
机译:根据海垦专案检查员2017年的结果,中国沿海11个省(市)存在大量闲置垦区。为了提高沿海湿地的保护水平,严格控制围垦活动,有必要对围垦工程和邻近海洋生态系统进行生态修​​复。广海湾的特点及其围垦工程在中国沿海地区是典型的,使其成为该研究的最佳代表点。耗散结构和熵理论被用来分析生态问题和环境威胁。应用层次分析法确定负熵流重要性的顺序。利用熵增减机理确定了填海造林的生态保护和恢复方案,包括湿地资源恢复,海岸线景观恢复,环境污染控制和海洋生物资源恢复。最后,根据系统逻辑,在广海湾以东建立了一个典型的生态恢复系统,以红树林湿地为北方模型,以人工沙滩游憩区为南方为重点。

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