王龙飞, 王子怡, 李轶. 基于连通性恢复的潜流带生态修复研究进展[J]. 水科学进展, 2022, 33(6): 1009-1020. DOI: 10.14042/j.cnki.32.1309.2022.06.015
引用本文: 王龙飞, 王子怡, 李轶. 基于连通性恢复的潜流带生态修复研究进展[J]. 水科学进展, 2022, 33(6): 1009-1020. DOI: 10.14042/j.cnki.32.1309.2022.06.015
WANG Longfei, WANG Ziyi, LI Yi. Ecological restoration of hyporheic zone based on connectivity restoration: a review[J]. Advances in Water Science, 2022, 33(6): 1009-1020. DOI: 10.14042/j.cnki.32.1309.2022.06.015
Citation: WANG Longfei, WANG Ziyi, LI Yi. Ecological restoration of hyporheic zone based on connectivity restoration: a review[J]. Advances in Water Science, 2022, 33(6): 1009-1020. DOI: 10.14042/j.cnki.32.1309.2022.06.015

基于连通性恢复的潜流带生态修复研究进展

Ecological restoration of hyporheic zone based on connectivity restoration: a review

  • 摘要: 潜流带是流域生态修复的关键区域之一, 潜流带修复的根本目标是恢复水系间的能量流通、物质传递和信息流动, 即恢复潜流带的连通性。对于潜流带连通性恢复而言, 应统筹考虑水文连通性、生态连通性和功能连通性等多层次的内容。潜流带生态修复相关研究主要基于流体动力学、地质学和生态学等基础理论, 剖析潜流驱动的生物地球化学耦合机制, 研发可促进潜流交换和恢复生物多样性的生态修复技术, 实现潜流带水文条件的改善与生物物种的恢复, 进而达到潜流带生态系统结构和功能综合性修复的目的。本文从潜流带水文连通性、生态连通性和功能连通性等多层次出发, 从潜流带流体动力学性能、介质性能、生物群落组成、食物网结构及环境生态功能等方面, 综述基于生态修复目标的潜流带连通性恢复理论与技术进展, 以实现潜流带生态系统整体稳定性的提升。在未来潜流带生态修复理论与应用研究中, 需发挥多学科交叉的优势, 耦合多组学方法对潜流带生态过程进行微观探索, 系统探究时间和空间尺度上潜流带生态修复过程的演替规律, 进一步构建多因素作用下的潜流带生态修复框架体系。

     

    Abstract: The hyporheic zone (HZ) serves as one of the key areas for watershed ecological restoration. HZ restoration is intended to ensure the flow of energy, material and information between adjacent water systems. The restoration of HZ connectivity depends on hydrological, ecological, and functional connectivity. Studies related to ecological restoration of HZ are mainly based on hydrodynamic, geological and ecological theories. Most of the studies analyze the biogeochemical coupling mechanism driven by HZ. They report ecological restoration technologies that promote HZ exchange and restore biodiversity. The improvement of hydrologic conditions and the recovery of biological species in the HZ are additional goals for the comprehensive restoration of the HZ ecosystem structure and function. Based on the perspective of hydrological, ecological and functional connectivity, this study reviews the theoretical and technological progress in the hydrodynamic features, media properties, biome composition, food web structure and ecological function during the restoration of HZ connectivity. A multi-disciplinary approach is needed to expand the theory and practice of research methods and scales. Multi-omics approaches are suggested for the exploration of ecological processes on a microscale. The mechanism of restoration needs to be elucidated on both temporal and spatial scales. Finally, a framework for ecological restoration of the HZ under various scenarios should be constructed.

     

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