European Commission Joint Research Centre, Ispra, Italy.
Hidrobiología Research Group, Universidad Politécnica de Madrid, Madrid, Spain.
Sci Total Environ. 2023 Jun 1;875:162489. doi: 10.1016/j.scitotenv.2023.162489. Epub 2023 Mar 2.
Hydropower globally represents the main source of renewable energy, and provides several benefits, e.g., water storage and flexibility; on the other hand, it may cause significant impacts on the environment. Hence sustainable hydropower needs to achieve a balance between electricity generation, impacts on ecosystems and benefits on society, supporting the achievement of the Green Deal targets. The implementation of digital, information, communication and control (DICC) technologies is emerging as an effective strategy to support such a trade-off, especially in the European Union (EU), fostering both the green and the digital transitions. In this study, we show how DICC can foster the environmental integration of hydropower into the Earth spheres, with focus on the hydrosphere (e.g., on water quality and quantity, hydropeaking mitigation, environmental flow control), biosphere (e.g., improvement of riparian vegetation, fish habitat and migration), atmosphere (reduction of methane emissions and evaporation from reservoirs), lithosphere (better sediment management, reduction of seepages), and on the anthroposphere (e.g., reduction of pollution associated to combined sewer overflows, chemicals, plastics and microplastics). With reference to the abovementioned Earth spheres, the main DICC applications, case studies, challenges, Technology Readiness Level (TRL), benefits and limitations, and transversal benefits for energy generation and predictive Operation and Maintenance (O&M), are discussed. The priorities for the European Union are highlighted. Although the paper focuses primarly on hydropower, analogous considerations are valid for any artificial barrier, water reservoir and civil structure which interferes with freshwater systems.
水能在全球范围内代表可再生能源的主要来源,并提供多种益处,例如蓄水和灵活性;另一方面,它可能对环境造成重大影响。因此,可持续的水电需要在发电、对生态系统的影响和对社会的效益之间取得平衡,支持实现绿色协议目标。数字、信息、通信和控制 (DICC) 技术的实施正在成为支持这种权衡的有效策略,特别是在欧盟 (EU) 中,促进绿色和数字转型。在本研究中,我们展示了 DICC 如何促进水电融入地球各圈层的环境整合,重点关注水圈(例如水质和水量、调峰缓解、环境流控制)、生物圈(例如,改善河岸植被、鱼类栖息地和洄游)、大气圈(减少甲烷排放和水库蒸发)、岩石圈(更好的沉积物管理,减少渗漏),以及人类圈(例如,减少与合流制污水溢流、化学品、塑料和微塑料相关的污染)。参考上述地球圈层,讨论了主要的 DICC 应用、案例研究、挑战、技术准备水平 (TRL)、效益和局限性,以及对发电和预测性运营和维护 (O&M) 的跨领域效益。强调了欧盟的优先事项。尽管本文主要关注水电,但类似的考虑也适用于任何干扰淡水系统的人工障碍物、水库和民用结构。