统筹推进我国燃煤发电(简称“煤电”)转型升级,推动煤电功能定位转变,是实现“双碳”目标和加快构建新型电力系统的重要任务。针对我国燃煤发电转型升级的迫切需求,该文分析当前我国煤电的装机规模及其特点,评估了煤电的能耗、灵活性和...统筹推进我国燃煤发电(简称“煤电”)转型升级,推动煤电功能定位转变,是实现“双碳”目标和加快构建新型电力系统的重要任务。针对我国燃煤发电转型升级的迫切需求,该文分析当前我国煤电的装机规模及其特点,评估了煤电的能耗、灵活性和碳排放3方面的发展水平,解析我国煤电未来发展方向,重点探讨了煤电热力系统重构、煤电与储能融合、煤电与其他能源及碳捕集、利用与封存(carbon capture,utilization and storage,CCUS)的互补集成、“安全、高效、清洁、低碳、灵活”多目标协同4个方面的发展路径,提出新一代煤电高质量发展的基本思路。面向新形势下“安全、高效、清洁、低碳、灵活”的发展目标,未来我国煤电机组需要开展热力系统深度重构,通过热力系统的大范围重新设计、优化或改造,提高机组效率和灵活性、降低能耗和碳排放;可以将储热、飞轮、压缩空气等储能与煤电系统有机融合,突破煤电机组自身调节潜力约束,拓宽煤电机组的调节区间,提升机组变负荷能力和效率;充分利用煤电机组内丰富的物质流和能量流,可将煤电与其他能源或系统在多个环节匹配耦合,实现整体的多能互补能量梯级利用,提升总体能效与低碳水平;应重点从设计和运行两个维度实现多目标协同,在设计阶段注重高效清洁技术的集成与智能化、自动化,在运行过程中采用智能化、精细化控制策略。该文旨在增强煤电战略价值认知,为我国煤电转型升级提供理论参考和路径建议,助力新一代煤电在推进“双碳”进程和构建新型电力系统中发挥更广泛、更积极作用。展开更多
A novel self-recoverable mechanoluminescent phosphor Ca_(5)Ga_(6)O_(14)∶Eu^(3+) was developed by the high-tem-perature solid-state reaction method,and its luminescence properties were investigated.Ca_(5)Ga_(6)O_(14)...A novel self-recoverable mechanoluminescent phosphor Ca_(5)Ga_(6)O_(14)∶Eu^(3+) was developed by the high-tem-perature solid-state reaction method,and its luminescence properties were investigated.Ca_(5)Ga_(6)O_(14)∶Eu^(3+)can produce red mechanoluminescence,and importantly,it shows good repeatability.The mechanoluminescence of Ca_(5)Ga_(6)O_(14)∶Eu^(3+) results from the piezoelectric field generated inside the material under stress,rather than the charge carriers stored in the traps,which can be confirmed by the multiple cycles of mechanoluminescence tests and heat treatment tests.The mechanoluminescence color can be turned from red to green by co-doping varied concentrations of Tb^(3+),which may be meaningful for encrypted letter writing.The encryption scheme for secure communication was devised by harnessing mechanoluminescence patterns in diverse shapes and ASCII codes,which shows good encryption performance.The results suggest that the mechanoluminescence phosphor Ca_(5)Ga_(6)O_(14)∶Eu^(3+),Tb^(3+)may be applied to the optical information encryption.展开更多
文摘统筹推进我国燃煤发电(简称“煤电”)转型升级,推动煤电功能定位转变,是实现“双碳”目标和加快构建新型电力系统的重要任务。针对我国燃煤发电转型升级的迫切需求,该文分析当前我国煤电的装机规模及其特点,评估了煤电的能耗、灵活性和碳排放3方面的发展水平,解析我国煤电未来发展方向,重点探讨了煤电热力系统重构、煤电与储能融合、煤电与其他能源及碳捕集、利用与封存(carbon capture,utilization and storage,CCUS)的互补集成、“安全、高效、清洁、低碳、灵活”多目标协同4个方面的发展路径,提出新一代煤电高质量发展的基本思路。面向新形势下“安全、高效、清洁、低碳、灵活”的发展目标,未来我国煤电机组需要开展热力系统深度重构,通过热力系统的大范围重新设计、优化或改造,提高机组效率和灵活性、降低能耗和碳排放;可以将储热、飞轮、压缩空气等储能与煤电系统有机融合,突破煤电机组自身调节潜力约束,拓宽煤电机组的调节区间,提升机组变负荷能力和效率;充分利用煤电机组内丰富的物质流和能量流,可将煤电与其他能源或系统在多个环节匹配耦合,实现整体的多能互补能量梯级利用,提升总体能效与低碳水平;应重点从设计和运行两个维度实现多目标协同,在设计阶段注重高效清洁技术的集成与智能化、自动化,在运行过程中采用智能化、精细化控制策略。该文旨在增强煤电战略价值认知,为我国煤电转型升级提供理论参考和路径建议,助力新一代煤电在推进“双碳”进程和构建新型电力系统中发挥更广泛、更积极作用。
文摘失眠障碍(insomnia disorder,ID)及抑郁症是影响患者日常生活及身心健康的常见疾病,ID与抑郁症存在双向关系,二者常共病出现,但具体共病机制不清。杏仁核是情绪环路的关键中枢,五羟色胺(5-hydroxytryptamine,5-HT)通过调控杏仁核活性参与情绪调节,杏仁核5-HT神经环路参与ID及抑郁症。本文阐述了杏仁核及杏仁核5-HT神经环路结构及功能在ID及抑郁症患者的功能磁共振成像(functional magnetic resonance imaging,fMRI)变化,旨在为探究杏仁核5-HT神经环路在ID及抑郁症共病中可能存在的机制提供客观的神经影像学依据。
文摘A novel self-recoverable mechanoluminescent phosphor Ca_(5)Ga_(6)O_(14)∶Eu^(3+) was developed by the high-tem-perature solid-state reaction method,and its luminescence properties were investigated.Ca_(5)Ga_(6)O_(14)∶Eu^(3+)can produce red mechanoluminescence,and importantly,it shows good repeatability.The mechanoluminescence of Ca_(5)Ga_(6)O_(14)∶Eu^(3+) results from the piezoelectric field generated inside the material under stress,rather than the charge carriers stored in the traps,which can be confirmed by the multiple cycles of mechanoluminescence tests and heat treatment tests.The mechanoluminescence color can be turned from red to green by co-doping varied concentrations of Tb^(3+),which may be meaningful for encrypted letter writing.The encryption scheme for secure communication was devised by harnessing mechanoluminescence patterns in diverse shapes and ASCII codes,which shows good encryption performance.The results suggest that the mechanoluminescence phosphor Ca_(5)Ga_(6)O_(14)∶Eu^(3+),Tb^(3+)may be applied to the optical information encryption.