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Dynamic simulation analysis of molten salt reactor-coupled air-steam combined cycle power generation system
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作者 Jing-Lei Huang Guo-Bin Jia +3 位作者 Li-Feng Han wen-qian liu Li Huang Zheng-Han Yang 《Nuclear Science and Techniques》 SCIE EI CAS 2024年第2期222-233,共12页
A nonlinear dynamic simulation model based on coordinated control of speed and flow rate for the molten salt reactor and combined cycle systems is proposed here to ensure the coordination and stability between the mol... A nonlinear dynamic simulation model based on coordinated control of speed and flow rate for the molten salt reactor and combined cycle systems is proposed here to ensure the coordination and stability between the molten salt reactor and power system.This model considers the impact of thermal properties of fluid variation on accuracy and has been validated with Simulink.This study reveals the capability of the control system to compensate for anomalous situations and maintain shaft stability in the event of perturbations occurring in high-temperature molten salt tank outlet parameters.Meanwhile,the control system’s impact on the system’s dynamic characteristics under molten salt disturbance is also analyzed.The results reveal that after the disturbance occurs,the controlled system benefits from the action of the control,and the overshoot and disturbance amplitude are positively correlated,while the system power and frequency eventually return to the initial values.This simulation model provides a basis for utilizing molten salt reactors for power generation and maintaining grid stability. 展开更多
关键词 Molten salt reactor Combined cycle Dynamic characteristic Control
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基于金属有机框架载体的免疫球蛋白G印迹材料的构筑及其识别性能研究
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作者 宋文琦 杨雨璇 +1 位作者 刘文倩 钱立伟 《高分子学报》 SCIE CAS CSCD 北大核心 2022年第6期653-662,共10页
以人免疫球蛋白G(IgG)作为模板分子,利用模板固定化与表面印迹技术相结合策略制备新型、高效的蛋白印迹材料.为了增加印迹材料的分离效果,金属有机框架UIO-66被作为模板蛋白固定化的纳米载体.同时为了提高印迹材料的识别性,在其制备中... 以人免疫球蛋白G(IgG)作为模板分子,利用模板固定化与表面印迹技术相结合策略制备新型、高效的蛋白印迹材料.为了增加印迹材料的分离效果,金属有机框架UIO-66被作为模板蛋白固定化的纳米载体.同时为了提高印迹材料的识别性,在其制备中加入了两性离子单体.研究结果表明,UIO-66晶体呈现出规则的正八面体形状,由它所制备的印迹材料(UIO-66@MIPs)展现出优异的比表面积(362.5 m^(2)/g).此外,通过对印迹聚合物制备过程中两性离子单体用量的优化,发现其占功能单体总质量20%时,可以获得最佳的识别性.吸附实验研究结果表明,UIO-66@MIPs可在浓度为2.0 mg/mL的Ig G溶液中达到饱和吸附,其饱和吸附量可达217.4 mg/g,最大印迹因子为2.48,吸附平衡时间为50 min.另外,选择性和竞争性吸附实验表明,与非印迹材料相比,UIO-66@MIPs对Ig G具有更强的亲合能力,并可以从混合蛋白溶液中高效分离Ig G.本文的研究结果将为构筑高性能Ig G识别材料提供新的思路,对设计高效、廉价的新型冠状病毒检测试剂奠定理论基础. 展开更多
关键词 蛋白质印迹技术 金属有机框架 两性离子单体
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