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Phase Transition in Recovery Process of Complex Networks
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作者 肖文 杨超 +1 位作者 羊亚平 陈宇光 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第5期132-136,共5页
The dynamic characteristic of complex network failure and recovery is one of the main research topics in complex networks. Real world systems such as traffic jams and Internet recovery could be described by the comple... The dynamic characteristic of complex network failure and recovery is one of the main research topics in complex networks. Real world systems such as traffic jams and Internet recovery could be described by the complex network theory. We propose a model to study the recovery process in complex networks. Two different recovery mechanisms are considered in three kinds of networks: external recovery and internal recovery. By simulating the process of the nodes recovery in networks, it is found that the system exhibits the feature of first-order phase transition only when the external recovery is considered. Internal recovery cannot induce such a kind of transitions. As external recovery and internal recovery coexist on networks, the systems will retain the most efficient part of external recovery and internal recovery. Meanwhile, a hysteresis could be observed when increasing or decreasing the failure probability. Finally, a largest degree node protection strategy is proposed for improving the robustness of networks. 展开更多
关键词 NET Phase Transition in recovery Process of complex Networks ERN HNA SFN LNA
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Nanostructured Polyelectrolyte-surfactant Complex Pervaporation Membranes for Ethanol Recovery:the Relationship between the Membrane Structure and Separation Performance 被引量:3
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作者 Pei-Yao Zheng Ping Zhang +2 位作者 Zhi-Wei Sun Chen-Hui Zhu Quan-Fu An 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2018年第1期25-33,共9页
Polyelectrolyte-surfactant complexes(PESCs) were fabricated through the interaction of poly(acrylic acid) and four different cationic surfactants or their mixtures. PESC membranes were prepared by solution casting... Polyelectrolyte-surfactant complexes(PESCs) were fabricated through the interaction of poly(acrylic acid) and four different cationic surfactants or their mixtures. PESC membranes were prepared by solution casting method and were applied in ethanol recovery from aqueous solution via pervaporation. Elemental analysis(EA), Fourier transform infrared spectroscopy(FTIR), water contact angle(CA) measurement, differential scanning calorimetry(DSC) and X-ray scattering were employed to characterize the composition, structure and properties of PESCs. The results reveal that the investigated PESCs are similar in hydrophobicity but different in hierarchical nanostructures. In separating 5 wt% ethanol/water mixture, PESC membranes with high crystallinity will have both low flux and ethanol selectivity because of the high packing density and low permeability of crystalline regions. Meanwhile, the hierarchical nanostructures of PESC membranes change under pervaporation environment as was revealed by in situ synchrotron radiation X-ray scattering measurement. That is, the crystalline region could melt at high temperature in swelling state, thus consequently enhancing the ethanol selectivity. 展开更多
关键词 Polyelectrolyte-surfactant complex Pervaporation Ethanol recovery Crystallinity
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Heritage Recovery Important Yet Complex
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《Beijing Review》 2010年第2期46-47,共2页
The loss of China’s cultural relics is a serious problem and also a historical issue.The Chinese Government and its people have always focused on recovering valuable works lost overseas. However, tracing and reclaimi... The loss of China’s cultural relics is a serious problem and also a historical issue.The Chinese Government and its people have always focused on recovering valuable works lost overseas. However, tracing and reclaiming cultural relics often comes 展开更多
关键词 Heritage recovery Important Yet complex
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