The adsorptive separation of olefin/paraffin mixtures requires the development of robust adsorbents with high selectivity and adsorption capacity. Here we introduce surface sieving carbon adsorbents for propylene/prop...
The adsorptive separation of olefin/paraffin mixtures requires the development of robust adsorbents with high selectivity and adsorption capacity. Here we introduce surface sieving carbon adsorbents for propylene/propane separations. The surface sieving carbon skins, with a thickness of approximately 5.0 nm, selectively sieve propylene through narrow slits centered at 3.6 Å. Underneath the carbon skin lies a pore reservoir centered at 4.9 Å, resulting in a high propylene adsorption capacity of ~2.0 mmol g−1. Such carbon structures readily self-assemble into water-stable and robust monoliths with highly interconnected macropores for efficient mass transfer. These structural advantages collectively contribute to the high propylene/propane separation performance of the surface sieving carbon even after boiling in water for a week. Process simulations reveal that, using this adsorbent class, 99.5% and 99.9% purity of propylene with the according recovery of 82% and 79% can be obtained from an equimolar propylene/propane mixture through a two-bed six-step vacuum swing adsorption process.
Sustainability and resilience are ambiguously used in theory and practices, and have not so far connected with each other clearly. This study attempts to clarify whether the transformation of specified resilience is c...
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Aiming at some specific application scenarios, this paper proposes a broadband transparent absorbing metamaterial using transparent quartz glass and indium tin oxide (ITO) material. The transparent absorbing metamater...
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ISBN:
(数字)9781728160641
ISBN:
(纸本)9781728160658
Aiming at some specific application scenarios, this paper proposes a broadband transparent absorbing metamaterial using transparent quartz glass and indium tin oxide (ITO) material. The transparent absorbing metamaterial is composed of a three-layer structure with the thickness of 4.2mm overall. The absorption of the transparent metamaterial reaches 90% in the frequency range from 6.2GHz to 19.3GHz, and it has good polarization insensitivity and wide-incident-angle stability. This structure can be used in electromagnetic shielding scenes for the purpose of light transmission.
Hafnia-based oxide thin films exhibit unconventional robust ferroelectricity at the nanoscale, paving the way for advancements in next-generation nanoelectronics. However, the stability and dynamics of ferroelectric p...
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Pollen exine contains complex biopolymers of aliphatic lipids and *** development of pollen exine often leads to plant *** mechanisms regulating exine formation have been studied extensively but remain *** we report t...
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Pollen exine contains complex biopolymers of aliphatic lipids and *** development of pollen exine often leads to plant *** mechanisms regulating exine formation have been studied extensively but remain *** we report the analyses of three GDSL esterase/lipase protein genes,OsGELP34,OsGELP110,and OsGELP115,for rice exine ***34 was identified by cloning of a male sterile mutant ***34 encodes an endoplasmic reticulum protein and was mainly expressed in anthers during pollen exine ***34 mutant displayed abnormal exine and altered expression of a number of key genes required for pollen ***110 was previously identified as a gene differentially expressed in meiotic ***110 was most homologous to OsGELP115,and the two genes showed similar gene expression *** OsGELP110 and OsGELP115 proteins were localized in *** knockout of OsGELP110 and OsGELP115 did not affect the plant fertility,but double knockout of both genes altered the exine structure and rendered the plant male ***34 is distant from OsGELP110 and OsGELP115 in sequence,and osgelp34 and osgelp110/osgelp115 mutants were different in anther morphology despite both were male *** results suggested that OsGELP34 and OsGELP110/OsGELP115 catalyze different compounds for pollen exine development.
This study investigates the diurnal variability of organic matter removal by microalgal-bacterial granular sludge (MBGS) in lake water remediation. Results showed that daytime removal efficiencies for NH4+-N, NO3−-N, ...
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The Node-Place model is a classic tool in Transit-Oriented Development (TOD) typologies that it illustrates the synergistic equilibrium between traffic supply (Node) and land use (Place). However, practical applicatio...
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In order to construct a stable augmentation loop, a novel three-loop autopilot structure with an acceleration feedback is proposed. Based on LQR and analytical methods, the design process of the controller parameters ...
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In order to construct a stable augmentation loop, a novel three-loop autopilot structure with an acceleration feedback is proposed. Based on LQR and analytical methods, the design process of the controller parameters is deduced. For a static unstable missile, the control characteristics of a three-loop autopilot with acceleration feedback are compared with classical three-loop and pseudo-angle-of-attack feedback three-loop autopilots. It is pointed out that the closed-loop gain of the three-loop autopilot with acceleration signal feedback is 1, which is not affected by the control parameters. The autopilot can control the static unstable missile, and the acceleration signal is easier to obtain than the pseudo-angle-of-attack.
Second-order photonic topological insulators that host highly localized corner states resilient to defects, are opening alternative routes towards developing fascinating photonic devices. However, the existing works o...
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Second-order photonic topological insulators that host highly localized corner states resilient to defects, are opening alternative routes towards developing fascinating photonic devices. However, the existing works on second-order photonic topological insulators have mainly focused on either transverse-magnetic or transverse-electric modes. In this paper, we propose a dual-polarization topological photonic crystal structure for both transverse magnetic and transverse electric modes through topology optimization. Simple tight-binding lattice models are constructed to reveal the topological features of the optimized photonic crystal structure in a transparent way. The optimized dual-polarization second-order photonic topological insulator hosts four groups of corner states with different profiles and eigenfrequencies for both the transverse-magnetic and transverse-electric modes. Moreover, the robustness of these corner states against defects is explicitly demonstrated. Our results offer opportunities for developing polarization-independent topological photonic devices.
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