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Rapid admittance measurement of power converters using Double-PLL grid-following inverters
, Article IEEE Transactions on Power Delivery ; Volume 39, Issue 3 , 2024 , Pages 1407-1419 ; 08858977 (ISSN) ; Ravanji, M. H ; Mohammed, N ; Bahrani, B ; Sharif University of Technology
2024
Abstract
The increasing use of inverter-based resources (IBRs) in power systems highlights the need for a deep understanding of their stability and dynamics. Traditional analytical models, limited by the black-box nature of IBRs, underscore the importance of frequency-domain methods through measured admittance. Facing challenges in real-world admittance measurement, such as the absence of ideal voltage or current sources, the use of measurement inverters as perturbation sources has emerged as a promising approach, despite drawbacks like reduced system stability and increased measurement time. This article introduces a novel control strategy for measurement inverters, elucidating the impact of abc/dq...
Electrochemical coupling conversion of sulfur-containing gaseous waste to treasure: A key review
, Article Applied Catalysis A: General ; Volume 654 , 2023 ; 0926860X (ISSN) ; Bai, J ; Zhou, T ; Zhou, C ; Xie, C ; Zhang, Y ; Li, J ; Simchi, A ; Zhou, B ; Sharif University of Technology
Elsevier B.V
2023
Abstract
Sulfur-containing gaseous contaminant treatment is a key issue in the healthy and sustainable development of industry, especially SO2 and H2S occur with natural gas extraction and fossil fuel burning. Traditionally, the commercial method for H2S or SO2 requires numerous desiccants and enormous energy consumption. Encouragingly, electrochemical coupling system, which provide an efficient, sustainable, and economic pathway for sulfur-containing gaseous contaminants removal, can convert H2S and SO2 to recyclable substance in a moderate environment and simultaneously transfer the energy contained in them to other more valuable product. The current review discusses the mechanism and principle of...
AI-based back analysis of multiphysics processes in unconventional resource extraction practice
, Article Smart Geotechnics for Smart Societies ; 2023 , Pages 888-895 ; 978-100099253-3 (ISBN); 978-100329912-7 (ISBN) ; Shadabfar, M ; Leung, Y. F ; Uchida, S ; Sharif University of Technology
CRC Press
2023
Abstract
Mulitphysics processes have been commonly identified in geotechnical engineering practice. Researchers and field engineers often carry out multiphysics simulations to understand complex engineering responses. In field practice, a back analysis is typically required along with the simulations to calibrate the most representative model parameters. This would intensify the problem as it requires further simulations to assess the parameter sensitivity. Therefore, an efficient back analysis for multiphysics processes still remains a challenge in practice due to the numerical complexity and the low computational efficiency. With recent advances in AI techniques, opportunities have opened up for...
Exhaustive denitrification via chlorine oxide radical reactions for urea based on a novel photoelectrochemical cell
, Article Water research ; Volume 170 , 2020 , Pages 115357- ; Zhang, Y ; Zhou, C ; Bai, J ; Chen, S ; Li, J ; Wang, J ; Guan, X ; Rahim, M ; Zhou, B ; Sharif University of Technology
NLM (Medline)
2020
Abstract
Urea is a major source of nitrogen pollution in domestic sewage and its denitrification is difficult since it is very likely to be converted into ammonia or nitrate instead of expected N2. Herein, we propose an exhaustive denitrification method for urea via the oxidation of amine/ammonia-N with chlorine oxide radical, which induced from a bi-functional RuO2//WO3 anode, and the highly selective reduction of nitrate-N on cathode in photoelectrochemical cell (PEC). Under illumination, the WO3 photoanode side promotes the quantities hydroxyl and reactive chlorine radical, and these radicals are immediately combined to stronger chlorine oxide radical by RuO2 side, which obviously enhances the...
Carbon quantum dots modified anatase/rutile TiO2 photoanode with dramatically enhanced photoelectrochemical performance
, Article Applied Catalysis B: Environmental ; Volume 269 , 2020 ; Chen, S ; Li, L ; Wang, J ; Zhang, Y ; Li, J ; Bai, J ; Xia, L ; Xu, Q ; Rahim, M ; Zhou, B ; Sharif University of Technology
Elsevier B.V
2020
Abstract
TiO2 is a promising photoanode material for photoelectrochemical (PEC) water splitting, but its severe bulk recombination of photogenerated carriers, sluggish oxygen evolution reaction (OER) kinetics and poor visible light response are the main bottleneck problems. Here, the carbon quantum dots (CQDs) modified anatase/rutile TiO2 photoanode (CQDs/A/R-TiO2) was designed by growth of anatase TiO2 nanothorns on rutile TiO2 nanorods and further surface modification of CQDs. The results revealed that the A/R-TiO2 heterojunction significantly suppressed the bulk recombination of photogenerated carriers. With further incorporation of CQDs into A/R-TiO2, dramatical improvement of OER kinetics and...
Persulfate activation via iron sulfide nanoparticles for enhanced trichloroethylene degradation and its applications in groundwater remediation
, Article Journal of Water Process Engineering ; Volume 58 , 2024 ; 22147144 (ISSN) ; Ayaz, T ; Ali, M ; Xu, Z ; Zhou, Z ; Ullah, S ; Lyu, S ; Sharif University of Technology
Elsevier
2024
Abstract
Trichloroethylene (TCE) is known for its carcinogenic properties and limited environmental degradation. Therefore, TCE degradation was carried out using a catalyzed system, i.e., an advanced oxidation process (AOP) for an aqueous solution. This study focuses on activating sodium persulfate (PS) by laboratory-synthesized iron sulfide nanoparticles (FeS-NPs) with a particle size of 115.17 nm for enhanced TCE degradation. Field emission scanning electron microscope (FESEM), transmission electron microscopy (TEM), X-ray diffractometry (XRD), Fourier transform infrared spectroscopy (FTIR), and Brunauer-Emmett-Teller (BET) analyses were employed to investigate physio-chemical properties and...
Efficient back analysis of multiphysics processes of gas hydrate production through artificial intelligence
, Article Fuel ; Volume 323 , 2022 ; 00162361 (ISSN) ; Shadabfar, M ; Huang, H ; Leung, Y. F ; Uchida, S ; Sharif University of Technology
Elsevier Ltd
2022
Abstract
Natural gas hydrate, a crystalline solid existing under high-pressure and low-temperature conditions, has been regarded as a potential alternative energy resource. It is globally widespread and occurs mainly inside the pores of deepwater sediments and sediments under permafrost area. Hydrate production via well depressurization is deemed well-suited to existing technology, in which the pore pressure is lowered, the natural gas hydrate is dissociated into water and gas, and the water and gas are produced from well. This method triggers multiphysics processes such as fluid flow, heat transfer, energy adsorption, chemical reaction and sediment deformation, all of which are dependent on the...
The synergic generation of CO3[rad]− and O2[rad]− radicals in a novel photocatalytic fuel cell for efficient oxidation of carbonate-containing wastewater and simultaneous electricity production
, Article Applied Catalysis B: Environmental ; Volume 277 , 2020 ; Li, J ; Xia, L ; Wang, J ; Chen, S ; Zhang, Y ; Bai, J ; Li, L ; Zhou, T ; Rahim, M ; Xu, Q ; Zhou, B ; Sharif University of Technology
Elsevier B.V
2020
Abstract
The treatment of refractory wastewater and energy utilization are challenging environmental issues. Carbonate as the most common anion abounds in the aquatic environment. Here, we proposed a novel method to degrade carbonate-containing wastewater and simultaneous electricity generation via the combined oxidation of CO3[rad]− and O2[rad]− radicals. The CO3[rad]− radical was produced by the photoelectrode of TiO2/Si photovoltaic cell with the rear Si photovoltaic cell providing external bias, and the O2[rad]− radical was produced from the generation of H2O2 on a gas diffusion electrode (GDE), and they were both further enhanced from the activation reaction of H2O2 with HCO3− electrolyte. The...
Lyophilizable Polymer-Lipid Hybrid Nanoparticles with High Paclitaxel Loading
, Article ACS Applied Nano Materials ; Volume 7, Issue 16 , 2024 , Pages 19194-19210 ; 25740970 (ISSN) ; Wu, Y ; Ahmad, A ; Ramzan, N ; Kayitmazer, A. B ; Zhou, X ; Xu, Y ; Sharif University of Technology
2024
Abstract
Lyophilization is a prevalent technique for preparing paclitaxel (PTX) clinical formulations. However, the instability of PTX nanoparticles poses challenges in producing lyophilized formulations. Such an instability involves maintaining stable dispersions and structural integrity during lyophilization. To tackle these issues, flash nanoprecipitation method is employed to prepare highly stable and loaded lyophilizable diPTX-SS nanoparticles, achieving over a month of nanosuspension stability and 91 wt % loading capacity. Furthermore, adjusting the concentrations and stabilizer ratios allows for controlled nanoparticle preparation with surface structures suitable for lyophilization. The...
Effect of specimen preparation techniques on dynamic properties of unsaturated fine-grained soil at high suctions
, Article Canadian Geotechnical Journal ; Volume 54, Issue 9 , 2017 , Pages 1310-1319 ; 00083674 (ISSN) ; Baghbanrezvan, S ; Sadeghi, H ; Zhou, C ; Jafarzadeh, F ; Sharif University of Technology
Canadian Science Publishing
2017
Abstract
The seismic response of soil depends on proper evaluation and use of soil dynamic properties, including shear modulus and damping ratio at various strain levels. Despite extensive studies on the shear modulus and damping ratio of saturated soils, research on the dynamic properties of unsaturated fine-grained soils — especially at high suction — is limited. This study aims to investigate the dynamic properties of loess at a variety of initial states resulting from different specimen preparation techniques (reconstituted, recompacted, and intact) and their evolutions due to suction-induced desiccation. Results of resonant column tests show that at initial states, the specimen preparation...
On-fiber standardization technique for solid-coated solid-phase microextraction
, Article Analytical Chemistry ; Volume 79, Issue 3 , 2007 , Pages 1221-1230 ; 00032700 (ISSN) ; Zhang, X ; Ouyang, G ; Es-haghi, A ; Pawliszyn, J ; Sharif University of Technology
2007
Abstract
The on-fiber standardization technique for solid-coated solid-phase microextraction (SPME) was studied, and a theoretical model is proposed for the isotropic behavior of adsorption and desorption, based on Fick's law of diffusion and the Langmuir model. The isotropy of the adsorption and desorption of analytes onto and from the surface of porous solid SPME fiber was validated with the use of a commercially available fiber, a 50-μm Carbowax/ templated resin for carbamate pesticide analysis in various sample matrixes, and a self-made polypyrrole fiber for diazepam analysis in blood samples. Time constants were comparable for the adsorption and desorption processes. Equilibrium constants and...
Trichloroethylene degradation by PVA-coated calcium peroxide nanoparticles in Fe(II)-based catalytic systems: enhanced performance by citric acid and nanoscale iron sulfide
, Article Environmental Science and Pollution Research ; Volume 28, Issue 3 , 2021 , Pages 3121-3135 ; 09441344 (ISSN) ; Shan, A ; Sun, Y ; Gu, X ; Lyu, S ; Zhou, Y ; Sharif University of Technology
Springer Science and Business Media Deutschland GmbH
2021
Abstract
In this study, the enhanced trichloroethylene (TCE) degradation performance was investigated by polyvinyl alcohol coated calcium peroxide nanoparticles (PVA@nCP) as an oxidant in Fe(II)-based catalytic systems. The nanoscale iron sulfide (nFeS), having an average particle size of 115.4 nm, was synthesized in the laboratory and characterized by SEM, TEM, HR-TEM along with EDS elemental mapping, XRD, FTIR, ICP-OES, and XPS techniques. In only ferrous iron catalyzed system (PVA@nCP/Fe(II)), TCE degradation was recorded at 58.9% in 6 h. In comparison, this value was increased to 97.5% or 99.7% with the addition of citric acid (CA) or nFeS in PVA@nCP/Fe(II) system, respectively. A comparative...
Trichloroethylene degradation by PVA-coated calcium peroxide nanoparticles in Fe(II)-based catalytic systems: enhanced performance by citric acid and nanoscale iron sulfide
, Article Environmental Science and Pollution Research ; Volume 28, Issue 3 , 2021 , Pages 3121-3135 ; 09441344 (ISSN) ; Shan, A ; Sun, Y ; Gu, X ; Lyu, S ; Zhou, Y ; Sharif University of Technology
Springer Science and Business Media Deutschland GmbH
2021
Abstract
In this study, the enhanced trichloroethylene (TCE) degradation performance was investigated by polyvinyl alcohol coated calcium peroxide nanoparticles (PVA@nCP) as an oxidant in Fe(II)-based catalytic systems. The nanoscale iron sulfide (nFeS), having an average particle size of 115.4 nm, was synthesized in the laboratory and characterized by SEM, TEM, HR-TEM along with EDS elemental mapping, XRD, FTIR, ICP-OES, and XPS techniques. In only ferrous iron catalyzed system (PVA@nCP/Fe(II)), TCE degradation was recorded at 58.9% in 6 h. In comparison, this value was increased to 97.5% or 99.7% with the addition of citric acid (CA) or nFeS in PVA@nCP/Fe(II) system, respectively. A comparative...
Modulating glucose metabolism and relieving hypoxia for enhanced Chemo/Photoimmunotherapy with photosensitizing enzymatic nanodrugs
, Article Chemical Engineering Journal ; Volume 498 , 2024 ; 13858947 (ISSN) ; Lu, S ; Wu, Y ; Basak Kayitmazer, A ; Ahmad, A ; Ramzan, N ; Shahid Rafique, M ; Yang, J ; Zhou, X ; Xu, Y ; Si, Y ; Sharif University of Technology
2024
Abstract
Photoimmunotherapy by photodynamic therapy (PDT) induces immunogenic cell death (ICD), providing anti-tumor treatment in a safe, precise, minimally invasive way. However, PDT-demanded massive oxygen consumption exacerbates the hypoxia and creates an acidic tumor microenvironment (TME), leading to an anaerobic glycolysis and immune escape condition. In this study, a natural anti-tumor resveratrol (RSV) nanodrug was introduced via Fe3+ coordination flash nanoprecipitation (cFNP) for enhanced aqueous solubility to specifically downregulate the expression of Pyruvate kinase M2 (PKM2) and lactate dehydrogenase A (LDHA), reduce the glucose resorption and lactate production, tipping the cellular...
Effect of microstructure on shear strength and dilatancy of unsaturated loess at high suctions
, Article Canadian Geotechnical Journal ; Volume 57, Issue 2 , February , 2020 , Pages 221-235 ; Sadeghi, H ; Jafarzadeh, F ; Sadeghi, M ; Zhou, C ; Baghbanrezvan, S ; Sharif University of Technology
Canadian Science Publishing
2020
Abstract
To investigate the influences of microstructure changes on dilatancy of unsaturated loess at high suctions, a direct shear box device using the vapour equilibrium technique was used. Through conducting two series of direct shear tests on both intact and recompacted loess specimens and also investigating microstructural changes using the mercury intrusion porosim-etry (MIP) technique, a linear increase in dilatancy with suctions ranging from 8 to 230 MPa can be identified at different net stresses. The enhanced dilatancy observed is mainly attributed to desiccation-induced high suctions as the reduction in void ratio due to enhancement of suction was negligible. A macrovoid ratio, eM, may be...
Degradation of trichloroethylene in aqueous solution by FeS2 catalyst under innovative oxic environments
, Article Environmental Pollution ; Volume 333 , 2023 ; 02697491 (ISSN) ; Ali, M ; Ayaz, T ; Shan, A ; Zeng, G ; Zhou, Z ; Lyu, S ; Sharif University of Technology
Elsevier Ltd
2023
Abstract
Rapid growth and industrialization have become a major threat to water contamination with carcinogenic chlorinated hydrocarbons such as trichloroethylene (TCE). Therefore, this study aims to assess the TCE degradation performance through advanced oxidation process (AOP) using catalyst FeS2 in combination with oxidants persulfate (PS), peroxymonosulfate (PMS), and hydrogen peroxide (H2O2) in PS/FeS2, PMS/FeS2, and H2O2/FeS2 systems, respectively. TCE concentration was analyzed using gas chromatography (GC). The results found the trend for TCE degradation by the systems was PMS/FeS2>PS/FeS2>H2O2/FeS2 (99.84, 99.63, and 98.47%, respectively). Degradation of TCE was analyzed at different pH...
High yield of CO and synchronous s recovery from the conversion of CO2 and H2S in natural gas based on a novel electrochemical reactor
, Article Environmental Science and Technology ; Volume 55, Issue 21 , 2021 , Pages 14854-14862 ; 0013936X (ISSN) ; Zhang, B ; Zhang, Y ; Zhou, C ; Wang, P ; Zha, L ; Li, J ; Simchi, A ; Zhou, B ; Sharif University of Technology
American Chemical Society
2021
Abstract
H2S and CO2 are the main impurities in raw natural gas, which needs to be purified before use. However, the comprehensive utilization of H2S and CO2 has been ignored. Herein, we proposed a fully resource-based method to convert toxic gas H2S and greenhouse gas CO2 synchronously into CO and elemental S by using a novel electrochemical reactor. The special designs include that, in the anodic chamber, H2S was oxidized rapidly to S based on the I−/I3− cyclic redox system to avoid anode passivation. On the other hand, in the cathodic chamber, CO2 was rapidly and selectively reduced to CO based on a porous carbon gas diffusion electrode (GDE) modified with polytetrafluoroethylene and cobalt...
Insights into the fluid retention and shrinkage of a lean clay under the combined influence of microstructure, solute concentration and salt species
, Article Acta Geotechnica ; Volume 19, Issue 7 , 2024 , Pages 4855-4872 ; 18611125 (ISSN) ; Heydari, A ; Zhou, C ; Sharif University of Technology
2024
Abstract
Soil-fluid retention (SFR) is considered a fundamental unsaturated property with a wide application from transient flow analysis, and strength prediction to constitutive modeling. Previous research has led to a consensus that soil microstructure can significantly affect retention properties. Furthermore, the soil microstructure is subject to changes due to variations in the sampling method and pore fluid chemistry. Therefore, this study aims to explore the influence of multiple factors, including sample preparation technique, dissolved salt concentration and cation type, on soil-fluid retention and volumetric behavior in a systematic manner. The results of tests conducted by employing the...
DONE: Distributed approximate newton-type method for federated edge learning
, Article IEEE Transactions on Parallel and Distributed Systems ; Volume 33, Issue 11 , 2022 , Pages 2648-2660 ; 10459219 (ISSN) ; Tran, N. H ; Nguyen, T. D ; Bao, W ; Balef, A. R ; Zhou, B. B ; Zomaya, A. Y ; Sharif University of Technology
IEEE Computer Society
2022
Abstract
There is growing interest in applying distributed machine learning to edge computing, forming federated edge learning. Federated edge learning faces non-i.i.d. and heterogeneous data, and the communication between edge workers, possibly through distant locations and with unstable wireless networks, is more costly than their local computational overhead. In this work, we propose ${{sf DONE}}$DONE, a distributed approximate Newton-type algorithm with fast convergence rate for communication-efficient federated edge learning. First, with strongly convex and smooth loss functions, ${{sf DONE}}$DONE approximates the Newton direction in a distributed manner using the classical Richardson iteration...