All Stories

  1. Lanthanide-controlled redox tuning in LnFeO3 perovskites for low-COx hydrogen production via chemical looping methane decomposition
  2. Thermokinetic Analysis of Carbon Dioxide Chemical Capture Using a Nickel-Containing Alkaline Ceramic (Li 2 NiO 2 )
  3. Analysis of sodium metazirconate as new NO feasible sorbent and early discernments as bifunctional material in the selective catalytic reduction (SCR) process
  4. Exploring the capture and catalytic properties of sodium manganates: Bifunctional ceramics for CO/CO2 chemisorption and CO oxidation
  5. Analysis of Glycerol Carbonate Production from Dimethyl Carbonate and Glycerol Using Different Alkaline Zirconates (Li 2– x Na ...
  6. Dual-reactor system implementation for Li5FeO4-assisted sorption enhanced steam reforming for hydrogen production, during biomass pyrolysis
  7. Tuning Bifunctional LDHs-Derived Mixed Oxides for the Integrated CO2 Sorption-Enhanced Water-Gas Shift Reaction
  8. Unraveling the CO2 capture mechanism at high temperatures in hexalithium manganate (Li6MnO4)
  9. Elucidating the thermoreactivity properties of sodium nickelate (NaNiO2), for CO2 capture and storage
  10. Joint Theoretical and Experimental Study of the Electronic, Magnetic, and Lattice Phonon Dynamics Properties of CaxFeyOz Compounds Applied to CO2 Capture
  11. Unravelling a new non-noble metal supported catalyst (CuO-Fe2O3/TiO2) for NO selective catalytic reduction with H2
  12. Hydrogen production from dry reforming of methane, using CO2 previously chemisorbed in the Li6Zn1-xNixO4 solid solution
  13. Experimental and Theoretical Thermokinetic Analysis of the Na3VO4–CO2 Reaction System under Different Physicochemical Conditions
  14. Obsidian: A Pioneering Natural Resource for Green, Fire-Resistant Composite Material Industries
  15. Experimental and Computational Elucidation of the Li2MnO3-Mediated Mechanism for CO Oxidation-Capture
  16. Unraveling the Textile Pollution Problem with Li5FeO4 as a Bifunctional Material for Hydrogen Production and COx Capture: From Glucose to Cotton Pyrolysis
  17. High CO2 permeation using a new Ce0.85Gd0.15O2-δ-LaNiO3 composite ceramic–carbonate dual-phase membrane
  18. A green approach for preparation of MnFeTi Low-temperature NH3-SCR catalysts: utilizing spent V2O5–WO3/TiO2 Catalysts
  19. Depicting the Nitric Oxide (NO) Chemical Sorption in Lithium Cuprate (Li2CuO2), through Thermokinetic and Spectroscopic Analyses
  20. Influence of NiO into the CO2 capture of Li4SiO4 and its catalytic performance on dry reforming of methane
  21. Enhanced H2 production through biomass pyrolysis by applying alkaline ceramic lithium cuprate (Li2CuO2) as a bifunctional material
  22. Enhanced hydrogen production via assisted biomass gasification using lithium manganate as a bifunctional material
  23. Scrutinizing different catalytic processes in the (Gd–La) codoped CeO2–NiO-carbonate membrane reactor, implying CO2 permeation mechanisms
  24. Li2ZrO3 modified with molten salts as potential materials for CO elimination: Effect of carbonate type and oxygen addition
  25. Síntesis y caracterización de dos materiales azo: Comparación entre un compuesto sulfonado y su análogo no sulfonado
  26. Effect of alkaline nitrate addition in the CO2 chemisorption of pentalithium ferrite (Li5FeO4) at low and moderate temperatures
  27. State of the art and perspectives of the CO2 chemisorption in ceramics with its simultaneous or subsequent chemical transformation
  28. Study of the coalescence phenomena in biogenic nano-hydroxyapatite produced by controlled calcination processes at low temperature
  29. Scrutinizing the CO Chemical Capture Path in Li2MnO3 Samples with Different Microstructural Properties
  30. Intensified bio-oil steam reforming for high-purity hydrogen production: Numerical simulation and sorption kinetics
  31. Insight into CO selective chemisorption from syngas mixtures through Li2MnO3; a new H2enrichment material
  32. Probing room-temperature reactivity of H2S, SO2, and NO on the Li2MnO3 crystal surface by experimental and first-principles studies
  33. Unveiling the different physicochemical properties of M-doped β-NaFeO2 (where M = Ni or Cu) materials evaluated as CO2 sorbents: a combined experimental and theoretical analysis
  34. Fabrication and characterization of bioinspired nanohydroxyapatite scaffolds with different porosities
  35. Improving the structural reversibility of LiNiO2 by incorporation of Cu, an electrochemical and in-situ XRD study
  36. Fluoride ions adsorption from water by CaCO3 enhanced Mn-Fe mixed metal oxides
  37. Enhanced CO2 capture over Li-containing β-NaFeO2 materials: Effect of lithium nitrate addition
  38. Effect of Sodium Ortho and Pyrosilicates (Na4SiO4–Na6Si2O7) Mixture during the CO2 Chemical Capture Performance
  39. Investigation of H2 production via an integrated pathway of consecutive CO oxidation and dry methane reforming in the presence of Co3O4@HNTs catalyst
  40. A new kinetic model for CO2 capture on sodium zirconate (Na2ZrO3): An analysis under different flow rates
  41. Highly efficient CO2 permeation using a new dense dual-phase ceramic membrane prepared with Ce0.8Sm0.2O2−δ–Pr0.6Sr0.4FeO3−δ as precursors
  42. LaNiO3 Perovskite Synthesis through the EDTA–Citrate Complexing Method and Its Application to CO Oxidation
  43. 3D porous Ca-modified Mg-Zr mixed metal oxide for fluoride adsorption
  44. Experimental and theoretical analysis revealing the underlying chemistry accounting for the heterogeneous transesterification reaction in Na2SiO3 and Li2SiO3 catalysts
  45. Unraveling the CO and CO2 reactivity on Li2MnO3: Sorption and catalytic analyses
  46. Enhanced CO capture properties of Li2MnO3via inducing layered to spinel transition by cation doping with Fe, Co, Ni and Cu
  47. Introduction to CO2 capture, utilization and storage (CCUS)
  48. Improving the Structural Reversibility of Linio2 by Incorporation of Cu, an Electrochemical and In-Situ Xrd Study
  49. Mixed ionic-electronic conducting composite-based ceramic-carbonate dense membranes for CO2/O2 counter-permeation and CO oxidation
  50. Understanding the CO2 chemical reaction path on Li6ZnO4, a new possible high temperature CO2 captor
  51. High-temperature CO2 perm-selectivity of yttrium-doped SDC ceramic–carbonate dual-phase membranes
  52. Lithium cuprate, a multifunctional material for NO selective catalytic reduction by CO with subsequent carbon oxide capture at moderate temperatures
  53. Experimental and Theoretical Roadmap Revealing the Overriding Underlying Chemistry of Na2sio3 and Li2sio3 Catalysts for the Heterogeneous Transesterification Reaction
  54. Development of novel nano-hydroxyapatite doped with silver as effective catalysts for carbon monoxide oxidation
  55. First discernments for NO storage and reduction (NSR) on lithium cuprate (Li2CuO2) at moderate temperatures (100 ≤ T ≤ 400 °C)
  56. The role of nickel addition on the CO2 chemisorption enhancement in Ni-containing Li2CuO2: Analysis of the cyclability and different CO2 partial pressure performance
  57. Developing new alkaline ceramics as possible CO2 chemisorbents at high temperatures: The lithium and sodium yttriates (LiYO2 and NaYO2) cases
  58. First insights for hydrogen production using an alkaline ceramic through the water-gas shift reaction
  59. New evidences in CO oxidation and selective chemisorption of carbon oxides on different alkaline ferrite crystal phases (NaFeO2 and LiFeO2)
  60. Evaluation of Me-Li2CuO2 Solid Solutions (Where Me = Ni, Fe, and Mn) during CO2 and CO Chemisorption
  61. Co3O4 nanostructures and Co3O4 supported on halloysite nanotubes: New highly active and thermally stable feasible catalysts for CO oxidation
  62. New Catalytic and Sorption Bifunctional Li6CoO4 Material for Carbon Monoxide Oxidation and Subsequent Chemisorption
  63. Enhanced selective catalytic reduction of NO with CO over Cu/C nanoparticles synthetized from a Cu-benzene-1,3,5-tricarboxylate metal organic framework by a continuous spray drying process
  64. High and efficient carbon dioxide chemisorption on a new high lithium-content ceramic; hexalithium cobaltate (Li6CoO4)
  65. Two-dimensional MnFeCo layered double oxide as catalyst for enhanced selective catalytic reduction of NOx with NH3 at low temperature (25–150 °C)
  66. Enhancing CO2 chemisorption on lithium cuprate (Li2CuO2) at moderate temperatures and different pressures by alkaline nitrate addition
  67. Unraveling the effects on lithium-ion cathode performance by cation doping M–Li2CuO2 solid solution samples (M = Mn, Fe and Ni)
  68. Nanosized Lithium Aluminate (γ-LiAlO2) Synthesized by EDTA-citrate Complexing Method, Using Different Thermal Conditions
  69. COx-free hydrogen production from ammonia on novel cobalt catalysts supported on 1D titanate nanotubes
  70. CO2–CO capture and kinetic analyses of sodium cobaltate under various partial pressures
  71. Pentalithium Ferrite (Li5FeO4) as Highly Active Material for Hydrogen Production in the Chemical Looping Partial Oxidation of Methane
  72. High and Efficient CO2 Capture in Molten Nitrate-Modified Mg–Al–Palmitate Layered Double Oxides at High Pressures and Elucidation of Carbonation Mechanisms by in Situ DRIFT Spectroscopy Analysis
  73. CO2—H2O Capture and Cyclability on Sodium Cobaltate at Low Temperatures (30–80 °C): Experimental and Theoretical Analysis (Energy Technol. 3∕2019)
  74. CO2—H2O Capture and Cyclability on Sodium Cobaltate at Low Temperatures (30–80 °C): Experimental and Theoretical Analysis
  75. Thermokinetic evaluation of iron addition on lithium metazirconate (Fe-Li2ZrO3) for enhancing carbon dioxide capture at high temperatures
  76. Development of New Bifunctional Dense Ceramic-Carbonate Membrane Reactors for Gas Mixtures Separation, through CO Oxidation and Subsequent CO2 Permeation
  77. Recent advances in lithium containing ceramic based sorbents for high-temperature CO2 capture
  78. Synthesis of Li4+xSi1−xFexO4 solid solution by dry ball milling and its highly efficient CO2 chemisorption in a wide temperature range and low CO2 concentrations
  79. Alkaline zirconates as effective materials for hydrogen production through consecutive carbon dioxide capture and conversion in methane dry reforming
  80. Effect of Chemical Composition and Crystal Phase of (Li,Na)FeO2 Ferrites on CO2 Capture Properties at High Temperatures
  81. Alkaline Ceramics-based High-temperature CO2 Sorbents
  82. CO2 Separation Improvement Produced on a Ceramic–Carbonate Dense Membrane Superficially Modified with Au–Pd
  83. Evaluation of Fe-containing Li2CuO2 on CO2 capture performed at different physicochemical conditions
  84. Enhanced CO 2 capture capacity on open-cell Mg foams via humid impregnation with lithium at low temperatures
  85. Enhanced CO 2 chemisorption at high temperatures via oxygen addition using (Fe, Cu or Ni)-containing sodium cobaltates as solid sorbents
  86. Nickel-doped sodium zirconate catalysts for carbon dioxide storage and hydrogen production through dry methane reforming process
  87. Structural evolution and reaction mechanism of lithium nickelate (LiNiO 2 ) during the carbonation reaction
  88. Thermocatalytic analysis of CO 2 -CO selective chemisorption mechanism on lithium cuprate (Li 2 CuO 2 ) and oxygen addition effect
  89. Ce 0.85 Sm 0.15 O 2 -Sm 0.6 Sr 0.4 Al 0.3 Fe 0.7 O 3 composite for the preparation of dense ceramic-carbonate membranes for CO 2 separation
  90. CO 2 chemisorption enhancement produced by K 2 CO 3 - and Na 2 CO 3 -addition on Li 2 CuO 2
  91. Synthesis of gamma radiation-induced PEGylated cisplatin for cancer treatment
  92. Carbon dioxide capture and catalytic conversion to added value products through the use of different alkaline ceramics
  93. Bifunctional application of lithium ferrites (Li 5 FeO 4 and LiFeO 2 ) during carbon monoxide (CO) oxidation and chemisorption processes. A catalytic, thermogravimetric and theoretical analysis
  94. NiO CaO materials as promising catalysts for hydrogen production through carbon dioxide capture and subsequent dry methane reforming
  95. Thermokinetic and conductivity analyzes of the high CO 2 chemisorption on Li 5 AlO 4 and alkaline carbonate impregnated Li 5 AlO 4 samples: Effects produced by the use of CO 2 partial pressures and oxygen addition
  96. Synthesis and evaluation as CO 2 chemisorbent of the Li 5 (Al 1 − x Fe x )O 4 solid solution materials: Effect of oxygen addition
  97. Ce0.8Sm0.15Sr0.05O2 as Possible Oxidation Catalyst and Assessment of the CaO Addition in the Coupled CO Oxidation–CO2 Capture Process
  98. High and efficient Li 2 CuO 2 -CO 2 chemisorption using different partial pressures and enhancement produced by the oxygen addition
  99. Analysis of the CO2 Chemisorption in Li5FeO4, a New High Temperature CO2 Captor Material. Effect of the CO2 and O2 Partial Pressures
  100. CO Oxidation and Subsequent CO2 Chemisorption on Alkaline Zirconates: Li2ZrO3 and Na2ZrO3
  101. First assessment of Li 2 O–Bi 2 O 3 ceramic oxides for high temperature carbon dioxide capture
  102. Structural and microstructural analysis of different CaO–NiO composites and their application as CO2 or CO–O2 captors
  103. Biodiesel production from soybean and Jatropha oils using cesium impregnated sodium zirconate as a heterogeneous base catalyst
  104. Methane Reforming Process by means of a Carbonated Na2ZrO3 Catalyst
  105. CO2 adsorption at high pressures in MCM-41 and derived alkali-containing samples: the role of the textural properties and chemical affinity
  106. CO Chemical Capture on Lithium Cuprate, Through a Consecutive CO Oxidation and Chemisorption Bifunctional Process
  107. Li2SiO3 fast microwave-assisted hydrothermal synthesis and evaluation of its water vapor and CO2 absorption properties
  108. Bifunctional application of sodium cobaltate as a catalyst and captor through CO oxidation and subsequent CO2 chemisorption processes
  109. CO2 chemisorption in Li2CuO2 microstructurally modified by ball milling: study performed with different physicochemical CO2 capture conditions
  110. Structural and CO2capture analyses of the Li1+xFeO2(0 ≤ x ≤ 0.3) system: effect of different physicochemical conditions
  111. Thermogravimetric study of sequential carbonation and decarbonation processes over Na2ZrO3 at low temperatures (30–80 °C): relative humidity effect
  112. CO2 capture enhancement in InOF-1 via the bottleneck effect of confined ethanol
  113. Development of pure Mg open-cell foams as structured CO2 captor
  114. CO2chemisorption and cyclability analyses in α−Li5AlO4: effects of Na2CO3and K2CO3addition
  115. CO2 chemisorption and evidence of the CO oxidation–chemisorption mechanisms on sodium cobaltate
  116. Analysis of the CO2–H2O Chemisorption in Lithium Silicates at Low Temperatures (30–80 °C)
  117. Synthesis and characterisation of K2[LnTa3O10]·nH2O (Ln = La, Pr, Nd): cation-deficient layered perovskite tantalates for water photolysis
  118. Electronic Structure, Phonon Dynamical Properties, andCO2Capture Capability ofNa2−xMxZrO3(M=Li,K): Density-Functional Calculations and Experimental Validations
  119. Evidence of CO Oxidation–Chemisorption Process on Sodium Zirconate (Na2ZrO3)
  120. The effects of high-pressure on the chemisorption process of CO2 on lithium oxosilicate (Li8SiO6)
  121. Potassium-based sorbents using mesostructured γ-alumina supports for low temperature CO2 capture
  122. Separation of CO2from CH4and CO2capture in the presence of water vapour in NOTT-400
  123. Water steam effect during high CO2 chemisorption in lithium cuprate (Li2CuO2) at moderate temperatures: experimental and theoretical evidence
  124. CO2 Chemisorption on Li5AlO4: Effects of Sodium and Potassium Carbonate Addition
  125. Structural and Ionic Conduction Analyses of the Na2(Zr1–xAlx)O3–x/2 Solid Solution, During the CO2 Chemisorption Process
  126. Changes in the characteristics of acid-treated clay after the inclusion of proteins
  127. Hierarchical Na-doped cubic ZrO2 synthesis by a simple hydrothermal route and its application in biodiesel production
  128. Thermodynamic and Kinetic Analyses of the CO 2 Chemisorption Mechanism on Na 2 TiO 3 : Experimental and Theoretical Evidences
  129. Nanoporous composites prepared by a combination of SBA-15 with Mg–Al mixed oxides. Water vapor sorption properties
  130. CO 2 Adsorption at Elevated Pressure and Temperature on Mg–Al Layered Double Hydroxide
  131. Sodium zirconate (Na2ZrO3) as a catalyst in a soybean oil transesterification reaction for biodiesel production
  132. Alkaline and Alkaline-Earth Ceramic Oxides for CO2 Capture, Separation and Subsequent Catalytic Chemical Conversion
  133. Some consequences of the fluorination of brucite-like layers in layered double hydroxides: Adsorption
  134. Influence of the K-, Na- and K-Na-carbonate additions during the CO2chemisorption on lithium oxosilicate (Li8SiO6)
  135. Thermokinetic and microstructural analyses of the CO2 chemisorption on K2CO3–Na2ZrO3
  136. Thermoanalytical study of acid-treated clay containing amino acid immobilized on its surface
  137. Microstructural and CO2 chemisorption analyses of Li4SiO4: Effect of surface modification by the ball milling process
  138. Structural and CO 2 Chemisorption Analyses on Na 2 (Zr 1– x Al x )O 3 Solid Solutions
  139. Cyclic CO2 chemisorption–desorption behavior of Na2ZrO3: Structural, microstructural and kinetic variations produced as a function of temperature
  140. High CO 2 Capture in Sodium Metasilicate (Na 2 SiO 3 ) at Low Temperatures (30–60 °C) through the CO 2 –H 2 O Chemisorption Process
  141. Inactivation of Ascaris eggs in water using hydrogen peroxide and a Fenton type nanocatalyst (FeOx/C) synthesized by a novel hybrid production process
  142. Li 4+ x (Si 1– x Al x )O 4 Solid Solution Mechanosynthesis and Kinetic Analysis of the CO 2 Chemisorption Process
  143. Dynamic water vapor sorption on Mg(Ga3+)O mixed oxides: Analysis of the LDH thermal regeneration process
  144. CO2 capture properties of lithium silicates with different ratios of Li2O/SiO2: an ab initio thermodynamic and experimental approach
  145. Analysis of the CO2 chemisorption reaction mechanism in lithium oxosilicate (Li8SiO6): a new option for high-temperature CO2 capture
  146. Synthesis of advanced ceramics by hydrothermal crystallization and modified related methods
  147. Selection Tests of MnZn and NiZn Ferrites for Mu2e 300 kHz and 5.1 MHz AC Dipoles
  148. Thermogravimetric analysis of the water vapor addition during the CaO carbonation process at moderate temperatures (40–70 °C)
  149. Electrochemical Behavior of (Zn, Mn)-Al Nitrated Hydrotalcites
  150. High CO 2 Chemisorption in α-Li 5 AlO 4 at Low Temperatures (30–80 °C): Effect of the Water Vapor Addition
  151. Microstructural Thermal Evolution of the Na 2 CO 3 Phase Produced during a Na 2 ZrO 3 –CO 2 Chemisorption Process
  152. Structural and Thermochemical Chemisorption of CO 2 on Li 4+ x (Si 1– x Al x )O 4 and Li 4– x (Si 1– x V x )O 4 Solid Solutions
  153. CO 2 Chemisorption and Cyclability Analyses of Lithium Aluminate Polymorphs (α- and β-Li 5 AlO 4 )
  154. Synthesis of aluminosilicates under high pressure and using sulfur as directing agent
  155. Analysis and perspectives concerning CO2 chemisorption on lithium ceramics using thermal analysis
  156. CO 2 Capture at Low Temperatures (30–80 °C) and in the Presence of Water Vapor over a Thermally Activated Mg–Al Layered Double Hydroxide
  157. A 6 kV arbitrary waveform generator for the Tevatron Electron Lens
  158. α → γ Lithium borate phase transition produced during the CO2 chemisorption process
  159. Thermochemical and Cyclability Analyses of the CO2 Absorption Process on a Ca/Al Layered Double Hydroxide
  160. Analysis of the CO2 capture in sodium zirconate (Na2ZrO3). Effect of the water vapor addition
  161. Thermal analysis of the Mg(OH)2 dehydroxylation process at high pressures
  162. Surfactant-assisted hydrothermal crystallization of nanostructured lithium metasilicate (Li2SiO3) hollow spheres: II—Textural analysis and CO2–H2O sorption evaluation
  163. Production and Quality Assurance of Main Busbar Interconnection Splices During the LHC 2008–2009 Shutdown
  164. Surfactant-assisted hydrothermal crystallization of nanostructured lithium metasilicate (Li2SiO3) hollow spheres: (I) Synthesis, structural and microstructural characterization
  165. Cyanoethylation of alcohols by activated Mg–Al layered double hydroxides: Influence of rehydration conditions and Mg/Al molar ratio on Brönsted basicity
  166. Structure, thermal stability, and catalytic performance of MgO-ZrO2 composites
  167. Towards understanding the thermoanalysis of water sorption on lithium orthosilicate (Li4SiO4)
  168. Thermokinetic analysis of the MgO surface carbonation process in the presence of water vapor
  169. Evidence of CO2 Chemisorption at High Temperature in Lithium Gallate (Li5GaO4)
  170. Kinetic analysis of the thermal decomposition of Li4Ti5O12 pellets
  171. Effect of Oxygen Addition on the Thermokinetic Properties of CO 2 Chemisorption on Li 2 ZrO 3
  172. Toward Understanding the Effect of Water Sorption on Lithium Zirconate (Li 2 ZrO 3 ) during Its Carbonation Process at Low Temperatures
  173. Influence of Mg/Al Ratio on the Thermokinetic Rehydration of Calcined Mg−Al Layered Double Hydroxides
  174. Thermokinetic Analysis of the CO 2 Chemisorption on Li 4 SiO 4 by Using Different Gas Flow Rates and Particle Sizes
  175. Thermokinetic Study of the Rehydration Process of a Calcined MgAl-Layered Double Hydroxide
  176. Oxygen Absorption in Free-Standing Porous Silicon: A Structural, Optical and Kinetic Analysis
  177. Advances on Alkaline Ceramics as Possible CO 2 Captors
  178. Thermochemical Capture of Carbon Dioxide on Lithium Aluminates (LiAlO 2 and Li 5 AlO 4 ): A New Option for the CO 2 Absorption
  179. Influence of copper on the microstructure of sol–gel titanium oxide nanotubes array
  180. A stacked transformer modulator that delivers high voltage at high rep-rate and duty factor
  181. Structural Analysis and CO 2 Chemisorption Study on Nonstoichiometric Lithium Cuprates (Li 2+ x CuO 2+ x /2 )
  182. Iba of Zeolites Exchanged with Lithium for Co[sub 2] Retention
  183. Textural, Structural, and CO 2 Chemisorption Effects Produced on the Lithium Orthosilicate by Its Doping with Sodium (Li 4− x Na x SiO 4 )
  184. Tevatron electron lenses: Design and operation
  185. Sodium metasilicate (Na2SiO3): A thermo-kinetic analysis of its CO2 chemical sorption
  186. Synthesis of macroporous ZrO2–Al2O3 mixed oxides with mesoporous walls, using polystyrene spheres as template
  187. CO 2 Absorption on Na 2 ZrO 3 : A Kinetic Analysis of the Chemisorption and Diffusion Processes
  188. Low Temperature Synthesis of Li2SiO3: Effect on Its Morphological and Textural Properties
  189. Lithium Cuprate (Li2CuO2): A New Possible Ceramic Material for CO2 Chemisorption
  190. Microstructural Development of ZnO Pellets Doped with Different Vanadium Oxides (V2O5 and V2O3)
  191. Fe-ZSM-5 Catalysts: Preparation in Organic Media, Fe-particle Morphology and NO x Reduction Activity
  192. Synthesis and CO2 capture evaluation of Li2−xKxZrO3 solid solutions and crystal structure of a new lithium–potassium zirconate phase
  193. A solid state Marx generator for TEL2
  194. Commissioning of the second Tevatron Electron Lens and beam study results
  195. Carbonate phobic (Zn,Mn)-Al hydrotalcite-like compounds
  196. Kinetic and Reaction Mechanism of CO 2 Sorption on Li 4 SiO 4 :  Study of the Particle Size Effect
  197. Thermal Behavior and CO 2 Absorption of Li 2- x Na x ZrO 3 Solid Solutions
  198. Cr(VI) immobilization in mixed (Mg,Al) oxides
  199. Chemical Sorption of Carbon Dioxide (CO2) on Lithium Oxide (Li2O).
  200. Synthesis of Li2MO3 (M=Ti or Zr) by the combustion method
  201. Lithium−Sodium Metazirconate Solid Solutions, Li 2 - x Na x ZrO 3 (0 ≤ x ≤ 2):  A Hierarchical Architecture
  202. Chemical Sorption of Carbon Dioxide (CO 2 ) on Lithium Oxide (Li 2 O)
  203. Kinetic analysis of the thermal stability of lithium silicates (Li4SiO4 and Li2SiO3)
  204. Synthesis, characterization and thermal stability of Ni3P coatings on nickel
  205. Synthesis, characterization and electrochemical properties of copper phosphide (Cu3P) thick films prepared by solid-state reaction at low temperature: a probable anode for lithium ion batteries
  206. Thermal Stability and High-Temperature Carbon Dioxide Sorption on Hexa-lithium Zirconate (Li6Zr2O7)
  207. Laboratory-Confirmed Transmission of Vaccinia Virus Infection through Sexual Contact with a Military Vaccinee
  208. Cu3P as anode material for lithium ion battery: powder morphology and electrochemical performances
  209. Reaction mechanisms and kinetics of the synthesis and decomposition of lithium metazirconate through solid-state reaction
  210. Air stable copper phosphide (Cu3P): a possible negative electrode material for lithium batteries
  211. Effects of vanadium and manganese concentrations on the composition, structure and electrical properties of ZnO-rich MnO2–V2O5–ZnO varistors
  212. Zr alkoxide chain effect on the sol–gel synthesis of lithium metazirconate
  213. Radiation damage and tritium release from Li–Zr–Si oxides
  214. Phase transformations on lithium silicates under irradiation
  215. Lithium and tritium diffusion in lithium oxide (Li2O), a molecular dynamics simulation
  216. Sol-gel Synthesis of Li–ZrSiO4
  217. Sol–gel synthesis of Li2ZrSi6O15 powders
  218. Synthesis of lithium silicates
  219. Solid-State Chemistry and Crystal Structure of Cefaclor Dihydrate
  220. Pulser for the tevatron electron lens gun
  221. Upgrades of the tevatron electron lens