physical adsorption analyzer (Micromeritics Instrument)
96
Structured Review
Micromeritics Instrument
physical adsorption analyzer
Physical Adsorption Analyzer, supplied by Micromeritics Instrument, used in various techniques. Bioz Stars score: 96/100, based on 8025 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/2020+adsorption+analyzer/ASAP+2020+Plus/10__1016_slash_j__est__2026__122125-55-13-18
Average 96 stars, based on 8025 article reviews
Physical Adsorption Analyzer, supplied by Micromeritics Instrument, used in various techniques. Bioz Stars score: 96/100, based on 8025 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/2020+adsorption+analyzer/ASAP+2020+Plus/10__1016_slash_j__est__2026__122125-55-13-18
Average 96 stars, based on 8025 article reviews
physical adsorption analyzer - by Bioz Stars,
2026-09
96/100 stars
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Adsorption:Article Title: Acetylation of glycerol to biofuel additives over sulfated activated carbon catalyst. Article Snippet: Oxygenated fuel additives can be produced by acetylation of glycerol.. A 91% glycerol conversion with a selectivity of 38%, 28% and 34% for mono-, diand triacetyl glyceride, respectively, was achieved at 120 C and 3 h of reaction time in the presence of a catalyst derived from activated carbon (AC) treated with sulfuric acid at 85 C for 4 h to introduce acidic functionalities to its surface.. The unique catalytic activity of the catalyst, AC-SA5, was attributed to the presence of sulfur containing functional groups on the AC surface, which enhanced the surface interaction between the glycerol molecule and acyl group of the acetic acid. Article Title: Coupling adsorption and reduction for tellurium recovery by hierarchical porous nanoscale zero-valent iron (NZVI) /LDOs composites Article Snippet: The phase structure and phase purity of the NZVI/Mg–Al LDOs were identified by X-ray diffraction (XRD, Shimadzu XRD-6100) with Cu Kα radiation (λ = 1.54 Å) at a scanning rate 3◦/min in the 2θ ranging from 10 to 80◦. .. The determination of nitrogen adsorption and desorption of the as-synthesized products was carried out by Micromeritics ASAP Fourier Transform Infrared Spectroscopy:Article Title: Acetylation of glycerol to biofuel additives over sulfated activated carbon catalyst. Article Snippet: Oxygenated fuel additives can be produced by acetylation of glycerol.. A 91% glycerol conversion with a selectivity of 38%, 28% and 34% for mono-, diand triacetyl glyceride, respectively, was achieved at 120 C and 3 h of reaction time in the presence of a catalyst derived from activated carbon (AC) treated with sulfuric acid at 85 C for 4 h to introduce acidic functionalities to its surface.. The unique catalytic activity of the catalyst, AC-SA5, was attributed to the presence of sulfur containing functional groups on the AC surface, which enhanced the surface interaction between the glycerol molecule and acyl group of the acetic acid. Spectroscopy:Article Title: Acetylation of glycerol to biofuel additives over sulfated activated carbon catalyst. Article Snippet: Oxygenated fuel additives can be produced by acetylation of glycerol.. A 91% glycerol conversion with a selectivity of 38%, 28% and 34% for mono-, diand triacetyl glyceride, respectively, was achieved at 120 C and 3 h of reaction time in the presence of a catalyst derived from activated carbon (AC) treated with sulfuric acid at 85 C for 4 h to introduce acidic functionalities to its surface.. The unique catalytic activity of the catalyst, AC-SA5, was attributed to the presence of sulfur containing functional groups on the AC surface, which enhanced the surface interaction between the glycerol molecule and acyl group of the acetic acid. Concentration Assay:Article Title: Acetylation of glycerol to biofuel additives over sulfated activated carbon catalyst. Article Snippet: Oxygenated fuel additives can be produced by acetylation of glycerol.. A 91% glycerol conversion with a selectivity of 38%, 28% and 34% for mono-, diand triacetyl glyceride, respectively, was achieved at 120 C and 3 h of reaction time in the presence of a catalyst derived from activated carbon (AC) treated with sulfuric acid at 85 C for 4 h to introduce acidic functionalities to its surface.. The unique catalytic activity of the catalyst, AC-SA5, was attributed to the presence of sulfur containing functional groups on the AC surface, which enhanced the surface interaction between the glycerol molecule and acyl group of the acetic acid. Neutralization:Article Title: Acetylation of glycerol to biofuel additives over sulfated activated carbon catalyst. Article Snippet: Oxygenated fuel additives can be produced by acetylation of glycerol.. A 91% glycerol conversion with a selectivity of 38%, 28% and 34% for mono-, diand triacetyl glyceride, respectively, was achieved at 120 C and 3 h of reaction time in the presence of a catalyst derived from activated carbon (AC) treated with sulfuric acid at 85 C for 4 h to introduce acidic functionalities to its surface.. The unique catalytic activity of the catalyst, AC-SA5, was attributed to the presence of sulfur containing functional groups on the AC surface, which enhanced the surface interaction between the glycerol molecule and acyl group of the acetic acid. Titration:Article Title: Acetylation of glycerol to biofuel additives over sulfated activated carbon catalyst. Article Snippet: Oxygenated fuel additives can be produced by acetylation of glycerol.. A 91% glycerol conversion with a selectivity of 38%, 28% and 34% for mono-, diand triacetyl glyceride, respectively, was achieved at 120 C and 3 h of reaction time in the presence of a catalyst derived from activated carbon (AC) treated with sulfuric acid at 85 C for 4 h to introduce acidic functionalities to its surface.. The unique catalytic activity of the catalyst, AC-SA5, was attributed to the presence of sulfur containing functional groups on the AC surface, which enhanced the surface interaction between the glycerol molecule and acyl group of the acetic acid. |