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96
JEOL solar distillation
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Solar Distillation, supplied by JEOL, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/10__3390_slash_pr13020361-104-17-28?v=JEOL
Average 96 stars, based on 1 article reviews
solar distillation - by Bioz Stars, 2026-08
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ANSYS inc solar ray tracing algorithm
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Solar Ray Tracing Algorithm, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/pmc11398644-60-23-15?v=ANSYS+inc
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ANSYS inc solar ray tracing tool
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Solar Ray Tracing Tool, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/pmc08510506-139-5-7?v=ANSYS+inc
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ANSYS inc solar ray tracing model coupled with a discrete ordinates (do) radiation model
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Solar Ray Tracing Model Coupled With A Discrete Ordinates (Do) Radiation Model, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/10__1016_slash_j__biosystemseng__2021__08__008-95-8-21?v=ANSYS+inc
Average 90 stars, based on 1 article reviews
solar ray tracing model coupled with a discrete ordinates (do) radiation model - by Bioz Stars, 2026-08
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ANSYS inc solar ray tracing approach
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Solar Ray Tracing Approach, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/10__1016_slash_j__ijheatmasstransfer__2021__121211-124-4-9?v=ANSYS+inc
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solar ray tracing approach - by Bioz Stars, 2026-08
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ANSYS inc solar ray tracing model
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Solar Ray Tracing Model, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/10__1016_slash_j__ijheatmasstransfer__2021__121211-158-1-22?v=ANSYS+inc
Average 90 stars, based on 1 article reviews
solar ray tracing model - by Bioz Stars, 2026-08
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Bruker Corporation x-ray f tin tungstate thin films for solar water oxidation
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
X Ray F Tin Tungstate Thin Films For Solar Water Oxidation, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/10__1016_slash_j__ijhydene__2020__01__126-53-16-23?v=Bruker+Corporation
Average 90 stars, based on 1 article reviews
x-ray f tin tungstate thin films for solar water oxidation - by Bioz Stars, 2026-08
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Solaris Chem Inc solar ray
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Solar Ray, supplied by Solaris Chem Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/10__1007_slash_978___3___030___10779___6-4585-27-30?v=Solaris+Chem+Inc
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Dartnell Corporation ionizing radiation in the form of galactic cosmic rays and solar energetic particles
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Ionizing Radiation In The Form Of Galactic Cosmic Rays And Solar Energetic Particles, supplied by Dartnell Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/solar+ray/pmc06276817-139-16-30?v=Dartnell+Corporation
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ionizing radiation in the form of galactic cosmic rays and solar energetic particles - by Bioz Stars, 2026-08
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AMPTEK Inc miniature x-ray solar spectrometer 3u cubesat
Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar <t>distillation.</t> The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.
Miniature X Ray Solar Spectrometer 3u Cubesat, supplied by AMPTEK Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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miniature x-ray solar spectrometer 3u cubesat - by Bioz Stars, 2026-08
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Image Search Results


Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar distillation. The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.

Journal: Processes

Article Title: Recovery and Reuse of Acetone from Pharmaceutical Industry Waste by Solar Distillation

doi: 10.3390/pr13020361

Figure Lengend Snippet: Figure 6a1,a2 present SEM micrographs showing the morphology of the catalyst sur- face before and after treatment for hydrocarbon removal using acetone recovered through solar distillation. The images reveal the presence of some compounds adhering to the catalyst surface. After treatment with acetone and subsequent calcination, a slight phys- ical change is observed on the surface. The corresponding energy-dispersive spectra (Figure 6b1,b2) indicate that the untreated catalyst contains a high carbon content of 78.92% associated with hydrocarbons. Following treatment, the carbon content decreases by 29%, as evidenced in the spectra before and after treatment. The spectra also reveal the presence of S, V, and Fe peaks. These results align with previous studies, which report the deposition of V and S from heavy crude oil onto the catalyst during the reaction, contribut- ing to its reduced lifespan [30,31]. Furthermore, the presence of Br was detected, likely captured during calcination, as it is presumed that the muffle furnace was contaminated prior to the analysis.

Article Snippet: The composition analysis of the solid residue obtained at the end of the acetone recovery process by solar distillation was conducted using a spectrometer of X-ray photoelectron from JEOL JPS-9200 using the standard aluminum X-ray source.

Techniques: Distillation