2021
DOI: 10.1039/d1ra02235k
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Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture

Abstract: Turpentine is a renewable resource, has good combustion performance, and is considered to be a fuel or promising additive to diesel fuel.

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Cited by 15 publications
(2 citation statements)
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“…To identify thermal effects on β‐pinene isomerization, the reaction was carried out at 120 °C and with a β‐pinene volumetric flow of 10 μL/min but without using neither paraformaldehy nor catalyst; the detected products were trans ‐pinocarveol and myrtenol that are produced as an effect of the thermal oxidation of β‐pinene at 120 °C [42] . β‐pinene conversion was 14 %, while selectivity to trans ‐pinocaveol and myrtenol was 16 % and 34 %, respectively.…”
Section: Resultsmentioning
confidence: 99%
“…To identify thermal effects on β‐pinene isomerization, the reaction was carried out at 120 °C and with a β‐pinene volumetric flow of 10 μL/min but without using neither paraformaldehy nor catalyst; the detected products were trans ‐pinocarveol and myrtenol that are produced as an effect of the thermal oxidation of β‐pinene at 120 °C [42] . β‐pinene conversion was 14 %, while selectivity to trans ‐pinocaveol and myrtenol was 16 % and 34 %, respectively.…”
Section: Resultsmentioning
confidence: 99%
“…Here, heterogeneous catalysts offer advantages over single metals in terms of their postuse recycling and reuse. 8,9 Other than the existing published catalysts, a latent avenue to boost the selectivity and conversion of the process is to bring in an efficient and stable catalyst carrier, [10][11][12][13] and again, activated carbon-loaded rhodium, 14,15 platinum, 16,17 and rubidium 18,19 are among the more studied catalysts, showing equally ne results. Nevertheless, hydrogenation catalysts, such as Ni-B, can affect the process efficiency.…”
Section: Introductionmentioning
confidence: 99%