2020
DOI: 10.1016/j.apenergy.2020.114753
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Production of biodiesel under supercritical conditions: State of the art and bibliometric analysis

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Cited by 102 publications
(43 citation statements)
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“…94,133,134 Transesterication using methanol at a supercritical state has been extensively investigated in recent years to determine an effective alternative of conventional transesterication processes. 26,135 The potential advantage of the scMeOH trans-esterication is that water and FFA content in the non-edible do not affect the biodiesel conversion process. Moreover, the water content in non-edible enhances the biodiesel conversion in scMeOH transesterication process.…”
Section: Transestericationmentioning
confidence: 99%
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“…94,133,134 Transesterication using methanol at a supercritical state has been extensively investigated in recent years to determine an effective alternative of conventional transesterication processes. 26,135 The potential advantage of the scMeOH trans-esterication is that water and FFA content in the non-edible do not affect the biodiesel conversion process. Moreover, the water content in non-edible enhances the biodiesel conversion in scMeOH transesterication process.…”
Section: Transestericationmentioning
confidence: 99%
“…It was obtained 96.5 wt% of biodiesel conversion at scMeOH temperature 300 C methanol to oil molar ratio of 43.1 for 90 min reaction time. García-Martínez et al 135 optimized the experimental conditions of the scMeOH transesterication process for biodiesel production from tobacco seed oil and obtained about 93 wt% biodiesel conversion at 303.4 C for 90 min with a xed methanol and oil molar ratio of 43.1. 131 Although the utilization of catalyst in scMeOH trans-esterication is not essential, a few studies have utilized catalyst to enhance transesterication rate and biodiesel yield with lower energy consumption.…”
Section: Transestericationmentioning
confidence: 99%
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“…Additionally, scientific production was evaluated using Price's law [103]. This law evaluates the increase in research in the field of study by showing exponential growth [81,104,105]. The entire production of the study field was estimated, and an exponential growth model was generated (see Figure 5).…”
Section: Scientific Production Analysismentioning
confidence: 99%
“…Additionally, Price's law has been used for the productivity analysis of a field of study [121][122][123], which determined that it fits an exponential growth model (y= 7.0643e 0.0926x ) where the value of R 2 = 0.9002 (see Figure 2).…”
Section: Scientific Production Analysismentioning
confidence: 99%