2021
DOI: 10.1016/j.ijhydene.2020.08.225
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The production of hydrogen gas from modified water hyacinth (Eichhornia Crassipes) biomass through pyrolysis process

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Cited by 36 publications
(15 citation statements)
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“…From Figure 4 a–d, it can be explained that peaks at 2992.98 cm −1 , 2929.34 cm −1 , 2923.55 cm −1 and 2920.14 cm −1 can be attributed to the C–H stretching from alkane groups. The C=O peaks, the carbonyl groups or carboxylate ( Tran et al., 2021 ), with values of 1625.69 cm −1 , 1637.26 cm −1 , 1654.62 cm −1 , and 1651.73 cm −1 , respectively ( Sukhawipat et al., 2021 ), exist in water lettuce (mixed) and water hyacinth (mixed and non-mixed). Tran et al.…”
Section: Resultsmentioning
confidence: 99%
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“…From Figure 4 a–d, it can be explained that peaks at 2992.98 cm −1 , 2929.34 cm −1 , 2923.55 cm −1 and 2920.14 cm −1 can be attributed to the C–H stretching from alkane groups. The C=O peaks, the carbonyl groups or carboxylate ( Tran et al., 2021 ), with values of 1625.69 cm −1 , 1637.26 cm −1 , 1654.62 cm −1 , and 1651.73 cm −1 , respectively ( Sukhawipat et al., 2021 ), exist in water lettuce (mixed) and water hyacinth (mixed and non-mixed). Tran et al.…”
Section: Resultsmentioning
confidence: 99%
“…The thermochemical conversion of biomass via pyrolysis for generating hydrogen is explained as follow ( Demirbas and Arin, 2004 ; Tran et al., 2021 ): Pyrolysis of biomass → H 2 + CO 2 + CO + CH 4 + Char …”
Section: Methodsmentioning
confidence: 99%
“…Once the plant ber is separated from the stem, it is easy to separate it from the parent plant. 22 Relative humidity is maintained at 60% during this retting process. This conventional retting process is done by the water bodies with the level of pH 6.2, Dissolved oxygen level 6.6 mg/l, conductivity level of 0.23mS, 0.5ppt level of total dissolved solids, and salinity level of 0.04ppt.…”
Section: Conventional Retting Processmentioning
confidence: 99%
“…Los productos gaseosos (gases no condensables), se componen principalmente de dióxido de carbono (CO 2 ), monóxido de carbono (CO) y metano (CH4) e hidrógeno (H 2 ) (Banks & Bridgwater, 2016), el rendimiento de estos aumenta a medida que aumenta la temperatura y pueden ser utilizados como fuente de energía, siendo lo más adecuado utilizarlo en procesos donde es generado (Baray et al, 2019). Sin embargo, puede ser empleado en motores de combustión interna después de ser sometido a un tratamiento para remover los vapores ácidos y material orgánico suspendido que pudiera estar presente en él (Tran et al, 2020).…”
Section: Sólidosunclassified