2012
DOI: 10.1016/j.apenergy.2011.08.028
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Energy recovery from pyrolysis and gasification of mangrove

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Cited by 20 publications
(7 citation statements)
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“…Increasing temperature to 900°C leads to H 2 and CO molar yields increasing from 0 to 2.65 mol/kg of wood and from 4.08 to 6.61 mol/kg of wood caused by reactions (1) and 5, respectively, At the same time, CO 2 molar yield decreases from 1.81 to 1.32 mol/kg of wood. A similar trend in syngas yield from mangrove pyrolysis was reported by Ahmed et al [27]. Further temperature increment to 1200°C caused obvious H 2 and CO yield increase to 12.35 and 14.26 mol/kg of wood.…”
Section: Pyrolysis Gas Compositionsupporting
confidence: 87%
“…Increasing temperature to 900°C leads to H 2 and CO molar yields increasing from 0 to 2.65 mol/kg of wood and from 4.08 to 6.61 mol/kg of wood caused by reactions (1) and 5, respectively, At the same time, CO 2 molar yield decreases from 1.81 to 1.32 mol/kg of wood. A similar trend in syngas yield from mangrove pyrolysis was reported by Ahmed et al [27]. Further temperature increment to 1200°C caused obvious H 2 and CO yield increase to 12.35 and 14.26 mol/kg of wood.…”
Section: Pyrolysis Gas Compositionsupporting
confidence: 87%
“…On the other hand, biomass is a clean energy carrier compared to fossil fuels, as it produces no net emissions of CO 2 when it is managed sustainably. Biomass is currently recognized as world's fourth largest energy source [1,2]; however, energy derived from burning fossil fuels is much more than the others, probably due to their high-energy density [3,4].…”
Section: Introductionmentioning
confidence: 99%
“…It is well known that biomass gasification is one of the most widely practiced commercial processes for hydrogen and syngas production. Produced hydrogen is supplied to the anode and air is supplied M A N U S C R I P T A C C E P T E D ACCEPTED MANUSCRIPT 3 to the cathode. At the anode, hydrogen gas in the presence of a catalyst layer splits into hydrogen protons and electrons.…”
Section: Introductionmentioning
confidence: 99%
“…55 In order to better utilize and exploit energy plants, we should protect the mangrove, which could be developed as a coast salt-tolerant energy plant to protect the shoreline and provide energy. 56 As energy plants become increasingly important worldwide, it is crucial to fully figure out the ecology and biological characteristics of the energy plants, and develop complete sets of suitable cultivation techniques for application. 54 Understanding the associations between biomass properties and plant species will reveal the fundamentals of biomass properties and improve the predictability of fuel quality.…”
Section: Suggestions For the Utilization And Reforestation Of Manmentioning
confidence: 99%