Steam gasification of marine biomass and its biochars for hydrogen-rich gas production

被引:0
作者
Aisikaer Anniwaer
Tao Yu
Nichaboon Chaihad
Yohanes Andre Situmorang
Chao Wang
Yutaka Kasai
Abuliti Abudula
Guoqing Guan
机构
[1] Hirosaki University,Graduate School of Science and Technology
[2] Hirosaki University,Institute of Regional Innovation
[3] Aomori Prefectural Industrial Technology Research Center,Industrial Research Institute
来源
Biomass Conversion and Biorefinery | 2023年 / 13卷
关键词
Pyrolysis; Steam gasification; Marine biomass; Biochar; Biohydrogen;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, steam gasifications of a kind of marine biomass, i.e., Zostera marina (eelgrass), and the biochars derived from pyrolysis of it were carried out for the biohydrogen production in a fixed-bed reactor. The effects of reaction temperature and water injection rate on the hydrogen production were investigated. In order to understand the effect of sea salts attached on the surface of eelgrass for the hydrogen production, the eelgrass washed by water (washed-eelgrass) was also used as the feedstock. It was observed that hydrogen productions from the gasification of washed-eelgrass as well as its biochar were higher than those of raw eelgrass and its biochar, indicating that the impurities of raw eelgrass had a negative effect on the hydrogen production. The biochar derived from the pyrolysis of washed eelgrass at 550 °C had the largest amount of hydrogen yield at the gasification temperature of 850 °C with a water injection rate of 0.15 g/min. It was found that both the hydrogen production and reaction rates were enhanced by mixing washed-eelgrass biochar obtained at 350 °C with the calcined seashells at a weight ratio of 1 to 2, especially at the gasification temperature of 650 °C. Meanwhile, in the presence of the calcined seashell, CO2 content decreased sharply whereas the hydrogen yield had no obvious increase.
引用
收藏
页码:8641 / 8650
页数:9
相关论文
共 177 条
[1]  
Brennan L(2010)Biofuels from microalgae—a review of technologies for production, processing, and extractions of biofuels and co-products Renew Sust Energ Rev 14 557-577
[2]  
Owende P(2014)Hydrogen production from steam gasification of biomass: influence of process parameters on hydrogen yield – a review Renew Energy 66 570-579
[3]  
Parthasarathy P(2002)Biohydrogen production with fixed-bed bioreactors Int J Hydrog Energy 27 1167-1174
[4]  
Narayanan KS(2009)Hydrogen production for energy use in European Union countries and Turkey Energy Sources Part A Recover Util Environ Eff 31 1329-1337
[5]  
Chang J-S(2010)Hydrogen from biomass – present scenario and future prospects Int J Hydrog Energy 35 7416-7426
[6]  
Lee K-S(2009)Biomass-based hydrogen production: a review and analysis Int J Hydrog Energy 34 8799-8817
[7]  
Lin P-J(2003)The contribution of biomass in the future global energy supply: a review of 17 studies Biomass Bioenergy 25 1-28
[8]  
Yolcular S(2010)Review and analysis of biomass gasification models Renew Sust Energ Rev 14 2841-2851
[9]  
Balat H(2019)Study of biochar from pyrolysis and gasification of wood pellets in a nitrogen plasma reactor for design of biomass processes J Environ Chem Eng 7 103391-1927
[10]  
Kırtay E(2008)Thermo-chemical routes for hydrogen rich gas from biomass: a review Renew Sust Energ Rev 12 1909-74