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Recent Advances in the Bioconversion of Waste Straw Biomass with Steam Explosion Technique: A Comprehensive Review

期刊

PROCESSES
卷 10, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/pr10101959

关键词

steam explosion; straw biomass; bioconversion; organic waste valorization

资金

  1. Low carbon agriculture and carbon neutralization Research Center, GDAAS [XT202222]
  2. Special financial fund of Foshan City-Construction project of highlevel agricultural science and technology Demonstration City of Guangdong Province in 2022
  3. Henan Institute of Sun Yat-sen University [N2021-002]
  4. Ministry of Science and Technology, Taiwan [MOST 110-2222-E197-001-MY2]
  5. National Science and Technology Council, Taiwan (NSTC) [111-2221-E-197-004]
  6. modern agricultural innovation center

向作者/读者索取更多资源

Waste straw biomass is a rich source of renewable bioresource, but its cellulose structure hinders its conversion into value-added products. Steam explosion is a practical, eco-friendly, and cost-effective method to improve the conversion efficiency of straw biomass into biofuels and chemicals, replacing fossil fuels and traditional fertilizers.
Waste straw biomass is an abundant renewable bioresource raw material on Earth. Its stubborn wooden cellulose structure limits straw lignocellulose bioconversion into value-added products (e.g., biofuel, chemicals, and agricultural products). Compared to physicochemical and other preprocessing techniques, the steam explosion method, as a kind of hydrothermal method, was considered as a practical, eco-friendly, and cost-effective method to overcome the above-mentioned barriers during straw lignocellulose bioconversion. Steam explosion pretreatment of straw lignocellulose can effectively improve the conversion efficiency of producing biofuels and value-added chemicals and is expected to replace fossil fuels and partially replace traditional chemical fertilizers. Although the principles of steam explosion destruction of lignocellulosic structures for bioconversion to liquid fuels and producing solid biofuel were well known, applications of steam explosion in productions of value-added chemicals, organic fertilizers, biogas, etc. were less identified. Therefore, this review provides insights into advanced methods of utilizing steam explosion for straw biomass conversion as well as their corresponding processes and mechanisms. Finally, the current limitations and prospects of straw biomass conversion with steam explosion technology were elucidated.

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