Effective use of agricultural residual biomass may be beneficial for both local and global ecosystems. Recently, biochar has received attention as a soil enhancer, and its effects on plant growth and soil microbiota have been investigated. However, there is little information on how the physical, chemical, and biological properties of soil amended with biochar are affected. In this study, we evaluated the effects of the incorporation of torrefied plant biomass on physical and structural properties, elemental profiles, initial plant growth, and metabolic and microbial dynamics in aridisol from Botswana. Hemicellulose in the biomass was degraded while cellulose and lignin were not, owing to the relatively low-temperature treatment in the torrefaction preparation. Water retentivity and mineral availability for plants were improved in soils with torrefied biomass. Furthermore, fertilization with 3% and 5% of torrefied biomass enhanced initial plant growth and elemental uptake. Although the metabolic and microbial dynamics of the control soil were dominantly associated with a C1 metabolism, those of the 3% and 5% torrefied biomass soils were dominantly associated with an organic acid metabolism. Torrefied biomass was shown to be an effective soil amendment by enhancing water retentivity, structural stability, and plant growth and controlling soil metabolites and microbiota.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4911548PMC
http://dx.doi.org/10.1038/srep28011DOI Listing

Publication Analysis

Top Keywords

torrefied biomass
20
plant growth
16
physical chemical
8
chemical biological
8
biological properties
8
aridisol botswana
8
incorporation torrefied
8
biomass
8
biomass effective
8
initial plant
8

Similar Publications

Enhancing biofuel pellet quality using torrefaction and co-pelletization of palm kernel shell and empty fruit bunch.

Environ Sci Pollut Res Int

January 2025

Faculty of Chemical & Process Engineering Technology, Universiti Malaysia Pahang Al-Sultan Abdullah, Lebuh Persiaran Tun Khalil Yaakob, 26300, Kuantan, Pahang, Malaysia.

Palm kernel shell (PKS) and empty fruit bunch (EFB) are potential biomass resources for producing solid biofuel for energy applications. However, raw EFB and PKS are not uniform in size and pose rotting behavior. Torrefaction and co-pelletization are both effective methods to improve their combustion and mechanical characteristics.

View Article and Find Full Text PDF

Leveraging biofuel derived from biomass stands as a pivotal strategy in reducing CO emissions and mitigating the greenhouse effect. Biomass serves as a clean, renewable energy source, offering inherent benefits. However, despite its advantages, biomass encounters obstacles hindering its widespread industrial applications, including its relatively low calorific value, limited grindability, high water content, and susceptibility to corrosion.

View Article and Find Full Text PDF

The fate of organic compounds in organic waste during torrefaction and implications for its valorization.

Environ Pollut

November 2024

Institute of Urban Agriculture, Chinese Academy of Agricultural Sciences, Chengdu, Sichuan, 610213, China. Electronic address:

Torrefaction is commonly used to improve biomass properties, applications, and economy. The characteristics and subsequent applications of torrefied biomass are largely contingent on the organic compounds in parent biomass and their evolution during torrefaction. Yet, the evolution of organic compounds in biomass particularly minor components (e.

View Article and Find Full Text PDF

The development of pressure ulcers, associated with increased temperature and moisture in specific areas of the body, and the risk of microbial infections in patients lying in a static position for prolonged periods of time represents a serious issue in medicine. In order to prevent the formation of pressure ulcers, this work aims to present advanced nanostructured coatings developed by three research groups. Nanometric silver, ash and functionalized torrefied biomass were the basis for the treatment of wound dressings to improve thermal conductivity and antimicrobial properties of the conventional cotton gauzes.

View Article and Find Full Text PDF
Article Synopsis
  • The Biomass Chemical Looping Gasification (BCLG) process utilizes two reactors to create nitrogen-free syngas with low tar content, employing ilmenite as an oxygen carrier and wheat straw pellets (WSP) as fuel.
  • A study conducted over 25 hours at a 20 kW scale evaluated how torrefied wheat straw pellets (T-WSP) affected syngas quality and identified key operational factors impacting syngas yield.
  • Higher temperatures and extended residence times in the fuel reactor improved char conversion, leading to increased hydrogen and carbon monoxide production, while T-WSP performed better than WSP at higher temperatures despite lower yields below 900 °C.
View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!