PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
December 11, 2025Agrochemicals8 citationsOpen Access

Agricultural Biomass as a Resource for Biomaterials, Biofertilizers, and Bioproducts: A Systematic Review

View Full Paper
BAB. P. de AlmeidaLPLuiz Felipe Silveira PavãoMFMarcelo Silveira de Farias

Key Points

  • To review advances in converting agricultural biomass into various bioproducts such as biomaterials and biofertilizers.
  • Systematic review of studies from 2021 to 2025
  • Identification of relevant literature through multiple databases
  • Assessment of studies focusing on biomass types and conversion technologies
  • Narrative synthesis of findings with figures and tables highlighting trends.
  • Development of bioplastics, biofoams, composites, and other bioproducts
  • Pretreatment methods significantly affect conversion efficiency
  • Enzymatic and thermochemical conversion routes show high potential for biorefineries
  • Implications for circular bioeconomy and renewable energy emphasized.

Abstract

This systematic review aimed to examine recent advances (2021–2025) in the conversion of agricultural biomass into biomaterials, biofertilizers, and bioproducts. Studies were included when addressing biomass types, pretreatment methods, conversion technologies, or resulting applications. Non-agricultural biomass, non-original research, and works outside the defined timeframe were excluded. Literature was identified in Scopus and Web of Science, complemented by Espacenet, Google Scholar, and institutional databases (USDA, FAO, IRRI, ABARES, UNICA, and CONAB, among others), totaling 108 documents referenced in this work. Risk of bias was minimized through predefined eligibility criteria and full-text assessment. Results were narratively synthesized, supported by figures and tables highlighting technological trends. Studies involving a wide range of agricultural biomasses (e.g., rice straw, corn stover, wheat straw, and sugarcane bagasse) were evaluated. Main outcomes included the development of bioplastics, biofoams, composites, hydrogels, bioceramics, biochar-based fertilizers, organic acids, enzymes, and green solvents. Evidence consistently indicated that pretreatment strongly influences conversion efficiency and that enzymatic and thermochemical routes show the highest potential for integrated biorefineries. Limitations included heterogeneity in biomass composition, variability in methodological quality, and scarcity of large-scale studies. Overall, findings underscore agricultural biomass as a strategic feedstock for circular bioeconomy models, with implications for sustainable materials, renewable energy, and low-carbon agriculture. Continued innovation, supportive policies, and improved logistics are essential for scaling biomass-based technologies.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Almeida et al. (2025) studied this question.

synapsesocial.com/papers/69401b172d562116f28f739ehttps://doi.org/10.3390/agrochemicals4040023
Ask AI
Helpful
Bookmark
Share
View Full Paper