Novel insights from lignocellulosic waste to biogas through regulated dry-wet combined anaerobic digestion: Focusing on mining key microbes.

Bioresour Technol

Key Laboratory of Energy Resource Utilization from Agricultural Residues, Institute of Energy and Environmental Protection, Academy of Agricultural Planning and Engineering, Ministry of Agriculture, Beijing 100125, PR China; Institute of Agriculture Environment and Sustainable Development, Chinese Academy of Agriculture Science, Beijing 100081, PR China. Electronic address:

Published: March 2022

Dry-wet combined anaerobic digestion is a novel approach for treating lignocellulosic waste by increasing the organic load of reactor while accelerating the conversion of organic acids. Here, we investigated the effect of regulated substrate ratios and initial pH in the dry acidogenesis stage on the bioconversion efficiency of dry-wet combined anaerobic digestion. Our data revealed microbial interactions and further identified key microbes based on microbial co-occurrence network analysis. On day three of acidification, the kinetic hydrolysis rate and acidification yield reached 1.66 and 60.07%, respectively; this was attributed to enhancement of the synergistic effect between Clostridiales and Methanosaeta, which increased the proportion of corn straw in the substrate or lowered the initial spray slurry pH to 5.5-6.5. With increased acidification capacity, acetoclastic methanogens were enriched in the wet methanogenesis stage; the syntrophic effect of Syntrophomonadales, Syntrophobacterales and Methanospirillum, meanwhile, was enhanced, leading to an overall improvement in biogas production.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.biortech.2022.126778DOI Listing

Publication Analysis

Top Keywords

dry-wet combined
12
combined anaerobic
12
anaerobic digestion
12
lignocellulosic waste
8
key microbes
8
novel insights
4
insights lignocellulosic
4
waste biogas
4
biogas regulated
4
regulated dry-wet
4

Similar Publications

Background: The quality of gynaecological surgical training has faced mounting criticism internationally with multiple countries publishing potential remedies for improvement. Simulation has the indisputable ability to mitigate against training deficiencies, however, access to and the quality of simulation varies across regions, never mind nations.

Objectives: To assess the effect on surgical skills by the introduction of a structured and integrated simulation programme with the unique aspect of being completely free of cost with the provision of a take-home laparoscopy box trainer (LBT).

View Article and Find Full Text PDF
Article Synopsis
  • Sediment buildup in sewer systems can decrease their drainage capacity, leading to urban flooding and safety hazards, driven by various environmental factors that are not fully understood.
  • This study investigated the interaction of five environmental factors—population, traffic, climate, air quality, and wastewater quality—on sediment accumulation in different sewer structures in Kyoto, Japan, from 2014 to 2023.
  • Findings revealed that population and traffic increased sediment due to pollutant emissions, while climate and air quality significantly influenced deposition, highlighting the importance of these factors for understanding sewer sedimentation in the context of climate change.
View Article and Find Full Text PDF

To enhance the application of alkali-activated materials in mine filling, cemented tailings backfill was prepared using slag, fly ash, sodium silicate, and NaOH as primary constituents. The effects of the raw material type and dosage on the backfill were examined through a single-factor experiment. Additionally, response surface methodology (RSM) was utilized to optimize the mixing ratios of the backfill, with a focus on fluidity and compressive strength as key objectives.

View Article and Find Full Text PDF

Correlative species distribution modeling (SDM) is an important tool to predict distributions of invasive species. A unique challenge of implementing SDMs in aridland stream networks is identifying which streams are perennial and which of those offer suitable habitat for obligate aquatic species. Here, we map perennial streams and habitat suitability of invasive virile crayfish (Faxonius virilis) in the Lower Colorado River Basin (LCRB) in the southwestern USA, and quantify drivers of uncertainty in these projections.

View Article and Find Full Text PDF

To study the resistance of rice husk ash-rubber-fiber reinforced concrete (RRFC) to dry-wet cycle/chloride erosion under a hygrothermal environment, the optimal combination was selected by an orthogonal test. The peak strain, residual strain, and fatigue damage strength of the optimal group of RRFC samples under cyclic loading and unloading after dry-wet cycle/chloride erosion under different environments and temperatures were compared and analyzed. After that, microscopic analysis and anti-erosion mechanism analysis were carried out.

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!