Agriculture as Energy Prosumer: Review of Problems, Challenges, and Opportunities DOI Creative Commons
Piotr Sulewski, Adam Wąs

Energies, Journal Year: 2024, Volume and Issue: 17(24), P. 6447 - 6447

Published: Dec. 21, 2024

The issue of energy in agriculture is complex and multifaceted. Historically, was the first producer through conversion solar into biomass. However, industrial development has made an important consumer fossil energy. Although share consumption direct carriers relatively small, today’s agricultural producers use many inputs, production which also consumes much energy, mainly from fuels (e.g., synthetic fertilizers).The food security world’s growing population does not allow for a radical reduction indirect inputs agriculturer. Undoubtedly, some opportunities lie improving efficiency production, as any waste In addition to efficiency, sector significant consume its own other sectors economy. Biomass wide range applications plays special role here. Other forms renewable such increasingly popular agrovoltaics, are options. When analyzing place system, it therefore worth seeing this specific prosumer, essential transition process. Such point view adopted study, attempts identify determinants

Language: Английский

Bioenergy production from wastewater using cost-effective ceramic membranes: a review DOI
Aftab Ahmad, Rizwan Ahmad,

Hamna Shaukat

et al.

Environmental Chemistry Letters, Journal Year: 2025, Volume and Issue: unknown

Published: Feb. 4, 2025

Language: Английский

Citations

1

Hydrogen and biomethane pathways to achieve sustainable transportation in circular economic concept: A review DOI
Ayyadurai Saravanakumar,

M Sudha,

Wei‐Hsin Chen

et al.

International Journal of Hydrogen Energy, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 1, 2025

Language: Английский

Citations

0

Evaluation of pig farming residue as substrate for biomethane production via anaerobic digestion DOI Creative Commons
Jurek Häner, Alexej Neradko, Sören Weinrich

et al.

Biomass Conversion and Biorefinery, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 14, 2025

Abstract Livestock farming and manure management contribute substantially to greenhouse gas (GHG) emissions in agriculture. Anaerobic digestion (AD) of is a promising strategy for mitigating these emissions. This study aimed assess the biomethane potential (BMP) various types pig slurry, investigate factors that influence production, analyze degradation kinetics, propose AD process optimization approaches. Thus, substrate analysis, BMP tests batch assays, kinetic modeling, principal component analysis (PCA) were conducted. In order further quantify effects different qualities full-scale operation, production was simulated under steady-state conditions. Results indicated piglet slurry had highest volatile solids (VS)–specific (203 ± 72 L kg −1 VS), followed by mixed (202 132 fattening (117 56 sow (86 17 VS). The PCA revealed significant roles VS, crude fat, fatty acids concentration, carbon/nitrogen ratio achieving high BMPs. First-order two-step modeling identified hydrolysis as rate-limiting step, showing determinant step < 0 each sample. simulation continuous operation notable differences daily (36.7–42.7 day ) between slurries at same hydraulic retention time BMP. research underscores variability characteristics, exemplified total range 1.4–12.1%, provides crucial insights optimizing processes livestock waste management.

Language: Английский

Citations

0

Selection Path for Energy-Efficient Food Waste Management in Urban Areas: Scenario Analysis and Insights from Poland DOI Creative Commons
Anna Rolewicz-Kalińska, Krystyna Lelicińska-Serafin, Piotr Manczarski

et al.

Energies, Journal Year: 2025, Volume and Issue: 18(2), P. 385 - 385

Published: Jan. 17, 2025

The problem of food being wasted in households has become an essential challenge recent years. Food waste can be valorized accordance with the principles sustainable development, including as a source energy. This study analyses potential anaerobic fermentation, pyrolysis, ethanol incineration, and composting to treat waste, focusing on its energy yield. research considered two scenarios for generating Poland both near term (2030) long (2050). Scenarios were proposed regions different levels urbanization demographic trends. criteria selection technologies energy-efficient processing from identified, taking into account current state these technologies, their prospective changes, nature regions, trajectory generation, spatial generation rate, potential. Technologies like methane fermentation thermochemical methods should developed densely populated areas high rate. Among processes, fast pyrolysis will provide most significant benefits, followed by moderate biocarbonization—at similar levels. Incineration is placed between carbonization gasification. In less lower rates, combining substrates co-processing green considered. Biocarbonization systems integrated rural regions.

Language: Английский

Citations

0

The Synergy Potential of Energy and Agriculture—The Main Directions of Development DOI Creative Commons
Mantas Švažas, Valentinas Navickas

Energies, Journal Year: 2025, Volume and Issue: 18(5), P. 1031 - 1031

Published: Feb. 20, 2025

The development of renewable energy is increasingly blurring the line between and agricultural sectors. Decarbonizing agriculture essential for sustainable principles. This can be achieved in essentially two following ways: by reducing fuel consumption making livestock sector more efficient. review sets out options contributing to these elements. stage a smoother synergy process, whereby waste generated fully utilized strengthen farms. In conducting review, methods scientific induction deduction were used. One key elements recycling into biomethane. biomethane turn used as tractors means providing production or biogas lead decentralization system, with farms becoming less completely independent from external supplies. At same time, synergies other forms are being created. These make it possible increase income adding new activity supplying consumers.

Language: Английский

Citations

0

Decarbonisation of the Natural Gas Grid: Process-Oriented High-Resolution Spatial Biomass Assessment on Biomass Potential for Biomethane Injection in Queensland, Australia DOI

Thanuja Gelanigama Mesthrige,

Bofu Yu, Sunil Herat

et al.

Published: Jan. 1, 2025

Language: Английский

Citations

0

A Review on Biodegradation of Plastics with Organic Fraction of Municipal Solid Wastes by Anaerobic Co-digestion DOI

Penaganti Praveen,

Biswabandhu Chatterjee,

Debabrata Mazumder

et al.

Water Air & Soil Pollution, Journal Year: 2025, Volume and Issue: 236(3)

Published: Feb. 24, 2025

Language: Английский

Citations

0

Biodigesters for Sustainable Food Waste Management DOI Open Access
Jay N. Meegoda,

Charmi Chande,

Ishani Bakshi

et al.

International Journal of Environmental Research and Public Health, Journal Year: 2025, Volume and Issue: 22(3), P. 382 - 382

Published: March 6, 2025

The global challenge of food waste management poses severe environmental and public health risks. Traditional disposal methods, such as landfilling incineration, exacerbate these issues. Decomposing in landfills emits methane, a greenhouse gas 25 times more potent than CO2, while landfill leachate contaminates soil groundwater with hazardous pathogens toxins. Additionally, improper fosters microbial proliferation, posing Incineration, though commonly used, is inefficient due to the high moisture content waste, leading incomplete combustion further air pollution. Therefore, this review examines biodigesters sustainable alternative traditional disposal, assessing their effectiveness mitigating risks promoting circular economy practices. It evaluates different biodigester designs, operational scalability, economic feasibility across diverse contexts. Through an analysis case studies, highlights biodigesters’ potential address localized challenges by converting organic into biogas—a renewable energy source—and nutrient-rich digestate, valuable natural fertilizer. process reduces emissions, improves health, minimizes associated contamination. Various including fixed-dome, floating-drum, tubular systems, are compared for efficiency adaptability. identifies key barriers adoption, feedstock variability, maintenance costs, policy constraints, also discussing strategies enhance accessibility. This novel its comprehensive approach, bridging technological, environmental, perspectives on management. Unlike prior studies that focused isolated aspects—such specific analyses, or laboratory-scale evaluations—this synthesizes findings real-world implementations, offering holistic understanding impact. By addressing knowledge gaps terms risks, benefits, challenges, study provides insights policymakers, researchers, industry stakeholders seeking solutions.

Language: Английский

Citations

0

BIOREMEDIATION: A SUPERIOR ALTERNATIVE FOR REMEDIATING TANNERY EFFLUENT-CONTAMINATED SOIL DOI Creative Commons
Aminu Muhammad Gusau, Aminu Yusuf Fardami

FUDMA Journal of Sciences, Journal Year: 2025, Volume and Issue: 9(2), P. 193 - 208

Published: Feb. 28, 2025

Tannery effluent poses significant risks to soil health, primarily through contamination with heavy metals like chromium, sulphides, and persistent organic pollutants (POPs). These toxic substances inhibit microbial activity, reducing nutrient cycling matter decomposition essential for fertility. Beneficial microorganisms, including nitrogen-fixing bacteria, are particularly affected, leading altered communities dominated by less advantageous, metal-tolerant species. Accumulation of POPs disrupts enzymatic activities, interferes plant root growth, complicates remediation efforts due pollutant migration groundwater potential entry into the food chain. Prolonged exposure such contaminants diminishes fertility, reduces resilience, ecosystem services, posing threats agricultural productivity environmental health. This review was aimed outline what made bioremediation a superior treatment technology among other methods used in remediating tannery contaminated soil. Efforts mitigate impacts involve combination physical, chemical, biological technologies. Physical washing, flushing, thermal desorption focus on removing or isolating contaminants, while chemical approaches as oxidation, reduction, stabilization transform harmful forms immobilize them. Biological leverages microorganisms plants detoxify sustainably. Bioremediation strategies aid bioaugmentation biostimulation do enhance activity address inorganic effectively more than physical methods. Another excellent called phytoremediation can also effectively, Achieving better technique should be coupled stringent industrial regulations, sustainable tanning methods, stakeholder awareness

Language: Английский

Citations

0

Multifunctional Role of the Biological Sulfur Cycle in Wastewater Treatment: Sulfur Oxidation, Sulfur Reduction, and Sulfur Disproportionation DOI Creative Commons
Xin Jin, Hao Wang, Qingxuan Wu

et al.

Desalination and Water Treatment, Journal Year: 2025, Volume and Issue: unknown, P. 101100 - 101100

Published: March 1, 2025

Language: Английский

Citations

0