4.7 Review

Review: Nanoparticles can change (bio)hydrogen competitiveness

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Article Chemistry, Physical

Effects of nanofluids on the photovoltaic thermal system for hydrogen production via electrolysis process

A. Anderson et al.

Summary: In this study, a photovoltaic hybrid thermal system was fabricated to effectively increase the production of electric output, and a PV/T system was also designed to produce hydrogen through electrolysis of water. The introduction of nanoparticles as cooling agents reduced the negative effects of high cell temperatures on electric output, and nanofluids MWCNT and Fe2O3 were examined for their potential to enhance electric output production without significant energy loss. The highest electrical output and thermal efficiency were obtained at 12.30 P.M., and the maximum hydrogen production was observed from 12.15 P.M. to 13.00 P.M.. The implementation of this method compensates for energy loss and achieves superior electrical output compared to conventional methods, and the use of the electrolyzer attached to the hybrid system allows for hydrogen generation and storage for future energy use.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2022)

Article Environmental Sciences

Recovering phosphorous from biogas fermentation residues indicates promising economic results

Josef Marousek et al.

Summary: The economics of producing energy-valuable gases through fermenting phytomass is threatened by the costs associated with waste management of highly diluted fermentation residues. The traditional practice of using the solid fraction of the residues for energy purposes leads to nutrient loss and farmers have realized that the organic matter in the residues has little agronomic value. For the first time, it is proposed to activate the charred residues and use the resulting sorbent to capture phosphorus from the liquid fraction, showing promising results for plant nutrition and soil improvement.

CHEMOSPHERE (2022)

Article Green & Sustainable Science & Technology

Comparative techno-economic modelling of large-scale thermochemical biohydrogen production technologies to fuel public buses: A case study of West Midlands region of England

Danielle J. Nouwe Edou et al.

Summary: This work presents techno-economic modelling of four thermochemical technologies that could produce over 22,000 tonnes/year of hydrogen from biomass for public transport buses in the West Midlands region of the UK. The study found that the addition of carbon capture and storage (CCS) reduced the payback period and the minimum hydrogen selling price. The results suggest that thermochemical technologies can produce biohydrogen at competitive prices when revenue from selling CO2 is taken into account.

RENEWABLE ENERGY (2022)

Review Biotechnology & Applied Microbiology

Molecular biohydrogen production by dark and photo fermentation from wastes containing starch: recent advancement and future perspective

Satya Ranjan Das et al.

Summary: The article discusses the increasing energy demand due to changing lifestyles and the need for clean energy sources. It highlights the potential of using starch wastes for hydrogen production, particularly focusing on anaerobic fermentation techniques and optimization of external process parameters.

BIOPROCESS AND BIOSYSTEMS ENGINEERING (2021)

Article Chemistry, Physical

Biohydrogen production using horizontal and vertical continuous stirred tank reactor- a numerical optimization

Kathirvel Brindhadevi et al.

Summary: This study demonstrates a numerical approach to predicting biohydrogen and biogas production in horizontal and vertical continuous mixed tank reactors. It found that impeller speed has a significant impact on production rates, while the optimal ranges of HRT and pH are crucial factors.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2021)

Article Management

Usefulness of the budget: the mediating effect of participative budgeting and budget-based evaluation and rewarding

Jaroslav Wagner et al.

Summary: This study investigates the mediating effects of participative budgeting and budget-based evaluation and rewarding on the relationship between budget use for operational management and perceived usefulness of the budget. The results suggest that these mediating factors significantly influence the perceived usefulness of the budget in Czech manufacturing companies.

BALTIC JOURNAL OF MANAGEMENT (2021)

Article Chemistry, Physical

Effect of silica-core gold-shell nanoparticles on the kinetics of biohydrogen production and pollutant hydrogenation via organic acid photofermentation over enhanced near-infrared illumination

Yuxia Ji et al.

Summary: The study explores a biological photoinduced fermentation process with silica-core gold-shell nanoparticles to enhance biohydrogen production. Experimental and modeling analysis were conducted under different conditions, showing increased energy conversion efficiency and complete hydrogenation application for toxic waste using Pd catalysts.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2021)

Article Chemistry, Physical

A review on biomass based hydrogen production technologies

Dan Bahadur Pal et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2021)

Review Biochemistry & Molecular Biology

Biofuels for a sustainable future

Yuzhong Liu et al.

Summary: The rapid increase in energy consumption and human dependence on fossil fuels have led to the accumulation of greenhouse gases, resulting in climate change. Efforts are being made to develop, test, and adopt clean renewable fuel alternatives, with other resources and processes showing high potential.
Review Chemistry, Physical

Futuristic applications of hydrogen in energy, biorefining, aerospace, pharmaceuticals and metallurgy

Jude A. Okolie et al.

Summary: The rising world population and increasing demands for energy and industrial commodities have led to a rise in anthropogenic greenhouse gas emissions. To address these challenges, there is a growing interest in the development of renewable energy resources, with hydrogen being considered a strong candidate for the next-generation energy infrastructures. Hydrogen has a wide range of applications and prospects in various industries.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2021)

Review Green & Sustainable Science & Technology

Hydrogen: Current advances and patented technologies of its renewable production

Walter Jose Martinez-Burgos et al.

Summary: Hydrogen is considered the energy of the future, and many technological advances have been achieved in the past 20 years. This study reviewed three routes for renewable hydrogen production from renewable sources and found that water dissociation is the only commercial technology, microbial production is thermodynamically limited, and thermochemical production patents contribute to the efficient use of energy.

JOURNAL OF CLEANER PRODUCTION (2021)

Article Green & Sustainable Science & Technology

Integrating strategies for sustainable conversion of waste biomass into dark-fermentative hydrogen and value-added products

Sanjay K. S. Patel et al.

Summary: The inefficient waste management and associated environmental pollution deplete precious renewable resources and have negative impacts on human health and the global economy. By utilizing microbial anaerobic digestion, organic matter can be metabolized into energy-rich methane and carbon dioxide, producing eco-friendly and biodegradable value-added products. Despite some challenges, integrating different processes for H2 production and waste management could lead to a sustainable economy transition.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2021)

Review Chemistry, Physical

Catalytic biohydrogen production from organic waste materials: A literature review and bibliometric analysis

Walid Nabgan et al.

Summary: Global population growth and accelerated urbanization have led to increased use of fossil fuels and waste production. Biohydrogen from organic waste is a promising alternative due to its high energy content and environmental benefits. This review analyzes research trends and hotspots in biohydrogen production from organic waste and highlights different conversion processes and catalysts for successful design.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2021)

Review Environmental Sciences

Renewable biohydrogen production from lignocellulosic biomass using fermentation and integration of systems with other energy generation technologies

Shashi Kant Bhatia et al.

Summary: Biohydrogen is a clean and renewable energy source produced through various technologies, with dark fermentation being considered more sustainable and ecofriendly. Utilizing lignocellulosic biomass for biohydrogen production shows great potential, and advancements in pretreatment technology and fermentation techniques have made this technology efficient and capable of meeting future energy demands. Co-production of biohydrogen with other energy resources can further improve efficiency and economics.

SCIENCE OF THE TOTAL ENVIRONMENT (2021)

Article Agricultural Engineering

Biohydrogen from organic wastes as a clean and environment-friendly energy source: Production pathways, feedstock types, and future prospects

A. Saravanan et al.

Summary: Microbial fermentation of organic matter under anaerobic conditions is currently the prominent pathway for biohydrogen production, with agricultural residues and other organic wastes commonly used as feedstock due to their high organic content and biodegradability. Enhancing biohydrogen production can be achieved through optimizing operation conditions, adding essential nutrients, and nanoparticles.

BIORESOURCE TECHNOLOGY (2021)

Article Energy & Fuels

Economic Considerations on Nutrient Utilization in Wastewater Management

Josef Marousek et al.

Summary: There is a consensus that Spirulina can be used for wastewater management and biorefining feedstock, although the economic challenges remain. Spirulina cultivated in wastewater serves as a biodiesel source, with oil extracted in feedstock turning into biodiesel. Blends of Spirulina biodiesel show improved efficiency and reduced emissions, contributing positively to greenhouse gas reduction.

ENERGIES (2021)

Review Chemistry, Multidisciplinary

Novel emerging graphdiyne based two dimensional materials: Synthesis, properties and renewable energy applications

Karim Khan et al.

Summary: Graphdiyne (GDY), a novel two-dimensional carbon allotrope with unique structure and properties, has attracted increasing attention for its wide range of potential applications. Efforts have been made to develop various forms of GDY materials, but challenges remain in fully understanding growth methods, fabricating single crystal GDY films, and achieving practical applications.

NANO TODAY (2021)

Article Chemistry, Multidisciplinary

Perspectives on Potential Applications of Nanometal Derivatives in Gaseous Bioenergy Pathways: Mechanisms, Life Cycle, and Toxicity

Mohamed Elsamadony et al.

Summary: This article delves into the mechanisms of nanosized metal derivatives (NMDs) impacting the production of methane (CH4) and hydrogen (H-2) in anaerobic digestion (AD) and dark fermentation (DF) processes, exploring effects on extracellular electron transfer, biotic-biotic interactions such as direct interspecies electron transfer (DIET), and biotic-abiotic exchanges mediated by redox reactions with metals.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2021)

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Techno-economic analysis of two-stage anaerobic system for biohydrogen and biomethane production from palm oil mill effluent

Safa Senan Mahmod et al.

Summary: The study aims to establish baseline economics for a two-stage anaerobic system producing biohydrogen and biomethane from locally generated palm oil mill effluent, and conducted a techno-economic analysis. The economic profitability assessment demonstrated the feasibility of the project, with economic conditions most sensitive to effluent quality and product selling prices.

JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING (2021)

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Advances in nanomaterials induced biohydrogen production using waste biomass

Neha Srivastava et al.

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Waste to Energy: A Focus on the Impact of Substrate Type in Biogas Production

Nwabunwanne Nwokolo et al.

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Application of nanotechnology in dark fermentation for enhanced biohydrogen production using inorganic nanoparticles

Gopalakrishnan Kumar et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2019)

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Recent advances in electrochemical nonenzymatic hydrogen peroxide sensors based on nanomaterials: a review

Keerthy Dhara et al.

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Recent progress in multienzymes co-immobilization and multienzyme system applications

Sizhu Ren et al.

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Environmental co-benefits and adverse side-effects of alternative power sector decarbonization strategies

Gunnar Luderer et al.

NATURE COMMUNICATIONS (2019)

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Adaptive antibacterial biomaterial surfaces and their applications

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MATERIALS TODAY BIO (2019)

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Nanoparticles in Biological Hydrogen Production: An Overview

Sanjay K. S. Patel et al.

INDIAN JOURNAL OF MICROBIOLOGY (2018)

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Recent developments in nanotechnology transforming the agricultural sector: a transition replete with opportunities

Dae-Young Kim et al.

JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE (2018)

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short chain fatty acids as potential therapeutic agents in human gastrointestinal and inflammatory disorders

P. A. Gill et al.

ALIMENTARY PHARMACOLOGY & THERAPEUTICS (2018)

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Influence and strategies for enhanced biohydrogen production from food waste

G. Kumaravel Dinesh et al.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2018)

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Biohydrogen production from sugarcane bagasse hydrolysate: effects of pH, S/X, Fe2+, and magnetite nanoparticles

Karen Reddy et al.

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH (2017)

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Influence of iron (II) oxide nanoparticle on biohydrogen production in thermophilic mixed fermentation

Nurul Sakinah Engliman et al.

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Canna edulis Leaf Extract-Mediated Preparation of Stabilized Silver Nanoparticles: Characterization, Antimicrobial Activity, and Toxicity Studies

S. V. Otari et al.

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Improving biohydrogen productivity by microbial dark- and photo-fermentations: Novel data and future approaches

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Co-metabolism of substrates by Bacillus thuringiensis regulates polyhydroxyalkanoate co-polymer composition

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Effects of phytogenic copper nanoparticles on fermentative hydrogen production by Enterobacter cloacae and Clostridium acetobutylicum

Sundaresan Mohanraj et al.

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The effects of Fe0 and Ni0 nanoparticles versus Fe2+ and Ni2+ ions on dark hydrogen fermentation

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Phytosynthesized iron nanoparticles: effects on fermentative hydrogen production by Enterobacter cloacae DH-89

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Enhanced dark fermentative hydrogen production by zero-valent iron activated carbon micro-electrolysis

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Enhancement effect of hematite and nickel nanoparticles on biohydrogen production from dairy wastewater

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Continuous biohydrogen production from starch wastewater via sequential dark-photo fermentation with emphasize on maghemite nanoparticles

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Optimisation and enhancement of biohydrogen production using nickel nanoparticles - A novel approach

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Electrochemically active biofilm mediated bio-hydrogen production catalyzed by positively charged gold nanoparticles

Mohammad Mansoob Khan et al.

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Exploitation of defined bacterial cultures for production of hydrogen and polyhydroxybutyrate from pea-shells

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Enhanced. hydrogen production in a UASB reactor by retaining microbial consortium onto carbon nanotubes (CNTs)

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Enhancement effect of hematite nanoparticles on fermentative hydrogen production

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