Rickard Arvidsson
Rickard Arvidsson ägnar sig huvudsakligen åt miljö- och hållbarhetsbedömningar av olika slag, främst livscykelanalys (LCA), social/samhällelig livscykelanalys (SLCA), miljöriskanalys (ERA), och material-/substansflödesanalys (MFA/SFA). De huvudsakliga studieobjekten är olika avancerade material, såsom nanomaterial och nya batterimaterial.
Visar 158 publikationer
Quality Before Quantity? Considering Material Properties in Prospective Modelling of Recycling
Prospective screening life cycle assessment of a sodium-ion hybrid supercapacitor
Does "Abundant Materials" Equal "Environmentally Benign"? Life-Cycle Impacts of Sodium-Ion Batteries
Life Cycle Assessment of Synthetic Nanodiamond and Diamond Film Production
Analysis fo the philosophical foundation of foresight and its implication for prospective LCA
Prospective life cycle assessment of sodium-ion batteries made from abundant elements
Life cycle assessment of a two-seater all-electric aircraft
Large-scale lithium-ion battery pack recycling
Terminology for future-oriented life cycle assessment: review and recommendations
Prospective life cycle assessment of organic flow batteries
Using patents to support prospective life cycle assessment: opportunities and limitations
How will large-scale manufacturing of MXenes impact the environment?
Assessment of graphene-based materials against the Substances of Very High Concern criteria
Metal requirements for road-based electromobility transitions in Sweden
Implicit Values in the Recent Carbon Nanotube Debate
Prospective Life Cycle Assessment of Lithium-Sulfur Batteries for Stationary Energy Storage
Quantifying the life-cycle health impacts of a cobalt-containing lithium-ion battery
How environmentally friendly are batteries with no rare or critical materials?
Blood cobalt? Life cycle human health impacts of a lithium-ion battery
Quantifying the positive health impacts of increased wealth in social life cycle assessment
To be or not to be a nanomaterial
Problems from including technospheric parameters in characterization factors for natural resources
Does the grade and source of lithium used in batteries matter?
Nanotechnology meets circular economy
Assessing the Social Life Cycle Impacts of Denim Trousers Produced from Turkish Cotton
Six areas of methodological debate on attributional life cycle assessment
Life-cycle impact assessment methods for physical energy scarcity: considerations and suggestions
Inventory Indicators in Life Cycle Assessment
Screening resource assessment of next-generation battery chemistries
Principles of Life Cycle Inventory Modeling: The Basic Model, Extensions, and Conventions
Introduction to “Life Cycle Inventory Analysis
Life Cycle Inventory Analysis: Methods and Data
The Link Between Life Cycle Inventory Analysis and Life Cycle Impact Assessment
Comment on “Comparative life cycle assessment of high performance lithium-sulfur battery cathodes”
Prospective Life-Cycle Modeling of Quantum Dot Nanoparticles for Use in Photon Upconversion Devices
Implementation of the crustal scarcity indicator into life cycle assessment software
Human health impacts of natural diamond production
Comments on “Life cycle assessment of cobalt extraction process” by Farjana et al. [1]
Environmental and health risks of nanorobots: an early review
Time-based indicators of forced labour, local employment and equal opportunities in social LCA
A crustal scarcity indicator for long-term global elemental resource assessment in LCA
A Function‐Based Approach for Life Cycle Management of Chemicals in the Textile Industry
Life Cycle Environmental Impacts of Synthetic Diamond Production
What are the Life Cycle Environmental Impacts of Synthetic Diamond?
An inventory framework for inclusion of textile chemicals in life cycle assessment
A research agenda for life cycle assessment of electromobility
Life cycle assessment of the second use of lithium-ion batteries from hybrid and electric vehicles
A Swedish comment on ‘review: the availability of life-cycle studies in Sweden’
On the use of ordinal scoring scales in social life cycle assessment
Indicators for national consumption-based accounting of chemicals
Prospective inventory modelling of emerging chemicals: The case of photonic materials
Environmental life cycle assessment of cemented carbide (WC-Co) production
Energy use and climate change improvements of Li/S batteries based on life cycle assessment
Potential improvements of the life cycle environmental impacts of a Li/S battery cell
Using DALY for Assessing Human Health Impacts of Conflict Minerals
Risk Assessments Show Engineered Nanomaterials To Be of Low Environmental Concern
“Just Carbon”: Ideas About Graphene Risks by Graphene Researchers and Innovation Advisors
A method for human health impact assessment in social LCA: lessons from three case studies
Societal flows of cemented tungsten carbide – the case of tire studs
Environmental Assessment of Emerging Technologies: Recommendations for Prospective LCA
Live and Let Die? Life Cycle Human Health Impacts from the Use of Tire Studs
Proxy Measures for Simplified Environmental Assessment of Manufactured Nanomaterials
Calculating the toxicity footprint of Swedish clothing consumption
Cross-correlation between impact categories in LCAs of forest biomass-based products
Carbon nanomaterials as potential substitutes for scarce metals
Do Tire Studs in Cars Save or Take Lives? A Life Cycle Assessment on Human Health Impacts
Updated indicators of Swedish national human toxicity and ecotoxicity footprints using USEtox 2.01
A framework for energy use indicators and their reporting in life cycle assessment
Quantifying emissions and environmental risks of cemented carbide (WC) nanoparticles from tire studs
Very Small Flows? Review of the Societal Metabolism of Nanomaterials
The zinc paradox – a problem for USEtox-based indicators of national chemical footprints?
Lessons from early assessments of production processes for the nanomaterial graphene
Review of Screening Risk Assessment Methods for Nanomaterials
Towards circular flows of tungsten - Characterizing dissipation
Risk scoring and ranking of nanomaterials – a way forward?
A Definition Framework for the Terms Nanomaterial and Nanoparticle
Life cycle assessment and risk assessment of manufactured nanomaterials
Exploring the planetary boundary for chemical pollution
Assessing impacts of tungsten carbide: A substance and particle flow analysis
Can carbon nanomaterials help avoiding resource scarcity?
The value of environment in the controversy over antibacterial silver: A Swedish case study
Methods in environmental assessment of renewables
A Probabilistic Model for Hydrokinetic Turbine Collision Risks: Exploring Impacts on Fish
Miljöbedömning av förnybar elproduktion
Is graphene a ”wonder material” also from an environmental life cycle perspective?
Environmental Risk Assessment of Pharmaceuticals - Effects on Fish in a Swedish River
Assessing environmental impacts of renewable power
The life cycle environmental performance of a new biomaterial: Wood-based nanocellulose
Controversy over antibacterial silver: implications for environmental and sustainability assessments
Assessing the Environmental Risks of Silver from Clothes in an Urban Area
Prospective Life Cycle Assessment of Graphene Production by Ultrasonication and Chemical Reduction
Who needs to know what about energy use? The palm oil biofuel case
Review of Potential Environmental and Health Risks of the Nanomaterial Graphene
Is there a "crystal ball"? Assessing environmental life cycle impacts of new nanomaterials
A product chain organisation study of certified cocoa supply
Towards transparent and relevant use of energy use indicators in LCA studies of biofuels
Planetary boundaries for chemical pollution
Energy use indicators in energy and life cycle assessments of biofuels: review and recommendations
How much energy is used when producing biofuels?
Contributions to Emission, Exposure and Risk Assessment of Nanomaterials
Screening Environmental Risk Assessment of Grease and Oil Emissions from Off-Shore Wind Power Plants
How do we know the energy use when producing biomaterials or biofuels?
Hur mycket kemikalier tål världen?
Substance Flow Analysis of Novel Compounds: The Case of Graphene
Challenges in Exposure Modeling of Nanoparticles in Aquatic Environments
Impacts of a Silver-Coated Future - Particle Flow Analysis of Silver Nanoparticles
Att värna viktig metall är inte alarmism
Life cycle assessment of hydrotreated vegetable oil from rape, oil palm and Jatropha
Assessing the Environmental Impacts of Palm Oil
The Environmental Risks of Silver in Clothes
Kadmiumförgiftning ett av mänsklighetens största hot
Förnybara energikällors inverkan på de svenska miljömålen
Gifter: En större utmaning än oljeberoendet
Tracing nanomaterial hotspots in a changing world
Fate modeling of titanium dioxide nanoparticles in the water compartment by colloid chemistry
The fate of titanium dioxide nanoparticles in the water compartment
Life Cycle Assessment of Second Generation Biodiesel: Biomass to Liquid
Life cycle assessment of Biodiesel - Hydrotreated oil from rape, oil palm or Jatropha
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Visar 15 forskningsprojekt
Miljöeffekter av återvinning och olyckor i kolfiberkompositers livscykler
LCA kalkylverktyg för grafen (GRALCA)
ZeroPM: inga persistenta mobila föroreningar
Livscykelanalys av storskalig litium-jonbatteriproduktion och återvinning
"Blodsbatterier"? Social livscykelpåverkan från litiumjonbatterier
Anticipating metal scarcity challenges in mobility transitions
Mistra Environmental Nanosafety fas II
Förstudie avseende ett nexus för livscykelanalys av elektromobilitet
Begripliggöra megajoulen: Förbättra energianvändningsberäkningar i livscykelanalys av drivmedel
Miljö- och resurseffektivitet hos nanomaterialen grafen och nanocellulosa
Policyrelevanta indikatorer för nationell konsumtion och miljö (PRINCE)
NanoSphere: Center för interaktions- och riskstudier i Nano-Bio-Geo-Sociotekno-sfära gränsytor