An environmental food packaging material part I: A case study of life-cycle assessment (LCA) for bamboo fiber environmental tableware
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[1] Quanyin Tan,et al. Revealing the feasibility and environmental benefits of replacing disposable plastic tableware in aviation catering: An AHP-LCA integrated study , 2022, Resources, Conservation and Recycling.
[2] L. Trasande,et al. Global plastic treaty should address chemicals , 2022, Science.
[3] Sijia Liu,et al. A bioinspired, strong, all-natural, superhydrophobic cellulose-based straw. , 2022, International journal of biological macromolecules.
[4] Huan Jiang,et al. Degradation Characteristics of Environment-Friendly Bamboo Fiber Lunch Box Buried in the Soil , 2022, Forests.
[5] S. Lam,et al. Plastic Crisis Underscores Need for Alternative Sustainable-Renewable Materials , 2022, Journal of Bioresources and Bioproducts.
[6] Xiaoyong Deng,et al. Mechanically Strong, Hydrostable, and Biodegradable Starch‐Cellulose Composite Materials for Tableware , 2022, Starch - Stärke.
[7] Fumin Chen,et al. Eco-friendly, disposable bamboo fiber dishware: Static and dynamic mechanical properties and creep behavior , 2022, Industrial Crops and Products.
[8] W. Fourney,et al. Hardened wood as a renewable alternative to steel and plastic , 2021, Matter.
[9] L. Trasande,et al. Occurrence of Polyethylene Terephthalate and Polycarbonate Microplastics in Infant and Adult Feces , 2021, Environmental Science & Technology Letters.
[10] S. Lam,et al. Bamboo grid versus polyvinyl chloride as packing material in cooling tower: Energy efficiency and environmental impact assessment. , 2021, Journal of environmental management.
[11] O. Carnevali,et al. Plasticenta: First evidence of microplastics in human placenta. , 2021, Environment international.
[12] R. D. T. Filho,et al. Bamboo bio-concrete as an alternative for buildings’ climate change mitigation and adaptation , 2020 .
[13] Hongli Zhu,et al. Biodegradable, Hygienic, and Compostable Tableware from Hybrid Sugarcane and Bamboo Fibers as Plastic Alternative , 2020 .
[14] Richard C. Thompson,et al. Reaching New Heights in Plastic Pollution—Preliminary Findings of Microplastics on Mount Everest , 2020, One Earth.
[15] Qian-Xiong Zhou,et al. Effective uptake of submicrometre plastics by crop plants via a crack-entry mode , 2020, Nature Sustainability.
[16] C. Orrego,et al. Comparative life cycle assessment of coffee jar lids made from biocomposites containing poly(lactic acid) and banana fiber. , 2020, Journal of environmental management.
[17] H. Grythe,et al. Atmospheric transport is a major pathway of microplastics to remote regions , 2020, Nature Communications.
[18] Rahul Singh,et al. Natural fibre reinforced composite materials: Environmentally better life cycle assessment – A case study , 2020 .
[19] Shuaiming He,et al. Investigation of deposit problem during sugarcane bagasse pulp molded tableware production , 2019, Journal of Cleaner Production.
[20] M. Margallo,et al. Environmental assessment of the food packaging waste management system in Spain: Understanding the present to improve the future. , 2019, The Science of the total environment.
[21] P. He,et al. Municipal solid waste (MSW) landfill: A source of microplastics? -Evidence of microplastics in landfill leachate. , 2019, Water research.
[22] A. Azapagic,et al. Environmental impacts of takeaway food containers , 2019, Journal of Cleaner Production.
[23] J. Benezet,et al. How to manage biocomposites wastes end of life? A life cycle assessment approach (LCA) focused on polypropylene (PP)/wood flour and polylactic acid (PLA)/flax fibres biocomposites. , 2019, Waste management.
[24] C. Ko,et al. Environmental benefit of utilizing bamboo material based on life cycle assessment , 2018, Journal of Cleaner Production.
[25] A. Azapagic,et al. Improving the environmental sustainability of reusable food containers in Europe. , 2018, The Science of the total environment.
[26] M. Fieschi,et al. Role of compostable tableware in food service and waste management. A life cycle assessment study. , 2017, Waste management.
[27] Carlo Ingrao,et al. An attributional Life Cycle Assessment application experience to highlight environmental hotspots in the production of foamy polylactic acid trays for fresh-food packaging usage , 2017 .
[28] Eric Ofori Agyekum,et al. Environmental and social life cycle assessment of bamboo bicycle frames made in Ghana , 2017 .
[29] Yelin Deng,et al. Life cycle assessment of flax-fibre reinforced epoxidized linseed oil composite with a flame retardant for electronic applications , 2016 .
[30] Z. Cai,et al. Improved bulk density of bamboo pellets as biomass for energy production , 2016 .
[31] Olivier Jolliet,et al. Life cycle assessment of end-of-life options for two biodegradable packaging materials: sound application of the European waste hierarchy , 2015 .
[32] Joost G. Vogtländer,et al. The Environmental Impact of Industrial Bamboo Products: Life-cycle Assessment and Carbon Sequestration , 2014 .
[33] Carolien Kroeze,et al. Multiple data sets and modelling choices in a comparative LCA of disposable beverage cups. , 2014, The Science of the total environment.
[34] V. Siracusa,et al. Environmental assessment of a multilayer polymer bag for food packaging and preservation: An LCA approach , 2014 .
[35] V. Siracusa,et al. Biodegradable Long Chain Aliphatic Polyesters Containing Ether-Linkages: Synthesis, Solid-State, and Barrier Properties , 2014 .
[36] Z. Cai,et al. Important properties of bamboo pellets to be used as commercial solid fuel in China , 2014, Wood Science and Technology.
[37] Josepha Potting,et al. A critical comparison of ten disposable cup LCAs , 2013 .
[38] Thumrongrut Mungcharoen,et al. Life cycle assessment of single use thermoform boxes made from polystyrene (PS), polylactic acid, (PLA), and PLA/starch: cradle to consumer gate , 2013, The International Journal of Life Cycle Assessment.
[39] Joou-Shian Lee,et al. Comparing aboveground carbon sequestration between moso bamboo (Phyllostachys heterocycla) and China fir (Cunninghamia lanceolata) forests based on the allometric model , 2011 .
[40] S. Solomon. The Physical Science Basis : Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change , 2007 .
[41] A.A.J.F. Van den Dobbelsteen,et al. An environmental, economic and practical assessment of bamboo as a building material for supporting structures , 2006 .
[42] A. Del Lungo,et al. Global planted forests thematic study. Results and analysis , 2006 .
[43] Jinlong Wang,et al. Water-stable, strong, biodegradable lignocellulose straws replacement for plastic straws , 2022, Chemical Engineering Journal.