Green Approaches in Rubber Recycling Technologies: Present Status and Future Perspective
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M. Saeb | J. Haponiuk | X. Colom | Paulina Wiśniewska | Mohammad Reza Saeb | Paulina Wiśniewska | Józef T. Haponiuk | Xavier Colom
[1] T. Mondal,et al. Synthesis of Polyetheramine-Grafted Epoxidized Natural Rubber and Its Role in Humidity Adhesive Sensors , 2022, ACS Sustainable Chemistry & Engineering.
[2] Hong Wang,et al. Research progress on resource utilization of waste cooking oil in asphalt materials: A state-of-the-art review , 2022, Journal of Cleaner Production.
[3] K. Formela,et al. Waste tire rubber devulcanization technologies: State-of-the-art, limitations and future perspectives. , 2022, Waste management.
[4] K. Formela. Analysis of volatile organic compounds emission in the rubber recycling products quality assessment , 2022, Advanced Industrial and Engineering Polymer Research.
[5] Qiao Dong,et al. Application of waste oil in asphalt rejuvenation and modification: A comprehensive review , 2022, Construction and Building Materials.
[6] L. Kroll,et al. Processing and Mechanical Properties of Highly Filled PP/GTR Compounds , 2022, Materials.
[7] M. Saeb,et al. Flame-Retardant Polymer Materials Developed by Reactive Extrusion: Present Status and Future Perspectives , 2022, Polymer Reviews.
[8] M. Saeb,et al. GTR/Thermoplastics Blends: How Do Interfacial Interactions Govern Processing and Physico-Mechanical Properties? , 2022, Materials.
[9] Wang Zefeng,et al. High-quality ground tire rubber production from scrap tires by using supercritical carbon dioxide jet pulverization assisted with diphenyl disulfide , 2021, Powder Technology.
[10] J. Goddard,et al. Antimicrobial Active Packaging Prepared by Reactive Extrusion of ε-Poly l-lysine with Polypropylene , 2021, ACS Food Science & Technology.
[11] K. Formela,et al. Processing, Performance Properties, and Storage Stability of Ground Tire Rubber Modified by Dicumyl Peroxide and Ethylene-Vinyl Acetate Copolymers , 2021, Polymers.
[12] P. Zarrintaj,et al. Green products from herbal medicine wastes by subcritical water treatment. , 2021, Journal of hazardous materials.
[13] Y. Munusamy,et al. Thermochemical compatibilization of reclaimed tire rubber/ poly(ethylene-co-vinyl acetate) blend using electron beam irradiation and amine-based chemical , 2021, Journal of Polymer Research.
[14] K. Formela,et al. GTR/NBR/Silica Composites Performance Properties as a Function of Curing System: Sulfur versus Peroxides , 2021, Materials.
[15] L. Mészáros,et al. Ground tire rubber filled low-density polyethylene: The effect of particle size , 2021, Advanced Industrial and Engineering Polymer Research.
[16] Chuanhui Xu,et al. Mechanical Strong and Recyclable Rubber Nanocomposites with Sustainable Cellulose Nanocrystals and Interfacial Exchangeable Bonds , 2021, ACS Sustainable Chemistry & Engineering.
[17] K. Takenaka,et al. Polymer Extrusion , 2021, Seikei-Kakou.
[18] A. Hejna,et al. Structural Changes and Their Implications in Foamed Flexible Polyurethane Composites Filled with Rapeseed Oil-Treated Ground Tire Rubber , 2021, Journal of Composites Science.
[19] M. Ganjali,et al. Deep eutectic solvents in membrane science and technology: Fundamental, preparation, application, and future perspective , 2021 .
[20] K. Formela,et al. Reactive extrusion of biodegradable aliphatic polyesters in the presence of free-radical-initiators: A review , 2020 .
[21] M. Saeb,et al. Reactive Sintering of Ground Tire Rubber (GTR) Modified by a Trans-Polyoctenamer Rubber and Curing Additives , 2020, Polymers.
[22] M. Sillanpää,et al. Current progress in waste tire rubber devulcanization. , 2020, Chemosphere.
[23] T. Bárány,et al. Devulcanization of ground tire rubber: microwave and thermomechanical approaches , 2020, Scientific Reports.
[24] K. Formela,et al. Ground Tire Rubber Modified by Ethylene-Vinyl Acetate Copolymer: Processing, Physico-Mechanical Properties, Volatile Organic Compounds Emission and Recycling Possibility , 2020, Materials.
[25] E. Espuche,et al. Solvent-Free Reactive Extrusion As an Innovative and Efficient Process for the Synthesis of Polyimides , 2020 .
[26] J. Fořt,et al. Alternative production of rubber crumb by accelerated aging of waste tires by ozone , 2020 .
[27] R. Andler. Bacterial and enzymatic degradation of poly(cis-1,4-isoprene) rubber: Novel biotechnological applications. , 2020, Biotechnology advances.
[28] Caiyun Wang,et al. Recyclable and Reprocessable Crosslinked Rubber Enabled by Constructing Ionic Crosslinked Networks , 2020 .
[29] N. Zhang,et al. Rheological and Crystallization Properties of ABS/PA6-Compatibilized Blends via In Situ Reactive Extrusion , 2020, ACS omega.
[30] N. M. Mubarak,et al. Devulcanisation of ground rubber tyre by novel ternary deep eutectic solvents , 2020 .
[31] A. Hejna,et al. Waste tire rubber as low-cost and environmentally-friendly modifier in thermoset polymers - A review. , 2020, Waste management.
[32] S. M. Sapuan,et al. Effect of Surface Treatment on the Performance of Polyester Composite Filled with Waste Glove Rubber Crumbs , 2020 .
[33] Shuangyang Li,et al. Natural Rubber-Based Elastomer Reinforced by Chemically Modified Multiscale Leather Collagen Fibers with Excellent Toughness , 2020, ACS Sustainable Chemistry & Engineering.
[34] Dipankar Mondal,et al. Cradle-to-cradle approach to waste tyres and development of silica based green tyre composites , 2020 .
[35] S. Kabasci,et al. Compatibilization of Poly(Lactic Acid) (PLA) and Bio-Based Ethylene-Propylene-Diene-Rubber (EPDM) via Reactive Extrusion with Different Coagents , 2020, Polymers.
[36] D. Rodrigue,et al. Waste Rubber Recycling: A Review on the Evolution and Properties of Thermoplastic Elastomers , 2020, Materials.
[37] M. Saeb,et al. Thin films of epoxy adhesives containing recycled polymers and graphene oxide nanoflakes for metal/polymer composite interface , 2019, Progress in Organic Coatings.
[38] K. Formela,et al. Ground tire rubber thermo-mechanically devulcanized in the presence of waste engine oil as asphalt modifier , 2019, Construction and Building Materials.
[39] S. Wiessner,et al. Devulcanization of Waste Rubber and Generation of Active Sites for Silica Reinforcement , 2019, ACS omega.
[40] N. Aït Hocine,et al. Experimental Validation of the Horikx Theory to be Used in the Rubber Devulcanization Analysis , 2019, Journal of Polymers and the Environment.
[41] É. Grau,et al. Benefit of the Reactive Extrusion in the Course of Polyhydroxyurethanes Synthesis by Aminolysis of Cyclic Carbonates , 2019, ACS Sustainable Chemistry & Engineering.
[42] J. Wong,et al. A critical review: emerging bioeconomy and waste-to-energy technologies for sustainable municipal solid waste management , 2019, Waste Disposal & Sustainable Energy.
[43] M. Saeb,et al. Multi-nationality epoxy adhesives on trial for future nanocomposite developments , 2019, Progress in Organic Coatings.
[44] A. Hejna,et al. Microwave treatment in waste rubber recycling – recent advances and limitations , 2019, Express Polymer Letters.
[45] M. Saeb,et al. Towards understanding the role of peroxide initiators on compatibilization efficiency of thermoplastic elastomers highly filled with reclaimed GTR , 2019, Polymer Testing.
[46] F. Quadrini,et al. A sustainable molding process for new rubber products from tire recycling , 2018, Progress in Rubber, Plastics and Recycling Technology.
[47] M. Abdellatif,et al. Assessment of the properties of PP composite with addition of recycled tire rubber , 2018, Ain Shams Engineering Journal.
[48] M. Saeb,et al. Synergistic Effects of Bitumen Plasticization and Microwave Treatment on Short-Term Devulcanization of Ground Tire Rubber , 2018, Polymers.
[49] S. Komarneni,et al. Biomass as a Template Leads to CdS@Carbon Aerogels for Efficient Photocatalytic Hydrogen Evolution and Stable Photoelectrochemical Cells , 2018, ACS Sustainable Chemistry & Engineering.
[50] Mengzhen Zhao,et al. Research on the pyrolysis process of crumb tire rubber in waste cooking oil , 2018, Renewable Energy.
[51] Shifeng Wang,et al. Vegetable derived-oil facilitating carbon black migration from waste tire rubbers and its reinforcement effect. , 2018, Waste management.
[52] R. Gosselink,et al. Lignin Based Functional Additives for Natural Rubber , 2018, ACS Sustainable Chemistry & Engineering.
[53] Michel Gratton,et al. Recycling of rubber wastes by devulcanization , 2018, Resources, Conservation and Recycling.
[54] R. Thangamuthu,et al. Dual Heteroatom-Doped Carbon Monoliths Derived from Catalyst-free Preparation of Porous Polyisocyanurate for Oxygen Reduction Reaction , 2018 .
[55] Dan Dobrotă,et al. An innovative method in the regeneration of waste rubber and the sustainable development , 2018 .
[56] Binghong Luo,et al. Liquid Crystalline Behaviors of Chitin Nanocrystals and Their Reinforcing Effect on Natural Rubber , 2018 .
[57] M. Saeb,et al. Structural, thermal and physico-mechanical properties of polyurethane/brewers’ spent grain composite foams modified with ground tire rubber , 2017 .
[58] Kim Ragaert,et al. Mechanical and chemical recycling of solid plastic waste. , 2017, Waste management.
[59] Shifeng Wang,et al. Interfacial interaction between degraded ground tire rubber and polyethylene , 2017 .
[60] Surendra Singh Gaur,et al. Reactive Extrusion of Polylactic Acid/Cellulose Nanocrystal Films for Food Packaging Applications: Influence of Filler Type on Thermomechanical, Rheological, and Barrier Properties , 2017 .
[61] Zefeng Wang,et al. Recycling waste tire rubber by water jet pulverization: powder characteristics and reinforcing performance in natural rubber composites , 2017 .
[62] Hong Zhang,et al. Super-tough Poly(lactide) Thermoplastic Vulcanizates Based on Modified Natural Rubber , 2017 .
[63] M. Saeb,et al. Controlled grafting of vinylic monomers on polyolefins: a robust mathematical modeling approach , 2016, Designed monomers and polymers.
[64] Yahya E. Jad,et al. Green Solid-Phase Peptide Synthesis 2. 2-Methyltetrahydrofuran and Ethyl Acetate for Solid-Phase Peptide Synthesis under Green Conditions , 2016 .
[65] K. Formela,et al. Thermomechanical reclaiming of ground tire rubber via extrusion at low temperature: Efficiency and limits , 2016 .
[66] A. Bhowmick,et al. Terpene Based Sustainable Elastomer for Low Rolling Resistance and Improved Wet Grip Application: Synthesis, Characterization and Properties of Poly(styrene-co-myrcene) , 2016 .
[67] Ala R. Abbas,et al. Evaluation of the long-term performance and life cycle costs of GTR asphalt pavements , 2016 .
[68] Ziba Najmi,et al. Biological devulcanization of ground natural rubber by Gordonia desulfuricans DSM 44462T strain , 2016, Applied Microbiology and Biotechnology.
[69] Madhusudan Roy,et al. Mechanochemical devulcanization of natural rubber vulcanizate by dual function disulfide chemicals , 2016 .
[70] M. Saeb,et al. Investigating the combined impact of plasticizer and shear force on the efficiency of low temperature reclaiming of ground tire rubber (GTR) , 2016 .
[71] M. Saeb,et al. Assessment of microstructure, physical and thermal properties of bitumen modified with LDPE/GTR/elastomer ternary blends , 2016 .
[72] S. Sosnowski,et al. Simulation of Microstructural Eevolution During Reactive Blending of PET and PEN: Numerical Integration of Kinetic Differential Equations and Monte Carlo Method , 2015 .
[73] A. Hejna,et al. Rigid Polyurethane Foams Modified with Ground Tire Rubber - Mechanical, Morphological and Thermal Studies , 2015 .
[74] Liqing Wei,et al. Grafting of bacterial polyhydroxybutyrate (PHB) onto cellulose via in situ reactive extrusion with dicumyl peroxide. , 2015, Biomacromolecules.
[75] Marina Lasagni,et al. Characterization and supercritical CO2 devulcanization of cryo-ground tire rubber: Influence of devulcanization process on reclaimed material , 2014 .
[76] K. Formela,et al. Efficiency of thermomechanical reclaiming of ground tire rubber conducted in counter-rotating and co-rotating twin screw extruder , 2014 .
[77] Davide Lo Presti,et al. Recycled Tyre Rubber Modified Bitumens for road asphalt mixtures: A literature review☆ , 2013 .
[78] Helmut Podhaisky,et al. Residence time modeling of hot melt extrusion processes. , 2013, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[79] Yanping Xia,et al. The effect of devulcanization level on mechanical properties of reclaimed rubber by thermal‐mechanical shearing devulcanization , 2013 .
[80] Suhe Zhao,et al. Microbial desulfurization of waste latex rubber with Alicyclobacillus sp. , 2013 .
[81] Tianju Chen,et al. Effects of high shear stress on the devulcanization of ground tire rubber in a twin-screw extruder , 2013 .
[82] Canhui Lu,et al. Mechanochemical devulcanization of ground tire rubber and its application in acoustic absorbent polyurethane foamed composites , 2013 .
[83] L. Mészáros,et al. EB-promoted recycling of waste tire rubber with polyolefins , 2012 .
[84] A. Bandyopadhyay,et al. Exploring Microcrystalline Cellulose (MCC) as a Green Multifunctional Additive (MFA) in a Typical Solution-Grade Styrene Butadiene Rubber (S-SBR)-Based Tread Compound , 2012 .
[85] L. Mészáros,et al. Mechanical properties of recycled LDPE/EVA/ground tyre rubber blends: Effects of EVA content and postirradiation , 2012 .
[86] T. Hjelt,et al. Smooth and flexible filler-nanocellulose composite structure for printed electronics applications , 2012, Cellulose.
[87] Suhe Zhao,et al. Microbial desulfurization of ground tire rubber by Thiobacillus ferrooxidans , 2011 .
[88] Canhui Lu,et al. Enhancement of processability and foamability of ground tire rubber powder and LDPE blends through solid state shear milling , 2011 .
[89] P. Maji,et al. New Route for Devulcanization of Natural Rubber and the Properties of Devulcanized Rubber , 2011 .
[90] W. Q. Wang,et al. Numerical simulation of flow characteristics in new co-rotating triangle arrayed triple screw extruders , 2009 .
[91] Jamal Ahmad,et al. Machining of Polymer Composites , 2008 .
[92] J. Saiter,et al. REACTIVE COMPATIBILIZATION OF RECYCLED POLYETHYLENES AND SCRAP RUBBER IN THERMOPLASTIC ELASTOMERS: CHEMICAL AND RADIATION-CHEMICAL APPROACH , 2008 .
[93] E. Leroy,et al. Compatibilizing thermoplastic/ground tyre rubber powder blends: Efficiency and limits , 2008 .
[94] Nan Jiang,et al. Study on Extrusion Characteristics of the Tri-Screw Extruder , 2008 .
[95] A. Nada,et al. Effect of Gamma and UV Radiation on Properties of EPDM/GTR/HDPE Blends , 2008 .
[96] A. Hart,et al. Tire Rubber Recycling and Bioremediation: A Review , 2008 .
[97] Y. Xie,et al. Numerical Simulation of Extrusion Characteristics for Co-rotating Tri-Screw Extruder , 2007 .
[98] A. Bhowmick,et al. Waste natural gum as a multifunctional additive in rubber , 2006 .
[99] James L White,et al. Corotating Twin-Screw Extrusion Reactive Extrusion-Devolatilization Model and Software , 2006 .
[100] C. Das,et al. Devulcanization of Natural Rubber Vulcanizates by Mechanochemical Process , 2005 .
[101] L. Janssen. Reactive Extrusion Systems , 2004 .
[102] J. Noordermeer,et al. Mechanisms involved in the recycling of NR and EPDM , 1998 .
[103] A. Isayev,et al. Devulcanization of Waste Tire Rubber by Powerful Ultrasound , 1996 .
[104] W. Michaeli,et al. Engineering analysis and design of twin‐screw extruders for reactive extrusion , 1995 .
[105] A. J. Lambright,et al. Extrusion-Shaping of Curved Hose Reinforced with Short Cellulose Fibers , 1981 .
[106] D. S. L. Beau. Science and Technology of Reclaimed Rubber , 1967 .
[107] H. Winkelmann. The Present and Future of Reclaimed Rubber , 1926 .
[108] M. Saeb,et al. Assessment of the devulcanization process of EPDM waste from roofing systems by combined thermomechanical/microwave procedures , 2021 .
[109] K. Formela,et al. Chemical surface etching methods for ground tire rubber as sustainable approach for environmentally-friendly composites development– a review , 2021 .
[110] L. Kroll,et al. Technology comparison for the production of fine rubber powder from end of life tyres , 2020 .
[111] M. Ramachandra,et al. Green Composites: A Review , 2018 .
[112] A. Hejna,et al. Reactive extrusion of bio-based polymer blends and composites – Current trends and future developments , 2018 .
[113] C. Xin,et al. Numerical simulation and experimental study of pressure and residence time distribution of triple‐screw extruder , 2015 .
[114] T. Yasin,et al. Radiation crosslinking of styrene–butadiene rubber containing waste tire rubber and polyfunctional monomers , 2015 .
[115] Phil Coates,et al. Energy monitoring and quality control of a single screw extruder , 2014 .
[116] Canhui Lu,et al. Grafting of hyperbranched poly(amidoamine) onto waste tire rubber powder and its potential application as the curing agent for epoxy resin , 2012 .
[117] A. Khalil,et al. Effect of gamma irradiation on ethylene propylene diene terpolymer rubber composites , 2008 .
[118] J. Cañavate,et al. Composites reinforced with reused tyres: Surface oxidant treatment to improve the interfacial compatibility , 2007 .