Papermaking Vol10 Nr2 2024 - Title | 1 |
Papermaking Vol10 Nr2 2024 - Contents | 2 |
Papermaking Vol10 Nr2 2024 - Article 1 - Paperboard | 3 |
article 1 -s43580-022-00282-7 | 4 |
Relating papermaking process parameters to properties of paperboard with special attention to through-thickness design | 4 |
Abstract | 4 |
Introduction | 4 |
Theoretical background | 5 |
Elastic bending | 5 |
Maximum bending moment during folding | 6 |
Results | 7 |
Properties of free-laid plies | 7 |
Modeling of bending of paperboard structures | 10 |
Discussion and conclusion | 12 |
Acknowledgements | 13 |
References | 13 |
Papermaking Vol10 Nr2 2024 - Article 2 - Tissue | 14 |
article 2 - Conference_paper_Munich23_Kamal_Rezk_final | 15 |
Papermaking Vol10 Nr2 2024 - Article 3 - Sizing Agents | 22 |
article 3 - polymers-15-02876 | 23 |
Introduction | 23 |
Debate on ASA Sizing Mechanism in Papermaking | 24 |
Overview of the ASA Mechanism | 29 |
Chemistry Considerations for Better ASA Sizing Application | 31 |
Conclusions | 34 |
References | 34 |
Papermaking Vol10 Nr2 2024 - Article 4 - Emissions Accounting | 38 |
article 4 - forests-13-01856 | 39 |
Introduction | 39 |
Materials and Methods | 41 |
System Boundary and CO2 Emission Source Determination | 41 |
System Boundary | 41 |
CO2 Emission Source Determination | 42 |
Calculation Method | 43 |
Accounting for CO2 Emissions in the Raw Material Acquisition Stage | 43 |
Accounting for CO2 Emissions in the Pulp and Paper Stage | 44 |
Accounting for CO2 Emissions in the Waste Paper Disposal Stage | 45 |
Accounting for CO2 Emissions in the Transportation Stage | 46 |
Accounting Methods for Export Paper and Paperboard CO2 Emissions | 47 |
List of Data and Sources | 47 |
Results | 49 |
Overall CO2 Emission Status | 49 |
CO2 Emission Status of the Raw Material Acquisition Stage | 50 |
CO2 Emissions Status of Pulp and Paper Stage | 50 |
CO2 Emissions Status of the Transportation Stage | 51 |
CO2 Emissions Status of Waste Paper Disposal Stage | 52 |
Export Paper and Paperboard CO2 Emissions Status | 53 |
Discussion of the Limitations of Our Analytical Results | 53 |
Forecast of LCA CO2 Emissions Scenarios for Paper Products in China | 54 |
Conclusions | 55 |
References | 57 |
Papermaking Vol10 Nr2 2024 - Article 5 - Water Treatment | 60 |
article 5 - s41598-023-39307-y | 61 |
Quality evaluation of water disclosure of Chinese papermaking enterprises based on accelerated genetic algorithm | 61 |
Literature reviews | 62 |
Methods | 64 |
Evaluation index system construction. | 64 |
Model specification. | 66 |
Results and discussions | 67 |
Vertical changes in water disclosure for paper and paper product companies. | 67 |
Changes in the vertical projection value of water information disclosure of paper and paper product companies. | 67 |
Changes in horizontal projection values of water information disclosure of paper and paper product companies. | 68 |
Analysis of legal regulations and policy influencing factors. | 72 |
Conclusions | 72 |
References | 73 |
Acknowledgements | 74 |
Papermaking Vol10 Nr2 2024 - Article 6 - Sustainability | 76 |
article 6 - sustainability-14-13536-v2 | 77 |
Introduction | 77 |
Materials and Methods | 78 |
Results and Discussion | 80 |
Effect of Single-Type Paper Waste (SPW) Substitution Proportion | 80 |
Effect of Paper Waste Mixture (PWM) Proportion | 82 |
Texture Change of PWM Slurry | 84 |
Effect of Declining Alkali Equivalent | 85 |
Conclusions | 85 |
References | 85 |
Papermaking Vol10 Nr2 2024 - Article 7 - Antibacterial MDF | 88 |
article 7 - 1-s2.0-S1387700323014776-main | 89 |
Production of environmentally friendly and antibacterial MDF (Medium-density fiberboard) surfaces with green synthesized na ... | 89 |
1 Introduction | 89 |
2 Experimental methods and materials | 90 |
2.1 Materials | 90 |
2.2 Green synthesis of silver nanoparticles | 91 |
2.3 Production of antibacterial MDFs | 91 |
2.4 Characterizations | 92 |
2.5 Performance tests | 92 |
2.6 Antibacterial activity | 94 |
3 Results and discussion | 95 |
3.1 Characterizations of silver nanoparticles | 95 |
3.2 X-ray diffraction analysis of MDF surfaces | 95 |
3.3 Microstructural characterzation of MDF surfaces | 95 |
3.4 Performance tests | 96 |
3.5 Antibacterial activity of MDF surfaces | 97 |
4 Conclusions | 98 |
Funding | 98 |
CRediT authorship contribution statement | 98 |
Declaration of competing interest | 98 |
Data availability | 98 |
References | 98 |
Papermaking Vol10 Nr2 2024 - Article 8 - Packaging | 101 |
article 8 - Packag Technol Sci - 2023 - Marinelli - Barrier converting and tray‐forming properties of paperboard packaging materials | 102 |
Barrier, converting, and tray-forming properties of paperboard packaging materials coated with waterborne dispersions | 102 |
1 INTRODUCTION | 102 |
2 MATERIALS AND METHODS | 103 |
2.1 Materials | 103 |
2.1.1 Substrate | 103 |
2.1.2 Experimental aqueous dispersions formulation | 103 |
2.1.3 Commercial aqueous dispersions | 104 |
2.2 Methods | 104 |
2.2.1 Sample preparation and preliminary characterization | 104 |
2.2.2 Mechanical properties | 104 |
2.2.3 Barrier properties | 104 |
2.2.4 Creasing | 105 |
2.2.5 Heat sealing | 105 |
2.2.6 Tray forming | 105 |
2.2.7 Statistical analysis | 106 |
3 RESULTS | 107 |
3.1 Sample preparation and preliminary characterization | 107 |
3.2 Mechanical properties | 107 |
3.3 Barrier properties | 108 |
3.4 Creasing | 110 |
3.5 Heat-sealing | 110 |
3.6 Tray forming | 114 |
4 CONCLUSIONS | 115 |
ACKNOWLEDGEMENTS | 116 |
DATA AVAILABILITY STATEMENT | 116 |
REFERENCES | 116 |
Papermaking Vol10 Nr2 2024 - Article 9 - Using X for Business | 119 |
Papermaking Vol10 Nr2 2024 - Article 10 - Eye Health | 121 |
Papermaking Vol10 Nr2 2024 - Article 11 - Sitting Posture | 124 |
Papermaking Vol10 Nr2 2024 - Article 12 - AI Apps for the Office | 129 |
Papermaking Vol10 Nr2 2024 - Products and Services | 136 |
Papermaking Vol10 Nr1 2024 - Events | 150 |
Papermaking Vol10 Nr2 2024 - Installations | 151 |
Papermaking Vol10 Nr2 2024 - Research Articles | 161 |
Papermaking Vol10 Nr2 2024 - Technical Abstracts | 166 |
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