POLIAKRILAT PADA BENANG KATUN SEBAGAI SOLUSI PENENUNAN PADA KONDISI KELEMBABAN RENDAH
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hmed, T., Mia, R., Ishraque Toki, G. F., Jahan, J., Hasan, M. M., Saleh Tasin, M. A., Farsee, M. S., & Ahmed, S. (2021). Evaluation of sizing parameters on cotton using the modified sizing agent. Cleaner Engineering and Technology, 5, 100320. https://doi.org/10.1016/j.clet.2021.100320
Al, A., Shikder21, R., Shikder, R., Hossen, J., Humayun, E. M., & Khan, K. (2025). Sizing Efficiency and Cost Reduction Strategies in Woven Fabric Manufacturing: a Case Study. Journal of Engineering, Management and Information Technology Vol., 03(01), 21–28. https://doi.org/10.61552/JEMIT.2025.01.003
Amanuel, L., Dessie, A., & Alebachew, A. (2024). Cotton pigment printing and characterization from post-consumer lemon peel pectin binder. Journal of Engineered Fibers and Fabrics, 19. https://doi.org/10.1177/15589250241251465
Anik, H. R., Tushar, S. I., Mahmud, S., Khadem, A. H., Sen, P., & Akter, M. (2024). Into the Revolution of NanoFusion: Merging High Performance and Aesthetics by Nanomaterials in Textile Finishes. Advanced Materials Interfaces, 2400368. https://doi.org/10.1002/admi.202400368
Bastola, A., He, Y., Im, J., Rivers, G., Wang, F., Worsley, R., Austin, J. S., Nelson-Dummett, O., Wildman, R. D., & Hague, R. (2023). Formulation of functional materials for inkjet printing: A pathway towards fully 3D printed electronics. Materials Today Electronics, 6, 100058.
Bidu, J. M., van der Bruggen, B., Rwiza, M. J., & Njau, K. N. (2021). Current status of textile wastewater management practices and effluent characteristics in Tanzania. Water Science and Technology, 83(10), 2363–2376. https://doi.org/10.2166/wst.2021.133
Gardiner, A., Daly, P., Domingo-Roca, R., Windmill, J. F. C., Feeney, A., & Jackson-Camargo, J. C. (2021). Additive manufacture of small-scale metamaterial structures for acoustic and ultrasonic applications. Micromachines, 12(6). https://doi.org/10.3390/mi12060634
Gunwant, D. (2025). Interfacial strengthening in bio-inspired materials: a review. Composite Interfaces, 32(4), 509–585.
Kirillova, A., Yeazel, T. R., Asheghali, D., Petersen, S. R., Dort, S., Gall, K., & Becker, M. L. (2021). Fabrication of biomedical scaffolds using biodegradable polymers. Chemical Reviews, 121(18), 11238–11304.
Kovačević, S., Schwarz, I., Dordević, S., & Dordević, D. (2019). Synthetized potato starch-A new eco sizing agent for cotton yarns. Polymers, 11(5). https://doi.org/10.3390/polym11050908
Li, H., Aguirre-Villegas, H. A., Allen, R. D., Bai, X., Benson, C. H., Beckham, G. T., Bradshaw, S. L., Brown, J. L., Brown, R. C., Cecon, V. S., Curley, J. B., Curtzwiler, G. W., Dong, S., Gaddameedi, S., García, J. E., Hermans, I., Kim, M. S., Ma, J., Mark, L. O., … Huber, G. W. (2022). Expanding plastics recycling technologies: chemical aspects, technology status and challenges. Green Chemistry, 24(23), 8899–9002. https://doi.org/10.1039/d2gc02588d
Omidian, H., Akhzarmehr, A., & Chowdhury, S. D. (2024). Advancements in Cellulose-Based Superabsorbent Hydrogels :
Palacios-Marín, A. V., & Tausif, M. (2021). Fragmented fibre (including microplastic) pollution from textiles. Textile Progress, 53(3), 123–182. https://doi.org/10.1080/00405167.2022.2066913
Patti, A., & Acierno, D. (2022). Towards the Sustainability of the Plastic Industry through Biopolymers: Properties and Potential Applications to the Textiles World. Polymers, 14(4). https://doi.org/10.3390/polym14040692
Rahman, M. S., Hasan, M. S., Nitai, A. S., Nam, S., Karmakar, A. K., Ahsan, M. S., Shiddiky, M. J. A., & Ahmed, M. B. (2021). Recent developments of carboxymethyl cellulose. Polymers, 13(8). https://doi.org/10.3390/polym13081345
Rosa, R. P., Rosace, G., & Trovato, V. (2024). Recent Advancements in Acrylic Fabric Applications: A Comprehensive Review and Future Trends. Polymers, 16(15), 2111.
Saty, M. Y. H., Abdalla, I., Sarkodie, B., Farooq, A., Elhassan, A., Wang, Y., & Xu, Z. (2024). Recent advances of preparing structure-enhanced conductive yarns to control their performance in potential applications. Textile Research Journal, May 2025. https://doi.org/10.1177/00405175241253867
Shen, Y., Yao, Y., Wang, Z., & Wu, H. (2021). Hydroxypropylation reduces gelatinization temperature of corn starch for textile sizing. Cellulose, 28(8), 5123–5134. https://doi.org/10.1007/s10570-021-03852-4
Sinha, S. (2022). Biopolymer derived superabsorbent for environmental sustainability: A review. Environmental Quality Management, 32(2), 177–185.
Solera-Sendra, J., Ballard, N., del Valle, L. J., & Franco, L. (2025). Recent Advances in Combining Waterborne Acrylic Dispersions with Biopolymers. Polymers, 17(8). https://doi.org/10.3390/polym17081027
Sun, X., Wang, X., Sun, F., Tian, M., Qu, L., Perry, P., Owens, H., & Liu, X. (2021). Textile Waste Fiber Regeneration via a Green Chemistry Approach: A Molecular Strategy for Sustainable Fashion. Advanced Materials, 33(48). https://doi.org/10.1002/adma.202105174
Wu, H., Shen, Y., Yao, Y., & Zhang, B. (2021). Size formulations for cotton yarn weaving at lower relative humidity. Textile Research Journal, 91(1–2), 168–174. https://doi.org/10.1177/0040517520934880
Yang, Y., Zhang, M., Ju, Z., Tam, P. Y., Hua, T., & Waseem, M. (2021). This is the Pre-Published Version . Poly ( lactic acid ) fibres , yarns and fabrics : manufacture , properties and applications. 91, 1641–1669. https://doi.org/10.1177/0040517520984101.This
Zhou, L., Miller, J., Vezza, J., Mayster, M., Raffay, M., Justice, Q., Al Tamimi, Z.,
DOI: https://doi.org/10.53298/texere.v23i2.03
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| e-ISSN | 2774-1893 |
| p‐ISSN | 1411-3090 |
| Penerbit | Politeknik STTT Bandung |
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