Showing 581 - 600 results of 695 for search '"textile"', query time: 0.06s Refine Results
  1. 581
  2. 582

    New sources of agriculturally valuable traits in hemp from the VIR collection for cultivar development by S. V. Grigoryev

    Published 2019-02-01
    “…The import of textiles to Russia has been observed to grow continuously, reaching $8.96 billion in 2016–2017. …”
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  3. 583
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    Factors Determining the Removal Efficiency of Procion MX in Waters Using Titanate Nanotubes Catalyzed by UV Irradiation by Vo Nguyen Xuan Que, Tran Tien Khoi, Nguyen Thi Thuy, Ta Thi Minh Dung, Dao Thi Thanh Binh, Nguyen Nhat Huy

    Published 2021-01-01
    “…The treatment of wastewater from the textile industry containing organic dyes faces many challenges since these compounds resist the biodegradation process in conventional treatment units. …”
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  6. 586

    PENGARUH LIKUIDITAS, PERPUTARAN MODAL KERJA, LEVERAGE, UKURAN PERUSAHAAN, TERHADAP PROFITABILITAS PADA PERUSAHAAN TEKSTIL DAN GARMEN DI BURSA EFEK INDONESIA by Wanda Dwi Saputri, Ni Putu Ayu Darmayanti

    Published 2025-01-01
    “…This research was conducted at textile and garment companies listed on the Indonesia Stock Exchange for the period 2020-2022, the sampling method used was the census method resulting in a total sample size of 18 companies with 3 (three) years of observation so that the number of observations was 54. …”
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    Article
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    Dual-Functional Fe<sub>3</sub>O<sub>4</sub>@SiO<sub>2</sub>/Ag/AgCl Nanocomposites as Photocatalyst for Degrading Methylene Blue Dye Under Natural Light Irradiation by Kha Minh Nguyen, Nga Ngan Pham, Hien Thi-Thu Tran, Son Truong Nguyen

    Published 2025-01-01
    “…The textile dyeing industry not only plays a crucial economic role in many nations but also significantly contributes to environmental pollution, particularly in aquatic environments. …”
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  10. 590
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    Energy-efficient Carbon-doped TiO2 for Visible Light Degradation of Methyl Orange: Preparation, Performance, and Mechanism by Xinying Han, Yubei Guo, Chien Yong Goh, Cheng Loong Ngan, Jian Ping Tan, Peng Chee Tan, Sin Yuan Lai

    Published 2024-12-01
    “…Water pollution caused by textile dyes has become a serious issue, making the treatment of sewage urgent. …”
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  13. 593

    Enhanced Photodecomposition of Methylene Blue in Water with Sr1−xKxTiO3−δ@PC-polyHIPEs under UV and Visible Light by Yonghua Gao, Tao Zhang, Qipeng Guo, Lizhen Gao

    Published 2018-01-01
    “…Photocatalytic method was investigated to remove water pollutant methylene blue (MB) produced in textile, plastic, and dye industries. PC-polyHIPEs were prepared by light-induced polymerization of dopamine in transparent polyHIPEs which were synthesized by polymerization within high internal phase emulsions. …”
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  14. 594

    Synthesis of MgFe2O4 Nanoparticles and its Application for Photodegradation of Methylene Blue by Dede Sukandar, Adawiah Adawiah, Saeful Rohman, Shella Fitria, Nanda Saridewi, Salman Farishi, Nurhasni Nurhasni, Isalmi Aziz, Yulyani Nur Azizah

    Published 2024-12-01
    “…Methylene blue wastewater from the paper, clothing, and textile industries can adversely affect aquatic ecosystems if improperly treated. …”
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    Article
  15. 595

    Adsorptive Removal of Rhodamine B Using Novel Adsorbent-Based Surfactant-Modified Alpha Alumina Nanoparticles by Thi Hai Yen Doan, Thi Phuong Minh Chu, Thi Diu Dinh, Thi Hang Nguyen, Thi Cam Tu Vo, Nhat Minh Nguyen, Bao Huy Nguyen, The An Nguyen, Tien Duc Pham

    Published 2020-01-01
    “…Very high RhB removal of greater than 98% after four regenerations of M1 and the maximum removal for all actual textile wastewater samples demonstrate that SDS-modified nano α-Al2O3 is a high-performance and reusable material for RhB removal from wastewater.…”
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  16. 596
  17. 597

    Response surface methodology and adaptive neuro-fuzzy inference system for adsorption of reactive orange 16 by hydrochar by J. Oliver Paul Nayagam, K. Prasanna

    Published 2023-07-01
    “…The results denote that the adaptive neuro-fuzzy inference system predicted the reactive orange 16 removal efficiency more accurately than the response surface methodology model.METHODS: Prosopis juliflora roots roots are converted into hydrochar to remove azo dye from textile waste water. Prosopis juliflora roots roots were collected from Ramanad District, Southern Tamil Nadu, India. …”
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  18. 598

    Emission Characteristics and Health Risk Assessment of Volatile Organic Compounds in Key Industries: A Case Study in the Central Plains of China by Fengwei Liu, Lei Tong, Qingyue Luo, Yufei Ling, Hongyi Gu, Yangchao Lv, Anwei Shi, Hui Liu, Hang Xiao, Cenyan Huang

    Published 2025-01-01
    “…The concentration of total VOCs emitted from the eight industries in order from large to small was as follows: packaging and printing > pharmaceutical > paint manufacturing > industrial coating > chemical industry > metal smelting > furniture manufacturing > textile printing and dyeing. In addition to industrial coating, the total VOCs and their corresponding ozone formation potential of organized emissions in seven industries (1.44–87.64, 1.52–181.61 mg/m<sup>3</sup>) were higher than those of unorganized emissions (0.38–24.17, 0.38–125.55 mg/m<sup>3</sup>). …”
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  19. 599

    Un service de table en bronze et argent soigneusement rangé dans une cave à Reims/Durocortorum by Michaël Brunet, Fabienne Médard, Magalie Cavé, Stéphane Sindonino

    Published 2022-11-01
    “…The study of the crockery organization alongside the textile data allows us to propose an overall reconstruction of the deposit. …”
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    Article
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