Showing 301 - 320 results of 1,752 for search '"Blue"', query time: 0.07s Refine Results
  1. 301

    The Adsorption of Copper, Lead Metal Ions, and Methylene Blue Dye from Aqueous Solution by Pure and Treated Fennel Seeds by Ntandokazi Mabungela, Ntaote David Shooto, Fanyana Mtunzi, Eliazer Bobby Naidoo

    Published 2022-01-01
    “…This research work reports on pure and acid-treated fennel seed biomaterials for the removal of metal ions of copper Cu(II), lead Pb(II), and methylene blue (MB) dye from aqueous solution by batch adsorption. …”
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    Fast and Effective Route for Removing Methylene Blue from Aqueous Solution by Using Red Mud-Activated Graphite Composites by Ha Xuan Linh, Ngo Thi Thu, Tran Quoc Toan, Do Tra Huong, Bui Thanh Giang, Huynh Ky Phuong Ha, Hong-Tham T. Nguyen, N. T. K. Chung, Tri Khoa Nguyen, Nguyen Thanh Hai

    Published 2019-01-01
    “…The red mud-activated graphite composite was then used as an adsorbent for removing methylene blue from aqueous solution by the batch method. The effect of pH, contact time, adsorbent dosage, and the initial concentration of methylene blue was investigated. …”
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  8. 308

    Highly Selective Hg (II) Ion Detection Based on Linear Blue-Shift of the Maximum Absorption Wavelength of Silver Nanoparticles by Li Ping Wu, Hua Wen Zhao, Zhu Hong Qin, Xian Ying Zhao, Wen Dan Pu

    Published 2012-01-01
    “…When Hg (II) ions were added into AgNPs solution, the solution displayed rapid color change and blue shift of the maximum absorption wavelength (Δλ), which was in proportion to the Hg (II) ion concentration over the range of 2.0 × 10−7–6.0 × 10−6 mol/L, with detection limit (3σ) of 6.6 × 10−9 mol/L. …”
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    Article
  9. 309

    Recyclable Xanthan/TiO2 Composite Cryogels towards the Photodegradation of Cr(VI) Ions and Methylene Blue Dye by Paulo V. O. Toledo, Leandro R. Marques, Denise F. S. Petri

    Published 2019-01-01
    “…XG/TiO2 10% cryogels presented SD of (61±2) gwater/gcryogel, long-term stability in water, and outstanding photocatalytic properties in the presence of Cr(VI) ions and methylene blue (MB). The photocatalytic processes for the reduction of Cr(VI) to Cr(III) and for the photobleaching of MB fitted the first-order kinetic model, yielding rate constants of 0.019 varying min-1 and 0.0096 min-1, respectively. …”
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    Environmental Application of Telon Blue AGLF Adsorption on Sunflower Pulp: A Response Surface Methodology Approach and Kinetic Study by Ferda Gönen, Esra Köylü

    Published 2016-01-01
    “…The adsorptive removal of Telon Blue AGLF (TB AGLF) from aqueous solution using sunflower pulp was studied. …”
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  15. 315

    Adsorptive removal of methylene blue from aqueous solution using coal fly ash-derived mesoporous silica material by Ning Yuan, Hui Cai, Tian Liu, Qi Huang, Xinling Zhang

    Published 2019-05-01
    “…Furthermore, CFA-MS was evaluated for the adsorptive removal of methylene blue from aqueous solution. Several influence parameters on the removal of methylene blue including contact time, pH, initial concentration and temperature were studied in detail. …”
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    Evaluation of sieved biomass of Cicer arientinum (horse bean) for removal ofmethylene blue: batch study by Anandrao A Kale

    Published 2024-02-01
    Subjects: “…Methylene blue. Biosobent. Adsorbent. Adsorption. Sieved biomass S, II, , , , , , , , ,…”
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    Construction of a Multi-level Blue-Green Infrastructure Network in a Riverside City: A Case Study of Shaoxing by Meizi Zhou, Yong He, Zhi Qiu

    Published 2025-01-01
    “…The rapid expansion of urbanization has led to the destruction of water network structures and the degradation of ecosystem functions in riverside cities. Blue-green infrastructure (BGI) networks are recognized as a sustainable approach to urban planning. …”
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  20. 320

    The Effect of A2E on the Ca2+-PKC Signaling Pathway in Human RPE Cells Exposed to Blue Light by Maomei Luo, Shu Wang, Yun Tang, Chun Zeng, Shanjun Cai

    Published 2022-01-01
    “…The cells were divided into 5 groups: control cells (no A2E, no blue light), blue light-treated cells, blue light + chloroquine-treated cells, blue light + A2E-treated cells, and blue light + A2E + chloroquine-treated cells. …”
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