Showing 1,081 - 1,100 results of 1,590 for search '"petroleum"', query time: 0.05s Refine Results
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    Naphthenic Acids: Formation, Role in Emulsion Stability, and Recent Advances in Mass Spectrometry-Based Analytical Methods by Roselaine Facanali, Nathália de A. Porto, Juliana Crucello, Rogerio M. Carvalho, Boniek G. Vaz, Leandro W. Hantao

    Published 2021-01-01
    “…Naphthenic acids (NAs) are compounds naturally present in most petroleum sources comprised of complex mixtures with a highly variable composition depending on their origin. …”
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  3. 1083
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    Functionalized Bioadsorbent Application on Methylene Blue Removal From Wastewater—A Review by Jean B. Batchamen Mougnol, Sudesh Rathilal

    Published 2024-01-01
    “…Various industries such as petroleum, pharmaceuticals, textiles and households have been responsible for releasing MB into the environment. …”
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    Article
  6. 1086
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    Gas Hydrate Accumulation and Occurrence Associated with Cold Seep Systems in the Northern South China Sea: An Overview by Wei Zhang, Jinqiang Liang, Qianyong Liang, Jiangong Wei, Zhifeng Wan, Junxi Feng, Wei Huang, Jing Zhao, Miaomiao Meng, Wei Deng, Chongmin Chen

    Published 2021-01-01
    “…We also discuss the paragenetic relationship between the gas-bearing fluid and the seafloor morphology of cold seeps and the deep-shallow coupling of gas hydrates, cold seeps, and deep petroleum reservoirs. It is reasonable to conclude that the deep petroleum systems and gas-bearing fluid activity jointly control the development of cold seep systems and the accumulation of gas hydrates in the northern South China Sea. …”
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    Adsorption properties and competitive adsorption mechanism exhibited by carbon-nanotube-modified biochar for removal of crude oil and Ni(II) pollutants from water by Di Cao, Ruiyan Niu, Guanglu Mo, Huiwen Deng, Rui Liu, Jie Liu, Jialin Fan

    Published 2025-01-01
    “…This modified biochar was then used to adsorb petroleum and Ni(II) from aqueous solutions. Various physicochemical characterization techniques were employed, including SEM, BET analysis, FTIR, and XPS. …”
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    Article
  10. 1090

    Physicochemical characterization of biodegradable polymer polyhydroxybutyrate from halophilic bacterium local strain Halomonas elongata by W.O.S. Rizki, E. Ratnaningsih, D.G.T. Andini, S. Komariah, A.T. Simbara, R. Hertadi

    Published 2024-07-01
    “…BACKGROUND AND OBJECTIVES: Petroleum-based plastics produce tremendous amounts of plastic waste every year, which contributes to environmental problems. …”
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    Nanotechnology Role for the Production of Clean Fuel E-85 and Petrochemical Raw Materials by Iskander K. Basily, Amira L. Shafik, Ali A. Sarhan, Mona B. Mohamed

    Published 2012-01-01
    “…One of these approaches is the use of nanotechnology in the two-stage pyrolysis of petroleum residues of the heavy distillates separated from the Arabian crude oil. …”
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    Isolation of Karanjin from Pongamia Pinnata and Its Identification by Difference Analytical Techniques by Sushil Kumar Dhanmane, Faisal A. Salih

    Published 2018-07-01
    “…The seed oil was subjected to triple petroleum with continuously constant shaking for first 48 hours, 24 hours for each second and third extraction then separated under reduced pressure at 50?…”
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    Development of world oil refining in the context of the coronavirus pandemic by A. P. Solomonov

    Published 2023-03-01
    “…The serious changes observed in the structure of fuel production and consumption in the United States will have a significant impact on the development of the industry under study in the future, where there is already a shortage of refining capacity and unstable dynamics of prices for petroleum products. The introduction of additional capacities in the world oil refining, as noted in the article, will not have a significant positive impact on the oil product markets in the short term.…”
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  19. 1099

    Aviation Fueling: A Cleaner, Greener Approach by Robert C. Hendricks, Dennis M. Bushnell, Dale T. Shouse

    Published 2011-01-01
    “…Biofuels—sourced from halophytes, algae, cyanobacteria, and “weeds” using wastelands, waste water, and seawater—have the capacity to be drop-in fuel replacements for petroleum fuels. Biojet fuels from such sources solve the aviation CO2 emissions issue and do not compete with food or freshwater needs. …”
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