يعرض 1 - 19 نتائج من 19 نتيجة بحث عن '"Nano-minerals"', وقت الاستعلام: 0.41s تنقيح النتائج
  1. 1
  2. 2
    Academic Journal
  3. 3
    Academic Journal

    المساهمون: 16292065 - Motsei, Lebogang Ezra

    وصف الملف: application/pdf

    Relation: Mokone, B. et al. 2023. Growth, physiological performance, and pork quality of weaner large white piglets to different inclusion levels of nano zinc oxide. Tropical Animal Health and Production, 54:22. [https://doi.org/10.1007/s11250-021-03024-3]; 1573-7438 (Online); http://hdl.handle.net/10394/41715; https://doi.org/10.1007/s11250-021-03024-3

  4. 4
    Academic Journal
  5. 5
    Dissertation/ Thesis

    Thesis Advisors: Pérez López, Rafael, Lindsay, Matthew B. J., Nieto Liñán, José Miguel, Universidad de Huelva. Departamento de Geología

  6. 6
    Academic Journal
  7. 7
    Conference
  8. 8
    Academic Journal

    المؤلفون: Son, Hoang Nghia

    المساهمون: Đề tài VAST.TD.NANO.03/15-18, Viện Hàn lâm Khoa học và Công nghệ Việt Nam

    المصدر: TAP CHI SINH HOC; Vol 42, No 1 (2020) ; Academia Journal of Biology; Vol 42, No 1 (2020) ; 2615-9023

    وصف الملف: application/pdf

  9. 9
    Report

    وصف الملف: application/pdf

    Relation: Allard et al., 2004 T. Allard, N. Menguy, J. Salomon, T. Calligaro, T. Weber, G. Calas, M.F. Benedeti Revealing forms of iron in river-borne material from major tropical rivers of the Amazon Basin (Brazil) Geochim. Cosmochim. Acta, 68 (2004), pp. 3079-3094; Banfield and Zhang, 2001 J.F. Banfield, H. Zhang Nanoparticles in the environment Rev. Mineral. Geochem., 44 (2001), pp. 1-58; Cheng et al., 2021 Q. Cheng, H. Jiang, Z. Jin, Y. Zhao, L. Du Effects of Fe2O3 nanoparticles on extracellular polymeric substances and nonylphenol degradation in river sediment Sci. Total Environ., 770 (2021), p. 145210; Civeira et al., 2016ª M. Civeira, R.N. Pinheiro, A. Gredilla, S. de Vallejuelo, M.L.S. Oliveira, C.G. Ramos, S.R. Taffarel, R.M. Kautzmann, J.M. Madariaga, L.F.O. Silva The properties of the nano-minerals and hazardous elements: potential environmental impacts of brazilian coal waste fire. Sci Total Environ, 544 (2016), pp. 892-900, 10.1016/j.scitotenv.2015.12.026; Civeira et al., 2016b M. Civeira, C.G. Ramos, M.L.S. Oliveira, R.M. Kautzmann, Silvio R. Taffarel, E.C. Teixeira, L.F.O. Silva Nano-mineralogy of suspended sediment during the beginning of coal rejects spill Chemosphere, 145 (2016), pp. 142-147, 10.1016/j.chemosphere.2015.11.059; De Vallejuelo et al., 2017 S.F.O. De Vallejuelo, A. Gredilla, K. da Boit, E.C. Teixeira, C.H. Sampaio, J.M. Madariaga, L.F. Silva Nanominerals and potentially hazardous elements from coal cleaning rejects of abandoned mines: environmental impact and risk assessment Chemosphere, 169 (2017), pp. 725-733, 10.1016/j.chemosphere.2016.09.125; Fernandez-Maestre et al., 2018 R. Fernandez-Maestre, B. Johnson-Restrepo, J. Olivero-Verbel Heavy metals in sediments and fish in the Caribbean coast of Colombia: assessing the environmental risk International Journal of Environmental Research, 12 (2018), pp. 289-301; Gredilla et al., 2017 A. Gredilla, S.F.O. de Vallejuelo, L. Gomez-Nubla, J.A. Carrero, F.B. de Leão, J.M. Madariaga, L.F. Silva Are children playgrounds safe play areas? Inorganic analysis and lead isotope ratios for contamination assessment in recreational (Brazilian) Parks Environ. Sci. Pollut. Res., 24 (2017), pp. 333-345, 10.1007/s11356-017-9831-6; Huang et al., 2020 X. Huang, W. Kang, J. Guo, J. Hong, Q. Shen Highly reactive nanomineral assembly in soil colloids: implications for paddy soil carbon storage Sci. Total Environ., 703 (2020), p. 134728; Karaouzas et al., 2021 I. Karaouzas, N. Kapetanaki, A. Mentzafou, T.D. Kanellopoulos, N. Skoulikidis Heavy metal contamination status in Greek surface waters: a review with application and evaluation of pollution índices Chemosphere, 263 (2021), p. 128192; Li et al., 2020 D. Li, J.J. Zhang, G.Q. Wang, X.J. Wang, J.W. Wu Impact of changes in water management on hydrology and environment: a case study in North China J. Hydro-Environ. Res., 28 (2020), pp. 75-84; Linley et al., 2020 S. Linley, N.R. Thomson, K. McVey, K. Sra, F.X. Gu Factors affecting pluronic-coated iron oxide nanoparticle binding to petroleum hydrocarbon-impacted sediments Chemosphere, 254 (2020), p. 126732; Lu et al., 2011 P. Lu, N.T. Nuhfer, S. Kelly, Q. Li, H. Konishi, E. Elswick, C. Zhu Lead coprecipitation with iron oxyhydroxide nano-particles Geochim. Cosmochim. Acta, 75 (2011), pp. 4547-4561; OECD, 2012 OECD Environmental Outlook to 2050 (2012); Oliveira et al., 2019 M.L.S. Oliveira, B.K. Saikia, K. da Boit, B.F. Tutikian, L.F.O. Silva River dynamics and nanopaticles formation: a comprehensive study on the nanoparticle geochemistry of suspended sediments in the Magdalena River, Caribbean Industrial Area J. Clean. Prod., 213 (2019), pp. 819-824; Oliveira et al., 2021ª M.L.S. Oliveira, A. Neckel, D. Pinto, L.S. Maculan, M.R.D. Zanchett, L.F.O. Silva Air pollutants and their degradation of a historic building in the largest metropolitan area in Latin America Chemosphere, 277 (2021), p. 130286, 10.1016/j.chemosphere.2021.130286; Oliveira et al., 2021b Oliveira, M.L.S., Neckel, A., Silva, L.F.O., Dotto, G.L., Maculan, L.S., 2021b. Environmental aspects of the depreciation of the culturally significant wall of Cartagena de Indias – Colombia. Chemosphere 265, 129119–1. https://doi.org/10.1016/j.chemosphere.2020.129119.; Pompermaier et al., 2021 A. Pompermaier, A.C.C. Varela, M. Fortuna, E.C. Bortoluzzi, L.J.G. Barcellos Water and suspended sediment runoff from vineyard watersheds affecting the behavior and physiology of zebrafish Sci. Total Environ., 757 (2021), p. 143794; Raiswell et al., 2006 R. Raiswell, M. Tranter, L.G. Benning, M. Siegert, R. De'ath, P. Huybrechts, T. Payne Contributions from glacially derived sediment to the global iron (oxyhydr)oxide cycle: implications for iron delivery to the oceans Geochim. Cosmochim. Acta, 70 (2006), pp. 2765-2780; Rajaee and Jafari, 2020 T. Rajaee, H. Jafari Two decades on the artificial intelligence models advancement for modeling river sediment concentration: state-of-the-art J. Hydrol., 588 (2020), p. 125011; Rand et al., 2020 L.N. Rand, Y. Bi, A. Poustie, P. Westerhoff, J.F. Ranville Quantifying temporal and geographic variation in sunscreen and mineralogic titanium-containing nanoparticles in three recreational rivers Sci. Total Environ., 743 (2020), p. 140845; Ribeiro et al., 2010 J. Ribeiro, D. Flores, C. Ward, L.F.O. Silva Identification of nanominerals and nanoparticles in burning coal waste piles from Portugal Sci. Total Environ., 408 (2010), pp. 6032-6041; Ribeiro et al., 2013ª J. Ribeiro, K.A. Daboit, D. Flores, M.A. Kronbauer, L.F.O. Silva Extensive fe-sem/eds, hr-tem/eds and tof-Sims studies of micron- to nano-particles in anthracite fly ash Sci. Total Environ., 452-453 (2013), pp. 98-107; Ribeiro et al., 2013b J. Ribeiro, S.R. Taffarel, C.H. Sampaio, D. Flores, L.F.O. Silva Mineral speciation and fate of some hazardous contaminants in coal waste pile from anthracite mining in Portugal Int. J. Coal Geol., 109-110 (2013), pp. 15-23; Sagan et al., 2020 V. Sagan, K.T. Peterson, M. Maimaitijiang, S. Maalouf, C. Adams Monitoring inland water quality using remote sensing: potential and limitations of spectral indices, bio-optical simulations, machine learning, and cloud computing Earth Sci. Rev., 205 (2020), p. 103187; Silva et al., 2009 L.F.O. Silva, T. Moreno, X. Querol An introductory TEM study of Fe-nanominerals within coal fly ash Sci. Total Environ., 407 (2009), pp. 4972-4974; Silva et al., 2020 L.F.O. Silva, D. Pinto, A. Neckel, G.L. Dotto, M.L.S. Oliveira The impact of air pollution on the rate of degradation of the fortress of Florianópolis Island, Brazil Chemosphere, 251 (2020), p. 126838, 10.1016/j.chemosphere.2020.126838; Silva et al., 2021 L.F.O. Silva, M. Santosh, M. Schindler, J. Gasparotto, G.L. Dotto, M.L.S. Oliveira, M.F. Hochella Jr. Nanoparticles in fossil and mineral fuel sectors and their impact on environment and human health: a review and perspective Gondwana Res., 92 (184) (2021), p. 2021; Streit et al., 2021 A.F.M. Streit, G.C. Collazzo, S.P. Druzian, L.F.S. Oliveira, G.L. Dotto Adsorption of ibuprofen, ketoprofen, and paracetamol onto activated carbon prepared from effluent treatment plant sludge of the beverage industry Chemosphere, 262 (2021), p. 128322; Tejeda-Benítez et al., 2016 L. Tejeda-Benítez, R. Flegal, K. Odigie, J. Olivero-Verbel Pollution by metals and toxicity assessment using Caenorhabditis elegans in sediments from the Magdalena River, Colombia Environ. Pollut., 212 (2016), pp. 238-250; Tejeda-Benítez et al., 2018 L. Tejeda-Benítez, K. Noguera-Oviedo, D.S. Aga, J. Olivero-Verbel Toxicity profile of organic extracts from Magdalena River sediments Environ. Sci. Pollut. Res., 25 (2018), pp. 1519-1532; Tou et al., 2021 F. Tou, J. Wu, J. Fu, M. Liu, Y. Yang Titanium and zinc-containing nanoparticles in estuarine sediments: occurrence and their environmental implications Sci. Total Environ., 754 (2021), p. 142388; Van der Zee et al., 2003 C. Van der Zee, D.R. Roberts, D.G. Rancourt, C.P. Slomp Nanogoethite is the dominant reactive oxyhydroxide phase in lake and marine sediments Geology, 31 (2003), pp. 993-996; Wang, 2014 Y. Wang Nanogeochemistry: nanostructures, emergent properties and their control on geochemical reactions and mass transfers Chem. Geol., 378 (2014), pp. 1-23; Yin et al., 2020 Z. Yin, L. Song, Z. Lin, Z. Wang, W. Gao Granular activated carbon-supported titanium dioxide nanoparticles as an amendment for amending copper-contaminated sediments: effect on the pH in sediments and enzymatic activities Ecotoxicol. Environ. Saf., 206 (2020), p. 111325; https://hdl.handle.net/11323/8409; https://doi.org/10.1016/j.marpolbul.2021.112405; Corporación Universidad de la Costa; REDICUC - Repositorio CUC; https://repositorio.cuc.edu.co/

  10. 10
  11. 11
  12. 12
  13. 13
    Academic Journal
  14. 14
    Academic Journal

    المؤلفون: Junji Akai

    المصدر: Abstracts for Annual Meeting of the Mineralogical Society of Japan. 2004, :125

  15. 15
    Dissertation/ Thesis

    المؤلفون: Cruz Hernández, Pablo

    المساهمون: Pérez López, Rafael, Lindsay, Matthew B. J., Nieto Liñán, José Miguel, Universidad de Huelva. Departamento de Geología

  16. 16
    Electronic Resource
  17. 17
  18. 18
  19. 19