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  • Geotechnical Engineering and Applied Earth Sciences.  (1)
  • hydrido  (1)
  • 1
    Keywords: Geotechnical engineering. ; Chemistry, Technical. ; Management. ; Refuse and refuse disposal. ; Geotechnical Engineering and Applied Earth Sciences. ; Industrial Chemistry. ; Management. ; Waste Management/Waste Technology.
    Description / Table of Contents: Comparison of geotechnical characterization and resistance parameters obtained from CPT test and conventional laboratories in fluvial – lacustrine soils -- Characterization of Shear Strength and Compressibility of Diesel Contaminated Sand -- Utilization of solid waste derivative materials in soft soils re-engineering -- Oxides of Carbon Entrapment for Environmental Friendly Geomaterials Ash Derivation -- Treatment of clayey soils with steel furnace slag and lime for road construction in the south west of Iran.
    Abstract: The articles presented in this book deal with the attempts made by the scientists and practitioners to address contemporary issues in geoenvironmental engineering such as characterization of dredged sediments, geomaterials & waste, valorization of waste, sustainability in waste management, and some other geoenvironmental issues that are becoming quite relevant in today's world. With high urbanization rates, advancement in technologies, and changes in consumption behavior of people, wastes generated through the daily activities of individuals and organizations pose many challenges in their management. .
    Type of Medium: Online Resource
    Pages: XI, 151 p. 98 illus., 66 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030341992
    Series Statement: Sustainable Civil Infrastructures,
    DDC: 624.151
    Language: English
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  • 2
    ISSN: 1572-8862
    Keywords: Ruthenium and nickel ; mixed-metal ; carbonyl cluster ; molecular structure ; X-ray analysis ; hydrido ; redox condensation ; protonatiom anions ; Fourier techniques
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Redox condensation of [Ru3H(CO)11]- with Ni(CO)4, in tetrahydrofuran solution, under a nitrogen atmosphere, yields the tetranuclear anion [NiRuH(CO)11)-. Subsequent deprotonation with Bu'OK in acetonitrile solution leads to the formation of the related dianion. Both anions have been characterized by spectroscopic techniques, elemental analysis and single crystal X-ray diffraction. [PPh4][NiRu3H(CO)12] crystallizes in the triclinic space group PI with unit cell dimensionsof a = 11.842(2) Å,b = 12.335(3) Å, c = 13.3080) Å,a = 91.89(2)°,β = 93.35(1)°,y = 96.41(2)°, Z = 2, V= 1926.9(7) Å'. The NiRu3, metal core of the molecule defines a distorted tetrahedron with nine terminal and three edge bridging carbonyl groups. The hydrido ligand was located by difference Fourier techniques and was found to bridge the NiRu2 basal triangle at a distance of 0.88(6) A from this plane. Selected average distances and angles are: Ru-Ru = 2.839 Å, Ru-Ni = 2.640 Å, Ru-C, = 1.910 A,Ru-C b = 2.084 Å, Ni-C b = 2.022 Å, Ru-H = 1.77 Å, C-0, = 1.135 Å, C-O b = 1.159 Å, M-C-O, = 176.3°,M-C--O b = 139.3°;other distances are: Ni-C1 = l.758(7) Å, Ni-H= 1.85(7) Å. [NEt4]2[NiRu3(CO)12] crystallizes in the orthorhombic space group Pnma (no. 62) with unit cell dimensions ofa=20.247(5) Å,b = 15.038(4)Å,c = 12.079(3) Å, Z=4, V=3678(2) A'. The molecule contains a tetrahedral NiRu3 core with eight terminal and four edge bridging carbon monoxide groups which bridge the three Ni-Ru and one Ru-Ru bond. Average distances and angles are: Ru -Ru =2.3050A Ru-Ni 2.648 Å, Ru-C t = 1.878 Å, Ru-C b 2.045 Å, Ni-C b = 2.055 Å, C-O t = 1.145 Å, C-01,=1.157 Å, M-C-O,= 176.9°, M-C-O b = 138.6°; other distance is: Ni-C t = 1.754(10) Å,t = terminal,b = bridging.
    Type of Medium: Electronic Resource
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