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Zapytanie: THERMODYNAMICS FOR SUSTAINABLE MANAGEMENT OF NATURAL RESOURCES
Liczba odnalezionych rekordów: 16



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1/16
Nr opisu: 0000117120
"Input-output" approach to energy production systems.
[Aut.]: Andrzej** Ziębik.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 81-107, bibliogr. 38 poz. (Green Energy and Technology ; 1865-3529)

2/16
Nr opisu: 0000117129
Application of thermo-ecological cost (TEC) as sustainability measure for useful products.
[Aut.]: Wojciech Stanek, Jan** Szargut, Lucyna Czarnowska.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 473-488, bibliogr. 38 poz. (Green Energy and Technology ; 1865-3529)

3/16
Nr opisu: 0000117141
Application of thermo-economic analysis (TEA) to industrial ecology (IE).
[Aut.]: S. Usón, Wojciech Stanek.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 353-370, bibliogr. 16 poz. (Green Energy and Technology ; 1865-3529)

4/16
Nr opisu: 0000117132
Computable examples of the application of "input-output" models of energy production systems.
[Aut.]: Andrzej** Ziębik, Paweł* Gładysz.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 255-287, bibliogr. 18 poz. (Green Energy and Technology ; 1865-3529)

5/16
Nr opisu: 0000117117
Cumulative calculus and life cycle evaluation.
[Aut.]: Wojciech Stanek, Lucyna Czarnowska, Paweł* Gładysz.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 109-130, bibliogr. 55 poz. (Green Energy and Technology ; 1865-3529)

skumulowane zużycie egzergii ; skumulowane zużycie energii ; koszty egzergii ; ocena cyklu życia

cumulative exergy consumption ; cumulative energy consumption ; exergy cost ; life cycle assessment

6/16
Nr opisu: 0000117122
Cumulative green-house gasses (GHG) emissions as total measure of global warming potential.
[Aut.]: Ryszard** Białecki, Wojciech Stanek.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 473-488, bibliogr. 33 poz. (Green Energy and Technology ; 1865-3529)

7/16
Nr opisu: 0000117143
Exergo-ecological assessment of multi-generation energy systems.
[Aut.]: Wojciech Stanek, Wiesław Gazda, Wojciech Kostowski, S. Usón.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 405-442, bibliogr. 30 poz. (Green Energy and Technology ; 1865-3529)

koszty egzergii ; koszt termo-ekologiczny ; trójgeneracja ; odnawialne źródła energii ; odzysk energii

exergy cost ; thermo-ecological cost ; trigeneration ; renewable energy sources ; energy recovery

8/16
Nr opisu: 0000117131
Externalities burdening production processes and systems.
[Aut.]: Lucyna Czarnowska.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 233-252, bibliogr. 18 poz. (Green Energy and Technology ; 1865-3529)

9/16
Nr opisu: 0000117145
Fundamentals of exergy analysis.
[Aut.]: Wojciech Stanek, Jan** Szargut, S. Usón.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 37-80, bibliogr. 27 poz. (Green Energy and Technology ; 1865-3529)

10/16
Nr opisu: 0000117142
Integrating the thermo-ecological and exergy replacement costs to assess mineral processing.
[Aut.]: A. Dominguez, A. Valero, Wojciech Stanek.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 337-352, bibliogr. 21 poz. (Green Energy and Technology ; 1865-3529)

11/16
Nr opisu: 0000117130
Introduction.
[Aut.]: Wojciech Stanek.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 1-4 (Green Energy and Technology ; 1865-3529)

12/16
Nr opisu: 0000117134
Resources. Production. Depletion.
[Aut.]: Wojciech Stanek, A. Valero, G. Calvo, Lucyna Czarnowska.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 7-36, bibliogr. 61 poz. (Green Energy and Technology ; 1865-3529)

13/16
Nr opisu: 0000117144
Theory of exergy cost and thermo-ecological cost.
[Aut.]: A. Valero, S. Usón, C. Torres, Wojciech Stanek.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 167-202, bibliogr. 27 poz. (Green Energy and Technology ; 1865-3529)

termoekonomia ; koszty egzergii ; termoekologia ; koszt termoekologiczny

thermo-economics ; exergy cost ; thermo-ecology ; thermo-ecological cost

14/16
Nr opisu: 0000117119
Thermo-ecological evaluation of advanced coal-fired power technologies.
[Aut.]: Paweł* Gładysz, Andrzej** Ziębik.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 443-471, bibliogr. 38 poz. (Green Energy and Technology ; 1865-3529)

15/16
Nr opisu: 0000117146
Thermo-ecological system analysis as a tool supporting the analysis of the national energy and environmental policy.
[Aut.]: Andrzej** Ziębik, Wojciech Stanek, Paweł* Gładysz.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 489-510, bibliogr. 35 poz. (Green Energy and Technology ; 1865-3529)

16/16
Nr opisu: 0000117139
Thermodynamic methods to evaluate resources.
[Aut.]: Wojciech Stanek, A. Valero, A. Valero, J. Uche, G. Calvo.
W: Thermodynamics for sustainable management of natural resources. Ed. Wojciech Stanek. Cham : Springer International Publishing, 2017, s. 131-165, bibliogr. 40 poz. (Green Energy and Technology ; 1865-3529)

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