Manuel Johann Baumann : Citation Profile


Are you Manuel Johann Baumann?

Karlsruhe Institut für Technologie (50% share)
Universidade Nova de Lisboa (50% share)

3

H index

2

i10 index

108

Citations

RESEARCH PRODUCTION:

6

Articles

4

Papers

RESEARCH ACTIVITY:

   6 years (2012 - 2018). See details.
   Cites by year: 18
   Journals where Manuel Johann Baumann has often published
   Relations with other researchers
   Recent citing documents: 7.    Total self citations: 2 (1.82 %)

MORE DETAILS IN:
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   Permalink: http://citec.repec.org/pba1033
   Updated: 2024-01-16    RAS profile: 2019-05-09    
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Relations with other researchers


Works with:

Authors registered in RePEc who have co-authored more than one work in the last five years with Manuel Johann Baumann.

Is cited by:

Biekpe, Nicholas (4)

Asongu, Simplice (4)

Peters, Jens (4)

le Roux, Sara (3)

Moniz, António (3)

Perez, Yannick (2)

Brem, Alexander (1)

Ozturk, Ilhan (1)

GARCÍA MORALES, VÍCTOR (1)

Lin, Boqiang (1)

Ntuli, Herbert (1)

Cites to:

Moniz, António (8)

Paulos, Margarida (6)

Walls, Margaret (2)

Parry, Ian (2)

Krings, Bettina (2)

Percoco, Marco (2)

Vance, Colin (1)

Klemperer, Paul (1)

Foxon, Timothy (1)

Anderson, David (1)

Fournier, Guy (1)

Main data


Where Manuel Johann Baumann has published?


Journals with more than one article published# docs
Enterprise and Work Innovation Studies3

Working Papers Series with more than one paper published# docs
IET Working Papers Series / Universidade Nova de Lisboa, IET/CICS.NOVA-Interdisciplinary Centre on Social Sciences, Faculty of Science and Technology4

Recent works citing Manuel Johann Baumann (2024 and 2023)


YearTitle of citing document
2023Accurate energy consumption for comparison of climate change impact of thermal and electric vehicles. (2023). Sirbu, G M ; Castex, E ; Hittinger, E ; Trigui, R ; Bouscayrol, A ; Desreveaux, A. In: Energy. RePEc:eee:energy:v:268:y:2023:i:c:s0360544223000312.

Full description at Econpapers || Download paper

2023Life cycle greenhouse gas emissions of cogeneration energy hubs at Japanese paper mills with thermal energy storage. (2023). Kikuchi, Yasunori ; Kanematsu, Yuichiro ; Fujii, Shoma ; Yamaki, Ayumi. In: Energy. RePEc:eee:energy:v:270:y:2023:i:c:s0360544223002803.

Full description at Econpapers || Download paper

2023Opportunities and economic assessment for a third-party delivering electricity, heat and cold to residential buildings. (2023). Serra, Luis M ; Franquet, Erwin ; Gronier, Timothe ; Pinto, Edwin S. In: Energy. RePEc:eee:energy:v:272:y:2023:i:c:s0360544223004139.

Full description at Econpapers || Download paper

2023Smart energy systems for renewable energy communities: A comparative analysis of power-to-X strategies for improving energy self-consumption. (2023). de Santoli, Livio ; Ricciardi, Guido ; lo Basso, Gianluigi ; Pastore, Lorenzo Mario. In: Energy. RePEc:eee:energy:v:280:y:2023:i:c:s0360544223015992.

Full description at Econpapers || Download paper

2023Carbon benefits of different energy storage alternative end uses. Application to the Spanish case. (2023). Perula, Alberto ; Gamarra, Ana Rosa ; Herrera, Israel ; Lago, Carmen ; Lechon, Yolanda. In: Renewable and Sustainable Energy Reviews. RePEc:eee:rensus:v:171:y:2023:i:c:s1364032122008668.

Full description at Econpapers || Download paper

2023Comprehensive evaluation on production and recycling of lithium-ion batteries: A critical review. (2023). Sun, LI ; Lv, Longyi ; Zhang, Guangming ; Yan, Wenyi ; Li, Huajie ; Ren, Zhijun ; Gao, Wenfang. In: Renewable and Sustainable Energy Reviews. RePEc:eee:rensus:v:185:y:2023:i:c:s1364032123004422.

Full description at Econpapers || Download paper

2023ESG and Industry 5.0: The role of technologies in enhancing ESG disclosure. (2023). Castka, Pavel ; Searcy, Cory ; Asif, Muhammad. In: Technological Forecasting and Social Change. RePEc:eee:tefoso:v:195:y:2023:i:c:s0040162523004912.

Full description at Econpapers || Download paper

Works by Manuel Johann Baumann:


YearTitleTypeCited
2017The environmental impact of Li-Ion batteries and the role of key parameters – A review In: Renewable and Sustainable Energy Reviews.
[Full Text][Citation analysis]
article86
2017Exploring emerging battery technology for grid-connected energy storage with Constructive Technology Assessment In: Technological Forecasting and Social Change.
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article16
2018Innovative mobility in rural areas - the case of the Black Forest In: International Journal of Automotive Technology and Management.
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article1
2012The new mobility paradigm: Transformation of value chain and business models In: Enterprise and Work Innovation Studies.
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article3
2012Renewable Energy Systems: the theme for the PACITA summer school on TA, Liège, Belgium, 25 28 June 2012 In: Enterprise and Work Innovation Studies.
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article0
2013Prospective system analysis of stationary battery systems under the frame of Constructive Technology Assessment In: Enterprise and Work Innovation Studies.
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article1
2013A constructive technology assessment of stationary energy storage systems: prospective life cycle orientated analysis In: IET Working Papers Series.
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paper1
2013Technology transition towards electric mobility - technology assessment as a tool for policy design In: IET Working Papers Series.
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paper0
2015Historic and potential technology transition paths of grid battery storage: Co-evolution of energy grid, electric mobility and batteries In: IET Working Papers Series.
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paper0
2015Analysis of a controversial decision process: the case of the pumped hydro storage power plant Atdorf in Germany In: IET Working Papers Series.
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paper0

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