Digital transformation of legionella-safe cooling towers: an ecosystem design approach
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[1] Lauren Torso Orkis. Cooling Tower Maintenance Practices and Legionella Prevalence, Allegheny County, Pennsylvania , 2017 .
[2] Bernhard Liebl,et al. Assessing the environmental health relevance of cooling towers--a systematic review of legionellosis outbreaks. , 2014, International journal of hygiene and environmental health.
[3] Christian F. Durach,et al. A New Paradigm for Systematic Literature Reviews in Supply Chain Management , 2017 .
[4] Kristin Walters,et al. PM 2.5 Airborne Particulates Near Frac Sand Operations. , 2015, Journal of environmental health.
[5] S. Sousa,et al. LegionellaDB - A Database on Legionella Outbreaks. , 2021, Trends in microbiology.
[6] Ludo Waltman,et al. Software survey: VOSviewer, a computer program for bibliometric mapping , 2009, Scientometrics.
[7] N. Uria,et al. New system for the detection of Legionella pneumophila in water samples. , 2018, Talanta.
[8] Barbara Bigliardi,et al. Industry 4.0: Emerging themes and future research avenues using a text mining approach , 2019, Comput. Ind..
[9] Samir Chatterjee,et al. A Design Science Research Methodology for Information Systems Research , 2008 .
[10] Fernando Deschamps,et al. Past, present and future of Industry 4.0 - a systematic literature review and research agenda proposal , 2017, Int. J. Prod. Res..
[11] A. Russo,et al. The unprecedented 2014 Legionnaires’ disease outbreak in Portugal: atmospheric driving mechanisms , 2018, International Journal of Biometeorology.
[12] Jorge Falorca. Envisioning a strategic framework to streamline building operation, sustainability and users’ disease control , 2020, Journal of Facilities Management.
[13] Alan R. Hevner,et al. Special Issue Editorial - Accumulation and Evolution of Design Knowledge in Design Science Research: A Journey Through Time and Space , 2020, J. Assoc. Inf. Syst..
[14] Andrés Núñez,et al. Preventing legionellosis outbreaks by a quick detection of airborne Legionella pneumophila , 2019, Environmental research.
[15] Antonio López-Quílez,et al. A probabilistic expert system for predicting the risk of Legionella in evaporative installations , 2011, Expert Syst. Appl..
[16] A. Mokhtarzadeh,et al. Bioassays: The best alternative for conventional methods in detection of Legionella pneumophila. , 2019, International journal of biological macromolecules.
[17] J. Walker. The influence of climate change on waterborne disease and Legionella: a review , 2018, Perspectives in public health.
[18] S. Faucher,et al. Unravelling the importance of the eukaryotic and bacterial communities and their relationship with Legionella spp. ecology in cooling towers: a complex network , 2020, Microbiome.
[19] N. Kozak-Muiznieks,et al. Legionnaires' Disease Outbreak at a Long-Term Care Facility Caused by a Cooling Tower Using an Automated Disinfection System--Ohio, 2013. , 2015, Journal of environmental health.
[20] Kalle Lyytinen,et al. Research Commentary - The New Organizing Logic of Digital Innovation: An Agenda for Information Systems Research , 2010, Inf. Syst. Res..
[21] B. M. Swalla,et al. Evaluation of Legiolert for Quantification of Legionella pneumophila from Non-potable Water , 2018, Current Microbiology.
[22] Mathias Weske,et al. Blockchains for Business Process Management - Challenges and Opportunities , 2017, ACM Trans. Manag. Inf. Syst..
[23] P. Weill,et al. Thriving in an increasingly digital ecosystem , 2015 .
[24] L. Araujo,et al. Product biographies in servitization and the circular economy , 2017 .
[25] Morteza Ghobakhloo,et al. The future of manufacturing industry: a strategic roadmap toward Industry 4.0 , 2018, Journal of Manufacturing Technology Management.
[26] L. Garrelly,et al. Development of a DGGE method to explore Legionella communities , 2020, Heliyon.
[27] Yingfeng Zhang,et al. CPS-Based Self-Adaptive Collaborative Control for Smart Production-Logistics Systems , 2020, IEEE Transactions on Cybernetics.
[28] B. Lal,et al. Development and Demonstration of Membrane to Control Potential Pathogen (Legionella sp.) Associated With Cooling Towers , 2020, Frontiers in Environmental Science.
[29] L. Ciric,et al. Controlling Legionella pneumophila in water systems at reduced hot water temperatures with copper and silver ionization. , 2019, American journal of infection control.
[30] D. Cimini,et al. Legionnaires’ Disease Outbreaks and Cooling Towers, New York City, New York, USA , 2017, Emerging infectious diseases.
[31] M. Iansiti,et al. The Truth about Blockchain , 2017 .
[32] C. Hadjichristodoulou,et al. Legionella species colonization in cooling towers: risk factors and assessment of control measures. , 2010, American journal of infection control.
[33] Jan Pries-Heje,et al. FEDS: a Framework for Evaluation in Design Science Research , 2016, Eur. J. Inf. Syst..
[34] Geographical variation of sporadic Legionnaires' disease analysed in a grid model , 2009, Epidemiology and Infection.
[35] Alan R. Hevner,et al. Design Science Research Contributions: Finding a Balance between Artifact and Theory , 2018, J. Assoc. Inf. Syst..
[36] A. Souissi,et al. Occupational health and safety in the industry 4.0 era: A cause for major concern? , 2018, Safety Science.
[37] Ruth Mugge,et al. The Design of Smart Product-Service Systems (PSSs): An Exploration of Design Characteristics , 2015 .
[38] Alan R. Hevner,et al. Design Science in Information Systems Research , 2004, MIS Q..
[39] Francesco Longo,et al. Blockchain-enabled supply chain: An experimental study , 2019, Comput. Ind. Eng..
[40] D. Rajaratnam,et al. Effective use of blockchain technology for facilities management procurement process , 2021 .
[41] Denis Kurle,et al. Cooling tower management in manufacturing companies: A cyber-physical system approach , 2019 .
[42] K. Oguma,et al. Inactivation of health-related microorganisms in water using UV light-emitting diodes , 2019, Water Supply.
[43] C. Turick,et al. The Impact of Storms on Legionella pneumophila in Cooling Tower Water, Implications for Human Health , 2020, Frontiers in Microbiology.
[44] H. C. van der Mei,et al. Two-Stage Interpretation of Changes in TEER of Intestinal Epithelial Layers Protected by Adhering Bifidobacteria During E. coli Challenges , 2020, Frontiers in Microbiology.
[45] Barry P. Haynes,et al. Predictive analytics in facilities management , 2019, Journal of Facilities Management.
[46] A. Çotuk,et al. Enumeration of Legionella pneumophila in cooling tower water systems , 2005, Environmental monitoring and assessment.
[47] R. Bentham,et al. Real-Time Continuous Surveillance of Temperature and Flow Events Presents a Novel Monitoring Approach for Hospital and Healthcare Water Distribution Systems , 2019, International journal of environmental research and public health.
[48] Yuya Kajikawa,et al. A review of the ecosystem concept — Towards coherent ecosystem design , 2017, Technological Forecasting and Social Change.
[49] Oscar Novo,et al. Blockchain Meets IoT: An Architecture for Scalable Access Management in IoT , 2018, IEEE Internet of Things Journal.
[50] P. Macreadie,et al. Reducing Emissions From Degraded Floodplain Wetlands , 2020, Frontiers in Environmental Science.
[51] Yuhui Sun,et al. Skin microbiota analysis-inspired development of novel anti-infectives , 2020, Microbiome.
[52] S. Cristino,et al. Industrial Cooling Tower Disinfection Treatment to Prevent Legionella spp. , 2017, International journal of environmental research and public health.
[53] P. Gething,et al. Mapping Geospatial Processes Affecting the Environmental Fate of Agricultural Pesticides in Africa , 2019, International journal of environmental research and public health.