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| Both sides previous revision Previous revision Next revision | Previous revision | ||
| refnotes:bib [2026/03/28 09:12] – team3 | refnotes:bib [2026/04/10 22:39] (current) – team3 | ||
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| Line 8: | Line 8: | ||
| url = {https:// | url = {https:// | ||
| address = " | address = " | ||
| - | author = {Jayavardhana Gubbi; Rajkumar Buyya; Slaven Marusic; Marimuthu Palaniswami}, | + | author = {Jayavardhana Gubbi and Rajkumar Buyya and Slaven Marusic |
| keywords = {Internet of Things; Ubiquitous sensing; Cloud Computing; Wireless Sensor Networks; RFID; Smart Environments}, | keywords = {Internet of Things; Ubiquitous sensing; Cloud Computing; Wireless Sensor Networks; RFID; Smart Environments}, | ||
| abstract = {Ubiquitous sensing enabled by Wireless Sensor Network (WSN) technologies cuts across many areas of modern day living. This offers the ability to measure, infer and understand environmental indicators, from delicate ecologies and natural resources to urban environments. The proliferation of these devices in a communicating-actuating network creates the Internet of Things (IoT), wherein, sensors and actuators blend seamlessly with the environment around us, and the information is shared across platforms in order to develop a common operating picture (COP). Fuelled by the recent adaptation of a variety of enabling device technologies | abstract = {Ubiquitous sensing enabled by Wireless Sensor Network (WSN) technologies cuts across many areas of modern day living. This offers the ability to measure, infer and understand environmental indicators, from delicate ecologies and natural resources to urban environments. The proliferation of these devices in a communicating-actuating network creates the Internet of Things (IoT), wherein, sensors and actuators blend seamlessly with the environment around us, and the information is shared across platforms in order to develop a common operating picture (COP). Fuelled by the recent adaptation of a variety of enabling device technologies | ||
| Line 20: | Line 20: | ||
| year = {2010}, | year = {2010}, | ||
| publisher = " | publisher = " | ||
| - | issn = " | + | issn = " |
| - | doi = " | + | doi = " |
| - | url = {https:// | + | url = {https:// |
| - | address = " | + | address = " |
| - | author = {Barry M. Popkin; Kristen E. D’Anci; Irwin H. Rosenberg}, | + | author = {Barry M. Popkin |
| keywords = {water; hydration; water intake; water measurement; | keywords = {water; hydration; water intake; water measurement; | ||
| interventions and no published random-controlled longer-term trials. We suggest some ways to examine water requirements as a means to encouraging more dialogue on this important topic.} | interventions and no published random-controlled longer-term trials. We suggest some ways to examine water requirements as a means to encouraging more dialogue on this important topic.} | ||
| Line 34: | Line 34: | ||
| year = {2014}, | year = {2014}, | ||
| publisher = " | publisher = " | ||
| - | ISBN = " | + | ISBN = " |
| - | doi = " | + | doi = " |
| - | url = {https:// | + | url = {https:// |
| - | address = " | + | address = " |
| - | author = {Bo Dong; Ryan Gallant; Subir Biswa}, | + | author = {Bo Dong and Ryan Gallant |
| keywords = {Liquid Intake Monitoring, Smart Bottle, Accelerometer, | keywords = {Liquid Intake Monitoring, Smart Bottle, Accelerometer, | ||
| Connected Health}, | Connected Health}, | ||
| Line 46: | Line 46: | ||
| @article{Sun2017, | @article{Sun2017, | ||
| title = {The Cleanliness of Reusable Water Bottles: How Contamination Levels are Affected by Bottle Usage and Cleaning Behaviors of Bottle Owners}, | title = {The Cleanliness of Reusable Water Bottles: How Contamination Levels are Affected by Bottle Usage and Cleaning Behaviors of Bottle Owners}, | ||
| - | journal = Food Protection Trends | + | journal = {Food Protection Trends}, |
| year = {2017}, | year = {2017}, | ||
| publisher=" | publisher=" | ||
| - | page = "392–402", | + | page = {392-–402}, |
| - | url = {https:// | + | url = {https:// |
| - | | + | address = " |
| - | author = {Xiaodi Sun; Jooho Kim; Carl Behnke; Barbara Almanza; Christine Greene; Jesse Miller; Bryan Schindler}, | + | author = {Xiaodi Sun and Jooho Kim and Carl Behnke |
| abstract = {Reusable water bottles are growing in popularity, but consumers regularly refill bottles without a corresponding effort at cleaning them. If the difficulties associated with various bottle designs and materials are added in, it is clear that improperly cleaned water bottles may present a potential contamination risk and thus be a risk for foodborne illness. The purpose of this study was to measure contamination levels of water bottles that are in use and to | abstract = {Reusable water bottles are growing in popularity, but consumers regularly refill bottles without a corresponding effort at cleaning them. If the difficulties associated with various bottle designs and materials are added in, it is clear that improperly cleaned water bottles may present a potential contamination risk and thus be a risk for foodborne illness. The purpose of this study was to measure contamination levels of water bottles that are in use and to | ||
| investigate bottle usage and cleaning behaviors by collecting survey data from the bottle owners. Total organic materials on the exterior surface and coliform and heterotrophic bacteria on the interior surface were enumerated, using ATP bioluminescence and the agar plate count method, respectively. The HPC and coliform results revealed a marked microbial contamination level among reusable water bottles that are in use, and the ATP levels suggest that the exterior bottle surfaces may serve as fomites that facilitate the transmission of infectious organisms. The contamination level can be affected by factors such as bottle material, refill frequency, beverage type, and cleaning behavior.} | investigate bottle usage and cleaning behaviors by collecting survey data from the bottle owners. Total organic materials on the exterior surface and coliform and heterotrophic bacteria on the interior surface were enumerated, using ATP bioluminescence and the agar plate count method, respectively. The HPC and coliform results revealed a marked microbial contamination level among reusable water bottles that are in use, and the ATP levels suggest that the exterior bottle surfaces may serve as fomites that facilitate the transmission of infectious organisms. The contamination level can be affected by factors such as bottle material, refill frequency, beverage type, and cleaning behavior.} | ||
| Line 60: | Line 60: | ||
| title = {Heterotrophic Plate Count Measurement in Drinking Water Safety Management}, | title = {Heterotrophic Plate Count Measurement in Drinking Water Safety Management}, | ||
| year = {2002}, | year = {2002}, | ||
| - | jounal | + | journal |
| - | publisher=" | + | publisher = "World Health Organization Sustainable Development and Healthy Environments", |
| - | url = "https:// | + | url = {https:// |
| - | address = " | + | address = " |
| author = {J. Bartram}, | author = {J. Bartram}, | ||
| } | } | ||
| Line 69: | Line 69: | ||
| @article{WHO2017, | @article{WHO2017, | ||
| title = {Guidelines for drinking-water quality, 4th edition, incorporating the 1st addendum}, | title = {Guidelines for drinking-water quality, 4th edition, incorporating the 1st addendum}, | ||
| - | edition = " | + | edition = " |
| year = {2017}, | year = {2017}, | ||
| - | publisher=" | ||
| ISBN = "ISBN: 978-92-4-154995-0", | ISBN = "ISBN: 978-92-4-154995-0", | ||
| - | | + | url = {https:// |
| - | address = " | + | address = " |
| author = {World Health Organization}, | author = {World Health Organization}, | ||
| - | page = "117 - 153", | + | page = {117--153}, |
| keywords = {Liquid Intake Monitoring, Smart Bottle, Accelerometer, | keywords = {Liquid Intake Monitoring, Smart Bottle, Accelerometer, | ||
| Connected Health}, | Connected Health}, | ||
| - | abstract = {The fourth edition of the World Health Organization’s (WHO) Guidelines for drinking-water quality (GDWQ) builds on over 50 years of guidance by WHO on drinking-water quality, which has formed an authoritative basis for the setting of national regulations and standards for water safety in support of public | + | abstract = {The fourth edition of the World Health Organization’s (WHO) Guidelines for drinking-water quality (GDWQ) builds on over 50 years of guidance by WHO on drinking-water quality, which has formed an authoritative basis for the setting of national regulations and standards for water safety in support of public |
| - | This first addendum updates the fourth edition. Updates reflect new evidence and further, provides additional explanations to support better understanding and application of the guidance.} | + | |
| } | } | ||
| Line 87: | Line 85: | ||
| journal = " | journal = " | ||
| year = {2025}, | year = {2025}, | ||
| - | publisher=" | + | publisher = " |
| - | page = " | + | page = "1269--1273", |
| ISSN = " | ISSN = " | ||
| - | | + | doi = {https:// |
| - | url = "https:// | + | url = {https:// |
| - | address = " | + | address = " |
| - | author = {Dr. Ananta Jadhav; Dr. Kirti Sarkate; Dr. Sangita Phatale}, | + | author = {Dr. Ananta Jadhav |
| keywords = {Total Dissolved Solids (TDS), Purified Water, Raw Water}, | keywords = {Total Dissolved Solids (TDS), Purified Water, Raw Water}, | ||
| abstract = {Introduction: | abstract = {Introduction: | ||
| Line 101: | Line 99: | ||
| title = {Water Intake, Body Water Regulation and Health}, | title = {Water Intake, Body Water Regulation and Health}, | ||
| journal = " | journal = " | ||
| - | page = "702", | + | page = {702}, |
| year = {2020}, | year = {2020}, | ||
| publisher=" | publisher=" | ||
| - | ISBN = " | + | ISBN = " |
| - | doi = " | + | doi = " |
| - | url = "https://ieeexplore.ieee.org/abstract/document/7038937" | + | url = {https://pmc.ncbi.nlm.nih.gov/articles/PMC7146267/}, |
| - | address = " | + | address = " |
| - | author = {van C. Johnson; William M. Adams}, | + | author = {van C. Johnson |
| keywords = {water-electrolyte balance; drinking water; body water; water restriction; | keywords = {water-electrolyte balance; drinking water; body water; water restriction; | ||
| abstract = {The purpose of this Special Issue, “Water Intake, Body Water Regulation, and Health”, is to present novel reviews and experimental data regarding hydration physiology and its implication in overall health. Water has previously been dubbed the forgotten nutrient due to humans’ and animals’ ability to subsist seemingly unchanged across a wide range of daily water intakes. However, with the introduction of stressors such as exercise, diseased states, and/or chronic high or low water intake, the homeostatic signals related to body water regulation can influence organ and whole-body health. This Special Issue will discuss water intake, the scientific rationale surrounding the U.S. and European water intake guidelines, homeostatic mechanisms, diseases related to dysfunction of water regulation, and differences in the volume and the vehicle in which the water is contained (i.e., plain water versus mixed beverages) on water intake during and following exercise. The aim is to continue discussion surrounding water, the previously forgotten nutrient, and highlight the importance of water in daily life.} | abstract = {The purpose of this Special Issue, “Water Intake, Body Water Regulation, and Health”, is to present novel reviews and experimental data regarding hydration physiology and its implication in overall health. Water has previously been dubbed the forgotten nutrient due to humans’ and animals’ ability to subsist seemingly unchanged across a wide range of daily water intakes. However, with the introduction of stressors such as exercise, diseased states, and/or chronic high or low water intake, the homeostatic signals related to body water regulation can influence organ and whole-body health. This Special Issue will discuss water intake, the scientific rationale surrounding the U.S. and European water intake guidelines, homeostatic mechanisms, diseases related to dysfunction of water regulation, and differences in the volume and the vehicle in which the water is contained (i.e., plain water versus mixed beverages) on water intake during and following exercise. The aim is to continue discussion surrounding water, the previously forgotten nutrient, and highlight the importance of water in daily life.} | ||
| Line 164: | Line 162: | ||
| title = {A Randomized Trial Evaluating the Use of a Smart Water Bottle to Increase Fluid Intake in Stone Formers}, | title = {A Randomized Trial Evaluating the Use of a Smart Water Bottle to Increase Fluid Intake in Stone Formers}, | ||
| year = {2022}, | year = {2022}, | ||
| - | publisher=" | + | publisher = " |
| PMID = " | PMID = " | ||
| - | | + | doi = " |
| - | url = "https:// | + | url = {https:// |
| - | address = " | + | address = " |
| - | author = {Thomas E. Stout; James E. Lingeman; Amy E. Krambeck; Mitchell R. Humphreys; Anna Zisman; Sarah Elfering; Tim Large; Philipp Dahm; Michael Borofsky}, | + | author = {Thomas E. Stout and James E. Lingeman |
| keywords = {}, | keywords = {}, | ||
| abstract = {Objective: The aim of this study is to evaluate if the use of a smart water bottle improves urine volume in stone forming patients. | abstract = {Objective: The aim of this study is to evaluate if the use of a smart water bottle improves urine volume in stone forming patients. | ||
| Line 176: | Line 174: | ||
| } | } | ||
| - | @InProceedings{Chena 2023, | + | @InProceedings{Chena2023, |
| title = {Effects of Smart Bottles on Water Consumption and Health Status of College Students}, | title = {Effects of Smart Bottles on Water Consumption and Health Status of College Students}, | ||
| year = {2023}, | year = {2023}, | ||
| publisher=" | publisher=" | ||
| - | | + | doi = " |
| - | url = "https:// | + | url = {https:// |
| - | address = " | + | address = " |
| - | author = {YuChun Chena; Farrah Castleman}, | + | author = {YuChun Chena and Farrah Castleman}, |
| keywords = {Hydration, Behavioral Strategies, Environmental Prompts, Smart Devices}, | keywords = {Hydration, Behavioral Strategies, Environmental Prompts, Smart Devices}, | ||
| abstract = {Hydration is important to a human body because it helps regulate body temperature, | abstract = {Hydration is important to a human body because it helps regulate body temperature, | ||
| Line 193: | Line 191: | ||
| publisher = " | publisher = " | ||
| ISSN = " | ISSN = " | ||
| - | | + | url = {https:// |
| - | address = " | + | address = " |
| - | author = {Mrs. Kavya M. Divakar; Pavan Kumar; Prajwal Naik; Moed Taha} | + | author = {Mrs. Kavya M. Divakar |
| keywords = {Hydration Tracking, Level Detection Monitoring, Temperature Monitoring, Water Quality Sensors, Solar Charging | keywords = {Hydration Tracking, Level Detection Monitoring, Temperature Monitoring, Water Quality Sensors, Solar Charging | ||
| - | Technology, Bottle Locator, Mobile App Integration.} | + | Technology, Bottle Locator, Mobile App Integration.}, |
| abstract = {The origin of life is water, and harmonious water consumption is essential for the proper functioning of mortal organs. | abstract = {The origin of life is water, and harmonious water consumption is essential for the proper functioning of mortal organs. | ||
| But with busy schedules of humans and endless distractions, | But with busy schedules of humans and endless distractions, | ||
| Line 206: | Line 204: | ||
| quotidian amount of water consumed, average amount of water consumed, last water input time and also advise the user | quotidian amount of water consumed, average amount of water consumed, last water input time and also advise the user | ||
| reminding him to drink water. Further the Adafruit Io operation which is an IOT predicated platform is used for monitoring and | reminding him to drink water. Further the Adafruit Io operation which is an IOT predicated platform is used for monitoring and | ||
| - | helping user to assay his water input habits.} | + | helping user to assay his water input habits.}, |
| } | } | ||
| Line 214: | Line 212: | ||
| year = {2021}, | year = {2021}, | ||
| publisher=" | publisher=" | ||
| - | | + | url = {https:// |
| - | address = " | + | address = " |
| - | author = {Ryan Koons, Dean Pickett, Neeil Gandhi, Matthew Woodruff}, | + | author = {Ryan Koons and Dean Pickett |
| } | } | ||
| Line 223: | Line 221: | ||
| year = {2021}, | year = {2021}, | ||
| publisher=" | publisher=" | ||
| - | | + | url = {https:// |
| - | address = " | + | |
| author = {Joey Grostern}, | author = {Joey Grostern}, | ||
| urldate = " | urldate = " | ||
| Line 231: | Line 228: | ||
| @article{Nuti2023, | @article{Nuti2023, | ||
| - | title = {Environmental impact of bottled water ‘up to 3,500 times greater than tap water}, | + | title = {Welche Umweltauswirkungen haben Wasserflaschen aus Plastik und wie kann man sie vermeiden?}, |
| year = {2023}, | year = {2023}, | ||
| - | publisher=" | + | publisher = " |
| - | url = "https:// | + | url = {https:// |
| - | address = " | + | |
| author = {Pascal Nuti}, | author = {Pascal Nuti}, | ||
| urldate = " | urldate = " | ||
| Line 245: | Line 241: | ||
| title = {The Impact of Micro and Macro Environment Factors on Marketing}, | title = {The Impact of Micro and Macro Environment Factors on Marketing}, | ||
| year = {2014}, | year = {2014}, | ||
| - | publisher=" | + | publisher = " |
| - | url = "https:// | + | url = {https:// |
| - | address = " | + | address = " |
| author = {OXFORD college of marketing}, | author = {OXFORD college of marketing}, | ||
| } | } | ||
| Line 254: | Line 250: | ||
| title = {10 Effective Marketing Strategies for 2025}, | title = {10 Effective Marketing Strategies for 2025}, | ||
| year = {2025}, | year = {2025}, | ||
| - | publisher=" | + | publisher = "PARK University", |
| - | url = "https:// | + | url = {https:// |
| - | address = " | + | address = " |
| author = {Park University}, | author = {Park University}, | ||
| } | } | ||
| Line 263: | Line 259: | ||
| title = {UNDERSTANDING THE MARKETING MIX}, | title = {UNDERSTANDING THE MARKETING MIX}, | ||
| year = {2020}, | year = {2020}, | ||
| - | ISSN = " | + | ISSN = " |
| publisher=" | publisher=" | ||
| - | | + | url = {https:// |
| - | address = " | + | address = " |
| author = {Pratyush Gautam}, | author = {Pratyush Gautam}, | ||
| keywords = {Hydration, Behavioral Strategies, Environmental Prompts, Smart Devices}, | keywords = {Hydration, Behavioral Strategies, Environmental Prompts, Smart Devices}, | ||
| Line 278: | Line 274: | ||
| year = {2023}, | year = {2023}, | ||
| publisher = " | publisher = " | ||
| - | | + | doi = " https:// |
| - | url = "https:// | + | url = {https:// |
| - | address = " | + | address = " |
| - | author = {Yael Parag; Efrat Elimelech; Tamar Ophe}, | + | author = {Yael Parag and Efrat Elimelech |
| keywords = {bottled water industry; sustainable consumption; | keywords = {bottled water industry; sustainable consumption; | ||
| abstract = {This paper considers bottled water with respect to the three pillars of sustainability: | abstract = {This paper considers bottled water with respect to the three pillars of sustainability: | ||
| Line 290: | Line 286: | ||
| title = {openLCA Nexus}, | title = {openLCA Nexus}, | ||
| year = {2026}, | year = {2026}, | ||
| - | | + | url = {https:// |
| - | address = " | + | address = " |
| author = {openLCA Nexus}, | author = {openLCA Nexus}, | ||
| } | } | ||
| Line 298: | Line 294: | ||
| title = {EU Environmental Footprint Database}, | title = {EU Environmental Footprint Database}, | ||
| year = {2026}, | year = {2026}, | ||
| - | | + | url = {https:// |
| - | address = " | + | address = " |
| author = {EU Environmental Footprint Database}, | author = {EU Environmental Footprint Database}, | ||
| } | } | ||
| Line 306: | Line 302: | ||
| title = {ÖKOBAUDAT}, | title = {ÖKOBAUDAT}, | ||
| year = {2026}, | year = {2026}, | ||
| - | | + | url = {https:// |
| - | address = " | + | address = " |
| author = {ÖKOBAUDAT}, | author = {ÖKOBAUDAT}, | ||
| } | } | ||
| Line 316: | Line 312: | ||
| year = {2026}, | year = {2026}, | ||
| publisher=" | publisher=" | ||
| - | | + | url = " |
| - | address = " | + | address = " |
| author = {VDI Verein Deutscher Ingenieure e.V}, | author = {VDI Verein Deutscher Ingenieure e.V}, | ||
| } | } | ||
| - | @leture{Cardia2026, | + | @misc{Cardia2026, |
| title = {ETHICS & DEONTOLOGY IN ENGINEERING 2026}, | title = {ETHICS & DEONTOLOGY IN ENGINEERING 2026}, | ||
| year = {2026}, | year = {2026}, | ||
| author = {Luís Cardia}, | author = {Luís Cardia}, | ||
| - | url = "https:// | + | url = {https:// |
| address = " | address = " | ||
| } | } | ||
| Line 333: | Line 329: | ||
| title = {Low Voltage Directive (LVD)}, | title = {Low Voltage Directive (LVD)}, | ||
| year = {2001}, | year = {2001}, | ||
| - | | + | url = " |
| - | address = " | + | address = " |
| author = {European Comission}, | author = {European Comission}, | ||
| } | } | ||
| Line 341: | Line 337: | ||
| title = {Study on the Evaluation of the Electromagnetic Compatibility Directive 2014/30/EU (EMCD)}, | title = {Study on the Evaluation of the Electromagnetic Compatibility Directive 2014/30/EU (EMCD)}, | ||
| year = {2014}, | year = {2014}, | ||
| - | | + | url = " |
| - | address = " | + | address = " |
| author = {European Comission}, | author = {European Comission}, | ||
| } | } | ||
| Line 349: | Line 345: | ||
| title = {UV-C-lamps: | title = {UV-C-lamps: | ||
| year = {2017}, | year = {2017}, | ||
| - | | + | url = " |
| - | address = " | + | address = " |
| author = {European Comission}, | author = {European Comission}, | ||
| } | } | ||
| Line 357: | Line 353: | ||
| title = {Health effects of UV-C lamp radiation Final version Scientific Committee on Health, Environmental and Emerging Risks}, | title = {Health effects of UV-C lamp radiation Final version Scientific Committee on Health, Environmental and Emerging Risks}, | ||
| year = {2017}, | year = {2017}, | ||
| - | | + | url = " |
| - | address = " | + | address = " |
| author = {European Comission}, | author = {European Comission}, | ||
| } | } | ||
| Line 365: | Line 361: | ||
| title = {Food Contact Materials}, | title = {Food Contact Materials}, | ||
| year = {2026}, | year = {2026}, | ||
| - | | + | url = " |
| - | address = " | + | address = " |
| author = {European Comission}, | author = {European Comission}, | ||
| } | } | ||
| + | @article{GlobeScanDSC, | ||
| + | title = {The Power of Health in Driving Sustainable Choices}, | ||
| + | year = {2026}, | ||
| + | url = " | ||
| + | address = " | ||
| + | author = {Globe Scan}, | ||
| + | } | ||
| + | @article{EUCPlastic, | ||
| + | title = {Single-use plastics}, | ||
| + | year = {2025}, | ||
| + | url = " | ||
| + | address = " | ||
| + | author = {European Commission}, | ||
| + | } | ||
| </ | </ | ||