An Autonomous Mobile Combination Disinfection System
Abstract
:1. Introduction
2. System Design
2.1. Hardware Design
2.2. Software Design
2.3. Disinfection Modes
3. Experimental Design
3.1. Experimental Setup
3.1.1. Experimental Materials and Configurations
3.1.2. Experiment Environment
3.1.3. Effective Disinfectant Dosage
3.1.4. Disinfection Rate Calculation
3.2. Disinfection Model
3.2.1. The Continuous Disinfection Model
- (1)
- Disinfecting the area straight ahead
- (2)
- Disinfecting the area at the front side
- (3)
- Disinfection path
3.2.2. The Fixed-Point Disinfection Model
4. Experiment Results
5. Analysis and Discussion
6. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Germs | Dosages Required for Different Disinfection Rates (μJ/m2) | ||
---|---|---|---|
90% | 99% | 99.99% | |
Influenza virus | 1000 | 2000 | >5000 |
Escherichia coli | 3000 | 6000 | 12,000 |
Shigella dysenteriae | 3000 | 6000 | 12,000 |
Staphylococcus aureus | 3000 | 6000 | 12,000 |
Salmonella typhi | 4000 | 8000 | 16,000 |
Mycobacterium tuberculosis | 5000 | 10,000 | 20,000 |
Corynebacterium diphtheriae | 5000 | 10,000 | 20,000 |
Test Number | Disinfection Method | Disinfection Duration | Sampling Point | Number of Bacteria before Disinfection (cfu/m3) | Number of Bacteria after Disinfection (cfu/m3) | Disinfection Rate (%) | Average Disinfection Rate (%) |
---|---|---|---|---|---|---|---|
1 | Continuous disinfection | 5 min | Point A | 417 | 141 | 66.19 | 71.83 |
Point B | 304 | 92 | 69.74 | ||||
2 | Continuous disinfection | 5 min | Point A | 219 | 78 | 64.38 | |
Point B | 269 | 35 | 86.99 | ||||
3 | Fixed-point disinfection | 15 min | Point A | 544 | 127 | 76.65 | 81.21 |
Point B | 410 | 78 | 80.98 | ||||
4 | Fixed-point disinfection | 15 min | Point A | 375 | 49 | 86.93 | |
Point B | 608 | 120 | 80.26 | ||||
5 | Fixed-point disinfection | 30 min | Point A | 375 | 27 | 92.80 | 92.95 |
Point B | 608 | 42 | 93.09 |
Disinfection Method | Disinfection Duration (min) | Disinfection Rate (%) | Explanation | Reference |
---|---|---|---|---|
Hydrogen peroxide | At least 30 | 90.58 | The concentration of H2O2 in the room is 0.18 mL/m3 | 21 |
UV | 40 | 92.57 | The total radiation intensity of the UV lamps is 710 μW/cm2 | 22 |
Combined fixed-point disinfection | 30 | 92.95 | The total radiation intensity of the UV lamps is 540 μW/cm2 | Ours |
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Yao, Z.; Ma, N.; Chen, Y. An Autonomous Mobile Combination Disinfection System. Sensors 2024, 24, 53. https://doi.org/10.3390/s24010053
Yao Z, Ma N, Chen Y. An Autonomous Mobile Combination Disinfection System. Sensors. 2024; 24(1):53. https://doi.org/10.3390/s24010053
Chicago/Turabian StyleYao, Zifan, Na Ma, and Youdong Chen. 2024. "An Autonomous Mobile Combination Disinfection System" Sensors 24, no. 1: 53. https://doi.org/10.3390/s24010053
APA StyleYao, Z., Ma, N., & Chen, Y. (2024). An Autonomous Mobile Combination Disinfection System. Sensors, 24(1), 53. https://doi.org/10.3390/s24010053