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Importance of UV-C in HVAC Industry: Life Sciences Research Paper

Research Paper Instructions:

Research Paper

Purpose Statement: This project is to give you an opportunity to explore a specific topic related to mechanical, air condition, vent systems in buildings. The research approach will be exploratory in design, provide a submission describing the possible topic title, brief discussion of the topic, 2‐3 objectives and 2‐3 key questions the paper will address.



The important thing is the following text is the title, topic and research direction of my research paper. Please write a research paper according to my topic. Thank you very much!





My research topic is about

Importance of UV-C in HVAC Industry

I plan to do some research about the function of UVC in HVAC system in building, and how the UAC kills the bacteria and viruses in HVAC system in building. As for the background, I believe that some related knowledge and information can explain the UVC system in details. Such as UVC wavelengths range from 200 to 300 nanometers, making them bactericidal - meaning they can inactivate microorganisms such as bacteria, viruses, and protozoa. And the high energy produced by short-wave UVC light is absorbed by the cell's RNA and DNA, destroying the nucleic acid and preventing microbial infection and reproduction.



Next, I plan to make a list about my research objectives, first is effective maintenance of UVC in HVAC system ensures long term killing of bacteria and viruses. Second is the disinfection capacity of UVC System. And I also come up with some key question firstly what UVC in HVAC can kill kinds of viruses and microbes. Secondly, what method for UAC light to kill bacterium and virus. Thirdly, how UVC light efficiently kill bacteria and viruses. Fourth, can the type of ultraviolet light known as UVC light kill the novel coronavirus? For the above research objectives, I intend to focus on more data on the killing of bacteria and viruses by UVC and the practical application of UVC work in HVAC, then I will also do some surveys on the actual efficiency of UVC in HVAC system. Such as questionnaire survey, interview, expert consultation and etc.



Broad Topic: Papers are to be center on the mechanical/electrical industry or design impacts due to the current pandemic “COVID‐19”.





1. Gain more understanding of the mechanical and electrical industry.

2. Develop a possible “Capstone Topic”.

3. Produce a professional level paper on your research topic.

4. Prepare a professional presentation and orally present your findings.

5. Implement research techniques discussed in your research and methods course





Format: Paper will utilize the ASC (Associated School of Construction) formatting guidelines found at: www(dot)ascweb(dot)org. Grammar and spelling are important. Page layout: Font = 10pt. Times New Roman, 1” margins, single spaced. Length of the paper is 10 pages and appendices and reference pages do not count toward the page limit.



References: Include references in APA format from the following sources:

1. At least six (7) published books or journal publications.

2. At least three (3) web references. (CREDIBLE)

3. At least four (4) trade or contemporary periodicals or newspaper articles.



• 80% of the project grade is the 10 page paper.

o Relevance of topic

o Aims and Objective of the paper achieved.

o Literature review

o Methodology

o Conclusions

o Future research

Research Paper Sample Content Preview:

Importance of UV-C in HVAC Industry
Name
Institution
Due Date
Importance of UV-C in HVAC Industry
Introduction
There are millions of commercial buildings currently existing in different regions of the world. However, those working within such buildings are subject to be victims of allergies, sick building syndrome alongside various building-related illnesses due to the existing poor quality of indoor air. The Ultraviolet germicidal irradiation (UVGI) within the commercial building’s HVAC system provides one of the efficient ways of ensuring improvement in the air quality that reduces the level of health risks that the occupants are exposed to. However, there are various factors of consideration in the quest to consider the HVAC design of a building. Some of these factors entail the ultimate use of the facility, as well as the overall budget. The overall analysis should consider life cycle costs and the potential influence of the design solutions on the occupants in the future (An et al., 2018).
In this study, commercial building is applicable in referring to the buildings that are more than 1,000 square feet that basically provide half of their space for office work. A good percentage of people spend a significant amount of their time within these buildings with various systems at work such as ventilation, heating, and cooling systems. Such systems make the indoor air quality of prime importance within these environments. The nature of the indoor air quality always impacts the level of productivity and absenteeism, and of course, insurance premiums. There are both negative and positive impacts of UVGI. The reduced quality of the outside air may lead to the accumulation of contaminants indoors, which ultimately contributes to health effects such as building-related illness (BRI) as well as sick building syndrome (SBS). Some of the reasons behind poor air quality include indoor pollution as well as poor design and maintenance of the ventilation system, this makes it important the aspect of improving indoor air quality within commercial buildings that would contribute towards higher levels of productivity within the workforce. In this case, the use of UVGI technology is applicable to improve the quality of the indoor air (Chao-Yun et al., 2017).
Light is considered a crucial part of the electromagnetic spectrum capable of producing radiant energy. The Ultraviolet light spectrum ranges from short to longer wavelengths. In this case, it is important to note that UV light has wavelengths of approximately 350 nanometers and is basically categorized under invisible light. The existence of holes within the ozone layer increases cancer risk due to the presence of additional ultraviolet radiation within the troposphere. The UV has an ionizing effect that proves to be very harmful to body cells. In this case, when dealing with construction activities, there should be proper storage of building materials to avoid exposure to UV radiation (Rodgers & Saputa, 2017).
The level of contamination in HVAC units is widespread and, as discussed above, often leads to building-related diseases such as bacterial or viral infections, asthma, and hypersensitivity pneumonitis. However, only certain UV lights are applicable in the process of air purification. In this case, the UVGI is applicable in the process of eliminating various types of bacteria as well as viruses. The operation of the UVGI light within the UV-C spectrum provides an effective wavelength spectrum that is effective for germicidal purposes.
There are two types of UV light installations for HVAC: coil sterilization and air sterilization. These methods disinfect the air through UV-C light by cycling through the return ducts. The enhancement of the reflective surface within the In-Duct UVC system maximizes UV-C light in all directions ensuring efficiency is maintained. The coil sterilization within the UV-C lamps targets very sensitive alongside the various problem-prone components that include cooling coils, filters as well as condensation pans. Such targets the microbial growth that appears within hidden areas such as fins, grooves, seams, and edges (Eisenlöffel et al., 2019).
Purpose of the Study
The improvement of the quality of indoor air provides some level of economic impact on buildings within different regions. The majority of the people spend 90 of their time indoors, therefore, making it more important, looking at the ways through which indoor air could be improved.
Aims and Objectives
The overall objective of this study will be to determine the importance of UVC through reliable scientific data from testing, especially in circulating air ducts as well as the potential ability of such lights in killing common microbes, therefore, reducing indoor air contamination.
Specific objectives
* To examine the effective maintenance of UVC in the HVAC system
* To identify the various key factors that impact the use of UVC lights within circulating air ducts
* To evaluate the disinfection capacity of UVC System
Literature Review
The extent to which UVGI systems are capable of deactivating cells depends upon various factors such as the intensity of the UV light, the time taken for irradiation, the humidity level, the target organism alongside other factors. In this case, the effective removal of molds and bacteria within the surfaces of cooling coils and drain pans basically require a less intensive source of UV light compared to UVGI deactivation of the particles that flow through the airstream. This is since there is constant irradiation of the surfaces while at the same time particles within air irradiated within a short duration. According to research, approximately 99% of mold reductions and bacteria are reduced on the irradiated surfaces (Matys et al., 2020). In this case, the level of effectiveness of the UV systems as applicable in irradiating microorganisms within flowing air depends highly on the nature of the microorganisms, the velocity of the air, level of humidity as well as the particle sizes, and also the design of the UV system (Rodgers & Saputa, 2017).
There are few published studies on the nature of health benefits derived from the application of UVGI systems within ducts of HVAC systems, especially in facilities that are not related to health-care. The study by Card et al., (2020) that was conducted within three office buildings, whereby the UVGI systems were switched on and off several times while the occupants remained uninformed of the activity. There was an assessment of the work-related acute health symptoms by the use of questionnaires. The results revealed a statistical significance of between 20 to 40% decreases in symptoms during the duration UVGI was in operation. Similarly, another study was conducted within 19 homes, where UVGI systems were installed in HVAC ducts of the 17 homes. These homes had mold-sensitized allergic children (Guo et al., 2020). The systems were designed to irradiate particles in air moving through the ducts and not through the cooling coils. The UVGI systems were replaced at some point with placebo systems that had a blue light. Results show that with the operation of the UVGI systems, there were 30 to 50% statistically significant improvements within several health results. In this case, there was an improvement in the asthma symptoms scores, days with asthma symptoms as well as asthma medication use within only one period of UVGI treatment. However, the measure of the lung system performance registered improvement in both UVGI treatment periods. However, no significant improvements were registered in several other reported symptoms.
The results, as shown, reveal that studies undertaken on health benefits that apply the UVGI systems to produce inconsistent results. At the same time, there have been a few studies undertaken of UVGI in HVAC systems in facilities outside health organizations. In this case, the evidence on the associated potential health benefits is sufficient enough to warrant further research. This is since the application of the UVGI is more likely to reduce various respiratory infections in the event that they are applied within crowded places with fewer opportunities for infection.
A study conducted by Levetin et al., 2001 on the effectiveness of germicidal UV radiation to reduce fungal contamination within the air-handling units shows the effects of UV-C light on contaminated surfaces. This study was undertaken within a four-story building. In this case, the UV-C lamps were installed downstream within the cooling coils of the air handlers on two floors. In comparison, there was no installation of lamps within the air handlers on the remaining two floors. The lamps installed were left in operation for 24 hours during the period of testing. The test results show that germicidal UV irradiation provides one of the effective approaches that reduce the effects of fungal contamination. The application of the UV lamps results in significantly low levels of fungal contamination within the interior of the insulation lining of the study floor as compared to the control floors. Further, the effects of the airborne fundi were found to be lower within the floor with lamps. Therefore, the findings reveal that a sufficient dose of UV-C light could elaborately reduce the levels of microbial growth within stationary surfaces (Atci et al., 2020).
The study by Menzies et al., 2003 on the effects of UV-C lights installed on office ventilation system on employee health attempts to explain if UV germicidal irradiation of drip pans, as well as cooling coil in HVAC, could influence the health of workers in the office building. In this case, three buildings were ventilated mechanically with sealed windows. The UVGI lamps were installed downstream of the filters, humidifier, and heating coil, and they had parabolic reflectors. Also, on the upstream of the cooling coil as well as condensate drain pan. The various lamps provided within each test group were switched on...
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