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A solar electric pump-out boat for removing human waste. The pump-out boat may include a boat hull, wherein the boat hull may include a bow, a stern, and a self-draining sole disposed therein. The pump-out boat may further include a holding tank disposed within the hull underneath the self-draining sole for collecting waste. The pump-out boat may further include a console disposed approximately center of, and on a top surface of the self-draining sole. The pump-out boat may further include a solar panel for absorbing sunlight to convert into electrical power. The pump-out boat may further include a pump disposed within the console. The pump-out boat may further include a battery connected to a motor, the pump, and the solar panel, such that the solar panel charges the battery to provide the electrical power to operate the pump and the motor.
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Shortcomings in traditional methods for understanding sources of bacteriological contamination limit the ability of public health o cials to adequately protect public health and mitigate pollution sources. This study used polymerase chain reaction (PCR) as a tool for microbial source tracking to attempt to identify host species contributing bacteria to three watersheds fl owing into Long Island Sound. Samples were collected once a month near the mouth of each watershed and analyzed for other E. coli (a traditional fecal indicator) and genetic markers for members of the phylum Bacteroidetes. Genetic markers included host-specifi c markers that can be used to identify sources of contamination such as humans, domestic animals, and wildlife. Despite observing elevated E. coli levels in all three watersheds, we could not make a conclusive determination of actual sources using the available tools. Additionally, as there was disagreement between the E. coli levels and the presence of the general Bacteroidetes marker, it is important to evaluate the accuracy of this indicator with respect to recent fecal contamination and human health risks. Limitations posed by using indicator organisms, such as enterococci, illustrate the need to develop other methodologies for assessing actual sources of bacterial contamination.
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We initiated a collaboration between local government, academia, and citizen scientists to investigate high frequencies of elevated Escherichia coli bacteria levels in the coastal Short Beach neighborhood of Branford, Connecticut. Citizen scientist involvement enabled collection of short-duration postprecipitation outfall flow water samples (mean E. coli level = 4930 most probable number per 100 mL) and yielded insights into scientific collaboration with local residents. A records review and sanitary questionnaire identified aging properties with septic systems (3.3%) and holding tanks (0.6%) as potential sources of the E. coli contamination. (Am J Public Health. 2022;112(9):1261–1264. https://doi.org/10.2105/AJPH.2022.306943)
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Recreational boating is increasing in popularity worldwide, prompting challenges concerning pollution management, aquatic ecosystem preservation, and waterway access. Electric boating technology may provide a sustainable alternative to gasoline-powered boats, helping to address these challenges. In this study, the environmental and health impacts associated with using electric service vessels in the recreational boating industry were assessed. The focus was on pump-out boats, which enable the sanitary management of human waste generated onboard recreational vessels, as a tractable model of the whole recreational boating service sector. To query stakeholder attitudes about changing to electric technology, surveys were distributed to a nationwide network of pump-out boat service providers. A wide range of attitudes exists among this group towards the adoption of electric technology, and financial concerns dominate the anticipated barriers to electric technology adoption. A life-cycle assessment of electric and gasoline-powered pump-out boats revealed that electric boats have lower lifetime greenhouse gas emissions than do gasoline-powered equivalents, especially when electric boats are charged using renewable resources. Our study demonstrates that already-existing electric technology is a sustainable alternative to gasoline combustion in the boating service sector, and identifies the key challenges remaining for the widespread adoption of electric service boats.
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