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Alternative solutions for inhibiting Legionella in domestic hot water systems based on low-temperature district heating

机译:基于低温集中供热的家用热水系统中抑制军团菌的替代解决方案

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摘要

District heating is a cost-effective way of providing heat to high heat density areas. Low-temperature district heating (LTDH) is a promising way to make district heating more energy-efficient and adaptable to well-insulated buildings with low heating demand in the future. However, one concern is the multiplication of Legionella due to insufficient temperature elevation with low-temperature supply. The aim of this study was to find optimal solutions to this dilemma for specific situations. The solutions were of two types: alternative system designs and various methods of sterilization. The alternative design approach can eliminate the risk factors of Legionella by local temperature boosting and restricting system volume. Decentralized substations, micro heat pumps, electric heating elements and electric heat tracing are all investigated as alternative designs. With regard to sterilization methods, thermal treatment, ionization, chlorine, chlorine dioxide, ultraviolet light, photocatalysis and filtration are discussed as the most frequently used methods in hot water systems. The characteristics, efficacy and operation methods of LTDH using the solutions investigated are documented and compared. Finally, recommendations are given for their use in practice. Practical application: The methods for inhibiting Legionella should fit into applicable situations according to their characteristics. This study aims to recommend optimum solutions for inhibiting Legionella in LTDH scenarios, and includes a comprehensive overview of their efficiency, installation, operation and costs, so as to give adequate information for selecting appropriate solutions. In addition to sterilization methods, alternative system design implemented with new technologies can also help prevent Legionella in hot water systems. They have the additional benefit of reducing the heat loss of the hot water system. The alternative design solutions both enrich our options for water sanitation and improve the energy efficiency of our energy systems.
机译:区域供热是向高热密度区域提供热量的一种经济有效的方式。低温区域供热(LTDH)是使区域供热更加节能并适应未来供热需求低的隔热良好建筑物的一种有前途的方式。然而,一个担忧是军团菌的繁殖是由于低温供应不足而导致的温度升高不足。这项研究的目的是为特定情况找到最佳解决方案。解决方案有两种类型:替代系统设计和各种灭菌方法。替代设计方法可以通过局部升高温度和限制系统体积来消除军团菌的危险因素。分散式变电站,微型热泵,电加热元件和电伴热都已作为替代设计进行了研究。关于灭菌方法,热处理,电离,氯,二氧化氯,紫外线,光催化和过滤是热水系统中最常用的方法。记录并比较了使用所研究溶液的LTDH的特性,功效和操作方法。最后,给出了在实践中使用的建议。实际应用:抑制军团菌的方法应根据其特点适合适用情况。这项研究旨在为在LTDH场景中抑制军团菌的最佳解决方案提供建议,并对它们的效率,安装,操作和成本进行全面概述,以便为选择合适的解决方案提供足够的信息。除了消毒方法外,采用新技术实施的替代系统设计还可以帮助防止军团菌进入热水系统。它们还有减少热水系统的热损失的额外好处。替代设计解决方案既丰富了我们在水卫生方面的选择,又提高了我们能源系统的能源效率。

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