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Making water drinkable with nanotechnology: it’s now a reality!

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Making water drinkable with nanotechnology: now we can!

Discover the project for “removing and capturing” microcontaminants with recycled materials

Micropollutants, or microcontaminants, are chemicals such as pesticides, drugs, medicines and other organic substances that are present in water in very low concentrations. These are substances that are hazardous to human health and the environment, which we constantly monitor and research in order to identify effective removal mechanisms and abatement technologies.

“Removing and capturing” microcontaminants

The project involves the use of materials recovered from the production of hollow fibres for membranes, such as scaffolds used in the medical field which, combined with graphene, can be used as filter material in the water purification process.

In this way, a valuable material, which would otherwise be lost as process waste, is put back into circulation and given new life.

Laboratory tests were performed comparing conventional materials, such as activated carbon and innovative materials (PSU-GO, RGO, GNP, etc.) for the treatment of water resources at the Pontelagoscuro (Ferrara) power plant.
The objective of the test was to verify the effectiveness of these materials in removing various micropollutants, such as: EMPs (Emerging MicroPollutants), EPs (Emerging Pollutants) and possible by-products of ozonation, such as bromates.

The results highlighted the effectiveness of certain filtering materials and the next step will be the construction of a pilot plant within the Pontelagoscuro power plant, to further study and perform further tests on a larger scale.

Laboratory results have highlighted the effectiveness of some filter materials, and the inauguration of the pilot plant at the Pontelagoscuro drinking water treatment plant in February 2024 allows the working group to implement full-scale application tests with varying concentrations of graphene oxide.
In addition to Hera, CNR and Medica are also taking part in the project. They have built the plant thanks to an EU LIFE project.


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04/08/2020
Water Project
Innovation

Water treatment 4.0, between artificial intelligence and predictive technologies

Water treatment 4.0, between artificial intelligence and predictive technologies The watchword is innovation. To protect the environment and those who live in it, and to provide quality services. That's always been our belief. But there's more. We need to add another watchword: resilience, the ability to cope with change. And when we speak of climate change, we have learned that innovation and resilience are inseparable. The most modern technologies allow us, in fact, to face sudden changes, turning to prevention, the ability to predict causes and consequences, acting in advance. Image_psbo.png Following this principle, and as the second-ranking Italian operator in terms of volumes of water sold, we have earmarked Euro 830 million for smart technologies in our Business Plan for 2023. In fact, the networks and plants of the water cycle are subjected to increasing stress due to the ongoing climate change, and only our ability to adapt and innovate, has made us an Italian excellence in the industry. The investments we have made are 20% higher than the Italian average - almost Euro 176 million in 2019 alone – and reaffirm our commitment to a circular and regenerative economy, starting with water. In particular, by complying with the requests of the United Nations Global Compact on the sustainable management of water resources, we remain committed to continuously innovate the service to achieve its gradual decarbonisation. This happens not only by using only renewable energy but also through energy efficiency projects and optimisation of the processes involved in the treatment. There are two virtuous examples we are particularly proud of, the Modena treatment plant and that of Granarolo dell'Emilia (Bologna). THE SMART TREATMENT PLANT IN MODENA Blue water, clear water. This is the refrain that welcomes to Modena's smart treatment plant. Its new predictive system, unique in Italy, enables us to improve the quality of the water we return to the environment and to further reduce the energy consumption of our wastewater treatment plant. Here, technological innovation, integrated systems, and efficient use of resources are at the forefront. The project, developed together with Energy Way (the company that develops mathematical models for the efficient and sustainable development of businesses), created a system capable of controlling the oxidation process, a fundamental phase of the wastewater treatment cycle, anticipating the needs of the plant's activities. In fact, the requirements vary according to the water flow rate and the concentration of organic pollutants. The smart controller anticipates, 30 minutes in advance, the condition of the plant and acts beforehand to avoid the concentration of pollutants or energy peaks. The pilot project has yielded positive results, which we are proud of. The Modena treatment plant, which can cope with the needs of 500,000 inhabitants, recorded a 16% decrease in energy used in the oxidation process, compared to a traditional control system, and a further 8.1% decrease in the presence of nitrogen in the outgoing water (a parameter already below the regulatory limits). WELCOME TO CONSTANCE, PROTOTYPE OF THE GRANAROLO DELL’EMILIA TREATMENT PLANT It's just been born, but it's looking very promising. We are talking about CONSTANCE (COntrollo iNtelligente e geSTione Automatizzata per il trattameNto di aCque rEflue). The system is the fruit of a partnership between Hera Group and ENEA (Ente per le Nuove tecnologie, l'Energia e l'Ambiente), is based on machine learning technologies, and can reduce energy and water treatment plant management costs by more than 30%. The prototype has reached a level 7 technological maturity and is ready for industrialisation; the first tests were successfully carried out in our treatment plant in Granarolo dell'Emilia (Bologna). CONSTANCE's main innovative feature enables us to remotely manage multiple treatment plants and to estimate in real-time the percentage of pollutants entering the plant, such as nitrogen, reducing them and thus returning cleaner water. "At Hera, we place technological innovation among the fundamental pillars of our management and development strategy. With this in mind, in 2017 we formed a partnership with ENEA to build projects of common interest," says Franco Fogacci, Water Director of Hera. "The experimental test project of ENEA's CONSTANCE controller at our treatment plant will allow us both to further develop skills, know-how, and transfer new technologies into real applications on an industrial scale, for the benefit of citizens and the environment", he concludes.

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A source of clean energy from sewers and wet waste: Biomethane

An investment of Euro 37 million. A plant that disposes of 100 thousand tonnes of organic waste produced by separate waste collection and another 35 thousand tonnes coming from green waste and pruning material. 

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Algae to Value: wastewater turns into a benefit for agriculture

The connection between the water cycle and agriculture has grown increasingly strong over the years, based on a straightforward principle

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Biodiesel has been developed also from used food oil

Fuel may also be extracted from vegetable oils. Used domestic vegetable oil (such as frying oil) which is recovered by multiutility services via roadside containers and drop-off points, is transformed into biodiesel, which in turn is used to fuel the vehicles used for urban waste collection.

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Bus fuel from trash: Hera's pilot project with "START"

To obtain clean energy to power Ravenna's buses by decomposing waste in landfills. 

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Data, the key to a smart future

From city to "smart city" thanks to data: with our detection systems we can monitor traffic trends, air quality and consumption of public parks. 

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Dialogue with the urban context for new energy: the Borgo Panigale cogeneration plant

District heating is already in itself a "sustainable" and environment-friendly solution, because it can guarantee better performance than traditional domestic boilers. In addition, the plant located in Borgo Panigale ensures lower emissions into the environment, more reliability and greater availability of energy. The system can heat the equivalent of 8,000 residential units. Currently, the turbines can produce 35,000 MWh of energy per year, almost twice as much as in the past.

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Ferrara, the city of "green" heat

What's Ferrara's green secret? It's underground, where a geothermal basin feeds its district heating system. The result? 87% of the thermal energy distributed in the city is "clean" and we avoid about 22 thousand tonnes of CO 2 emissions.

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Hera and General Electric together for energy recovery

We have installed a turbo expander at the R&M stations of Ducati's factory in Bologna. The goal is to recover electricity from the decompression process of methane gas. 

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Hergo Reti: the smart approach to emergency service and maintenance

More than 130 thousand emergency response reports involving 1,500 employees in 2019. More than 50 thousand emergency response operations in the first six months of 2020, in a local area that includes Emilia-Romagna, Triveneto and Marche.

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Hergoambiente, waste bin speaking

Our 300,000 waste bins are talking. How? Thanks to a "tag" that always tells us where they are, how they are working and if they have been emptied. Find out more about the projects of HergoAmbiente, Hera Group's "smart" system to support waste management services.

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