HCR | Market maturation of the first on-board autonomous biofouling cleaning system to keep ship’s hull clean at all times

Summary
The world fleet spends €74 billion/ year in fuel, corresponding to 325 million tonnes of fuel and the emission of 1,099 million
tonnes of CO2. If nothing is done shipping emissions will increase between 50% and 250% by 2050. It has been estimated
that 10% of the vessels energy cost and emissions are due to fouling on the hull. Thus, if the entire world fleet were kept
clean of fouling, the savings would be of 32.5 million tonnes of fuel/ year. So far, this is not possible because cleaning
solutions are based on expensive dry-dock and call-on-demand underwater services contracted to clean the ship in ports.
These solutions have often poor quality, are expensive, unsafe for the divers and/ or maritime traffic and only provide a
transient increase in the hull performance.
Cliin has developed the first on-board automatic cleaning robot – HCR – that enables a completely new procedure for
ship-owners, operators and charterers’ management of the hull. HCR will be permanently installed on the ship and
available at any given time and location, allowing a continuous cleaning, thus preventing early formation of fouling. HCR
will allow savings in fuel consumption of up to 10%/ year over 5 years when compared to call on-demand solutions.
Moreover, the use of HCR improves sustainability of maritime sector by reducing GHG emissions, minimizing the
transport of invasive species associated with the fouling and improving the health and safety at the workplace, as there is
minimum crew involvement in the cleaning operation and the marine traffic in ports is not disturbed.
Through the successful development and implementation of HCR technology, Cliin will be in a strong position to exploit a
market projected to value US$ 4 Billion by 2020 and enhance its profitability by the stream of the sales, with an expected
cumulated revenue of €107 million, 5 years after project completion.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/806303
Start date: 01-04-2018
End date: 30-09-2022
Total budget - Public funding: 2 086 600,00 Euro - 1 460 620,00 Euro
Cordis data

Original description

The world fleet spends €74 billion/ year in fuel, corresponding to 325 million tonnes of fuel and the emission of 1,099 million
tonnes of CO2. If nothing is done shipping emissions will increase between 50% and 250% by 2050. It has been estimated
that 10% of the vessels energy cost and emissions are due to fouling on the hull. Thus, if the entire world fleet were kept
clean of fouling, the savings would be of 32.5 million tonnes of fuel/ year. So far, this is not possible because cleaning
solutions are based on expensive dry-dock and call-on-demand underwater services contracted to clean the ship in ports.
These solutions have often poor quality, are expensive, unsafe for the divers and/ or maritime traffic and only provide a
transient increase in the hull performance.
Cliin has developed the first on-board automatic cleaning robot – HCR – that enables a completely new procedure for
ship-owners, operators and charterers’ management of the hull. HCR will be permanently installed on the ship and
available at any given time and location, allowing a continuous cleaning, thus preventing early formation of fouling. HCR
will allow savings in fuel consumption of up to 10%/ year over 5 years when compared to call on-demand solutions.
Moreover, the use of HCR improves sustainability of maritime sector by reducing GHG emissions, minimizing the
transport of invasive species associated with the fouling and improving the health and safety at the workplace, as there is
minimum crew involvement in the cleaning operation and the marine traffic in ports is not disturbed.
Through the successful development and implementation of HCR technology, Cliin will be in a strong position to exploit a
market projected to value US$ 4 Billion by 2020 and enhance its profitability by the stream of the sales, with an expected
cumulated revenue of €107 million, 5 years after project completion.

Status

CLOSED

Call topic

SMEInst-10-2016-2017

Update Date

27-10-2022
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Horizon 2020
H2020-EU.2. INDUSTRIAL LEADERSHIP
H2020-EU.2.1. INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies
H2020-EU.2.1.1. INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies - Information and Communication Technologies (ICT)
H2020-EU.2.1.1.0. INDUSTRIAL LEADERSHIP - ICT - Cross-cutting calls
H2020-SMEINST-1-2016-2017
SMEInst-10-2016-2017 Small business innovation research for Transport and Smart Cities Mobility
H2020-SMEINST-2-2016-2017
SMEInst-10-2016-2017 Small business innovation research for Transport and Smart Cities Mobility
H2020-EU.2.3. INDUSTRIAL LEADERSHIP - Innovation In SMEs
H2020-EU.2.3.1. Mainstreaming SME support, especially through a dedicated instrument
H2020-SMEINST-1-2016-2017
SMEInst-10-2016-2017 Small business innovation research for Transport and Smart Cities Mobility
H2020-SMEINST-2-2016-2017
SMEInst-10-2016-2017 Small business innovation research for Transport and Smart Cities Mobility
H2020-EU.3. SOCIETAL CHALLENGES
H2020-EU.3.4. SOCIETAL CHALLENGES - Smart, Green And Integrated Transport
H2020-EU.3.4.0. Cross-cutting call topics
H2020-SMEINST-1-2016-2017
SMEInst-10-2016-2017 Small business innovation research for Transport and Smart Cities Mobility
H2020-SMEINST-2-2016-2017
SMEInst-10-2016-2017 Small business innovation research for Transport and Smart Cities Mobility