Japanese firms mull floating hydrogen infrastructure

  • : Electricity, Hydrogen, Oil products
  • 21/03/17

Four Japanese companies will co-operate to develop a floating green hydrogen production and supply infrastructure project at a key Japanese port, hoping to tap growing demand for alternative marine fuel and help achieve the country's 2050 decarbonisation goal.

Japanese shipbuilding venture Nihon Shipyard has teamed up with bunker supplier Mol Techno-Trade, industrial gas supplier Taiyo Nippon Sanso and engineering firm Kobelco Eco-Solutions to explore hydrogen production on a ship using renewable power and to supply the produced hydrogen as a marine fuel for coastal shipping. The partners plan to start examining the floating green hydrogen project, named the SeaEra, in April.

Green hydrogen is produced from renewable power and water using renewable energy and water electrolysis. Japan has pledged to become a decarbonised society by 2050, while hydrogen is considered the key carbon-free energy source with its demand forecast to hit 20mn t/yr by 2050.

Output and supply of hydrogen onboard is expected to be suitable as a fuel for coastal ships, which have relatively short operating distances, and help reduce the domestic shipping industry's greenhouse gas (GHG) emissions leading to 2050, according to the firms.

The SeaEra project also aims to work with a carbon-neutral port proposed by the transport ministry for establishment at six key domestic locations. One of them, the Yokohama-Kawasaki port, has attracted a cross-industry group of Japanese firms to launch a hydrogen-fuelled passenger ferry in 2024.

The companies added that the SeaEra project will also consider utilising the proposed floating hydrogen infrastructure at an offshore facility development project or as a business continuity planning measure to address any onshore energy supply disruption in case of a natural disaster. The project partners plan to work with Japanese classification society ClassNK and Tokyo University's advanced science and technology research centre to develop a floating hydrogen production and supply method.

Mol Techno-Trade, a wholly-owned subsidiary of Japanese shipping firm Mitsui OSK Lines, has formed a joint venture to develop a hydrogen-fuelled passenger ferry in the country's Seto Inland sea off Hiroshima.

Nihon Shipyard was launched in January this year by Japan's two leading shipbuilders Imabari Shipbuilding and Japan Marine United (JMU), targeting potential global demand growth for more environmental friendly vessels, such as those using hydrogen and ammonia. Imabari and JMU have been separately exploring ammonia business opportunities, including a floating ammonia storage and regasification barge.

Kobelco Eco-Solutions, majority-owned by Japanese steel mill Kobe Steel, has developed and commercialised a high-purity hydrogen oxygen generator, eyeing the arrival of a hydrogen society. Taiyo Nippon Sanso has been building hydrogen refuelling stations including mobile stations across the country and has worked with chemical firm Showa Denko to develop technology to produce high-purity hydrogen using ammonia for fuel-cell electric vehicle use.


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24/04/28

Industry leaders urge realism in green hydrogen push

Industry leaders urge realism in green hydrogen push

Dubai, 28 April (Argus) — Hydrogen and its derivatives will have a critically important role to play in accelerating the energy transition but policymakers need to be more realistic given that many of the technologies are still in their infancy, energy industry leaders from the Middle East and Europe said Sunday at a special meeting of the World Economic Forum in the Saudi capital Riyadh. "The market is a challenge," UAE energy minister Suhail al-Mazrouei said. "There is development of the market, but are we there yet? No. At the same time, are we serious about our production? I would say yes. It's between planning something, and getting the result you are aiming for." The UAE is planning to produce 1.4mn t/yr of hydrogen by 2031, more than 70pc of which will be green hydrogen, al-Mazrouei said. In the longer term the country aims to build its hydrogen capacity to 15mn t/yr by 2050. "Clean energy is something we decided to venture into 17 years ago when we began investing in the likes of [UAE state-owned renewables firm] Masdar and started thinking about what would happen after we export the last barrel of oil," UAE energy minister Suhail al-Mazrouei said. "What we did first is regulate and put a strategy of how much to produce." Al-Mazrouei's Saudi counterpart, Prince Abdulaziz bin Salman, voiced similar concerns. "We don't mind partnering with everybody… With the Koreans, the Japanese, our friends the UAE… but there are challenges," he said. "There is a lack of clarity on the policies, a lack of clarity on the receiving or consumer end, a lack of clarity on the incentives and a lack of clarity around what it takes to develop these technologies." Arguably more prohibitive is the "economics" of new energies such as hydrogen, he said. The cost of green hydrogen today is "between roughly $250-300/bl of oil equivalent," Prince Abdulaziz said. "What kind of a business acumen would choose to buy at $250-300/bl?" Al-Mazrouei agreed that costs are too high. "We cannot just treat the consumers as if they are ready to just pay double or triple the price [of conventional energies today]." Let's be serious The EU has set ambitious targets on renewable hydrogen. In 2022, the bloc doubled its 2030 production target to 10mn t/yr, from 5.6mn t/yr previously, and it is also working towards a separate pledge to import another 10mn t/yr by the same date. The production target is an unrealistic goal, according to the Saudi energy minister. "Those projects that have crossed the finishing line only come to 400,000t ꟷ around 4pc of the target," Prince Abdulaziz said. "How is it conceivable that in 2024, only 4pc has been achieved? How can people imagine that 10mn t/yr can be achieved?" TotalEnergies chief executive Patrick Pouyanne, who was speaking on the same panel, was even more blunt in his assessment, describing the EU's target as "impossible" and "not in reality". "Let us recognise that we are still at the infancy stage, and stop speaking about 10mn t, 20mn t, just to the media. It makes no sense," Pouyanne said. "Let's just be serious about it and find the right roadmap. Yes, we probably won't reach our target by 2030, but that's not a problem. It's more important to take steps and spend the money economically, to give them affordable and clean energy." By Nader Itayim Send comments and request more information at feedback@argusmedia.com Copyright © 2024. Argus Media group . All rights reserved.

High inventories pressure Brazil biodiesel prices


24/04/26
24/04/26

High inventories pressure Brazil biodiesel prices

Sao Paulo, 26 April (Argus) — Logistical differentials for Brazilian biodiesel contracts to supply fuel distributors in May and June fell from March and April values, reflecting higher inventories and a bumper crop of soybeans for crushing, which could increase vegetable oil production. The formula for the logistics differential of plants includes the quote of the soybean oil futures contract in Chicago, its differential for export cargoes in the port of Paranagua and the Brazilian real-US dollar exchange rate. It is the portion in the pricing linked to producers' margin. Negotiations for May and June started with plants seeking higher values to recover part of the losses incurred by unscheduled stops , the result of retailers' delays in collecting biodiesel. But the supply glut has not abated, leading to a drop in prices. With higher inventories in the market, fuel distributors stuck close to acquisition goals established by oil regulator ANP for the May-June period. Sales are expected to gain traction over the next two months, as blended diesel demand traditionally gets a seasonal boost from agricultural-sector consumption linked to grain and sugarcane crops. The distribution sector expects an extension of the current supply-demand imbalance, exacerbated by significant volumes of imported diesel at ports and lower-than-expected demand. The situation has generated concern among many participants, who see this trend as a potential sign of non-compliance with the biodiesel blending mandate. ANP data show that the compliance rate with the Brazilian B14 diesel specification dropped to 83.4pc in April from 95.2pc in March, reaching the lowest level since the 2016 start of monitoring. Non-compliance with the minimum biodiesel content accounted for 67pc of the infractions recorded during the period compared to a historical average rate of 47pc. The recent end to a special tax regime for fuel importing companies offered by northern Amapa state's secretary of finance should end a significant source of diesel price distortions and help rebalance supply in the country. Variations The steepest decline in differentials took place in northeastern Bahia state, where premiums for the period ranged from R600-830/m³ (44.35-61.35¢/USG), down from R730-1,020/m³ in the March-April period, according to a recent Argus survey. In the northern microregion of Goias-Tocantins states, the premium range also dropped by around R142/m³ to R300-535/m³ from R440-680/m³. By Alexandre Melo Brazil biodiesel plant differentials R/m³ May/June March/April ± Low High Low High Rio Grande do Sul 110 380 280 450 -120 Sorriso-Nova Mutum 50 340 220 350 -90 Cuiaba-Rondonopolis 80 405 280 450 -123 Northern of Goiás-Tocantins 300 535 440 680 -142 Southern of Goias 350 500 450 650 -125 Parana-Santa Catarina 150 450 400 480 -140 Bahia 600 830 730 1,120 -210 Source: Argus survey Send comments and request more information at feedback@argusmedia.com Copyright © 2024. Argus Media group . All rights reserved.

Lyondell Houston refinery to run at 95pc in 2Q


24/04/26
24/04/26

Lyondell Houston refinery to run at 95pc in 2Q

Houston, 26 April (Argus) — LyondellBasell plans to run its 264,000 b/d Houston, Texas, refinery at average utilization rates of 95pc in the second quarter and may convert its hydrotreaters to petrochemical production when the plant shuts down in early 2025. The company's sole crude refinery ran at an average 79pc utilization rate in the first quarter due to planned maintenance on a coking unit , the company said in earnings released today . "We are evaluating options for the potential reuse of the hydrotreaters at our Houston refinery to purify recycled and renewable cracker feedstocks," chief executive Peter Vanacker said on a conference call today discussing earnings. Lyondell said last year a conversion would feed the company's two 930,000 metric tonnes (t)/yr steam crackers at its Channelview petrochemicals complex. The company today said it plans to make a final investment decision on the conversion in 2025. Hydrotreater conversions — such as one Chevron completed last year at its 269,000 b/d El Segundo, California, refinery — allow the unit to produce renewable diesel, which creates renewable naphtha as a byproduct. Renewable naphtha can be used as a gasoline blending component, steam cracker feed or feed for hydrogen producing units, according to engineering firm Topsoe. Lyondell last year said the Houston refinery will continue to run until early 2025, delaying a previously announced plan to stop crude processing by the end of 2023. By Nathan Risser Send comments and request more information at feedback@argusmedia.com Copyright © 2024. Argus Media group . All rights reserved.

EU adopts Net-Zero Industry Act


24/04/26
24/04/26

EU adopts Net-Zero Industry Act

London, 26 April (Argus) — Members of the European Parliament (MEPs) have adopted Net-Zero Industry Act, which plans to allocate funds towards the production of net-zero technologies. The act provides a pathway to scale up development and production of technologies that are critical towards meeting the EU's recommendation of net-zero greenhouse gas (GHG) emissions by 2050. This would include solar panels, electrolysers and fuel cells, batteries, heat pumps, onshore and offshore wind turbines, grid technologies, sustainable biomethane, as well as carbon capture and storage (CCS). The act is designed to help simplify the regulatory framework for the manufacture of these technologies in order to incentivise European production and supply. It also sets a target of 40pc production within the EU for its annual "deployment needs" of these technologies by 2030. Time limits will be instated on permit grants for manufacturing projects, at 12 months if the manufacturing capacity is under 1 GW/yr and 18 months for those above that. It will introduce time limits of nine months for "net-zero strategic projects" of less than 1 GW/yr and 12 months for those above. This is further complemented by the introduction of net-zero strategic projects for CO2 storage, to help support the development of CCS technology. The act was met with positive reactions from the European Community Shipowners' Association (ECSA), which said the bill will set the benchmark for member states to match 40pc of the deployment needs for clean fuels for shipping with production capacity. ECSA said the Net-Zero Industry Act will be instrumental in supporting the shipping industry to meet targets set under FuelEU Maritime regulations , which are set to come into effect next year. By Hussein Al-Khalisy Send comments and request more information at feedback@argusmedia.com Copyright © 2024. Argus Media group . All rights reserved.

New technologies aim to boost SAF production


24/04/26
24/04/26

New technologies aim to boost SAF production

London, 26 April (Argus) — A likely rise in global demand for sustainable aviation fuel (SAF), underpinned by mandates for its use, is encouraging development of new production pathways. While hydrotreated esters and fatty acids synthesised paraffinic kerosine (HEFA-SPK) remains the most common type of SAF available today, much more production will be needed. The International Air Transport Association (Iata) estimated SAF output at around 500,000t in 2023, and expects this to rise to 1.5mn t this year, but that only meets around 0.5pc of global jet fuel demand. An EU-wide SAF mandate will come into effect in 2025 that will set a minimum target of 2pc, with a sub-target for synthetic SAF starting from 2030. This week the UK published its domestic SAF mandate , also targeting a 2pc SAF share in 2025 and introducing a power-to-liquid (PtL) obligation from 2028. New pathways involve different technology to unlock use of a wider feedstock base. US engineering company Honeywell said this week its hydrocracking technology, Fischer-Tropsch (FT) Unicracking, can be used to produce SAF from biomass such as crop residue or wood and food waste. Renewable fuels producer DG Fuels will use the technology for its SAF facility in Louisiana, US. The plant will be able to produce 13,000 b/d of SAF starting from 2028, Honeywell said. The company said its SAF technologies — which include ethanol-to-jet , which converts cellulosic ethanol into SAF — have been adopted at more than 50 sites worldwide including Brazil and China. Honeywell is part of the Google and Boeing-backed United Airlines Ventures Sustainable Flight Fund , which is aimed at scaling up SAF production. German alternative fuels company Ineratec said this week it will use South African integrated energy firm Sasol's FT catalysts for SAF production. The catalysts will be used in Ineratec's plants, including a PtL facility it is building in Frankfurt, Germany. The plant will be able to produce e-fuels from green hydrogen and CO2, with a capacity of 2,500 t/yr of e-fuels beginning in 2024. The e-fuels will then be processed into synthetic SAF. Earlier this month , ethanol-to-jet producer LanzaJet said it has received funding from technology giant Microsoft's Climate Innovation Fund, "to continue building its capability and capacity to deploy its sustainable fuels process technology globally". The producer recently signed a licence and engineering agreement with sustainable fuels company Jet Zero Australia to progress development of an SAF plant in north Queensland, Australia. The plant will have capacity of 102mn l/yr of SAF. Polish oil firm Orlen formed a partnership with Japanese electrical engineering company Yakogawa to develop SAF technology . They aim to develop a technological process to synthesise CO2 and hydrogen to form PtL SAF. The SAF will be produced from renewable hydrogen as defined by the recast EU Renewable Energy Directive (RED II) and bio-CO2 from biomass boilers, Orlen told Argus . By Evelina Lungu Send comments and request more information at feedback@argusmedia.com Copyright © 2024. Argus Media group . All rights reserved.

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