Recently, the 2026 Green Hydrogen, Ammonia, Methanol and SAF Industry Chain and Supply Chain Innovation and Development Conference was successfully held in Ningbo. Xu Daipeng, Strategic Manager of Trina Green Hydrogen, was invited to attend this industry event and delivered a keynote speech titled “Innovating Hydrogen Energy Equipment, Advancing Coordinated PV+ESS+Hydrogen Integrated Development.” Approaching the topic from multiple dimensions including policy, landscape, pain points, and solutions, he provided systematic new insights to support the high-quality development of the green hydrogen-enabled hydrogen-ammonia-methanol and sustainable aviation fuel (SAF) industry chain.
Clear Policy Direction, Accelerating Reshaping of the Industry Landscape
In his keynote sharing, Xu Daipeng first systematically reviewed and provided an in-depth interpretation of the policy direction for China’s hydrogen energy industry during the “15th Five-Year Plan” period. As the “dual-carbon” goals continue to advance, hydrogen energy, as a clean and low-carbon secondary energy source, has become increasingly prominent in the energy transition. The continuous improvement of the hydrogen energy policy framework during the “15th Five-Year Plan” period has pointed the way forward and provided strong support for industry development.
Meanwhile, the global hydrogen energy industry landscape is being reshaped at an accelerating pace. Major economies such as Europe and the United States have been ramping up their strategic deployment in hydrogen energy; technology iterations in green hydrogen production, storage and transportation, and downstream applications are accelerating; and competition across the international hydrogen energy industry chain and supply chain is intensifying. Against this backdrop, enterprises in China urgently need to seize policy opportunities and the window of global industrial transformation, accelerate breakthroughs in core technologies, and speed up industrial scale-up.
Targeting Industry Pain Points, PV+ESS+Hydrogen Integration Breaks Through
In response to the practical pain points currently facing the development of the hydrogen energy industry, Xu Daipeng conducted an in-depth analysis. Issues such as relatively high green hydrogen production costs, insufficient coordination between renewable energy consumption and hydrogen production processes, and the need to improve system integration remain key bottlenecks constraining industrial scale-up.
To address these challenges, Trina Green Hydrogen proposed a solution centered on innovative hydrogen energy equipment and coordinated advancement of PV+ESS+hydrogen integrated development. By deeply coupling PV power generation, ESS, and water electrolysis-based hydrogen production, it enables efficient consumption of renewable energy and low-cost production of green hydrogen. At the same time, leveraging continuous iteration of hydrogen energy equipment technologies, it improves overall system operating efficiency and stability, providing solid equipment support and system assurance for the scaled and economically viable development of the green hydrogen industry.
Green Hydrogen Empowers Downstream, Expanding New Application Space for Hydrogen-Ammonia-Methanol and SAF
As a clean, low-carbon energy carrier and industrial raw material, green hydrogen has broad application prospects in downstream fields such as hydrogen-ammonia-methanol synthesis and sustainable aviation fuel (SAF) production. Green ammonia and green methanol produced using green hydrogen as a raw material can be widely applied in chemicals, shipping, power generation, and other sectors, representing an important pathway to achieve deep industrial decarbonization; meanwhile, green hydrogen-based SAF provides a practical and feasible solution for emissions reduction in the aviation industry.
Focusing on the core proposition of how green hydrogen can effectively support the high-quality development of downstream industry chains, Trina Green Hydrogen put forward systematic thinking in areas such as optimization of technology pathways, industrial collaboration mechanisms, and innovation in implementation models, offering useful reference for participating enterprises to seize downstream application opportunities for green hydrogen and expand industrial development space.
This conference sharing not only demonstrated Trina Green Hydrogen’s deep accumulation in hydrogen energy equipment technologies and system solutions, but also injected new momentum for industry stakeholders to build consensus and collaboratively advance the high-quality development of the green hydrogen industry.

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