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In the **energy strategy framework, the Ningdong Energy and Chemical Industry Base in Ningxia holds an important position. Within this industrial cluster, the modern coal chemical pilot platform operated by Ningxia Ningdong Technology Entrepreneurship Investment Co., Ltd., with its unique operating mechanisms and innovative ecosystem, serves as a key hub that connects laboratory research and development with industrial implementation. As one of the first pilot platforms in chemical parks in China and the first of its kind in the Northwest region, it not only effectively addressed the long-standing problems associated with chemical pilot projects, such as difficulties in obtaining approvals and slow progress in implementation, but also, through a collaborative model of \"research and development in the east plus testing in the west\" along with a \"1+N+X\" service framework, it attracted innovative resources from across the country to the western region, thus becoming an important \"testing ground\" for the development of future industries such as coal-based new materials and green chemistry. Recently, this platform was successfully selected as one of the first **-grade manufacturing pilot platforms by the Ministry of Industry and Information Technology. Accelerating the transformation of scientific and technological achievements – Pilot testing is a crucial step in turning scientific and technological achievements into industrial applications, yet its progress is often hindered by long approval processes, unclear management standards, and heavy responsibilities related to safety and environmental protection. Starting with institutional innovation, this pilot platform was the first to introduce a series of policy measures aimed at easing constraints on researchers and enterprises. This pilot platform introduces a model for pilot projects that involves government registration for research projects and management during and after the industrialization phase. Together with innovative mechanisms such as bundled environmental impact assessments, approval processes that can be completed entirely within the park, and exemption from liability regarding safety and environmental issues, this approach significantly simplifies the project approval process. It effectively addresses problems such as difficulties in getting pilot chemical projects approved, numerous approvals required for process changes, and unclear standards, allowing pilot projects to go from initiation to implementation within 2 months. These institutional innovations constitute the institutional foundation for the platform’s attractiveness. At the same time, this pilot platform has established a cross-regional collaboration model of \"pilot research and development in the east + pilot testing and refinement in the west,\" which enables a large number of laboratory results from universities and research institutions in the east to undergo engineering validation and scale-up here, completing the final steps prior to industrialization. To date, this pilot platform has attracted 41 projects and secured 26 more projects nationwide, of which 70% come from the eastern region. The platform has also established a technology investment attraction model of \"piloting while scaling up for industrialization\" to accelerate the industrialization of high-tech achievements. For example, an organic liquid hydrogen storage project in Beijing was able to get underway within 3 months on this platform, and pilot production was successfully achieved within 10 months; the platform invested 30% to help complete the industrialization of this project within 1 year. Establish a full-chain support system from testing to production. Policy incentives alone are not sufficient; successful pilot testing requires solid hardware infrastructure and professional services. This platform comprises three functional areas: a production operation center, a collaborative innovation center, and a testing and inspection center. It features an experimental building, a control building, 10 class-A pilot workshops, as well as comprehensive auxiliary facilities. It houses a **-level science and technology enterprise incubator and a **-level demonstration base for entrepreneurship and innovation in small and micro enterprises. Service systems such as a technology market, an instrument and equipment sharing platform, an industrial supermarket, and an industrial Internet platform have been established to provide companies operating there with comprehensive support ranging from pilot testing and pilot production to the promotion of results and their industrialization. In terms of equipment investment, this pilot platform focuses on the coal chemical industry and new materials sector, having invested nearly 188 million yuan in purchasing advanced instruments and equipment from both domestic and international sources. Among them, the technical specifications of key pilot-scale equipment such as the coprecipitation catalyst device, melting crystallization device, and polymerization device for special new materials have reached the advanced level in China, while those of microchannel reactors, gas chromatographs, etc. have reached the international advanced level. This pilot platform has also collaborated with enterprises based in the Ningdong area sowie universities and research institutions such as Ningxia University to establish a shared instrumentation platform in Ningdong, thereby significantly reducing the R&D barriers and costs for enterprises. At present, this pilot-scale platform is equipped with over 10 pilot production lines for tasks such as the preparation of coprecipitated catalysts, the synthesis of metallocene catalysts, the polymerization of special new materials, and the recycling of wastewater. It has completed the pilot development of various biodegradable materials, including polyglycolic acid (PGA), polyketones (POK), polypropylene carbonate (PPC), fully biodegradable plastic films, and composite biodegradable polymers made from potato waste. From concept validation and process development to scale-up testing, the platform offers comprehensive services across the entire value chain. In a lithium-ion battery polymer adhesive project carried out by a certain new energy company, the platform brought in experts to help optimize the catalysts and manufacturing processes, increasing the product yield from 78% to 82%. This effort ultimately contributed to the successful implementation of an industrialization project with an investment of 9.6 billion yuan. In the PGA pilot project of a chemical technology company in Shanghai, the platform worked together with the enterprise to address issues such as incomplete dehydration, high pyrolysis temperatures, and unstable quality in PGA production. Together, they established a shared pilot line for crystalline polymerization, providing pilot testing services for the products of related enterprises. This level of engagement enables the platform to go beyond the role of a \"landlord\" and become a true \"innovation partner.\" Building an innovative ecosystem for the future – This pilot platform serves not only individual projects but also aims to create a sustainable innovation ecosystem. By establishing an \"1+N+X\" open system – that is, one core pilot-scale production platform linked to N enterprise pilot workshops as well as X universities, research institutions, and technology companies across the country – it is possible to promote the sharing of equipment, talent, and technology on a national scale. At the same time, the platform has established a comprehensive R&D and transformation system that combines independent R&D, joint R&D, commissioned R&D, and pilot-scale production. It focuses on advancing technologies in key areas such as industrial catalysis, microreaction technology, and green chemistry, thereby contributing to the high-quality development of the Ningdong coal chemical industry. Talent is the core to the operation of the pilot-scale platform. This pilot platform has established a multi-level, multi-channel mechanism for attracting talent; it has carried out extensive cooperation with universities such as Tianjin University and East China University of Science and Technology to jointly create various industry-university-research platforms including the Ningxia East China University of Science and Technology Modern Coal Chemical Engineering Research Institute and the China University of Mining and Technology Ningdong Energy and Chemical Engineering Research Institute. This has enabled the formation of a multidisciplinary pilot team with expertise in technology, engineering, and safety. Looking to the future, the platform has a clear plan. In the short term, the goal of this platform is to become a first-class pilot production platform for the manufacturing industry in China, ensuring basic coverage of pilot production capabilities across key industrial chains, with facilities that can meet the diverse needs related to the pilot testing of technological achievements in this sector ; In the medium to long term, efforts will be made to establish 6 public pilot production lines, including ones for low-risk common technologies, in order to create a high-quality and efficient pilot production service system that will support the modern coal chemical industry cluster in moving forward in a direction toward higher sophistication and greener practices.