HCBBS Forum (English)
Submit Chemical Projects / Find Solutions
Amplify Your Requirements on a Broader Chemical Platform *Engineering · Technology · Equipment · Solutions*
Submit Request

Forty years of hard work led to the creation of China’s independent aromatic hydrocarbons technology suite!

2015-11-18View Original

Thread Content

  In China’s petrochemical industry, there is a technology that reflects the level of the country’s equipment manufacturing sector: a set of aromatic compounds production technologies with independent intellectual property rights, developed over four decades by Chinese petrochemical scientists and engineers. This technology has recently caught the interest of a renowned international oil company, and it is set to go global, becoming highly sought-after in the context of overseas expansion and the Belt and Road Initiative. Forty years of hard work to create a masterpiece. Aromatic hydrocarbons, including toluene and p-xylene (PX), are important basic chemical raw materials. Every aspect of our daily lives (clothing, food, shelter, transportation) relies on its contributions; for example, the clothes we wear, the cars we drive, the packaging for food, medicines, and beverages, as well as various plastics we use – all are related to aromatic hydrocarbons. Wu Wei, deputy chief engineer at the Sinopec Research Institute of Petrochemical Science, told reporters that the basic raw materials for the petrochemical industry fall into two main categories: olefins and aromatics. There are a vast number of aromatic derivative products; among the more than 8 million known organic compounds, aromatic compounds account for about 30%.   Aromatic hydrocarbon technology packages are high-end technologies that are characterized by their complexity and high technical requirements; they represent a key indicator of the level of development in the petrochemical industry. Previously, only two renowned foreign companies worldwide possessed the complete technology for aromatics, resulting in a de facto monopoly on this technology market.   According to Wu Wei, aromatic hydrocarbon production technologies have high technical barriers due to their high degree of system integration and the difficulty involved in their development; moreover, the costs associated with technology licensing, as well as specialized adsorbents and catalysts, are extremely high. In 1975, China’s investment in the technology for a PX plant with an annual capacity of 27,000 tons amounted to several million dollars; in 2007, the technical costs alone for a PX plant with an annual capacity of 600,000 tons were in the tens of millions of dollars.   Kong Dejin, deputy chief engineer at the Sinopec Shanghai Research Institute of Petrochemical Technology, explained that in order to overcome the core challenges related to aromatics technology, generations of professionals from the petrochemical industry, universities, and research institutions have worked hard for over 40 years since the 1970s, and as a result China has become the third country after the United States and France to possess complete technologies related to aromatics. China holds the intellectual property rights for all the technologies involved in this project, with over a hundred authorized patents both domestically and internationally.   Six academicians, including Min Enze, gave high praise to this project, stating that the successful development of the aromatic hydrocarbons technology package represents a \"milestone\" in petrochemical technology. This project has achieved numerous significant innovations and breakthroughs in areas such as processes, engineering equipment, control methods and systems, as well as adsorption materials and catalytic materials. It is at the international leading level overall and holds great value for promotion and application.  Conquering the last fortress: Hong Dingyi, an executive director of the Chinese Chemical Society, believes that the success of transferring highly complex, capital-intensive, and risky technologies such as aromatic hydrocarbon production technologies from the laboratory to industrial-scale facilities in China is largely due to top-level support, close integration among industry, academia, and research institutions, as well as the advantages of highly integrated collaboration in research, design, construction, and production within China’s petrochemical sector.   Since the 1970s, institutions such as the Sinopec Research Institute of Petrochemical Science and the Shanghai Petrochemical Research Institute have successively developed production technologies for aromatic units, including aromatic extraction, xylene isomerization, toluene disproportionation, and alkylation. However, the PX adsorption separation technology has yet to be overcome, remaining the last stronghold of the aromatic hydrocarbons technology suite. Due to this shortcoming, our country is forced to import millions of tons of PX products each year, costing nearly $10 billion in foreign exchange.   Wu Wei told reporters that in order to break the monopoly of foreign adsorption and separation technologies, Sinopec began exploring and researching PX adsorption and separation technologies in the early 1990s. It developed the domestically produced adsorbent RAX-2000A, which was tested on an industrial scale at the Qilu branch in 2004; all its performance indicators met or exceeded those of imported adsorbents, and its price was one-third lower than that of imported ones at the time.   In 2009, in order to break the monopoly of foreign companies on PX adsorption and separation technology, Sinopec established a leadership team for advancing aromatics-related technologies, headed by Senior Vice President Dai Houliang. This team was tasked with tackling the last remaining challenge in these technologies – PX adsorption and separation – in order to complete the development of a comprehensive set of aromatics technologies; every effort was to be made to overcome this difficult obstacle. In the same year, PX adsorption separation technology was included in Sinopec’s “Ten Key Projects” initiative, marking the official start of efforts to develop independent PX adsorption separation processes.   In 2011, Sinopec utilized its independently developed PX adsorption separation technology to build the first industrial plant with an annual capacity of 30,000 tons at Yangzi Petrochemical; this plant used the newly developed RAX-3000 type of domestic adsorbent, thereby verifying the reliability of Sinopec’s own PX adsorption separation technology. Since then, Sinopec has successfully overcome the last hurdle in its independent aromatic hydrocarbon production technology – adsorption separation technology – and acquired the complete set of technologies for aromatic hydrocarbon production.   Relying on its independently developed aromatic compound technology, Sinopec built another large-scale aromatic compound complex at Hainan Refining & Chemical Complex with an annual PX production capacity of 600,000 tons. It was successfully commissioned on December 27, 2013, after a single successful start-up.   An innovative triple jump Hong Dingyi told reporters that over the past 40 years, China’s aromatics technology has gone through three stages: following others, operating in parallel, and then leading through innovation.   PX technology is the core component of the aromatic hydrocarbons technology package. Taking the development of adsorption separation processes as an example, Wu Wei explained that PX separation technology utilizes a simulated moving bed adsorption separation process, which integrates adsorbents, specialized equipment, relevant processes, and dedicated control systems. The overall process is complex, making it extremely difficult to develop such technologies. PX products require a high degree of purity, with a minimum level of 99.7% or more. The simulated moving bed technology is characterized by complex process pipeline systems, which need to circulate various materials such as raw materials and products with significantly different compositions on a cyclic basis. Residues of these materials in the pipelines can lead to contamination of the products. Even trace amounts of residual other materials, if not removed, will affect the purity and yield of the product.   In order to overcome the technical challenges as quickly as possible, researchers gave up their holidays and weekends, working tirelessly day and night on experiments. They developed a simulated moving bed technology with independent intellectual property rights, overcame the control difficulties associated with the adsorption process control system (MCS), and creatively devised a pipeline flushing process for the adsorption chamber beds that differs from similar international technologies. They also designed specialized components that met the requirements of the process, thereby fully resolving all the technical issues related to the PX adsorption separation process.   Furthermore, during the research and development process, scientists also focused on emphasizing the concepts of greenness and low carbon emissions. Compared with similar domestic plants, Hainan Refining and Chemical’s PX plant consumes 25% less energy per ton of PX produced, which translates into savings of hundreds of millions of yuan each year in terms of energy reduction. In addition, researchers were the first to use the low-temperature heat energy from the top of the recovery tower to generate electricity, enabling the combined plant to produce more electricity than it consumes – marking a historic breakthrough as the plant was able to supply electricity to external systems, with a daily output of 65,000 kWh. As a result, Hainan Refining and Chemical’s PX unit has become the new global benchmark for aromatic compound production units, thanks to its lowest energy consumption.   Understand one’s own foundation. Currently, the global annual consumption of aromatics for industrial use is around 120 million tons. There are more than 130 aromatics production plants, located in developed countries and regions such as the United States, Western Europe, Japan, and South Korea. PX is the aromatic compound with the highest consumption and the most representative production technology; it features a diverse range of downstream industries and serves as a fundamental component of the petrochemical industry.   Wu Wei told reporters that with the continuous development of China’s economy and the growing needs of its people, China’s consumption of PX has increased rapidly, with an average annual growth rate of over 20% in the past 15 years. To date, our country has become the world’s largest consumer of PX, but it has long suffered from a shortage of domestic supply and has relied on imports. In 2014, approximately 10 million tons were imported, accounting for about half of total consumption, of which 75% came from developed countries such as the United States, Japan, and South Korea. While domestic citizens protest against the development of the PX industry, the United States, Japan, and South Korea are all building new PX plants for the Chinese market.   In response to public concerns regarding PX, Lu Dapeng, the spokesperson for Sinopec, believes that it is necessary to present facts and reasons from a scientific perspective, as well as to analyze the root causes of the problem from a political standpoint, so that the public understands that the aromatics industry, which is crucial to the country’s economy and people’s livelihoods, must remain under Chinese control and not be subject to external influence.   Furthermore, in response to the societal panic stemming from the demonization of PX, and to ensure green and safe production, Hainan Refining & Chemical has made \"zero pollution, zero leaks, zero emissions, and intrinsic safety\" key objectives from the outset of the project’s construction, aiming to achieve \"no emissions in the air, no leaks on the surface, and no seepage underground.\"   To ensure the intrinsical safety of its facilities, Hainan Refining has invested over 20% in safety and environmental protection. The SO2 content in the flue gas is as low as 20 mg/Nm3, which is well below the standards for Category 1 emissions and represents an advanced level on a global scale. Additionally, the emission of carbon dioxide, a greenhouse gas, is reduced by 12,000 tons per year, exceeding even the international advanced levels. Furthermore, in the raw material purification unit, catalytic reactions have been innovatively used in place of physical adsorption, thereby significantly extending the catalyst’s lifespan and reducing solid waste emissions by 98%.   In Hong Dingyi’s view, thanks to the complete intellectual property rights, advanced standards, and a commitment to continuous improvement associated with China’s aromatic hydrocarbons technology, \"we can promote our aromatic hydrocarbons technology globally, just as we have promoted China’s high-speed rail technology.\" ”As China’s own aromatic hydrocarbon technologies make their way onto the global stage and enable it to gain control over pricing, this is of great significance for promoting the rapid development of related manufacturing industries and downstream sectors, as well as for improving the quality and efficiency of China’s economic development and accelerating structural transformation.
Reply #22019-04-05
One of the three major countries in the world that possess aromatic hydrocarbon technology

Submit a Project

**Looking for Chemical Technology, Equipment & Solutions?** No Registration Required Broader Platform Exposure | Global Chemical Service Provider Connections

Submit Request — Free Consultation

Disclaimer

This is an automated machine translation of the original thread. Some technical terms may have inaccuracies; the original text shall prevail. Click "View Original" at the top right to access the source page, which supports IP-based automatic real-time language translation. Please watch out for contact details and sales inducements to prevent fraud. All content and translations are for reference only, representing solely the poster's personal views. For enquiries, email service@hcbbs.com.