Straw-enriched PLA/PBAT degradable plastics technology

2026-08-19 14:48:20

0

0

0

The balance between the cost and performance of bio-based and degradable plastics is the key to the large-scale promotion of alternatives to traditional plastics. This technology uses corn straw as a natural reinforcing filler to blend with PLA (polylactic acid) and PBAT to produce degradable plastics: after pretreatment and surface modification, the straw is well combined with the resin matrix, while maintaining the degradability of the material, improving mechanical properties and thermal stability, and significantly reducing the cost of raw materials. The high-value utilization of straw also opens up a way for agricultural waste. The products can be used in shopping bags, agricultural films, disposable tableware and packaging, and can be processed using conventional blown film and injection molding equipment. The technology has been built and commissioned a pilot plant, which has verified the feasibility of the process and has the basis for process scaling, making it suitable for regions with abundant straw resources and companies producing degradable plastic products. Services such as formula and process authorization, straw pretreatment and modification technology guidance, granulation and molding process support, and operation training can be provided.

New Materials and Polymer Materials

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

Co-production of porous carbon from amylose green extraction

2026-08-19 14:48:10

0

0

0

This technology adopts a green extraction route: it replaces strong acid hydrolysis with a clean process, efficiently extracting saponin from ginger, elecampane, and other saponin plants, greatly reducing the generation of highly concentrated organic wastewater. The plant residues after extraction are further carbonized and activated to produce porous carbon materials that can be used in adsorption, electrode materials, and other fields, achieving the high-value utilization of all components from the source, and solving the environmental problems in the saponin industry. This technology combines the production of pharmaceutical intermediates with the preparation of biomass materials, especially suitable for regions where saponin planting resources are concentrated and environmental protection requirements are stringent. At present, a pilot plant has been completed and put into operation, which has verified the feasibility of the process and has the basis for process scaling. It can provide process package authorization, raw material adaptability evaluation, porous carbon product scheme design, basic design support, driving guidance, and operation training services.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

Multi-Response Generator Development Technology

2026-08-19 14:47:59

0

0

0

This technology is oriented toward the customized development of multi-phase reactors, covering reactor configuration design (fixed bed, slurry bed, bubble tower, circulating fluidized bed reactor, etc.), internal component optimization, fluid distribution and transmission enhancement, and amplification principles research. Based on a combination of experimental measurements and computational fluid dynamics simulations, it solves common problems such as uneven mixing, difficulty in controlling hot spots, and rapid efficiency decline during the amplification of multi-phase systems, providing engineering support for the industrialization of new processes. The technology has been built and commissioned in pilot plants, which has verified the effectiveness of the design methods and amplification principles and has laid the foundation for process amplification. It can provide services such as reactor selection and design, cold mold/heat mold experiments, CFD simulation analysis, and diagnostic and commissioning guidance for industrial equipment modification.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

DMTO-III technology for the production of low-carbon olefins from methanol

2026-08-19 14:47:49

0

0

0

Methanol-to-olefins (MTO) is a key technology for the production of ethylene and propylene from non-petroleum sources. The third-generation MTO technology has achieved significant improvements over the previous two generations. DMTO-III employs a new generation of catalysts and a fluidized bed reaction-regeneration process: a single unit has a larger processing capacity, lower methanol consumption, higher ethylene and propylene selectivity and yield, and can increase olefin production without the addition of methanol feed; the process has a relaxed requirement for methanol feedstock, and can be flexibly connected with coal-to-methanol, natural gas-to-methanol, and imported methanol, providing a diversified olefin feedstock solution for both coal-rich regions and coastal areas. The technology has been built and commissioned in a pilot plant, which has verified the feasibility of the process and has the basis for process scaling, making it suitable for large-scale owners planning to build new coal (methanol) to olefins projects or upgrading existing MTO units. Services including process package licensing, catalyst supply solutions, basic design support, commissioning guidance, and operation training are available.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

Ethanol catalytic dehydrogenation to acetaldehyde technology

2026-08-19 14:47:38

0

0

0

Ethanol is the basic raw material for the production of various fine chemicals such as acetic acid, glycerol, and pyridine compounds. This technology uses ethanol as the raw material and adopts a catalytic dehydrogenation route to produce ethanol: under the action of copper-based or modified catalysts, ethanol is dehydrogenated to produce ethanol and hydrogen gas, with mild reaction conditions, high selectivity, and recoverable hydrogen gas; compared with the ethylene oxidation method, this route has flexible raw material sources (biological ethanol and synthetic ethanol), a short process, low investment, and no corrosive media, making it suitable for regions with abundant ethanol resources and small- and medium-scale fine chemical supporting needs. The product scheme can be directly connected to downstream acetic acid, acetic anhydride, and other units, enabling the extension of the ethanol industry chain. This technology has been built and commissioned a pilot plant, which has verified the feasibility of the process and has the basis for process scaling. The company can provide process package authorization, catalyst selection and lifetime management recommendations, basic design support, commissioning guidance, and operation training services, with the requirement that the customer provide the necessary ethanol raw materials and hydrogen utilization or discharge conditions.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

Ethane-CO2 coupling conversion to ethylene and synthesis gas technology

2026-08-19 14:47:29

0

0

0

This technology uses the ethylene production and carbon utilization value of methane-CO2 coupling conversion route. Under the action of a special catalyst, CO2 assists in the dehydrogenation of methane to produce ethylene, while CO2 is reduced to CO, which together with the hydrogen produced as a by-product of dehydrogenation forms a synthetic gas product. Compared with traditional steam cracking, this route has a lower reaction temperature, lower energy consumption and carbon emission intensity, and is particularly suitable for owners with abundant methane resources (shale gas, associated gas, imported methane) and who place great importance on carbon reduction. The synthetic gas produced can be connected to downstream units for ketone synthesis, methanol production, and so on. A pilot plant has been built and commissioned, which has verified the feasibility of the process and has the basis for process scale-up. Services such as process package licensing, catalyst selection, reactor and separation scheme design, commissioning guidance, and operation training are available.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

Fetoparaffin hydrogenation isomerization III+ base oil technology

2026-08-19 14:47:17

0

0

0

The III+ lubricating oil base oil has high viscosity index, low volatility and excellent oxidation stability, and is a core component of high-end engine oils and industrial oils, mainly relying on the hydrogenation process. This technology uses Fetoparaffin as raw material to produce III+ class base oil through the hydrogenation isomerization-supplementation refining process: Fetoparaffin has high purity and contains almost no sulfur and nitrogen aromatics, which is an ideal raw material; a special dual-function catalyst achieves selective isomerization of long-chain normal hydrocarbons, while maintaining high viscosity index and significantly reducing the boiling point, resulting in high product yield and stable quality. This technology is naturally connected to the coal-to-oil and natural gas-to-oil (GTL) industry chains, providing a path for Fetoparaffin companies to expand into downstream high-value-added products. At present, a pilot plant has been built and commissioned, which has verified the feasibility of the process and has the basis for process scaling. Services such as process package authorization, catalyst selection and supply recommendations, fractionation scheme design, basic design support, commissioning guidance, and operation training are available.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

Cycloalkyl crude oil to bright oil processing technology

2026-08-19 14:47:06

0

0

0

This technology is aimed at the deep utilization of naphthenic base oil, providing hydrogenation isomerization catalysts and complete processes: under high-pressure hydrogenation conditions, heavy components are refined, isomerization and selective cracking are coordinated, improving the viscosity-temperature performance and oxidation stability of the base oil, and high-quality bright oil products are obtained, filling the gap in product quality of conventional solvent refining processes. The catalysts take into account activity, selectivity, and resistance to impurities, and the process flow is well compatible with existing hydrogenation units. At present, a pilot plant has been built and put into operation, which has verified the feasibility of the catalysts and the process, and has the basis for process scaling. It is suitable for refineries and specialty oil companies with naphthenic base oil resources. Services such as catalyst technology authorization, complete process design, raw material adaptation evaluation, commissioning guidance, and operation training are available.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

2,6-Naphthalene dicarboxylic acid production technology

2026-08-19 14:46:56

0

0

0

2,6-Naphthalene dicarboxylic acid (2,6-NDCA) is a key monomer for high-performance polyester PEN (poly(naphthalene dicarboxylic acid, ethylene glycol ester), which is significantly superior to PET in heat resistance, gas barrier properties, and mechanical strength, and is used in high-end films, fibers, and packaging. This technology uses 2,6-dialkyl naphthalene as raw material to produce 2,6-naphthalene dicarboxylic acid by liquid-phase catalytic oxidation: through the synergistic optimization of the catalyst system and oxidation process conditions, the high-efficiency directional oxidation of the alkyl group on the naphthalene ring is achieved, and the crude product is refined to meet the polymerization level requirements. This monomer has long been a problem of high difficulty in synthesis and limited supply. This technology provides raw material support for the localization of PEN and high-end copolymers. At present, a pilot plant has been built and commissioned, which has verified the feasibility of the process and has the basis for process scaling, and is suitable for owners who plan to build high-end polyester materials. Services such as process licensing, raw material and catalyst solutions, refining process design, commissioning guidance, and operation training are available.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

Technology for the preparation of cyclohexylbenzene

2026-08-19 14:46:45

0

0

0

The technology provides two production pathways: benzene hydrogenation-alkylation coupling conversion, in which benzene is used as raw material to partially hydrogenate to form a cyclopentene intermediate and then alkylate it in situ with benzene; or benzene and cyclopentene are directly alkylated. The key to the process is the precise matching of hydrogenation depth and alkylation selectivity, with a specialized catalyst system that inhibits multiple alkylation and excessive hydrogenation side reactions, resulting in high selectivity of the target product. The technology is suitable for owners with access to pure benzene resources and plans to develop a benzene-cyclopentene (and hence nylon) industry chain. A pilot plant has been built and commissioned, which has verified the feasibility of the process and provides the basis for process scale-up. Services including process package licensing, catalyst selection and supply recommendations, basic design support, commissioning guidance, and operation training are available.

Petrochemical and Coal Chemical Industries

Chemical Engineering Technology Research and Development and Process Package

Russia

Kazakhstan

Kyrgyzstan

Tajikistan

Turkmenistan

Uzbekistan

Middle East

T - Technology & Patents

Want more comprehensive showcase of your advantage? Click to join.
Want more precise matches for your project? Click to post.
+ Post Your Requirement
Application for Service Provider Entry
Company Name*
Registered Capital*
Service Provider Category*
Corporate Logo*
·支持JPG/PNG/JPEG/PDF格式
·Suggested Size: 200x200px
·File size must not exceed 2MB
Company Profile*
Type(Multiple selection Allowed) *
Industry(Multiple selection Allowed) *
Country / Region(Multiple selection Allowed) *
Start your cross-border engineering collaboration here
8 to 12 characters, including numbers and letters
Start your cross-border engineering collaboration here
8 to 12 characters, including numbers and letters
FAQ关闭
What are the differences in compliance requirements between chemical engineering projects in the Middle East and those in Southeast Asia?
Compliance requirements for chemical engineering projects in the Middle East and Southeast Asia vary significantly due to differences in regional policies, industrial foundations, and social environments. Key focus areas include environmental standards, safety certifications, and localization requirements, tailored to the industrial positioning and governance characteristics of each region.
For large-scale integrated refining and petrochemical projects, what specialized technical capabilities and project experience should suppliers possess?
In view of the scale, integration, and intensification characteristics of large petrochemical integrated projects, suppliers are required to possess full-process petrochemical integration capabilities, large-scale chemical engineering EPC general contracting expertise, and specialized technical capabilities for cross-border compliance implementation.
How to choose the right chemical engineering service provider?
Selecting a chemical engineering service provider requires a comprehensive multi-dimensional evaluation based on project type, scale, and implementation scenario, covering qualification standards, technical capabilities, and service systems. Priority should be given to verifying the provider's strength through resources of the Silk Road Chemical Engineering Service Platform, with particular focus on confirming successful project achievements in energy and chemical engineering to validate their actual delivery capability.
How can buyers check the progress of project coordination?
After signing in, you can click on the avatar in the upper right corner of the webpage to view the progress and status updates of all connected projects on the "My Account - Project History" page, and communicate with platform customer service at any time regarding project connection matters.
Can the posted project requirement information be modified later?
You can modify the deadline for posted project requirements. This operation can be performed on the "My Account - Project History - My Posts - Service Demand" page. If your requirements have changed, it is recommended to update the information in a timely manner to ensure that suppliers can stay informed of the latest situation.
How to filter suppliers that meet your requirements? How should filter tags be combined to achieve precise matching?
You can use the platform's filtering function to find suppliers that meet your needs. On the "Demand and Supply - Supply Square" page, you can filter by tags such as service type, industry, country/region, and response time. For more precise matching, it is recommended to combine multiple filtering conditions. Start by using primary conditions (such as service type and industry) to narrow down the scope, then use secondary conditions (such as country/region and response time) to further pinpoint your search.
How can buyers post project requirements? What core information needs to be specified?
Purchasers can post project requirements through the following steps: After signing in the platform, click on "Demand and Supply," enter the "Demand Square," click the "Post Your Requirement" button, and fill in the requirement details as prompted on the page. Information to be filled out includes: service type, industry, country/region, project stage, specific requirements, contact information, etc. The more detailed the requirement information provided, the easier it is to attract suitable suppliers.
How do suppliers register on the platform?
After logging in, you can click the "Search" button, then click "All Service Types," scroll to the bottom of the page, and click the "Join Now" button to fill in your service provider's relevant information. The key details required include: service type, industry, country/region, company name, establishment date, company size, etc. The more detailed and professional the information you provide, the easier it is to attract the attention and trust of buyers.
How can suppliers check the project integration progress?
After signing in, you can click on the avatar in the upper right corner of the website to enter the "My Account - Project History" page, where you can view the progress and status updates of all connected projects and communicate with platform customer service at any time regarding project connection matters.
How can suppliers showcase their supply capabilities? What core information needs to be clarified?
Suppliers can publish their service capabilities through the following steps: After signing in the platform, click the "Demand and Supply" button, then enter the "Supply Square," click the "Showcsae Your Capability" button, and fill in the relevant information according to the page prompts. Key information that needs to be specified includes: service type, industry, country/region, response time, service advantages, contact information, etc. The more detailed and professional the information provided, the easier it is to attract the attention and trust of buyers.
What is the project onboarding process?
Project Matching Process:
1. Post project requirements / supply capabilities – Share your project needs or what you can offer.
2. Intelligent matching & recommendations – The system automatically matches and suggests potential partners.
3. Initial communication – Get in touch to exchange basic information.
4. Confirm cooperation intent – Both parties agree in principle to move forward.
5. Detailed offline negotiation – Discuss specifics in person or in a formal meeting.
Need more help? Click the chatbot, Silky, on the right side.
How to add to desktop关闭
关闭