Products

About petroglyphs

Smart Hydrogenation Reactor – Floor‑Standing

1. Heat Transfer Efficiency: The built‑in high‑efficiency cooling coil, paired with an automatic stepless refrigerant control valve, enables automated heat transfer. 2. Process Intensification: Equipped with micrometer‑scale gas dispersers, self‑priming agitators, and baffle plates, while the equipment’s rotational speed is increased to 2000 rpm, significantly enhancing material mixing performance. 3. Safety: The equipment features a sealed, integrated active ventilation experimental chamber and is equipped with a hydrogen gas alarm for proactive safety interlocks. 4. Intelligence: On-site touch‑screen HMI control, multi‑stage programmed temperature ramping, three‑tier interlock protection, and remote control, monitoring, and alarm functionality via a WeChat mini‑program. 5. Efficiency: Quick‑release flanges, a design that prevents vessel jamming, and a rapid heating device for the furnace at the end of the reaction.

查看详情

Hydrogenation Reactor

A hydrogenation reactor is a type of reaction equipment commonly used in the chemical industry, primarily for carrying out hydrogenation reactions under high-pressure conditions. Its design and fabrication must strictly adhere to relevant safety standards to ensure the safe execution of the reaction process. Hydrogenation reactors typically consist of several key components, including the reactor vessel itself, a heating system, a cooling system, a stirring system, a sealing system, and a safety system. The reactor vessel serves as the reaction container and is equipped with a stirrer inside to maintain uniform mixing of the reactants. The heating and cooling systems are used to control the reaction temperature and pressure, respectively. The sealing system prevents leakage of the reaction materials, while the safety system safeguards both the operators and the equipment.

查看详情

Hydrogenation Reactor – Jacketed Reactor

The hydrogenation reactor is equipped with a reaction system, a heating system, and a control system, as well as a gas feed system and a liquid feed system. The reactor’s total volume is 100 mL, and it uses electric heating. Online data acquisition, recording, and storage are implemented, with the following parameters being monitored: internal reactor temperature, furnace temperature, internal reactor pressure, stirring speed, and controlled feed flow rate and gas inlet flow rate.

查看详情

Smart-max Reactor

This equipment features a nickel-based alloy-reinforced reactor vessel that is resistant to high temperatures, high pressures, and hydrogen corrosion. It is equipped with an intelligent jacket/coil temperature control system and a multi‑mode agitator (propeller or turbine type, suitable for materials with varying viscosities). A gas distributor enhances hydrogen contact efficiency, while a sealed agitator shaft paired with triple safety safeguards—pressure relief valves, rupture discs, and real‑time monitoring—ensures stable operation during hydrogenation reduction, refining, and other reactions. Specifically designed for the pharmaceutical intermediates, petrochemical refining, and fine chemical industries, this equipment delivers precise temperature control, high conversion rates, and inherent safety, empowering the production of high‑value‑added chemicals.

查看详情

Gas–Liquid Equilibrium Reactor

It is primarily used for absorption and adsorption tests under both isothermal and temperature‑varying conditions in three‑phase systems involving gas, liquid, and solid. The equipment can measure relevant process parameters—such as the solubility of specific gaseous components, the maximum absorption capacity, and the adsorption amount—at various gas–liquid and gas–solid ratios. It is commonly employed in the development of composite amine solutions for decarbonization, organic liquid-phase hydrogen storage and release carriers, as well as in testing the adsorption capacity and regeneration efficiency of solid adsorbents. By requiring only small amounts of material to obtain test data, it helps reduce development costs and provides a reliable testing platform for product development.

查看详情

5L Supercritical Reactor System

5L Supercritical Batch Reactor System: The system is equipped with a reaction module, a heating system (electrically heated), and a control system, along with a matching reactor vessel and an electric lifting mechanism for the heating system. The design pressure is 25 MPa, and the design temperature is 200°C. It is primarily used to evaluate and study process operations, explore optimal process parameters, and, through sampling, analysis, evaluation, and data processing, obtain data on product distribution, product properties, and other relevant metrics—providing foundational design data for pilot-scale and industrial process development.

查看详情

High‑Throughput Supercritical Carbon Dioxide Reactor

The four parallel CO2 supercritical foaming experimental setups employ an automatic heating furnace for temperature control, with a design pressure of 25 MPa and a design temperature of 300°C, while the operating temperature ranges from 0 to 250°C. The reactor contains CO2 in its supercritical fluid state. These setups are primarily used to evaluate and study process conditions, explore optimal process parameters, and, through sampling, analysis, evaluation, and data processing, obtain data on product distribution and product properties—providing foundational design data for pilot-scale and industrial process design.

查看详情

High-temperature, high-pressure corrosion test autoclave

High‑Temperature and High‑Pressure Corrosion Test Autoclaves and Electrode Corrosion Testing Equipment – Applications of In-Situ Material Corrosion Testing Systems Under High Temperature and High Pressure. Molten salt reactors are a type of nuclear fission reactor in which the primary coolant—and even the nuclear fuel itself—is a molten salt mixture. As one of the six advanced reactor concepts in the fourth generation of nuclear reactors, molten salt reactors are renowned for their safety (operating at atmospheric pressure), excellent neutron economy, and high thermal efficiency. In molten salt reactors, nuclear-grade graphite is typically used as both a reflector and a moderator, coming into direct contact with the molten salt. Due to the porous nature of graphite, the molten salt can permeate its pores under molten salt reactor operating conditions, leading to changes in graphite’s mechanical and thermal properties and accelerating graphite degradation. Consequently, graphite’s permeability has a profound impact on the operational characteristics and service life of molten salt reactors. At present, research and development efforts on nuclear graphite materials are primarily focused on high‑temperature gas‑cooled reactors; there is no commercially available nuclear graphite specifically designed for molten salt reactors. Therefore, developing and screening nuclear graphite that meets the stringent requirements for molten salt reactors has become an indispensable area of research for the commercialization of molten salt reactors.

查看详情

High‑pressure, fully transparent reactor

The all‑transparent reactor is made from quartz and zirconia, offering features such as high pressure resistance, corrosion resistance, tolerance to certain temperature ranges, and visual transparency. It is suitable for scientific research in industries including petroleum, chemical engineering, pharmaceuticals, military industry, mining and metallurgy, and food processing. The reactor employs independent mechanical buttons for one‑step automatic separation of the vessel body and lid, and is equipped with a pre‑installed pressure sensor from a UK‑imported brand, featuring digital display of pressure readings and an overpressure alarm interlock.

查看详情

Laboratory Reactor

The laboratory reactor developed by Shanghai Yanzheng boasts advantages such as simple operation, high flexibility, controllable reaction processes, and excellent reproducibility. It is ideally suited for conducting small-scale experiments and research on reactions. It is widely used in chemical laboratories, biotechnology labs, pharmaceutical companies, food science research, and other fields, where it is employed to study new materials, new drugs, and novel compounds.

查看详情
< 1...101112...26 > proceed page