Phosphoric Acid Activated Carbon

Based on the optimization of liquid absorption, the PAC can be used as a solvent for the decoloration of foodstuffs and drinks, as well as for the purification of drugs, as well as the processing of waste water. The well developed mesoscopic network guarantees the effective removal of high molecular weight organic compounds, pigments, and trace pollutants from the process flow.

What Is Phosphoric Acid Activated Carbon?

Phosphate Active Carbon is a chemical active carbon which is obtained by impregnating a carbon-containing feedstock – usually wood, sawdust, or lignocellulose – with phosphate (H), PO (CO), and then subjected to a controlled heat treatment at a temperature generally between 400oC and 800oC, during activation, the phosphate can be used as a desiccant and an activator, penetrating into the feedstock structure, suppressing the formation of the tar, and catalyzing the evolution of a highly porous inner structure. Subsequently, the active carbon is cleaned thoroughly to eliminate the remaining phosphate and its derivatives prior to drying, sizing and preparation for final use.

The process of chemical activation with phosphate is especially suitable for wood based raw materials, in which the active carbon has been continuously produced with extremely large BET surface area – usually more than 1500 meters per gram – and the pore diameter profile strongly weighted towards the middle hole. This mesopore-dominant structure is the defining property of PAC, which distinguishes it from steam activated or zinc chloride active alternatives. Rich mesopores allow fast absorption dynamics and high efficient trapping of medium-to-large-molecular-weight organic compounds, which makes phosphate active carbon a preferred material for applications in which high molecular pollution elimination, decoloring, and liquid phase cleaning are the main processing goals.

Why Choose Phosphoric Acid Activated Carbon?

Industry Challenges About Phosphoric Acid Activated Carbon

Residual Phosphorus Content

Partial cleaning following activation may leave a trace amount of phosphate or phosphate in the finished product, which may influence the purity level and restrict its suitability for sensitive food, drink, and medicine applications.

Higher Production Complexity

Chemical immersion, controlled carbonation, and thorough post activation cleaning steps that are necessary for the activation of the phosphoric acid increase the technical complexity and the cost of the process as compared with the traditional steam activated carbon.

Raw Material Sensitivity

Since PAC is mainly manufactured from timber or bamboo raw materials, the quality of the product and the continuity of the supply are more sensitive to the availability of the raw materials, the local sourcing restrictions and the seasonality of the seasons.

Limited Gas-Phase Application Suitability

The metapore-dominant pore structure of PAC has been optimized for liquid absorption, but it does not perform well in gas phase purification applications, which provide excellent performance.

pH Sensitivity in Liquid-Phase Applications

The presence of residual PS in the process flow may affect the PH value of the treatment flow, which needs to be carefully monitored when strictly controlling PH is a key process parameter.

Why Use Our Phosphoric Acid Activated Carbon

Well-Developed Mesoporous Structure

The activation of phosphate gives rise to mesoporosities – voids in the 2-50-nanometers-allowing effective absorption of high-molecular-weight organic compounds, pigments, and colours that are not efficiently captured by micropore-dominant carbons.

Broad Molecular Weight Adsorption Range

In phosphate active carbon, the combination of micro-pores and mesopores allows for efficient absorption over a broad range of molecular sizes, ranging from tiny organic molecules to big polymers and high molecular weight pollutants.

Excellent Performance in Batch Liquid-Phase Processing

The PAC is ideal for bulk processing operations - such as sugar refinery, juice clarifying and API cleaning - to provide accurate, adjusted dosage and quick absorption reactions in a mixing tank handling system.

Related Applications

PAC has been extensively used in liquid phase cleaning processes, which require efficient removal of high-molecular-weight pollutants, colorants, and organic pollutants. Due to its metapore composition and large surface area, it is especially useful in the field of production that is not negotiable in terms of purity and clarity. The applications below highlight the most established uses across food, drug, and industry processing sectors.

Industry Solutions

Phosphate activated carbon provides targeted adsorption performance across a diverse range of industrial and environmental applications. It has a unique pore structure and surface chemical properties that are especially useful for applications that do not meet the standard active carbon standards. Every sector, from the preparation of foodstuffs, to the cleaning of medicines, to the production of chemistry, requires the right mix of solutions. Visit our Industrial Solutions website to find out how PAC can solve your particular cleaning, decoloring and absorption problems in your industry.

Packaging & Logistics Services

Secure & Customizable Packaging

The products shall be enclosed in a durable, moistureproof pouch or bulk container, so as to guarantee the cleanliness and completeness of transportation. Customized packing options for special size and handling needs.

Reliable & Flexible Global Shipping

Working with reliable logistic partners, we provide a flexible delivery system for maritime, aerial and land-based cargo. Prompt delivery and safe transport to worldwide destinations.

Dedicated Order & Support Coordination

We offer special support for tracking and documenting from the order validation to the last shipment. Availability of technical and logistical support to guarantee the success of the supply chain experience.

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