
Ecological
The environmental value of rare earth compounds
Rare earth compounds have become key materials for ecological management due to their strong adsorption, catalytic activity and environmental compatibility. DeepcelaTM‘s basic products such as oxides, chlorides, and phosphates can efficiently solve the three core problems of water purification, soil remediation, and waste gas treatment through flexible compounding and process adaptation, and promote the transformation of environmental governance to low consumption and high efficiency.
Rare Earth Compounds: The “All-round Guard” of Green Ecological Governance – DeepcelaTM Rare earth Build a Pollution Prevention and Control System
The application of Rare earth in the ecological environment
Rare earth Oxides
- Cerium oxide (CeO₂): photocatalytic degradation: decomposes organic substances such as dyes and pesticides in industrial wastewater to replace traditional Fenton reagents; Automobile exhaust purification: synergistically catalyze the harmless conversion of CO and NOx with precious metals.
- Lanthanum oxide (La₂O₃): Soil heavy metal fixation: adsorption of cadmium and lead ions, reducing the risk of crop pollution.
Rare earth Chlorides
- Lanthanum chloride (LaCl₃): Wastewater phosphorus removal: LaPO₄ precipitate is formed with phosphate for deep dephosphorization in sewage treatment plants.
- Cerium chloride (CeCl₃): aquaculture wastewater treatment: inhibit the overgrowth of cyanobacteria and prevent and control eutrophication of water bodies.
Rare earth Fluorides
- Lanthanum fluoride (LaF₃): Fluorine pollution control: Efficient adsorption of fluoride ions in industrial wastewater to ensure the safety of drinking water.
Rare earth hydroxides
- Lanthanum hydroxide (La(OH)₃): Acid soil improvement: neutralizes soil acidity and simultaneously fixes heavy metal ions.
- Cerium hydroxide (Ce(OH)₃): Radioactive wastewater treatment: adsorption of radionuclides such as uranium and thorium.
Rare earth Nitrates
- Cerium nitrate (Ce(NO₃)₃): Industrial flue gas desulfurization: catalytic oxidation of SO₂ to sulfate to reduce the formation of acid rain.
Rare earth Phosphates
- Lanthanum phosphate (LaPO₄): Soil slow-release remediation agent: slow release of lanthanum ions, long-term passivation of heavy metal activity.
Rare earth Carbonates
- Lanthanum carbonate (La₂(CO₃)₃): Landfill leachate treatment: adsorption of ammonia nitrogen and organic pollutants to reduce treatment load.
Rare earth Sulfates
- Lanthanum sulfate (La₂(SO₄)₃): Industrial sludge dewatering: improves sludge dewatering efficiency through charge neutralization.
Rare earths Citrate
- Cerium citrate (CeC₆H₅O₇): Bioremediation enhancer: promotes microbial degradation of petroleum hydrocarbon pollutants.
Future direction: modular governance solution
- Water purification combination: lanthanum chloride (phosphorus removal) + cerium citrate (degrading) synergistically treats black and odorous water;
- Soil remediation combination: lanthanum oxide (passivated heavy metal) + lanthanum phosphate (slow-release remediation) for long-term treatment of farmland pollution.
Our services:
From source prevention and control to end-of-line treatment, DeepcelaTM‘s basic rare earth compounds provide ready-to-use solutions to ecological and environmental problems. Relying on the supply capacity of all categories and the environmental engineering database, we are committed to providing cost-effective treatment materials for environmental protection enterprises and municipal units, and building a clean and beautiful home together.
Our Advantage
The Xiamen Rare Earth Science and Technology Innovation Center and the Baotou Rare Earth High-tech Zone Industrial Base have established a three-level system of “basic research (Xiamen) – engineering transformation (pilot platform) – large-scale manufacturing (Baotou)”, reducing the technology transformation cycle by 40%.
Agile development mechanism and modular product library: Based on the three major platforms of nano-rare earth oxides, high-purity compounds, and functionalized salts, over 100 derivative materials can be quickly combined, covering special crystal form control (such as cubic cerium oxide), surface functional modification, and other requirements. Value-added service extension: Provide application simulation testing (such as catalytic performance prediction), competitive product benchmarking analysis, and patent layout consultation to help customers reduce trial-and-error costs
Led by top experts: The chief scientist is the project leader of the Xiamen Rare Earth Materials Research Center of the Chinese Academy of Sciences. The core members include experts from various fields such as materials science, biomedicine, new energy materials, and ecological environment. DeepCeLa “is not just a material supplier; it is also an innovation partner in the industry.”
Advanced production techniques and compliance with the ISO 9001 quality control system provide customers with more competitive products and solutions. The products comply with the EU REACH and ROHS regulations and are sold both at home and abroad.
DeepCeLaTM, relying on a national-level scientific research team and an intelligent production base, focuses on the research and development, production and global supply of nano-rare earth oxides, high-purity rare earth oxides, rare earth compounds and customized rare earth materials, and is committed to providing core material solutions for the following industries: New energy, biomedicine, photoelectric technology, chemical, ceramics and glass, ecological, agriculture, and metal.