201W es una resina de intercambio aniónico básico fuerte tipo gel de matriz de poliestireno, que contiene -N (CH3)3, equivalente al álcali sólido. Con alta capacidad de intercambio de masa total y buena resistencia mecánica.
Índice
|
Nombre |
Especificación |
|
Apariencia |
Perlas esféricas transparentes de color blanco pálido a amarillo pálido |
|
Estructura del polímero |
Poliestireno en gel reticulado con divinilbenceno |
|
Grupo funcional |
-N(CH3)3 |
|
Forma iónica tal como se envía |
Cl- |
|
Capacidad de intercambio de peso |
≥3,5 mmol/g |
|
Capacidad de intercambio de volumen |
≥1,35 mmol/ml |
|
Densidad real (g/ml) |
1,07~1,10 g/ml |
|
Densidad aparente (g/ml) |
0,67~0,73 g/ml |
|
Capacidad de retención de agua |
42%~50% |
|
Rango de tamaño de partículas |
0,45~0,8 mm ≥95 |
|
Coeficiente de uniformidad |
≤1,6 |
|
Recuento total de cuentas (%) |
≥95% |
Condiciones de operación de referencia
|
Temperatura máxima de funcionamiento |
100℃ |
|
Altura de llenado de resina |
1~3 m |
|
Velocidad de operación |
2~10 BV/h |
|
Velocidad de retrolavado |
4~10 BV/h |
|
Velocidad de regeneración (desorción) |
1~2 BV/h |
|
Agente regenerador |
2BV3~5 % HCl, 2BV2~4 % NaOH |
Solicitud
extracción de wolframio
Precauciones
La resina debe conservarse húmeda. La temperatura óptima es superior a 0 °C. Si no se utiliza durante un periodo prolongado, debe almacenarse en un espacio cerrado o añadirse agua salada al 5 % o más. Debe utilizarse un agente anticongelante durante el transporte. No coloque objetos pesados sobre la resina, ya que podría sufrir daños.
Generalmente requiere un flujo de agua alcalina-ácida-agua para el procesamiento. El requisito estricto requiere tres ciclos antes de alcanzar el punto de ionización final.
Es necesario considerar diferentes tasas de expansión de transformación para reservar suficiente espacio para evitar el desbordamiento de resina y garantizar la altura adecuada del nivel de líquido; la relación del diámetro de la columna debe estar dentro de un rango razonable y evitar la corriente de polarización; utilice una columna húmeda o un lavado a contracorriente para eliminar las burbujas dentro de la capa de resina.
Antes de que el líquido entre en la columna de resina, se deben realizar pasos como floculación, filtración o filtración con arena para no obstruir los poros de la resina con sólidos suspendidos.
La resina dentro de la columna que no se ha utilizado durante mucho tiempo debe almacenarse fuera de la columna después de lavarla o agregar agua salada en el medio resistente a la sal mientras se mantiene el nivel del líquido no deshidratado con el retrolavado habitual para aflojar la resina en caso de aglomeración.
Comprehensive Technical Overview of Strong and Weak Base Anion Exchange Resins
This overview highlights the key applications, oxidative stability, and performance differences of strong and weak base anion exchange resins, showcasing Hebei Lijiang Biotechnology Co., Ltd.’s advanced capabilities in high-grade resin manufacturing.
Strong base anion exchange resins play a critical role in industrial purification, high-purity water production, food processing, and pharmaceutical separation. Hebei Lijiang Biotechnology Co., Ltd., a high-tech manufacturer specializing in advanced ion exchange materials, provides industrial-grade, food-grade, pharmaceutical-grade, and nuclear-grade resins engineered for demanding global applications. With ISO9001, SGS, WQA, and FDA-compliant certifications, the company ensures stable performance, safety, and long-term reliability across different industries.
Strong base anion exchangers, including models comparable to amberlite IRA 400, are widely used for removing sulfate, chloride, nitrate, silica, and natural organic matter from water systems. In power plants, electronics manufacturing, and chemical processing, strong anion exchange resin is a core component in deionization, mixed-bed polishing, and ultra-pure water treatment lines. These resins offer high ion-exchange capacity, excellent mechanical strength, and full pH-range functionality.
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Oxidative stability is a key performance factor determining the lifespan and reliability of strong base anion exchange materials. Hebei Lijiang Biotechnology Co., Ltd. manufactures high-performance strong base resins, including products equivalent to amberlite IRA 400, designed to resist degradation from chlorine, chloramine, peroxide, and ozone. As a certified ISO9001, SGS, WQA, and FDA-compliant enterprise, the company ensures that each resin features excellent durability and structural integrity under harsh operating conditions.
Strong base anion exchangers contain quaternary ammonium functional groups that maintain their ion-exchange capability across the full pH range. However, exposure to oxidants can cause functional group loss or polymer backbone damage. Hebei Lijiang improves oxidative resistance by optimizing crosslinking density, enhancing polymer purity, and strengthening the polystyrene-DVB matrix. These engineering advancements significantly slow oxidation-induced capacity decline.
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Through advanced material design and strict quality standards, Hebei Lijiang Biotechnology Co., Ltd. provides oxidation-resistant strong base anion resins tailored for demanding water treatment, pharmaceutical, food-grade, and nuclear-grade environments.
Weak base and strong base anion exchange resins differ significantly in functional groups, operating ranges, and purification capabilities. Hebei Lijiang Biotechnology Co., Ltd., a leading manufacturer certified by ISO9001, SGS, WQA, and compliant with FDA food-grade requirements, produces both resin types for global industrial, food, pharmaceutical, and nuclear applications.
Strong base anion exchange resin contains quaternary ammonium groups and functions across the entire pH range. These materials can remove both strong acid anions (Cl⁻, SO₄²⁻, NO₃⁻) and weak acid anions (silica, CO₂-derived species). Products comparable to amberlite IRA 400 are widely used in deionization, mixed-bed polishing, high-purity water production, and pharmaceutical separation using anion exchange chromatography resin.
In contrast, weak base anion exchange resins contain primary, secondary, or tertiary amine groups. They are effective only in neutral or alkaline conditions and primarily remove strong mineral acids. They cannot remove weakly dissociated acids, making them suitable as the first stage in dealkalization or pretreatment before SBA units. Their lower chemical consumption and good fouling resistance make them economical for large-scale applications. When used in purification systems, they are commonly assembled in a weak anion exchange column for acid reduction.
Functionally, SBA resins offer higher selectivity, broader pH operation, and superior oxidative resistance. WBA resins offer higher working capacity for strong acids and lower regeneration cost.
In water treatment, a typical process pairs WBA for acid removal followed by SBA for high-purity polishing. In pharmaceutical and biotechnology fields, SBA chromatography is preferred for protein and nucleic acid purification, while WBA is applied to organic acid refinement.
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