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PRODUCT PARAMETERS
Description
Overview of Nonionic Surfactant
Nonionic surfactants are surface-active agents that do not ionize in aqueous solutions. They are widely used in various industries, including detergents, cosmetics, and pharmaceuticals, due to their excellent solubilizing, emulsifying, and wetting properties. These surfactants are derived from alcohols, acids, or amines and are known for their versatility and compatibility with other surfactants.
Features of Nonionic Surfactant
Non-Ionic Nature: Do not form ions in water, making them less sensitive to hard water and electrolytes.
Versatility: Compatible with both anionic and cationic surfactants, allowing for broad formulation flexibility.
Solubilization: Excellent at solubilizing oils and other hydrophobic substances.
Emulsification: Effective in creating stable emulsions, which is crucial for many cosmetic and pharmaceutical formulations.
Wetting Ability: Enhances the wetting of surfaces, improving cleaning efficiency.
Low Foaming: Generally produce less foam compared to other types of surfactants, which can be advantageous in certain applications like industrial cleaning.
Temperature Stability: Maintain effectiveness over a wide range of temperatures, making them suitable for high-temperature processes.
Environmental Friendliness: Some nonionic surfactants are biodegradable, contributing to more environmentally friendly products.

(Pesticide Emulsifier; Mixed Pesticide Emulsifiers; Nonionic/Anionic Surfactants)
Specifications of Pesticide Emulsifier; Mixed Pesticide Emulsifiers; Nonionic/Anionic Surfactants
Pesticide emulsifiers are essential elements in farming formulations, made to stabilize solutions by decreasing interfacial stress between water and oil stages. Mixed chemical emulsifiers combine nonionic and anionic surfactants to enhance efficiency, ensuring compatibility with a variety of energetic components and enhancing security under differing problems. These blends are enhanced for usage in emulsifiable concentrates (ECs), emulsion-in-water (EW), and suspoemulsions (SEs).
** Nonionic Surfactants: ** Usual nonionic representatives include ethoxylated fatty alcohols, castor oil ethoxylates, and alkylphenol ethoxylates. They are identified by their hydrophilic-lipophilic equilibrium (HLB) worths, typically varying from 8 to 16, which identify their emulsifying efficiency. Nonionic surfactants provide temperature level stability, low foaming, and resistance to tough water.
** Anionic Surfactants: ** Instances include calcium dodecylbenzene sulfonate and sodium alkyl sulfates. These surfactants supply strong emulsification, fast dispersing, and enhanced wetting buildings. Their adverse cost improves compatibility with cationic active components and maintains formulations in alkaline conditions.
** Mixed Emulsifiers: ** Combining nonionic and anionic surfactants (e.g., 70% nonionic + 30% anionic) creates synergistic impacts, broadening solution versatility. Trick specifications consist of:
– ** HLB Array: ** 10– 14 for oil-in-water (O/W) solutions.
– ** Active Web content: ** 70– 90% to guarantee high emulsifying efficiency.
– ** pH Security: ** 5– 9 for compatibility with varied chemical chemistries.
– ** Thickness: ** 200– 800 mPa · s (at 25 ° C )for easy handling and mixing.
– ** Cloud Factor: ** > 70 ° C to prevent phase separation in high-temperature settings.
These emulsifiers are compatible with organophosphates, pyrethroids, and triazole fungicides. They enable steady solution development at reduced focus (5– 15% w/w) and lower sedimentation or creaming. Safety and security features include low oral and dermal poisoning (LD50 > 2000 mg/kg), biodegradability, and conformity with international standards (ISO, FAO, EPA). Applications encompass herbicides, pesticides, and fungicides, guaranteeing uniform spray insurance coverage and boosted efficacy. Storage recommendations include great, dry problems to maintain shelf life (2+ years). Blended nonionic/anionic emulsifiers are cost-effective, minimize phytotoxicity threats, and support sustainable farming practices with maximized chemical distribution.

(Pesticide Emulsifier; Mixed Pesticide Emulsifiers; Nonionic/Anionic Surfactants)
Applications of Pesticide Emulsifier; Mixed Pesticide Emulsifiers; Nonionic/Anionic Surfactants
Pesticide emulsifiers play a critical role in boosting the performance and functionality of agrochemical formulations. These specialized surfactants allow the steady blending of oil-based chemicals with water, creating uniform emulsions that make sure also distribution and efficient insect control. Common applications consist of emulsifiable concentrates (ECs), where the emulsifier supports the pesticide-active ingredients in water, protecting against splitting up throughout storage or application. This is important in agriculture, gardening, and public health programs, where consistent protection on plants, dirt, or surface areas is crucial. Emulsifiers also decrease obstructing in spray tools, boost life span, and reduce phytotoxicity by enhancing droplet dimension and adhesion.
Combined chemical emulsifiers combine nonionic and anionic surfactants to leverage their complementary homes. Nonionic surfactants, such as ethoxylated fatty alcohols, supply stability in tough water and differing pH degrees, while anionic surfactants, like alkylbenzene sulfonates, supply strong emulsifying power and quick spreading. This synergy develops functional solutions suitable with a broader range of pesticides, including herbicides, fungicides, and pesticides. Combined emulsifiers are especially efficient in facility storage tank blends or foliar sprays, where they improve penetration via waxy plant follicles and enhance rainfastness. Their versatility makes them ideal for modern-day incorporated bug management (IPM) systems, which require accuracy and lowered chemical waste.
Nonionic/anionic surfactants are extensively utilized as adjuvants to improve pesticide efficiency. Nonionic versions enhance wetting and spreading, making certain comprehensive protection on hydrophobic surfaces, while anionic types boost solubilization and emulsion stability. Together, they optimize the shipment of systemic pesticides, making it possible for faster uptake by plants or bugs. These surfactants are also type in reducing drift and dissipation throughout application, boosting ecological security. In addition, they are utilized in water-based solutions, such as suspoemulsions, to stabilize inappropriate energetic ingredients. Their reduced poisoning and biodegradability straighten with lasting farming techniques, lowering ecological impact.
In summary, chemical emulsifiers and mixed surfactant systems are important for contemporary farming, providing tailored services for solution stability, application performance, and environmental conformity. By making it possible for exact dosing and decreasing waste, they support sustainable plant security and higher returns.
Company Introduction
Welcome to Robocup, a premier global supplier of high-quality surfactants. Our extensive range includes anionic, cationic, nonionic, and amphoteric surfactants, catering to industries such as personal care, textiles, cleaning, and industrial applications. With advanced manufacturing facilities and rigorous quality control, we ensure that our products meet the highest international standards. We pride ourselves on our commitment to innovation, sustainability, and customer satisfaction. Our dedicated team provides tailored solutions to meet your specific needs. Partner with us for reliable, high-performance surfactants that drive your business forward. Explore our offerings and discover the difference today.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of Pesticide Emulsifier; Mixed Pesticide Emulsifiers; Nonionic/Anionic Surfactants
What are pesticide emulsifiers and why are they important? Pesticide emulsifiers are surfactants that help mix oil-based pesticides with water, creating a stable emulsion for even application. They prevent separation, ensuring consistent potency and coverage, which is critical for effective pest control. Without emulsifiers, pesticides would be less efficient, leading to uneven distribution and potential crop damage.
What is the difference between mixed pesticide emulsifiers and single-type emulsifiers? Mixed pesticide emulsifiers combine nonionic and anionic surfactants to leverage the benefits of both. Nonionic surfactants work well in low-pH or hard water conditions, while anionic surfactants enhance stability in alkaline environments. Single-type emulsifiers (only nonionic or anionic) may lack versatility, making mixed types ideal for complex formulations requiring adaptability across varying water qualities or pesticide chemistries.
Why are nonionic/anionic surfactants commonly paired in emulsifiers? Nonionic and anionic surfactants complement each other. Nonionic surfactants reduce surface tension and improve wetting, while anionic surfactants provide electrostatic repulsion to stabilize emulsions. Together, they broaden compatibility with different pesticides, improve emulsion stability under diverse conditions, and reduce the risk of phase separation. This synergy ensures optimal performance in challenging environments.
What applications are mixed pesticide emulsifiers best suited for? They are ideal for emulsifiable concentrates (ECs), suspension concentrates (SCs), and oil-in-water (EW) formulations. They’re widely used in herbicides, insecticides, and fungicides requiring precise dilution and long-term storage stability. Mixed emulsifiers also excel in tank-mix scenarios where pesticides are combined with fertilizers or adjuvants, preventing incompatibility issues.
Are nonionic/anionic emulsifiers safe for crops and the environment? When used as directed, they are generally safe. These surfactants are designed to degrade after application, minimizing environmental persistence. However, overuse or improper application can harm beneficial organisms or cause phytotoxicity. Always follow dosage guidelines and regulatory standards. Opt for biodegradable, low-toxicity emulsifiers to align with sustainable farming practices.

(Pesticide Emulsifier; Mixed Pesticide Emulsifiers; Nonionic/Anionic Surfactants)
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