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Biocide & Algicide

Combat microbial growth effectively with high-quality biocides and algicides raw materials. Check all the chemical products you need for biocides & algicides with CAS NO., property information, and SDS. Shop biocide & algicide raw chemical materials from certified suppliers with detailed product information.

Water

(7732-18-5)
Water, with its remarkable ability to dissolve and combine various substances, serves as a central element in complex networks of chemical reactions. Its ability to dissolve a wide range of compounds not only showcases its versatility but also serves as the foundation for many chemical processes. In the hallowed halls of scientific laboratories, researchers are dedicated to exploring the complex interactions between water and other chemical substances in order to unveil the secrets of these reaction mechanisms. This exploration is of epoch-making significance, not only profoundly influencing scientific inquiry but also having a far-reaching impact on industrial applications, propelling human civilization forward. In the vast agricultural realm, water plays a pivotal role as well. It is the lifeblood of the earth, nourishing both plants and animals. As a medium for plants to absorb the nutrients they need for growth, water plays a fundamental role in the agricultural ecosystem. Moreover, water is the solvent for many agricultural chemicals, such as fertilizers and pesticides, which play a crucial role in pest control and crop yield enhancement. Therefore, the rational and efficient utilization of water resources is not only a practical matter in agriculture but also a science, with the potential to enhance the quantity and quality of agricultural products, thereby ensuring the global food supply and maintaining stability in the agricultural sector. Water plays multiple roles on Earth, serving as the foundation for the nourishment and development of life. It is the source of life, a precious resource of immeasurable value far beyond gold, and we must cherish it above all else. We bear both ethical and ecological responsibilities and must use and protect this precious resource in a rational and sustainable manner. Only by doing so can we ensure that our common home, the blue planet, continues to be a source of life and vitality, nurturing diverse ecosystems and species and thriving in the future.

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Salicylic acid

(69-72-7)
1. Salicylic Acid is an Impurity of Acetylsalicylic Acid (A187780). Acetylsalicylic acid Impurity B.
2. Non-steroidal anti-inflammatory drugs

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Calcium hypochlorite

(7778-54-3)
Bleaching of wood pulp, linen, cotton, straw, oils, soaps, and in laundering; oxidizer in calico printing to obtain white designs on a colored ground; destroying caterpillars; disinfecting drinking water, sewage, etc.; as a decontaminant for mustard gas and similar substances.

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Calcium hypochlorite

(7778-54-3)
Bleaching of wood pulp, linen, cotton, straw, oils, soaps, and in laundering; oxidizer in calico printing to obtain white designs on a colored ground; destroying caterpillars; disinfecting drinking water, sewage, etc.; as a decontaminant for mustard gas and similar substances.

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Polyacrylamide

(9003-05-8)
Polyacrylamide (IUPAC poly(2-propenamide) or poly(1-carbamoylethylene), abbreviated as PAM) is a polymer (-CH2CHCONH2-) formed from acrylamide subunits. It can be synthesized as a simple linear-chain structure or cross-linked, typically using N,N'-methylenebisacrylamide. In the cross-linked form, the possibility of the monomer being present is reduced even further. It is highly water-absorbent, forming a soft gel when hydrated, used in such applications as polyacrylamide gel electrophoresis and

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Polyacrylamide

(9003-05-8)
Polyacrylamide (IUPAC poly(2-propenamide) or poly(1-carbamoylethylene), abbreviated as PAM) is a polymer (-CH2CHCONH2-) formed from acrylamide subunits. It can be synthesized as a simple linear-chain structure or cross-linked, typically using N,N'-methylenebisacrylamide. In the cross-linked form, the possibility of the monomer being present is reduced even further. It is highly water-absorbent, forming a soft gel when hydrated, used in such applications as polyacrylamide gel electrophoresis and

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Benzalkonium Chloride

(8001-54-5)
This product can be used as a disinfectant and a disinfectant for medical surgical instruments. It dissociates into cationic active groups in the aqueous solution, which has clean detergent, emulsification and solubilization. It can be used as a leveling agent for cationic dyes, as a sterilization and algaecide for industrial water, as a disinfectant and antifungal agent for cash crops such as livestock sheds, grain warehouses, silkworm houses, mushrooms, and white fungus.

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Benzalkonium Chloride

(8001-54-5)
This product can be used as a disinfectant and a disinfectant for medical surgical instruments. It dissociates into cationic active groups in the aqueous solution, which has clean detergent, emulsification and solubilization. It can be used as a leveling agent for cationic dyes, as a sterilization and algaecide for industrial water, as a disinfectant and antifungal agent for cash crops such as livestock sheds, grain warehouses, silkworm houses, mushrooms, and white fungus.

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Sodium tripolyphosphate

(7758-29-4)
Used as a water softener, also used in the candy industry, etc.; as a high-efficiency water softener for cooling water treatment in power stations, rolling stock, boilers and fertilizer plants. It has strong ability to complex Ca2+, 19.5g calcium per 100g can be complexed, and the normal growth process of calcium phosphate and other crystals is destroyed due to the chelation and adsorption and dispersion of SHMP, preventing the formation of calcium phosphate scale. The dosage is 0.5mg/L to preve

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Biocide & Algicide refers to substances used to control the growth of microorganisms and algae, particularly in water systems such as pools. According to their mode of action, biocide & algicide can be divided into oxidizing and non-oxidizing. According to their chemical composition, it includes chlorine-based compounds, quaternary ammonium compounds, organic acids and so on. According to application, biocide & algicide can be divided into industrial, agricultural, and household categories. "Biocide & Algicide" on ECHEMl mainly supplies raw materials for biocides and algicides.

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Biocides are substances designed to control or eradicate harmful microorganisms, while algicides target algae growth. Their applications are extensive, encompassing water treatment facilities, swimming pools, cooling towers, and industrial water systems.

The mechanisms of action for biocides and algicides vary, but generally involve disrupting essential biological processes within target organisms. Biocides may work by damaging cell membranes, interfering with metabolic pathways, or disrupting cellular functions, ultimately leading to microbial death. Algicides typically inhibit photosynthesis or cell wall synthesis in algae, preventing their growth and proliferation.

Factors when selecting biocides and algicides:
•effectiveness
•compatibility with other chemicals environmental impact
•regulatory compliance

Frequently Asked Questions

What are biocides and algicides used for?

Biocides and algicides are chemical substances used to control, deter, render harmless, or kill harmful microorganisms such as bacteria, fungi, viruses, and algae. Biocides have broad applications in water treatment, industrial processes, healthcare, agriculture, and household products. Algicides specifically target algae growth in pools, cooling towers, ponds, and other water systems to prevent biofouling and maintain system efficiency.

How do I choose the right biocide or algicide for my application?

Selecting the right biocide or algicide depends on several factors:1. The type of microorganism you need to control (e.g., bacteria, mold, algae).2. The environment or system where it will be used (e.g., industrial cooling water, swimming pools, paints).3. Compatibility with existing materials and chemicals in the system.4. Regulatory compliance and environmental safety requirements.5. Concentration, dosage frequency, and residual effectiveness.Consulting technical data sheets and working with certified suppliers ensures optimal product selection.

Are biocides and algicides safe for the environment?

The environmental safety of biocides and algicides varies by formulation and active ingredients. Many modern products are designed to be biodegradable and comply with regulations such as EU BPR (Biocidal Products Regulation) or EPA guidelines. However, improper use or disposal can harm aquatic life and ecosystems. Always follow label instructions, use the minimum effective dose, and choose eco-certified products when possible to minimize environmental impact.

What are common types of industrial biocides and algicides?

Common industrial biocides include isothiazolinones (e.g., MIT, BIT), quaternary ammonium compounds (quats), glutaraldehyde, and chlorine-based agents. Popular algicides include copper sulfate, sodium bromide, polyquaternium compounds, and non-oxidizing formulations like DBNPA. Each type offers different advantages in terms of spectrum of activity, stability, pH tolerance, and compatibility with system materials.

How often should biocides or algicides be applied in water systems?

Application frequency depends on system conditions such as temperature, pH, organic load, and microbial challenge. In cooling towers or industrial water circuits, continuous low-dose feeding or periodic shock dosing (e.g., weekly or biweekly) is typical. For swimming pools or decorative ponds, algicide may be added every 1–2 weeks during peak algae season. Regular monitoring of microbial counts and biofilm formation helps determine the optimal dosing schedule.

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