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Related Product
Sodium Dichloroisocyanurate Granules
Synonym(s): SDIC, NaDCC, DccNa
Molecular Formula:C3Cl2N3O3.Na or C3Cl2N3NaO3
CAS NO.:2893-78-9
EINECS No.: 220-767-7
pH: 5.5-7.0
Available Chlorine: 60MIN
Application: Applied for disinfection of swimming pools and spas.
Trichloroisocyanuric Acid Tablets
TCCA, Symclosene, Tri Chlorine, Trichloro
Appearance: White Tablets (20g, 200g, according to customers needs)
Molecular Formula:C3Cl3N3O3
CAS NO.:87-90-1
Available Chlorine (%): 90 MIN
pH: 2.7 - 3.3 ( 25℃, 1% solution)
Hazard Class/Division:5.1
Sodium Dichloroisocyanurate Disinfectant
Product Name: Sodium Dichloroisocyanurate
Synonym(s): SDIC, NaDCC, DccNa
Molecular Formula: NaCl2N3C3O3
CAS No.: 2893-78-9
pH Value: 5.5 - 7.0 (1% water solution)
Available Chlorine (%): Customize according to requirements
Product Name: pH Plus
Appearance: White Granules
Content (%): 99 MIN
Fe (%): 0.004 MAX
Synonym(s): Cyanuric Acid, Isocyanuric acid, CA, CYA, ICA
Molecular Formula: C3H3N3O3
CAS No. 108-80-5
Molecular Weight 129.07
Appearance: White crystalline granules
Purity (%, on dry basis): 98.5 MIN: 98.54
Ash (%): 0.1 MAX: 0.05
Undissolved matter in DMF (%): 0.3 MAX: 0.22
pH (1% water solution): 4.0 - 4.5: 4.29
Fe Content (ppm): 20 MAX: 15.2
Ammonium Content (ppm): 200 MAX: 99
Chemical Name: 1,3,5-triazine-2,4,6-triol
Synonym(s): CYA, Isocyanuric Acid, ICA, CA
Appearance: White powder, granules or tablets
Molecular Formula: C3H3N3O3
CAS No.: 108-80-5
Appearance: Viscous colorless to light yellow liquid
pH: 6.0 - 8.0
Content: 59 - 63%
Boiling Point: > 100 ℃
Freezing Point: < -20 °C
Water Solubility: Completely miscible
Trichloroisocyanuric Acid Powder
TCCA, Symclosene
Appearance: white powder
Molecular Formula:C3Cl3N3O3
CAS NO.:87-90-1
Available Chlorine (%): 90 MIN
pH: 2.7 - 3.3 ( 25℃, 1% solution)
Hazard Class/Division:5.1
Trichloroisocyanuric Acid Granules
TCCA, Symclosene, Tri Chlorine, Trichloro
Appearance: White Granules
Molecular Formula:C3Cl3N3O3
CAS NO.:87-90-1
Available Chlorine (%): 90 MIN
pH: 2.7 - 3.3 ( 25℃, 1% solution)
Hazard Class/Division:5.1
What is Anhydrous Calcium Chloride?
Anhydrous Calcium Chloride is a versatile chemical compound that is widely used in various industries. It is a white, odorless, and non-toxic substance that is highly soluble in water. With its hygroscopic properties, Anhydrous Calcium Chloride is commonly used as a desiccant to control humidity and moisture in a wide range of applications, including food and beverage processing, pharmaceuticals, and construction. It is also utilized as a drying agent in gas and liquid dehydration processes, as well as a coolant in refrigeration systems.
Primary Applications Of Anhydrous Calcium Chloride
One of the primary applications of anhydrous calcium chloride is as a desiccant or drying agent. Due to its hygroscopic nature, it effectively absorbs water vapor from the air, making it valuable in preventing moisture-related damage to various products, including packaged goods, electronics, and chemicals.
In addition to its role as a desiccant, anhydrous calcium chloride is widely used in de-icing applications. When spread on icy or snowy surfaces, it lowers the freezing point of water, leading to the melting of ice and snow. This makes it a common ingredient in road salt formulations used to enhance winter road safety by preventing the formation of ice on roadways.
Anhydrous calcium chloride also finds application in the food industry as a firming agent for fruits and vegetables. It helps maintain the texture of these perishable items during processing and storage. Moreover, it is utilized in the oil and gas industry for well drilling and completion fluids, serving as a dehydrating agent to prevent the swelling of clay formations.
Despite its diverse applications, anhydrous calcium chloride should be handled with care, as it can cause irritation to the skin and eyes. Proper safety precautions, including the use of protective gear such as gloves and goggles, are essential when working with this compound.
In conclusion, anhydrous calcium chloride is a vital chemical compound with a broad range of applications due to its hygroscopic nature. From preventing moisture damage to serving as a de-icing agent, this compound plays a crucial role in various industries, showcasing its versatility and significance in modern applications.

Preparation of Anhydrous Calcium Chloride
Step 1
Take a beaker. Wear gloves and place limestones in it until the beaker is filled up by a quarter of its total volume.
Step 2
Add approximately 1/4th of a beaker of HCl (hydrochloric acid) to the limestones.
Step 3
As the HCl dissolves the limestone it starts to bubble. Mix the contents in the beaker gently and take care that the reaction completes. Add a little limestone if all the limestones dissolve in it completely.
Step 4
Filter off the solids by pouring the solution through the filter paper as soon as the solution stops bubbling.
Step 5
Heat the second beaker which contains the calcium chloride solution. Solid calcium chloride is the solid left after the water evaporates.
Anhydrous Calcium Chloride Market: Trend Analysis
Driving Forces Shaping the Anhydrous Calcium Chloride Market:
Technological Advancements: Continuous technological innovations enhance the efficiency and effectiveness of Anhydrous Calcium Chloride products and services, spanning advancements in materials, manufacturing processes, and digital technologies.
Increasing Demand: Growing demand for Anhydrous Calcium Chloride products and services, driven by factors like population growth, urbanization, and evolving consumer preferences, serves as a significant catalyst for market expansion.
Regulatory Support: Supportive government policies, regulations, and incentives, such as subsidies for renewable energy projects and carbon pricing mechanisms, play a pivotal role in stimulating market growth for Anhydrous Calcium Chloride solutions.
Environmental Awareness: Heightened consciousness regarding environmental sustainability and the imperative to reduce carbon emissions fuels the adoption of eco-friendly and renewable Anhydrous Calcium Chloride solutions.
Cost Reduction: Ongoing reductions in the production and installation costs of Anhydrous Calcium Chloride solutions, propelled by economies of scale, technological advancements, and intensified competition, enhance affordability and accessibility.
Constraints Affecting the Anhydrous Calcium Chloride Market:
High Initial Investment: The substantial upfront investment required for developing and installing Anhydrous Calcium Chloride solutions, particularly for large-scale projects, constitutes a significant barrier to market growth.
Intermittency and Reliability: Challenges related to intermittency and reliability, particularly evident in some Anhydrous Calcium Chloride solutions like solar and wind energy, pose hurdles, especially in regions with erratic weather patterns.
Infrastructure Limitations: Significantly, infrastructure investments are necessary, including upgrades to the grid and the establishment of storage facilities, to facilitate the seamless integration of Anhydrous Calcium Chloride solutions into existing energy systems.
Policy Uncertainty: Uncertainty surrounding government policies and regulations, such as fluctuations in subsidies or tax incentives, introduces instability for investors, potentially impeding market growth.
Competition from Alternative Technologies: Established and subsidized technologies like fossil fuels and nuclear energy present formidable competition to the adoption of Anhydrous Calcium Chloride solutions, particularly in regions where they are entrenched.
Supply Chain Disruptions: Disruptions in the supply chain, such as shortages of critical materials or components, can disrupt the availability and pricing of Anhydrous Calcium Chloride solutions, impacting market growth.
Solutions of Anhydrous Calcium Chloride
Calcium chloride is highly soluble in water, because of its high solubility it is used to obtain solutions having relatively high densities. For example, densities as high as 1430kg/m3 are achieved at 208oC and 1570kg/m3 at 808oC. The oil and gas drilling industries frequently exploit these high densities when completing or reworking wells. Density or specific gravity can also be used to determine the molal concentration, c of calcium chloride in water.
The densities of calcium chloride solution at various values and different temperatures have been identified. Densities and apparent molar volumes of aqueous calcium chloride solutions at temperatures from 323K to 600K and at pressure up to 40MPa have also been reported. Viscosity is an important property of calcium chloride solutions in terms of engineering design and in application of such solutions to flow through porous media. Data and equations for estimating viscosity of calcium chloride solutions over the temperature range of 20-508oC are available.
Numerous studies on the thermodynamics of calcium chloride solutions were published in the 1980s. Calcium chloride is produced in commercial amounts using many procedures: refining of natural brines, reaction of calcium hydroxide with ammonium chloride in soda ash production and reaction of hydrochloric acid with calcium carbonate.
A property possessed by some substances of absorbing moisture from the air on exposure. Anhydrous calcium chloride, which possesses this property, is widely used as a drying agent.
Key Growth Factors Driving the Anhydrous Calcium Chloride Market
Advancements in technology have revolutionized the Anhydrous Calcium Chloride market, driving unprecedented growth. Innovations such as AI and IoT are reshaping industry landscapes, enhancing operational efficiencies, and fostering new revenue streams.
Rising consumer demand for personalized experiences is another pivotal factor. Companies leveraging big data analytics to tailor products and services are gaining competitive advantage.
Infrastructure investments are also crucial, with governments and private sectors pouring billions into modernizing aging systems. This supports sustainable growth and resilience against future challenges.
Globalization has expanded market reach, enabling companies to tap into emerging economies and diversify revenue sources. This trend is bolstered by digital connectivity and streamlined logistics.
Environmental sustainability has become a key driver, with regulatory pressures and consumer preferences pushing industries towards eco-friendly practices and products.
Anhydrous calcium chloride is a commonly used chemical substance with hygroscopic and catalytic properties, and is widely used in many different applications. So, why use anhydrous calcium chloride?
1. This product can be used as a desiccant because anhydrous calcium chloride can absorb moisture, which is used to prevent the product from getting damp and deteriorating under humid air conditions.
2. When used as a dehumidifier, anhydrous calcium chloride can reduce the humidity in the air, maintain the dryness of electrical equipment, and prevent moisture and rusting of electrical equipment.
3. The products of anhydrous calcium chloride manufacturers can be used as catalysts for esterification reactions and polyols, promoting the rate of chemical reactions.
4. As a snow melting agent, anhydrous calcium chloride can quickly melt ice and snow on the road surface, so it can also be used as a road ice and snow melting agent.

Our Factory
The most important swimming pool chemicals are disinfectants, flocculants/clarifiers, and algaecides and the core elements are chlorine (or bromine), aluminum, and cationic polymers. Not too much. Pool chemistry looks simple. However, the subtle difference is that the chemical process takes place in extremely dilute solutions, which differs from the situation in most areas of chemistry. Therefore, some common conclusions will be biased or even wrong if applied directly to swimming pools. In addition, as pool managers are not usually professional chemists, we need to carefully consider all the links and possible problems to identify and solve the issues as quickly as possible. Sometimes subtle differences in water quality come into play, and all these factors mix together to create interesting puzzles. Every time we solve a problem, our team's understanding of the product and my understanding of chemistry go further.
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