Some things soak up water. 

Some things soak up water from the air. 

A desiccant is a substance that keeps things dry. 

One common type is silica gel. It is a white solid that is not toxic. It is made in huge amounts every year. Some desiccants can change color to show they are full. For example, cobalt chloride turns from blue to purple or pink. This tells you it has bonded with water. 
Desiccants do big jobs in industry too. They are used to dry natural gas. This stops solid ice-like shapes called methane hydrates from forming. These hydrates can block big pipes. In homes, they are used in windows. They sit in tubes to stop water from forming between glass panes. They also help in air conditioning to make air feel better.
A desiccant is a special substance that keeps things dry. It is also called a hygroscopic substance. This means it pulls water from the air around it. Scientists use these to keep things in a state of dryness. This process is called desiccation. Desiccants are the opposite of humectants, which are things that hold moisture. 

There are many ways these materials work. Some are solids that soak up water like a sponge. Other types use chemical bonding to grab water molecules. Some desiccants are chemically inert, which means they do not react with other things. Others are very reactive and need careful handling. 
People have used different materials for a long time. Silica gel is the most common type used today. It is a white, nontoxic solid that does not dissolve in water. Tens of thousands of tons of it are made every year. 
Desiccants do many important jobs in the world. In the petrochemical industry, they dry natural gas. This stops methane hydrates from forming. These hydrates are solid shapes that can block big pipes. 
You can see these working in many places. Some desiccants change color to show they are full. Cobalt chloride is an indicator that turns from blue to purple. It can even turn pink when it bonds with more water. 
A desiccant is a hygroscopic substance used to create or maintain dryness. This process of removing moisture is called desiccation. Desiccants are the opposite of humectants, which are substances that hold moisture. 
Desiccants work through several different scientific mechanisms. Some are solids that absorb water into their structure. Other specialized types work through the chemical bonding of water molecules. For example, some substances react chemically to grab water from their surroundings. Efficiency is measured by the ratio of water stored relative to the mass of the desiccant. Another way to measure performance is the residual relative humidity of the air. When drying gases, scientists look at the dew point of the dried product. 
There are many different types of desiccants used today. Silica gel is the most common variety. It is a white, nontoxic, and water-insoluble solid. It is also chemically inert, meaning it does not react with other substances. Other common types include activated charcoal and calcium chloride. There are also molecular sieves, which are typically made of zeolites. Some desiccants are categorized as types I through V. These types are based on the shape of the moisture sorption isotherm. 
Some desiccants are very reactive and require specialized handling. For instance, phosphorus pentoxide (P5O5) is a reactive solid with a dew point of -98°C. Potassium hydroxide (KOH) is a caustic solid with a dew point between -60 and -73°C. Sulfuric acid (H2SO4) is a strong acid used for drying. In contrast, diethylene glycol is an unreactive liquid with a dew point of -15°C. Because some of these are caustic or strong acids, they must be used with great care. 
In the petrochemical industry, desiccants play a massive role. Natural gas must be anhydrous, or nearly dry, for transport and processing. If water is present, it can form solid methane hydrates. These hydrates can grow inside pipes and cause dangerous blockages. Diethylene glycol is used specifically to absorb water from natural gas to prevent this. Additionally, catalysts used to process petroleum are often deactivated by even tiny amounts of water. Keeping these systems dry is vital for industrial safety and efficiency.
Desiccants are also used in many everyday objects. In insulated windows, zeolite spheroids fill a small spacer tube around the glass. This prevents moisture from condensing between the panes. Zeolites are also used in the "dryer" part of refrigeration systems. They absorb water carried by the refrigerant over time. In shipping, bagged desiccants protect goods in sealed containers from rust and corrosion. They also protect hygroscopic cargo like cocoa, coffee, grains, and nuts. This helps prevent mold and rot caused by humidity.
Scientists also use desiccants in laboratories and medicine. Pharmaceutical companies include small packets in packaging to keep water vapor levels low. In labs, molecular sieves are often used to dry solvents. They are often superior to chemical reagents because they are safe in air and recyclable. 
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