Recent from talks
Conservation and restoration of leather objects
Knowledge base stats:
Talk channels stats:
Members stats:
Conservation and restoration of leather objects
The conservation and restoration of leather objects is the process of determining the causes of deterioration, followed by deciding the best course of action for preserving the leather objects for the future.
Leather is a highly sought-after material due to its resistance to tearing, flexing, and puncture. It is also an effective insulator of heat, as it prevents the passage of airflow. In order for skins to be turned into leather, they must go through a process known as tanning to stabilize the collagen for the duration of the manufacture. When describing a material as leather, this includes the animal pelts, as well as all of the materials used in the manufacturing process. Knowledge of these materials is essential when deciding upon proper conservation and preservation techniques.
During the Prehistoric era, humans discovered that animals could be used for purposes besides food. Their skin could be adapted into clothing and shelter. The first use of animal skins is attributed to Australopithecus habilis, who is recorded to have roamed East Africa two million years ago and possessed a diet with significant meat consumption. Artifacts from this time indicate the use of a chipped stone for cutting through thick hides. The bones found at the sites of Australopithecine settlements suggest that the joints of larger animals were butchered with this tool and their pelts were brought to human dwelling places for multiple uses. Evidence from the hominid Pithecanthropoid shows the use of a coup-de-point tool for butchering and skinning animals. Their pelts were then used to create large tent shelters by spreading the pelts over wooden frameworks. For additional protection, skins were also believed to have been placed along the sides of shelters in rough bundles. The skins used in these structures were believed to have been warmed by a fire, which created a curing effect by drying the skins slowly. It is suggested that special skinning and scraping tools were created after witnessing this natural progression of the skins, which spread fats across the hide. This million-year-old process is considered by some to be the beginning of leather creation.
Evidence from around 120,000 years ago suggests that humans made leather clothing out of jackal, fox, and wildcat skins. During the Neolithic era, humans began domesticating animals, such as goats and cattle. The skins of these animals became popular for use in leather production.
In the Medieval era, tanning was considered a skilled trade and leather was second to wool as a textile fabric. During this period, a tanner would wash hides free of blood, manure, and other curing materials before it was rehydrated. To accomplish this task, the tanner would submerge the hide in a nearby river or stream. Other methods involved trampling on the hides with feet or pounding the material with hammers. Upon completion, the hides were then placed with the hair side up, in order to remove the hair without damaging the surface. To loosen the hair, it was common to let the pelt become putrid or douse the pelt with liquors such as stale beer, fermented barley, fermented mulberry, dung, or bryony leaves. Soaking the skins in liquor prepared with wood ash or lime would produce a similar effect. When the skin was deemed adequately prepared, it would be stretched over a beam and scraped. The hair side would be scraped with a blunt, single-edged unhairing knife and the flesh with a sharper, two-edged fleshing knife. The next step would be an additional soak and scraping. The skin would then be washed again and alkaline bating would be applied to remove excess lime and create a softer, finer grain. After repeating this step, the skin would be laid over the beam once more to remove any of the waste products that were released in this process, often referred to as slime. After the skin was considered cleaned and prepared, it was ready for the tanning process. This was done by placing the skin in a pit on top of ground tanning material and covered by additional ground tanning material. This process would be repeated until the pit was nearly full. Tanning materials were dependent on the local landscape and were mostly composed of tree matter (oak, birch, willow, spruce, etc.). Upon filling the pit, it would then be filled with cold water and the skins were left to sit for close to a year. When the tanner judged that the leather was sufficiently tanned, the skins were removed, rinsed, and smoothed with a knife before being slowly dried in a dark space. At that point, the leather was dried and sold to a currier for additional processing.
Acid hydrolysis is the breakage of bonds by hydronium ions. Hydronium ions are contained within the liquid form of water and cause the breakage of bonds within ionic structures. When an acid is dissolved in water it separates the hydrogen ion from the other ions of the acid and the hydrogen reacts with the water molecules to form the hydronium ions causing the aforementioned hydrolysis. With the presence of an acid in this reaction this process is known as acid hydrolysis. The most common agent of acid hydrolysis found in historical leathers is attributed to sulfuric acid, which is absorbed from industrial pollution as sulfur dioxide. In the presence of sunlight, the sulfur dioxide is converted into sulfur trioxide and then absorbed by the tannins in the leather. The trioxide is then hydrated into sulfuric acid, dissolving in the present moisture of the leather creating the hydronium ions. It is then from these hydronium ions that internal links are broken among the leather molecules. Breakdowns include a reduction in bonds between amino acids and collagen, and additional breakdown may occur from the tannins and acids inherently present in the leather which may increase the risks and severity of acid hydrolysis. Heat, moisture and a low pH are also contributing factors in this process.
Oxidation is the loss of an electron among leather, most often attributed to oxygen as the oxidizing agent or molecule of electron loss. Oxidation may also occur due to the effects of light and heat.
Metals that act as catalysts of oxidation are the greatest concern in leather deterioration. Iron is the most common contaminant found in the manufacture of leather and can act as a catalyst for oxidation and eventually lead to the breakdown of molecules by hydrolysis.
Hub AI
Conservation and restoration of leather objects AI simulator
(@Conservation and restoration of leather objects_simulator)
Conservation and restoration of leather objects
The conservation and restoration of leather objects is the process of determining the causes of deterioration, followed by deciding the best course of action for preserving the leather objects for the future.
Leather is a highly sought-after material due to its resistance to tearing, flexing, and puncture. It is also an effective insulator of heat, as it prevents the passage of airflow. In order for skins to be turned into leather, they must go through a process known as tanning to stabilize the collagen for the duration of the manufacture. When describing a material as leather, this includes the animal pelts, as well as all of the materials used in the manufacturing process. Knowledge of these materials is essential when deciding upon proper conservation and preservation techniques.
During the Prehistoric era, humans discovered that animals could be used for purposes besides food. Their skin could be adapted into clothing and shelter. The first use of animal skins is attributed to Australopithecus habilis, who is recorded to have roamed East Africa two million years ago and possessed a diet with significant meat consumption. Artifacts from this time indicate the use of a chipped stone for cutting through thick hides. The bones found at the sites of Australopithecine settlements suggest that the joints of larger animals were butchered with this tool and their pelts were brought to human dwelling places for multiple uses. Evidence from the hominid Pithecanthropoid shows the use of a coup-de-point tool for butchering and skinning animals. Their pelts were then used to create large tent shelters by spreading the pelts over wooden frameworks. For additional protection, skins were also believed to have been placed along the sides of shelters in rough bundles. The skins used in these structures were believed to have been warmed by a fire, which created a curing effect by drying the skins slowly. It is suggested that special skinning and scraping tools were created after witnessing this natural progression of the skins, which spread fats across the hide. This million-year-old process is considered by some to be the beginning of leather creation.
Evidence from around 120,000 years ago suggests that humans made leather clothing out of jackal, fox, and wildcat skins. During the Neolithic era, humans began domesticating animals, such as goats and cattle. The skins of these animals became popular for use in leather production.
In the Medieval era, tanning was considered a skilled trade and leather was second to wool as a textile fabric. During this period, a tanner would wash hides free of blood, manure, and other curing materials before it was rehydrated. To accomplish this task, the tanner would submerge the hide in a nearby river or stream. Other methods involved trampling on the hides with feet or pounding the material with hammers. Upon completion, the hides were then placed with the hair side up, in order to remove the hair without damaging the surface. To loosen the hair, it was common to let the pelt become putrid or douse the pelt with liquors such as stale beer, fermented barley, fermented mulberry, dung, or bryony leaves. Soaking the skins in liquor prepared with wood ash or lime would produce a similar effect. When the skin was deemed adequately prepared, it would be stretched over a beam and scraped. The hair side would be scraped with a blunt, single-edged unhairing knife and the flesh with a sharper, two-edged fleshing knife. The next step would be an additional soak and scraping. The skin would then be washed again and alkaline bating would be applied to remove excess lime and create a softer, finer grain. After repeating this step, the skin would be laid over the beam once more to remove any of the waste products that were released in this process, often referred to as slime. After the skin was considered cleaned and prepared, it was ready for the tanning process. This was done by placing the skin in a pit on top of ground tanning material and covered by additional ground tanning material. This process would be repeated until the pit was nearly full. Tanning materials were dependent on the local landscape and were mostly composed of tree matter (oak, birch, willow, spruce, etc.). Upon filling the pit, it would then be filled with cold water and the skins were left to sit for close to a year. When the tanner judged that the leather was sufficiently tanned, the skins were removed, rinsed, and smoothed with a knife before being slowly dried in a dark space. At that point, the leather was dried and sold to a currier for additional processing.
Acid hydrolysis is the breakage of bonds by hydronium ions. Hydronium ions are contained within the liquid form of water and cause the breakage of bonds within ionic structures. When an acid is dissolved in water it separates the hydrogen ion from the other ions of the acid and the hydrogen reacts with the water molecules to form the hydronium ions causing the aforementioned hydrolysis. With the presence of an acid in this reaction this process is known as acid hydrolysis. The most common agent of acid hydrolysis found in historical leathers is attributed to sulfuric acid, which is absorbed from industrial pollution as sulfur dioxide. In the presence of sunlight, the sulfur dioxide is converted into sulfur trioxide and then absorbed by the tannins in the leather. The trioxide is then hydrated into sulfuric acid, dissolving in the present moisture of the leather creating the hydronium ions. It is then from these hydronium ions that internal links are broken among the leather molecules. Breakdowns include a reduction in bonds between amino acids and collagen, and additional breakdown may occur from the tannins and acids inherently present in the leather which may increase the risks and severity of acid hydrolysis. Heat, moisture and a low pH are also contributing factors in this process.
Oxidation is the loss of an electron among leather, most often attributed to oxygen as the oxidizing agent or molecule of electron loss. Oxidation may also occur due to the effects of light and heat.
Metals that act as catalysts of oxidation are the greatest concern in leather deterioration. Iron is the most common contaminant found in the manufacture of leather and can act as a catalyst for oxidation and eventually lead to the breakdown of molecules by hydrolysis.