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François-Pierre-Amédée Argand, known as Ami Argand (5 July 1750 – 14 or 24 October 1803) was a Genevan
physicist A physicist is a scientist who specializes in the field of physics, which encompasses the interactions of matter and energy at all length and time scales in the physical universe. Physicists generally are interested in the root or ultimate cau ...
and
chemist A chemist (from Greek ''chēm(ía)'' alchemy; replacing ''chymist'' from Medieval Latin ''alchemist'') is a scientist trained in the study of chemistry. Chemists study the composition of matter and its properties. Chemists carefully describe t ...
. He invented the
Argand lamp The Argand lamp is a type of oil lamp invented in 1780 by Aimé Argand. Its output is 6 to 10 candelas, brighter than that of earlier lamps. Its more complete combustion of the candle wick and oil than in other lamps required much less frequent ...
, a great improvement on the traditional
oil lamp An oil lamp is a lamp used to produce light continuously for a period of time using an oil-based fuel source. The use of oil lamps began thousands of years ago and continues to this day, although their use is less common in modern times. Th ...
.


Early years

Francois-Pierre-Amédée Argand was born in
Geneva , neighboring_municipalities= Carouge, Chêne-Bougeries, Cologny, Lancy, Grand-Saconnex, Pregny-Chambésy, Vernier, Veyrier , website = https://www.geneve.ch/ Geneva ( ; french: Genève ) frp, Genèva ; german: link=no, Genf ; it, Ginevr ...
, Republic of Geneva, the ninth of ten children. His father was a watchmaker, who intended for him to enter the clergy. However, he had an aptitude more for science, and became a pupil of the noted botanist and meteorologist Horace-Bénédict de Saussure. He published several scientific papers on meteorological subjects while in Paris in his late twenties. He took a teaching post in chemistry and developed some ideas for improving the distillation of wine into brandy, and, with his brother, successfully built a large distillery.


The invention

During this period, in 1780, he started to invent improvements on the conventional oil lamp. The basic idea was to have a cylindrical wick which air could flow through and around, increasing the intensity of the light produced. A cylindrical chimney enhanced the air flow and a series of experiments gave the proportions for optimum operation. A mechanism for raising and lowering the wick allowed some adjustment and optimization as well. The light was much brighter than a candle (by a factor of five to ten), burned cleanly, and was cheaper than using candles. In 1783, Argand met Montgolfier brothers Jacques-Étienne and Joseph-Michel in France and became closely involved with his sensational experiments to devise a
hot air balloon A hot air balloon is a lighter-than-air aircraft consisting of a bag, called an envelope, which contains heated air. Suspended beneath is a gondola or wicker basket (in some long-distance or high-altitude balloons, a capsule), which carries ...
. When he was there, his acquaintance Antoine-Aroult Quinquet, to whom he had shown an early prototype, began to manufacture the lamps himself, with minor change, and successfully fought a protracted legal battle for patent infringement. Many problems attended the successful development of a lamp that could be a commercial success. Argand experimented with all of them, searching for practical compromises. The design manufacture of the wick was solved by a lacemaker. The type of glass to use next to the hot flame was a problem eventually solved. All available types of oil to use were tested, and methods to purify them for use were the subject of a number of experiments.
Whale oil Whale oil is oil obtained from the blubber of whales. Whale oil from the bowhead whale was sometimes known as train oil, which comes from the Dutch word ''traan'' (" tear" or "drop"). Sperm oil, a special kind of oil obtained from the head ...
was eventually settled on, which eventually created an important new industry. The mechanism for holding the wick and moving it up and down went through many variations. Even the solder used to fabricate the oil reservoir was a problem when it was discovered that the soft
solder Solder (; NA: ) is a fusible metal alloy used to create a permanent bond between metal workpieces. Solder is melted in order to wet the parts of the joint, where it adheres to and connects the pieces after cooling. Metals or alloys suitable ...
joints leaked. The invention of the lamp did not consist, then, of only one invention, but rather of the improvement and development of a complete system of parts all working together, not unlike Edison's invention of the electrical lighting system that was to again revolutionize lighting over a century later. In October of the same year, he determined to manufacture his lamp, in England. He eventually formed a partnership with William Parker and Matthew Boulton to manufacture the lamp. In 1784, he received a patent for his design. Argand also formed a close relationship with James Watt who performed some experiments on the lamp's efficiency and advised him on waging his court battles. The demand for the lamps was high, and the partners had many difficulties at first in manufacturing them, but they eventually became the standard source of illumination in homes and shops. Many imitators and improvers evolved new variations, and thousands of shops sprang up to produce them in the next decades. They were eventually displaced by the kerosene lamp in about 1850.Wolfe p 151


Later years

The invention of the lamp was not, in the end, profitable for Argand. He contracted
malaria Malaria is a mosquito-borne infectious disease that affects humans and other animals. Malaria causes symptoms that typically include fever, tiredness, vomiting, and headaches. In severe cases, it can cause jaundice, seizures, coma, or death. S ...
and suffered from it for twenty years before dying in Geneva at the age of 53.


References


External links

* The lam

* In light house

{{DEFAULTSORT:Argand, Ami 18th-century scientists from the Republic of Geneva Physicists from the Republic of Geneva Protestants 1750 births 1803 deaths People of the Industrial Revolution 18th-century chemists