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Studies of soap
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Cleaning with soap and soapless detergents.
Detergent comes from the Latin word detergere meaning to clean, it is defined as a cleansing agent. Therefore, water itself is a detergent. This essay looks at soap and soapless (or synthetic) detergents. Both substances we use everyday and have a big market commercially, they effect everyone. Soaps are made from natural products and soapless detergents are produced chemically, each having advantages and disadvantages.
Soap has a much longer history than it’s relatively new synthetic version. There is evidence of soap made in Mediterranean countries around 2500 years ago. The basic process has not changed much although now the chemistry is understood. Soap is made from the process called saponification, the alkaline hydrolysis of fats and oils. It is essentially the reverse of esterification.
O O
R-C-O-R’ + NaOH ---- R-C-O-Na+ + R’OH
Ester(fat) + base(caustic soda) ---- salt of fatty acid(soap) + alcohol(glycerol).
Caustic potash (potassium hydroxide) can be used instead of caustic soda (sodium hydroxide)but is more expensive. The base used to come from wood ash containing potassium carbonate which formed potash as this was not plentiful it made soap a luxury. The cheapest source of the ester is animal and vegetable fats and oils.
H-H-H-H-H-H-H-H-H-H-H-H-H-H-H O
H-C-C-C-C-C-C-C-C-C-C-C-C-C-C-C-C-C
H-H-H-H-H-H-H-H-H-H-H-H-H-H-H O-Na+
This is an example of a soap molecule. The hydrocarbon end is non polar and hydrophilic (water hating) and the carboxylate end is polar and hydrophilic (water loving). This the property which allows it to clean, it acts as an emulsifying agent. The soap disperses in water to form miscelles where a negatively charged surface is formed and hydrocarbon chains are in the centre. These miscelles surround droplets of dirt or grease suspending them in the water so they can be washed away.
In soft neutral water soap works very well. However in hard water those containing ions (calcium and magnesium ions) the soap reacts with the ions forming insoluble salts, scum which settles on fabrics and around the bath. A scum is also the result when soap is used in acidic water. Soap is also affected by the nature of the dirt, for example perspiration breaks down the soap reducing the washing power. There are other disadvantages of soap, it deteriorates on storage lacks cleaning power and doesn’t rinse out completely.
The production of synthetic detergents are an example of a standard chemical approach. If a useful substance has some undesirable properties an attempt is made to make a near copy synthetically which will perform better.
Saturated sodium chloride solution, also known as brine solution, is used to wash the distillate mixture. The distillate mixture is the phosphoric acid the co-distilled with the product. The brine solution also removes most of the water from the 4-methylcyclohexane layer. When six drops of 4-methylcyclohexene were added with two
The purpose of this lab was to investigate which additive(s) will create the longest lasting oil-in-water emulsion.
Like all objects, clocks inevitably get dust and dirt on them. The type of cleaning solution used to clean clocks depends on the material the clock is made out of. Usually, liquid cleaning solutions are used because they are cheap, easy to store, and are easier to get into a clock's many nooks and crannies. Hydrocarbon A high-purity-hydrocarbon cleaner is a rinsing agent used after the clock and its internal parts have been cleaned. Hydrocarbons are organic compounds made out of hydrogen and carbon. The solution spreads as an even film and is designed to leave a stain-free surface. Hydrocarbon solutions are safe to use on materials that are sensitive to solvents that contain chlorine. Clock Cleaning Concentrate Solution When clocks are
- Breaks large molecules into small molecules by inserting a molecule of water into the chemical bonding.
The exact results were; Type of water Soap solution required 1st attempt 2nd attempt Average Distilled 0.5 0.5 0.5 Tap 4.5 5.0 4.75 Tap with 1g. Na2CO3 3.5 3.0 3.25 This tells us that Na2CO3 softens hard water. However 1g Na2CO3 did not render it as soft as distilled water. Now our aim is to determine whether increasing the quantity of Na2CO3 added to the hard water softens it more effectively. We are measuring the hardness of the water by the volume of soap solution required to produce a lather.
This 1899 advertisement for Pears ' Soap came from the poem written by the British novelist Robert Kipling, who wrote about the ideas of White Man’s Burden. The artists and the company were both clearly behind the idea with American Imperialism. The image was used to help make America jump in the bandwagon to step in where the Europeans left off and bring civilization to the uncivilized parts of the world.
These small particles are primarily negatively charged when suspended in water. As a result, there is strong repulsion among each other, causing them to be separated from each other and are not available for removal. They may be hydrophilic or hydrophobic, depending on how they are stabilized. Hydrophilli...
Ultimately, with proper use and care they are still the essentials to keeping a healthy, happy, clean home. “Various household cleaning products have been developed to facilitate the removal of dust and dirt, maintenance and disinfection” (http://www.thisland.illinois.edu/57ways/57ways_22.html) Water alone can’t remove dirt. Soap allows oil and to mix so the dirt can be effectively removed. Surfactants lower the tension in water and help break down the oil and grease. Detergents have hydrophobic chemical chains which are repelled by water, whereas hydrophilic chains are attracted to water.
Bed bath can benefit patients immensely as it ensured that there individual needs are met, improved patients psychologically as they maintain their self-esteem and a positive body image. Nurses and patient relationship can be improved through bed bathing as patients can use their closeness with the nurse to discuss issues that trouble them. Bed bath are only suitable for patients who are bed bound, critically ill patients who need some assistance and elderly patients.
The growing demand for the production of such goods and the various constraints involved has motivated me to help provide the world with processes and techniques which are not only more efficient and affordable but also sustainable. The auxiliary motivators have been my interest for mathematics and my analytical ability. This is the goal that I set out with, and I believe that one of the toughest challenges in life is to make timely, well thought-out decisions that would aid in constant progression towards a goal. One such timely decision was the selection of Chemical engineering as my undergraduate stream of study which could pre...
Rinse off the soap using clean water. In the event that you are not using running water from the tap, fetch another bucket/bowl of clean water to wash your hands with.
The Industrial Revolution sparked a new curiosity and need for chemical engineering. In order for certain industries to sustain growth, the production of chemicals became of great importance, especially sulfuric acid. In attempts to improve the process of making this chemical, much time, money and effort was put into it. By this, the slightest savings led to large profits because of the vast quantities of sulfuric acid consumed by industries (Pafko, "Setting Stage").
It is time, at last, to speak the truth about toxic chemicals behind personal care and beauty products. The daily products of an average person consists of face wash, hand soap, shampoo, conditioner, floss, toothpaste, and deodorant. Surprisingly, all of these products listed contain toxic chemicals that are harmful to our body. If we use these products to maintain our hygiene, does that mean we are not clean without these products? For example, a common shampoo many people use is Head and Shoulders. However, do we know if the shampoo is cleaning our hair from beginning to end or is it damaging our hair? How often do you read the ingredients labeled on your personal care products and wonder if they are safe to use? More importantly, if you
The growing relevance of Chemical Engineering in today’s world, from energy & oil industries to pharmaceuticals & biotechnology, and a keen desire for applying this knowledge in interrelated spheres motivates me to pursue a Master’s degree in this field. My interest in science goes back to the time when I was in school. We had a young and enthusiastic teacher who took us on field trips and visits to science fairs and museums. This nascent interest has only burgeoned through my years in school and high school, as I have learnt more about the subject. In the long run, I see myself as a part of a leading research group, either as a faculty member or in the R&D department of an organisation contributing my bit to the field of Chemical Engineering. As a research scientist, I hope to make a difference in this field and learn more through the innovative challenges.
Long ago, washing clothes was done through the process of rubbing sand on clothes, or by smashing the article of clothing with hard rocks. Also, by dipping clothing in water which removed excess dirt. Another way to get clothes clean long ago was, boats used to carry clothes in bags and dragged the bags in the water to clean the clothes or whatever else was in the bag. Many tried to think of simpler ways to wash clothes, but there was no troubled principle to get clothes clean. For using water to remove dirt was the base principle. Some of the first washing machines were hand operated and were wash boards. Then, in 1858 was when mechanical washing machines became introduced. This was a big step, for soon people around the world would try to keep improving this marvelous invention. Shortly after, Alva Fisher was said to have made the worlds first electric washing machine around 1907. “It was not until the modern washing machine was invented that women were freed from this hard work” ( Field Enterprises Educational Corporation 45 ). However, many ...