Science and Agriculture (The Soybean) 1939
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We digitized and uploaded this film on behalf of the Prelinger Archives. Email us at footage@avgeeks.com if you have questions about the footage and are interested in using it in your project.
Contents. The cultivation and use of the soybean as an illustration of the relation of science to agriculture and the interrelation of science, agriculture, and industry.
Opens with a view of an Oriental farmer beginning to harvest his crop of soybeans. The commentator explains that the soybean has been cultivated for centuries in the Orient. A map showing first China and then the United States is accompanied by the explanation that the soybean has been grown extensively in the United States since 1918. An agronomist is shown examining experimental fields of the soybean as the commentator explains that agriculture experiment stations have played an important part in the development of the use of the soybean in the United States. The agronomist pulls up a plant for examination as the commentator explains that he is interested in the soybean as a means of conserving soil fertility. In the laboratory the agronomist examines the nodules which have formed on the roots of the soybean plant. The commentator explains the function of the bacteria-filled nodules in building the nitrogen content of the soil. The agronomist removes some soybean bacteria from a culture cabinet. The bacteria are mixed with charcoal. Later, the bacteria-charcoal mixture is diluted with water and sprinkled on some soybean seed, thus inoculating the seed and making nodule growth possible on new plants.
The agronomist decides to visit a nearby farm where soybeans are being grown. On his way he passes two fields of corn. One field is poor because of improper rotation practice. The other field is good because of the use of the soybean in a good plan of crop rotation. The agronomist stops at the roadside to talk to the farmer's wife, who is gathering edible soybeans. When the agronomist arrives at the soybean field, the farmer is mowing soybean hay. They discuss the proper time for cutting soybeans for this purpose. The farmer says that he has another field of beans which he expects to harvest in about a month. A combine is shown in operation in a field of soybeans. Particular attention is called to the fact that the combine returns to the ground the straw containing much nitrogen. A truck receives the beans from the combine hopper and they are started on their way to the processing plant.
At the processing plant the beans are dumped out of the truck, cracked, and fed into expellers. Soybean oil is shown trickling out of the compression chambers where, the commentator explains, the beans have been subjected to intense heat and great pressure. Soybean oil is also filtered. Brief views indicate that the oil is used in paint, linoleum, shortening, and salad dressing. Meal, which is fed to dairy and beef cattle, is shown coming out of the press and being loaded into bags.
An industrial chemist is shown at work in his laboratory as the commentator explains that such men are working to find new uses for soybean oil and meal. This particular chemist is striving to improve the process by which soybean meal is converted into a plastic. Some soybean meal is mixed with formaldehyde, placed on calender rolls which mix it with other ingredients, then tested on a flow tester which records plasticity. The mixture is placed in a mold which, in turn, is placed in a hydraulic press, where it is subjected to great pressure. The chemist removes a small plastic article from the mold. Many articles made from soybean plastics are displayed on a revolving wheel. One finished piece of plastic material is tested on a flexural testing machine. The agronomists and the industrial chemist are shown at work in their laboratories.
Appraisal. Reported very good for showing (1) the procedure in producing and processing soybeans, (2) the contribution of science to industry and agriculture, (3) the interdependence of agriculture and industry, (4) the use of legumes in soil building, and (5) the role of government experimentation in agriculture. Should be useful in showing the work of the agronomist and the research chemist and indicating the adjustment of agriculture to new conditions.
The film was reported to be well organized to show the interrelation of science, industry, and agriculture.
Photography and sound are excellent.
Complete Record: We digitized and uploaded this film on behalf of the Prelinger Archives. Email us at footage@avgeeks.com if you have questions about the footage and are interested in using it in your project. Contents. The cultivation and use of the soybean as an illustration of the relation of science to agriculture and the interrelation of science, agriculture, and industry. Opens with a view of an Oriental farmer beginning to harvest his crop of soybeans. The commentator explains that the soybean has been cultivated for centuries in the Orient. A map showing first China and then the United States is accompanied by the explanation that the soybean has been grown extensively in the United States since 1918. An agronomist is shown examining experimental fields of the soybean as the commentator explains that agriculture experiment stations have played an important part in the development of the use of the soybean in the United States. The agronomist pulls up a plant for examination as the commentator explains that he is interested in the soybean as a means of conserving soil fertility. In the laboratory the agronomist examines the nodules which have formed on the roots of the soybean plant. The commentator explains the function of the bacteria-filled nodules in building the nitrogen content of the soil. The agronomist removes some soybean bacteria from a culture cabinet. The bacteria are mixed with charcoal. Later, the bacteria-charcoal mixture is diluted with water and sprinkled on some soybean seed, thus inoculating the seed and making nodule growth possible on new plants. The agronomist decides to visit a nearby farm where soybeans are being grown. On his way he passes two fields of corn. One field is poor because of improper rotation practice. The other field is good because of the use of the soybean in a good plan of crop rotation. The agronomist stops at the roadside to talk to the farmer's wife, who is gathering edible soybeans. When the agronomist arrives at the soybean field, the farmer is mowing soybean hay. They discuss the proper time for cutting soybeans for this purpose. The farmer says that he has another field of beans which he expects to harvest in about a month. A combine is shown in operation in a field of soybeans. Particular attention is called to the fact that the combine returns to the ground the straw containing much nitrogen. A truck receives the beans from the combine hopper and they are started on their way to the processing plant. At the processing plant the beans are dumped out of the truck, cracked, and fed into expellers. Soybean oil is shown trickling out of the compression chambers where, the commentator explains, the beans have been subjected to intense heat and great pressure. Soybean oil is also filtered. Brief views indicate that the oil is used in paint, linoleum, shortening, and salad dressing. Meal, which is fed to dairy and beef cattle, is shown coming out of the press and being loaded into bags. An industrial chemist is shown at work in his laboratory as the commentator explains that such men are working to find new uses for soybean oil and meal. This particular chemist is striving to improve the process by which soybean meal is converted into a plastic. Some soybean meal is mixed with formaldehyde, placed on calender rolls which mix it with other ingredients, then tested on a flow tester which records plasticity. The mixture is placed in a mold which, in turn, is placed in a hydraulic press, where it is subjected to great pressure. The chemist removes a small plastic article from the mold. Many articles made from soybean plastics are displayed on a revolving wheel. One finished piece of plastic material is tested on a flexural testing machine. The agronomists and the industrial chemist are shown at work in their laboratories. Appraisal. Reported very good for showing (1) the procedure in producing and processing soybeans, (2) the contribution of science to industry and agriculture, (3) the interdependence of agriculture and industry, (4) the use of legumes in soil building, and (5) the role of government experimentation in agriculture. Should be useful in showing the work of the agronomist and the research chemist and indicating the adjustment of agriculture to new conditions. The film was reported to be well organized to show the interrelation of science, industry, and agriculture. Photography and sound are excellent.
Transcription
for centuries the soybean has been cultivated and used for food by people in the Orient the soybean belongs to the same family of plants as do our common beans and peas this Chinese farmer finds that his crop of beans is of a fine quality and ready for harvesting there will be enough for his own family and some left to sell the cultivation of soybeans was begun extensively in the United uned States about 1918 since that time it has been studied intensively by agronomists in several agricultural experiment stations experiments are carried on in small plots of soybeans to discover the best varieties of the hundreds known and the best methods of cultivation trained observers watch the plants in all the stages of their growth to see if the beans have desirable characteristics this soil expert Dr Blake is particularly interested in the soybean as a means of conserving the fertility of the soil if used correctly the soybean is a good soil Builder like most legume plants the soybean has the power of using the nitrogen in the air provided the roots are well nodulated these nodules contain bacteria and it is these which convert the nitrogen of the air into a form that the plant can use for this reason the soybean is a valuable plant in crop rotation and Soil Conservation these nitrogen fixing bacteria may be grown in Laboratories these cabinets assure the proper temperature for growth the tiny bacteria grow on a jelly medium which supplies them with the necessary nourishment these bacteria are sometimes mixed with Pete before they are marketed the farmer May mix the Pete containing bacteria with water and inoculate the seed by spraying then he mixes the seeds thoroughly and lets them dry the agronomist keeps in very close touch with the actual work of the farmer for this reason he makes frequent visits to nearby Farms as the agronomist drives along the country road he observes this Field of Corn which might have been better if soybeans had been used in a good crop rot good morning Mrs Hill good morning Dr Blake do you remember that sample of edible soybeans that you gave me last fall yes this is our first mess I'm glad that they turned out so well where can I find bill this morning I think he's mowing in the beanfield about a half half a mile down the road thank you goodbye goodbye as Dr Blake is driving past Mr Hills Fields he notices this fine growth of corn due largely to a rotation including soybeans Mr Hill is cutting these soybeans for hay which he will feed to his cattle and horses during the winter months how's it going Bill Fair the de is a little bit heavy this morning but the sun has dried it out now it looks to me like a pretty good crop I'd say you'd caught it at just the right time if you had waited much longer I'm afraid that the hay would have become stemy and lost some of the leaves yes and I hope that I can get it in before we have any more rain have you noticed my field of beans on the south 40 I saw your bean crop a couple of weeks ago it looked promising then yes they'll be ready for the combine in another month a few weeks later we find Mr Hill harvesting his soybeans with a modern combine like that used for wheat and oats the combine has done much to make the soybean a popular crop the beans are cut and threshed all in one operation the straw containing much nitrogen is scattered back on the land as fertilizer when the hopper gets full the beans are run into a waiting truck the beans now start on their way to the local grain elevator from here they are shipped by train to a processing plant in a nearby City first the soybeans are cracked the cracked beans are fed to these expellers after they have been heated in these steam pipes to about 200° the cracked soybeans then enter these cylinders and are subjected to a pressure of about 6 18,000 lb per square in the great pressure with the help of the high temperature forces the oil out of the beans the oil from all the expellers is next forced through this large filter to remove sediment the crystal clear oil drips out along the side of the filter soybean oil finds extensive use in paints and in the manufacturer of lolium but most of it is used in making shortenings oo margarine and salad dressing in the compressor the soybean cake emerges at the end of the shaft much of this cake goes back to the farm where it makes a fine feed for dairy cattle these steers have made excellent gains on a feed containing soybean meal many industrial chemists are working to find new uses for soybean oil and soybean meal this chemist Dr brother is striving to improve a process by which the soybean meal is made into a hard and strong plastic after long and tedious labor in the research laboratory he may discover new procedures or new products which the engineering chemist can put into large scale production the chemist pours the soybean meal into this mechanical mixure then it is transferred to these rollers which mix the soybean meal with the other ingredients that go into the manufacturer of Plastics before casting the mixture into a plastic the chemist tests it in this machine which is called a flow tester this curve indicates the plasticity of the mixture or dough under increasing pressure the chemist also inspects the piece but he uses asbest as gloves because the pressure has made it hot having passed the test the mixture is reduced to a powder and poured into this mold which will determine the shape of the finished object the mold is then placed in this hydraulic press here the soybean meal is welded under a pressure of about 2,000 lb per square in and at a temperature of more than 300° in this way the soybean is transformed by science and technology into parts that find many everyday uses in Research Laboratories the finished Plastic Products are subjected to innumerable tests this flexural testing machine reveals the strength of the object thus we are led to appreciate the relationship of modern science to agriculture on the one hand and Industry to agriculture on the other the agronomist strives to increase land productivity while the chemist Works to find new industrial uses for the products of the farm
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