Grow it Now, Drive it Later?

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Grow it Now, Drive it Later? Agricultural & Natural Resources Careers Purpose Background Students will discover potential Plants take in light energy from the sun and turn it into sugars. They store careers in agriculture with a focus on the sugars in their roots, leaves, stems, flowers, and seeds. The energy in the the growing field of biofuel sugars makes them grow. When people or animals eat food made from plants development. like soybeans, corn, and wheat, the sugars (or carbohydrates) give them energy. In addition to sugars, the seeds of plants also contain protein and fats Time: 45 minutes (or oils). Level: Secondary The sugars in plants may be distilled to make ethanol, a fuel source for combustion engines. The seeds of plants have long been used as an energy Materials or fuel source for diesel engines. Peanuts and soybeans have commonly been Ring stand or other type of can used to make biodiesel, and several other seeds high in oil have been used as support (see Figure 1) well. Aluminum pop can Soybeans belong to the legume family plants that produce beans in Modeling clay to hold paperclip pods. Legumes also take in nitrogen from the air and release it into the soil. Pyrex pie plate or dish (optional) Nitrogen is important for good soil and healthy crops. One soybean plant Large paperclip produces about 70 soybean pods with two to four beans in each pod. The Flamin Hot Cheetos (contains seeds are about the size of peas and may be yellow, green, brown, black, or vegetable oil) speckled. Graduated cylinder or beaker Soybeans were first domesticated in Asia, where farmers have grown Water them for more than 5,000 years. Today soybeans are still an important crop in Celsius thermometer China. They are used for food, fertilizer, animal feed, medicines, and oils. Lighter or stick match Soybeans were first grown in the United States in the early 1800s. They Projected visual of Calorie were used as a source of food for humans and farm animals. During the Civil Calculation War, coffee beans were hard to get, so soybeans were roasted and used to Peanuts or dried algae make a coffee substitute. They were called coffee berries. In 1904 George Washington Carver began studying soybeans. He discovered that soybeans are a valuable source of oil as well as protein. A 60-pound bushel of soybeans produces 48 pounds of soy protein, 11 pounds of soy oil, and 1 pound of hulls (the coatings of the beans). Henry Ford used soy oil to make plastic parts for his cars. Farmers harvest the soybeans, which can be eaten fresh in their pods, dried and roasted, or broken down into different forms. Most soybeans are harvested and removed from their pods by a machine called a combine and then sent to a processing plant where they are crushed, rolled into flakes, and mixed with a solvent to separate the oil and protein. Soybean oil and protein can be made into many kinds of animal and human foods, as well as products such as crayons, paint, glue, and plastics. Soybeans can be blended (mixed) with regular diesel, which is a petroleum fuel. Many cities and school districts use a blend of 20 percent biodiesel and 80 percent diesel in their buses. This is called a B20 blend. Using B20 reduces pollution from the buses, making the air cleaner. Most trucks, buses, and tractors in the United States use diesel fuel. Regular diesel fuel is made from petroleum, a nonrenewable energy source. Petroleum is a fossil fuel; it takes millions of years to form under the ground, so we can t make more in a short time. When petroleum fuels are burned in vehicle engines, they can pollute the air. If they spill onto the soil or into the water, they can damage the environment for a long time. Petroleum fuels are toxic and should be handled carefully. Utah Agriculture in the Classroom 1 www.agclassroom.org/ut

Figure 1: Ring Stand Setup Figure 2: Paperclip and Clay Figure 3: Alcohol Burner Stand If you use this type of stand, be sure to discuss with students that there will be heat loss through the stand. Biodiesel is a fuel made from vegetable oils or animal fats. It is usually made from soybean oil, but it can also be made from corn oil or used restaurant grease and oil. If it is made from restaurant oil, it can smell like French fries. Since biodiesel is made from plant and animal oils, it is a renewable fuel. We can grow more plants in a short time to make more biodiesel. However, with the demand for food and land resources increasing, some scientists are looking at a plant-like organism algae as a possible fuel source. High oil prices and the competing demands between foods and other biofuel sources have ignited interest in algaculture (farming algae) for making vegetable oil, biodiesel, and other biofuels using land that is not suitable for agriculture. Algae are not plants. They lack the structures that characterize land plants, such as leaves and roots. Nearly all algae have photosynthetic capability, and algae cells contain both sugars (carbohydrates) and oils (fats). Scientists are looking at efficient ways to grow algae for biofuels. Algae don t need fertile soil and can grow or colonize in wastewater. Several types of algae grow well in salt water. Algae use sunlight and water and produce oil in their cells 50 times faster than regular crops. When this oil is extracted for biofuel, it can be used in a car and can be used to generate electricity. Among algal fuels attractive characteristics: they do not affect fresh water resources, they can be produced using ocean and wastewater, and they are biodegradable and relatively harmless to the environment if spilled. How do you get oil out of soybeans? Soybeans are crushed and then a solvent called hexane is used to extract oil from the seed. If you crush soybeans in a mill and then boil the meal, the oil from the seeds will float on the surface of the water. How do you get the oil out of algae? It is similar to soybean oil extraction; you remove the oil from dried algae chemically with hexane or mechanically with an expeller press or ultrasound. How much energy is in oil? Conduct the following activity to measure the calories in vegetable oil. Activity Procedures 1. Use the ring stand to hold the aluminum can as pictured in Figure 1. 2. Place a handful of modeling clay on the bottom of the ring stand or in a Pyrex dish at the bottom of the ring stand. 3. Open one side of a large paperclip and place the bent portion into the clay as shown in Figure 2. 4. Impale (spear) half of a Cheeto onto the paper clip. (If you use more than half a Cheeto, you may set off a smoke detector.) 5. Move the can to within 5 centimeters (2 inches) of the impaled Cheeto. 6. Measure and add 100 milliliters (7 tablespoons) of water to the can. 7. Record the temperature of the water on the board. To find out how many calories are stored in the vegetable oil in half a Cheeto, light the Cheeto and burn it to see how much energy is produced as noted by the rise in water temperature. See the attached Calorie Calculation activity sheet. 8. Record the water temperature as soon as the flame burns out. 9. Calculate the calories using the formula on the Calorie Calculation activity sheet. 10. Repeat the procedure with a peanut or with algae. 11. View algae oil videos from YouTube (search algae biofuel). Utah Agriculture in the Classroom 2 www.agclassroom.org/ut

How do you convert milliliters to grams? One gram of water is always equal to 1 ml because that is its weight. For other substances, this is not necessarily true because different substances have different densities. For example, 1 ml of iron weighs about 7 grams; it is more dense than water. 1 ml of water = 1 gram 1 ml of iron = about 7 grams Evaluation 1. Based on the recorded measurements, ask the students to calculate the number of calories in half a Cheeto. In addition to biofuel engineers, what other professionals would need to know how to measure calories? (Nutritionists) 2. Ask pairs of students to view an algae video from YouTube. New movies are added all the time, so go to YouTube and search algae biofuel. See the Links section below for more websites with algae biofuel movies. After the students have viewed the movies, ask each group to share something they have learned about algaculture (farming algae, a career associated with biofuels), and how this might affect what they drive later (biofuels can be used for cleaner electricity, electric cars?). Links Algae Power from This American Land https://www.youtube.com/watch?v=d5laqzbj2mg How the Technology Works Algae to Biofuels https://www.youtube.com/watch?v=qp_hbq5cwsk Nova Algae Fuel http://www.pbs.org/wgbh/nova/tech/algae-fuel.html Oilgae (algae fuels industry) http://www.oilgae.com/videos/ US National Arboretum Virtual Tour Power Plants Farming Fuel http://www.usna.usda.gov/gardens/collections/virtualtours/usna_ PowerPlants_Flash.html Utah Agriculture in the Classroom 3 www.agclassroom.org/ut

Calorie Calculation Begin with... Amount of water used = ( milliliters = grams) Temperature of water in C before burning Temperature of water in C after burning Difference in temperature calories = (mass of water in grams) x (temperature change in C) Example: 100 grams of water are heated, and the temperature increases by 10 o C; calories = (100 grams of water) x (10 C) calories = 1000 This calculation is in small calories. There are a thousand calories in a food Calorie, or large Calorie. To convert calories to Calories, divide the number of small calories by 1000. Calories (food) = small calories / 1000

Algaculture To develop a PowerPoint, search for more algae images on Google.