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Chapter 32 Medical Applications of Nuclear Physics (238/148) -- College Physics

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Chapter 32 Medical Applications of Nuclear Physics

Chapter 32 Medical Applications of Nuclear Physics 32.4 Food Irradiation Summary - Define food irradiation low dose, and free radicals. Ionizing radiation is widely used to sterilize medical supplies, such as bandages, and consumer products, such as tampons. Worldwide, it is also used to irradiate food, an application that promises to grow in the future. Food irradiation is the treatment of food with ionizing radiation. It is used to reduce pest infestation and to delay spoilage and prevent illness caused by microorganisms. Food irradiation is controversial. Proponents see it as superior to pasteurization, preservatives, and insecticides, supplanting dangerous chemicals with a more effective process. Opponents see its safety as unproven, perhaps leaving worse toxic residues as well as presenting an environmental hazard at treatment sites. In developing countries, food irradiation might increase crop production by 25.0% or more, and reduce food spoilage by a similar amount. It is used chiefly to treat spices and some fruits, and in some countries, red meat, poultry, and vegetables. Over 40 countries have approved food irradiation at some level. Food irradiation exposes food to large doses of [latex]{\gamma}[/latex] rays, x-rays, or electrons. These photons and electrons induce no nuclear reactions and thus create no residual radioactivity. (Some forms of ionizing radiation, such as neutron irradiation, cause residual radioactivity. These are not used for food irradiation.) The [latex]{\gamma}[/latex] source is usually [latex]{^{60} \text{Co}}[/latex] or [latex]{^{137} \text{Cs}}[/latex], the latter isotope being a major by-product of nuclear power. Cobalt-60 [latex]{\gamma}[/latex] rays average 1.25 MeV, while those of [latex]{^{137} \text{Cs}}[/latex] are 0.67 MeV and are less penetrating. X-rays used for food irradiation are created with voltages of up to 5 million volts and, thus, have photon energies up to 5 MeV. Electrons used for food irradiation are accelerated to energies up to 10 MeV. The higher the energy per particle, the more penetrating the radiation is and the more ionization it can create. Figure 1 shows a typical [latex]{\gamma}[/latex] -irradiation plant. Owing to the fact that food irradiation seeks to destroy organisms such as insects and bacteria, much larger doses than those fatal to humans must be applied. Generally, the simpler the organism, the more radiation it can tolerate. (Cancer cells are a partial exception, because they are rapidly reproducing and, thus, more sensitive.) Current licensing allows up to 1000 Gy to be applied to fresh fruits and vegetables, called a low dose in food irradiation. Doses greater than 10,000 Gy are considered to be high doses in food irradiation and product sterilization. The effectiveness of food irradiation varies with the type of food. Spices and many fruits and vegetables have dramatically longer shelf lives. These also show no degradation in taste and no loss of food value or vitamins
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