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Design of a cw, low energy, high power superconducting linac for environmental applications

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arxiv 1802.08289 v2 pith:XPUAQ466 submitted 2018-02-22 physics.acc-ph

classification physics.acc-ph
keywords beampowercostdesignenergyelectronhighindustrial
verification ladder T0 review T1 audit T2 compute T3 formal
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The treatment of flue gases from power plants and municipal or industrial wastewater using electron beam irradiation technology has been successfully demonstrated in small-scale pilot plants. The beam energy requirement is rather modest, on the order of a few MeV, however the adoption of the technology at an industrial scale requires the availability of high beam power, of the order of 1 MW, in a cost effective way. In this article we present the design of a compact superconducting accelerator capable of delivering a cw electron beam with a current of 1 A and an energy of 1 MeV. The main components are an rf-gridded thermionic gun and a conduction cooled beta= 0.5 elliptical Nb3Sn cavity with dual coaxial power couplers. An engineering and cost analysis shows that the proposed design would result in a processing cost competitive with alternative treatment methods.

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