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Review of Small Stationary Reformers for Hydrogen Production

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Re<strong>for</strong>mer Type Companies, Organizations Development Status Issues For Use In <strong>Hydrogen</strong><br />

Refueling Station Applications<br />

Authothermal Re<strong>for</strong>ming<br />

Argonne National Laboratory<br />

International Fuel Cells<br />

Fraunh<strong>of</strong>er Solar Energy Institute<br />

Degussa Metals Catalyst Cerdec<br />

Johnson-Matthey<br />

<strong>Hydrogen</strong> Burner Technologies,<br />

Inc.<br />

Honeywell and Energy Partners<br />

are developing ATR <strong>for</strong> FC<br />

cogeneration<br />

Systems<br />

McDermott Technology, Inc.<br />

(MTI) and Catalytica<br />

INEEL, MTI, PG&E<br />

33<br />

R&D on ATR systems<br />

and catalysts<br />

Designed ATR run on<br />

logistics fuels<br />

Designing ATR <strong>for</strong> LPG<br />

and diesel fuel<br />

R&D on ATR catalysts<br />

Demonstrated “hot spot”<br />

ATR on methanol and<br />

methane<br />

Testing ATR <strong>for</strong><br />

methane and liquid<br />

fuel re<strong>for</strong>ming<br />

R&D<br />

R&D on ATR Fuel<br />

processor <strong>for</strong><br />

shipboard fuel cells<br />

R&D on ATR <strong>for</strong> H2<br />

refueling station<br />

Combines desirable features <strong>of</strong><br />

steam re<strong>for</strong>ming and partial<br />

oxidation.

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