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HYDROGEN COOLED REACTORS 476 HYDROGEN PEROXIDE<br />

NT2 thorium hydroxides<br />

NT2 thulium hydroxides<br />

NT2 tin hydroxides<br />

NT2 titanium hydroxides<br />

NT2 tungst<strong>en</strong> hydroxides<br />

NT2 uranium hydroxides<br />

NT2 vanadium hydroxides<br />

NT2 ytterbium hydroxides<br />

NT2 yttrium hydroxides<br />

NT2 zinc hydroxides<br />

NT2 zirconium hydroxides<br />

NT1 inorganic acids<br />

NT2 boric acid<br />

NT2 bro<strong>en</strong>sted acids<br />

NT2 bromic acid<br />

NT2 carbonic acid<br />

NT2 chloric acid<br />

NT2 chlorous acid<br />

NT2 chromic acid<br />

NT2 fluoroboric acid<br />

NT2 hydrazoic acid<br />

NT2 hydriodic acid<br />

NT2 hydrobromic acid<br />

NT2 hydrochloric acid<br />

NT2 hydrocyanic acid<br />

NT2 hydrofluoric acid<br />

NT2 hypochlorous acid<br />

NT2 hypofluorous acid<br />

NT2 hypoiodous acid<br />

NT2 hypophosphorous acid<br />

NT2 iodic acid<br />

NT2 lewis acids<br />

NT2 molybdic acid<br />

NT2 molybdophosphoric acid<br />

NT2 nitric acid<br />

NT2 nitrous acid<br />

NT2 perchloric acid<br />

NT2 periodic acid<br />

NT2 phosphoric acid<br />

NT2 phosphorous acid<br />

NT2 silicic acid<br />

NT2 sulfamic acid<br />

NT2 sulfuric acid<br />

NT2 sulfurous acid<br />

NT2 telluric acid<br />

NT2 tungstophosphoric acid<br />

NT1 tritium compounds<br />

NT2 tritides<br />

NT3 deuterium tritide<br />

NT3 helium tritides<br />

NT3 hydrog<strong>en</strong> tritide<br />

NT3 lithium tritides<br />

NT2 tritium oxides<br />

NT1 water<br />

NT2 drinking water<br />

NT2 feedwater<br />

NT2 fresh water<br />

NT2 ground water<br />

NT3 interstitial water<br />

NT3 magmatic water<br />

NT2 heavy water<br />

NT2 hot water<br />

NT2 rain water<br />

NT3 throughfall<br />

NT2 seawater<br />

NT2 tritium oxides<br />

NT2 waste water<br />

NT3 shale tar water<br />

HYDROGEN COOLED REACTORS<br />

*BT1 gas cooled reactors<br />

NT1 kiwi reactors<br />

NT2 kiwi-tnt reactor<br />

NT1 nerva reactor<br />

NT1 nrx-a2 reactor<br />

NT1 nrx-a3 reactor<br />

NT1 nrx-a4-est reactor<br />

NT1 nrx-a5 reactor<br />

NT1 nrx-a6 reactor<br />

NT1 pewee-1 reactor<br />

NT1 pewee-2 reactor<br />

NT1 pewee-3 reactor<br />

NT1 pewee-4 reactor<br />

NT1 phoebus-1a reactor<br />

NT1 phoebus-1b reactor<br />

NT1 phoebus-2a reactor<br />

NT1 rover reactors<br />

NT1 xe-prime reactor<br />

RT nrx-a7 reactor<br />

RT space propulsion reactors<br />

RT xe-2 reactor<br />

HYDROGEN CYANIDES<br />

INIS: 2000-04-12; ETDE: 1975-08-19<br />

Till July 2012 HYDROCYANIC ACID was<br />

used for this concept<br />

BT1 cyanides<br />

BT1 hydrog<strong>en</strong> compounds<br />

RT hydrocyanic acid<br />

HYDROGEN DEUTERIDE<br />

1976-03-02<br />

UF deuterium hydride<br />

*BT1 deuterides<br />

RT deuterium<br />

RT hydrog<strong>en</strong> 1<br />

hydrog<strong>en</strong> donor reactions<br />

INIS: 1981-02-27; ETDE: 1978-10-23<br />

USE hydrog<strong>en</strong> transfer<br />

HYDROGEN EMBRITTLEMENT<br />

INIS: 1992-06-17; ETDE: 1980-06-06<br />

A decrease in fracture str<strong>en</strong>gth of metals due<br />

to the incorporation of hydrog<strong>en</strong> in the metal<br />

lattice.<br />

BT1 embrittlem<strong>en</strong>t<br />

RT brittl<strong>en</strong>ess<br />

RT fracture properties<br />

RT hydridation<br />

RT hydrog<strong>en</strong><br />

RT interstitial hydrog<strong>en</strong> g<strong>en</strong>eration<br />

HYDROGEN FLUORIDES<br />

Till August 2012 HYDROFLUORIC ACID<br />

was used for this concept<br />

*BT1 fluorides<br />

*BT1 hydrog<strong>en</strong> halides<br />

RT hydrofluoric acid<br />

HYDROGEN FUEL CELLS<br />

1976-07-30<br />

*BT1 fuel cells<br />

HYDROGEN FUELS<br />

1992-07-10<br />

*BT1 synthetic fuels<br />

RT automotive fuels<br />

RT hydrog<strong>en</strong><br />

RT jet <strong>en</strong>gine fuels<br />

RT slush<br />

hydrog<strong>en</strong> g<strong>en</strong>eration<br />

INIS: 1990-12-15; ETDE: 1983-04-28<br />

(Prior to December 1990, this was a valid<br />

descriptor.)<br />

USE interstitial hydrog<strong>en</strong> g<strong>en</strong>eration<br />

HYDROGEN GENERATORS<br />

2000-01-04<br />

Devices for continuous production of small<br />

quantities of hydrog<strong>en</strong>.<br />

BT1 gas g<strong>en</strong>erators<br />

RT hydrog<strong>en</strong> production<br />

HYDROGEN HALIDES<br />

2012-07-26<br />

*BT1 halides<br />

BT1 hydrog<strong>en</strong> compounds<br />

NT1 hydrog<strong>en</strong> bromides<br />

NT1 hydrog<strong>en</strong> chlorides<br />

NT1 hydrog<strong>en</strong> fluorides<br />

NT1 hydrog<strong>en</strong> iodides<br />

hydrog<strong>en</strong> hydroxides<br />

USE water<br />

HYDROGEN IODIDES<br />

INIS: 2000-04-12; ETDE: 1983-02-09<br />

Till August 2012 HYDRIODIC ACID was used<br />

for this concept<br />

*BT1 hydrog<strong>en</strong> halides<br />

*BT1 iodides<br />

RT hydriodic acid<br />

HYDROGEN IONS<br />

*BT1 ions<br />

NT1 hydrog<strong>en</strong> ions 1 minus<br />

NT1 hydrog<strong>en</strong> ions 1 plus<br />

NT1 hydrog<strong>en</strong> ions 2 plus<br />

NT1 hydrog<strong>en</strong> ions 3 plus<br />

HYDROGEN IONS 1 MINUS<br />

For monatomic negative hydrog<strong>en</strong> ions.<br />

*BT1 anions<br />

*BT1 hydrog<strong>en</strong> ions<br />

HYDROGEN IONS 1 PLUS<br />

For monatomic positive hydrog<strong>en</strong> ions.<br />

UF proton-atom collisions<br />

UF proton-molecule collisions<br />

*BT1 cations<br />

*BT1 hydrog<strong>en</strong> ions<br />

RT h2 regions<br />

RT oxonium ions<br />

RT protons<br />

HYDROGEN IONS 2 PLUS<br />

For diatomic singly positive hydrog<strong>en</strong> ions.<br />

*BT1 cations<br />

*BT1 hydrog<strong>en</strong> ions<br />

*BT1 molecular ions<br />

HYDROGEN IONS 3 PLUS<br />

For triatomic singly positive hydrog<strong>en</strong> ions.<br />

*BT1 cations<br />

*BT1 hydrog<strong>en</strong> ions<br />

*BT1 molecular ions<br />

HYDROGEN ISOTOPES<br />

1999-07-16<br />

BT1 isotopes<br />

NT1 deuterium<br />

NT1 hydrog<strong>en</strong> 1<br />

NT1 hydrog<strong>en</strong> 4<br />

NT1 hydrog<strong>en</strong> 5<br />

NT1 hydrog<strong>en</strong> 6<br />

NT1 hydrog<strong>en</strong> 7<br />

NT1 tritium<br />

hydrog<strong>en</strong> logs<br />

INIS: 2000-04-12; ETDE: 1979-03-27<br />

SEE neutron-gamma logging<br />

SEE neutron logging<br />

SEE neutron-neutron logging<br />

HYDROGEN METERS<br />

1977-10-17<br />

*BT1 meters<br />

RT chemical analysis<br />

RT hydrog<strong>en</strong><br />

hydrog<strong>en</strong> minus 1 beams<br />

INIS: 2000-04-12; ETDE: 1979-03-05<br />

USE hydrog<strong>en</strong> 1 minus beams<br />

HYDROGEN NITRATES<br />

Till July 2012 NITRIC ACID was used for this<br />

concept<br />

BT1 hydrog<strong>en</strong> compounds<br />

*BT1 nitrates<br />

RT nitric acid

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