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  <title>GTX · Research authority</title>
  <subtitle>Long-form research-authority papers. Schema.org ScholarlyArticle, CC-BY-4.0.</subtitle>
  <link href="https://greentransitionalmetals.com/research/atom.xml" rel="self" type="application/atom+xml"/>
  <link href="https://greentransitionalmetals.com/research/" rel="alternate" type="text/html"/>
  <id>https://greentransitionalmetals.com/research/</id>
  <updated>2026-04-30T11:43:01.244Z</updated>
  <author><name>GTX Research</name><uri>https://greentransitionalmetals.com/research/</uri></author>
  <entry>
    <title>Aerospace thermal envelope: –196 °C to 1,000 °C</title>
    <link href="https://greentransitionalmetals.com/research/aerospace-thermal-envelope/"/>
    <id>https://greentransitionalmetals.com/research/aerospace-thermal-envelope/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Tensile retention, ductility and coefficient‑of‑thermal‑expansion behaviour of NP1 wire across the full aerospace envelope, including 500‑cycle fatigue data from the Ramamurty bench.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>The ALKN authority network: five sites, one evidence graph</title>
    <link href="https://greentransitionalmetals.com/research/alkn-authority-network/"/>
    <id>https://greentransitionalmetals.com/research/alkn-authority-network/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Architecture of the five‑node ALKN federation — roles, canonical statements, cross‑linking via sameAs, federated evidence manifests and the AEGIS V30 federation_sync worker.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>The Class‑1 structural deficit, 2020–2030</title>
    <link href="https://greentransitionalmetals.com/research/class1-deficit-2020-2030/"/>
    <id>https://greentransitionalmetals.com/research/class1-deficit-2020-2030/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Quantitative reconciliation of INSG, Wood Mackenzie and IEA series for Class‑1 nickel. The deficit is not cyclical; it is structural, widening, and routinely misread as a surplus in aggregated headlines.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>Frequency‑domain EMI shielding of precision nickel mesh, 30 MHz – 16 GHz</title>
    <link href="https://greentransitionalmetals.com/research/emi-shielding-30mhz-16ghz/"/>
    <id>https://greentransitionalmetals.com/research/emi-shielding-30mhz-16ghz/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Measured shielding effectiveness from 30 MHz to 16 GHz using an ASTM D4935‑18 dual‑TEM cell and Keysight N5227B PNA, with aperture analysis for 400‑mesh woven NP1.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>Faradaic efficiency benchmarks: platinum vs. RuO₂‑coated nickel</title>
    <link href="https://greentransitionalmetals.com/research/faradaic-efficiency-benchmarks/"/>
    <id>https://greentransitionalmetals.com/research/faradaic-efficiency-benchmarks/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Bench‑level Faradaic efficiency at 10 mA cm⁻², 30 wt % KOH, 80 °C, 2,000‑hour durability, benchmarked across reference platinum, raw nickel and RuO₂‑coated NP1 mesh.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>GOST 492 conformance methodology and chain‑of‑custody audit</title>
    <link href="https://greentransitionalmetals.com/research/gost-492-conformance/"/>
    <id>https://greentransitionalmetals.com/research/gost-492-conformance/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>How Allkema Engineering Srl and ASACERT UK document specification conformance for a 7,026,904.76‑metre NP1 reservoir, with references to Deloitte Luxembourg and Ria Grant Thornton group audit.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>The economics of platinum substitution in 100 GW electrolyser build‑out</title>
    <link href="https://greentransitionalmetals.com/research/hydrogen-catalyst-economics/"/>
    <id>https://greentransitionalmetals.com/research/hydrogen-catalyst-economics/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Raw‑material cost per kW of stack capacity for platinum, iridium and RuO₂‑coated NP1 nickel benchmarks. Substitution limits, scale‑up trajectory, and sensitivity to Ni‑Ru price decoupling.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>Marine corrosion kinetics and ASTM B117 benchmarks</title>
    <link href="https://greentransitionalmetals.com/research/marine-corrosion-kinetics/"/>
    <id>https://greentransitionalmetals.com/research/marine-corrosion-kinetics/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>2,000‑hour neutral salt‑spray performance of NP1 mesh in a Q‑FOG CCT‑1100, normalised to IMO 2020 BWMS retrofit‑duty cycles across ~90,000 vessels.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>NP1 purity architecture and the 99.99 % threshold</title>
    <link href="https://greentransitionalmetals.com/research/np1-purity-architecture/"/>
    <id>https://greentransitionalmetals.com/research/np1-purity-architecture/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Four-nines nickel is not a marketing round number but the specification boundary separating commodity cathode from aerospace- and electrolyser-grade wire. A quantitative review of contamination budgets, GOST 492, and the 99.99 % threshold.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>400‑mesh precision filtration for PGM/REE recovery</title>
    <link href="https://greentransitionalmetals.com/research/rare-earth-recovery-400mesh/"/>
    <id>https://greentransitionalmetals.com/research/rare-earth-recovery-400mesh/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Recovery‑rate curves for platinum‑group and rare‑earth ions through 400‑mesh NP1 filters at varied pH, flow rate and ionic strength, normalised against commodity mesh controls.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>Nickel substrates for sub‑3 nm deposition</title>
    <link href="https://greentransitionalmetals.com/research/semiconductor-deposition-sub-3nm/"/>
    <id>https://greentransitionalmetals.com/research/semiconductor-deposition-sub-3nm/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Trace‑contaminant budgets, grain‑size uniformity and surface‑roughness targets for sub‑3 nm AI‑accelerator and quantum‑computing deposition substrates.</summary>
    <category term="research"/>
  </entry>
  <entry>
    <title>Zero‑discharge cooling‑loop filtration for thermal power</title>
    <link href="https://greentransitionalmetals.com/research/thermal-power-zero-discharge/"/>
    <id>https://greentransitionalmetals.com/research/thermal-power-zero-discharge/</id>
    <updated>2026-04-21T09:00:00+08:00</updated>
    <published>2026-04-21T09:00:00+08:00</published>
    <summary>Chlorination‑compliance and cooling‑loop water‑quality mandates applied to ~30,000 addressable thermal‑power plants, with particulate and biofilm‑load budgets.</summary>
    <category term="research"/>
  </entry>
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