Solar Steel: Difference between revisions

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=About=
Steel that is produced from scrap via an induction furnace that is powered by photovoltaic or wind power. Eventually, this will include hydrogen-reduced steel from rock using [[Solar Hydrogen]].
Steel that is produced from scrap via an induction furnace that is powered by photovoltaic or wind power. Eventually, this will include hydrogen-reduced steel from rock using [[Solar Hydrogen]].


=Cases=
=50kW Solar Scale=
*50 kg/hr, or 300 kg/day. About 60 sticks of [[Rebar]], or 800 lb.  50 kW induction furnace gets us a house worth every 1.5 days, so we need have about 300 days left, for 90 tons per year. See [[Farm Yields Per Acre]].
 
=Use Cases at Different Scales=
*1000 acres with 10% energy gen at 50% coverage = 200kw/acre = 20MW/100 acres = 20 tons/hr, scale of smallest minimill = 50k tons per year.
*1000 acres with 10% energy gen at 50% coverage = 200kw/acre = 20MW/100 acres = 20 tons/hr, scale of smallest minimill = 50k tons per year.
*5% area at full solar daytime means 50 acres for the scale of a minimill.
*5% area at full solar daytime means 50 acres for the scale of a minimill.

Revision as of 03:10, 22 July 2024

About

Steel that is produced from scrap via an induction furnace that is powered by photovoltaic or wind power. Eventually, this will include hydrogen-reduced steel from rock using Solar Hydrogen.

50kW Solar Scale

  • 50 kg/hr, or 300 kg/day. About 60 sticks of Rebar, or 800 lb. 50 kW induction furnace gets us a house worth every 1.5 days, so we need have about 300 days left, for 90 tons per year. See Farm Yields Per Acre.

Use Cases at Different Scales

  • 1000 acres with 10% energy gen at 50% coverage = 200kw/acre = 20MW/100 acres = 20 tons/hr, scale of smallest minimill = 50k tons per year.
  • 5% area at full solar daytime means 50 acres for the scale of a minimill.
  • Enough on solar only to build 1000 tanks per year.
  • Global network of 10,000 such facilities. $50M economy each in steel only *10000 =$0.5T

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