EV recharging batteries — 12 GW
Spent algae and hyacinth residue is pyrolysed into hard carbon, activated and graded into EV cell anode material. The twin converts that material flow into deliverable pack energy and measures it against the recharging power target.
Target
Recharging power
12 GW
Storage required
30 GWh
Annual coverage
0%
Fed by 3081 kg DM of residue per cycle per site, across 1 parallel micro-clone. 2812 clones would fully cover the target.
Pack energy / cycle
511.65 kWh
6.82 × 75 kWh EV packs
Annual output
0.01 GWh
20.86 cycles / yr
12 GW coverage
0.04%
needs 30 GWh @ 2.5 h buffer
Clones to hit target
2812
micro-clone plants for 30 GWh / yr
Cycle life
588
3.4% fade / 100 cycles
Gross margin
$25262.4
revenue $37862.4 @ $74/kWh
EV battery specification — miniaturized section
session…Approximate per-unit specification of the bio-carbon anode cell family, normalised per kilogram (kg) and per pound (lbs). Values are modelled from the current setpoints and refresh live for every signed-in account.
Gravimetric energy
265 Wh/kg
≈ 120.20 Wh/lbs
Specific charge
81,600 mAh/kg
≈ 37,013 mAh/lbs
Fast charge
2.5 C
≈ 24 min 0→100%
Service life
588 cycles
3.4% fade / 100 cy
| Format | Mass ≈ (kg) | Mass ≈ (lbs) | Energy (Wh) | Capacity (mAh) | Anode carbon (g) | Energy density (Wh/L) |
|---|---|---|---|---|---|---|
| MB-CR20Micro coin MB-CR20sensor / telemetry node | 0.0031 | 0.0068 | 0.82 | 253 | 0.71 | 747 |
| MB-14500Mini cylindrical 14500micro-mobility, tools | 0.0195 | 0.0430 | 5.17 | 1,591 | 4.49 | 654 |
| MB-18650Cylindrical 18650standard EV sub-module cell | 0.0470 | 0.1036 | 12.46 | 3,835 | 10.83 | 755 |
| MB-21700Cylindrical 21700high-density EV cell | 0.0700 | 0.1543 | 18.55 | 5,712 | 16.13 | 767 |
| MB-PCH12Mini pouch PCH-12flat pack, stackable | 0.1320 | 0.2910 | 34.98 | 10,771 | 30.41 | 603 |
| MB-MOD1Micro-module MOD-112-cell clone module | 0.9600 | 2.1164 | 254.40 | 78,336 | 221.18 | 620 |
Masses are nominal format approximations (±5%); energy, capacity and anode content scale with the live cell energy density, specific capacity, anode mass fraction and carbon purity setpoints. 1 kg = 2.20462 lbs.
Material balance
- 01Spent biomass residue2,218.26 kg DM
72% of algae + hyacinth residue
- 02Slow pyrolysis → biochar709.84 kg char
32% char yield @ 900 °C
- 03Steam activation482.69 kg
68% surviving mass
- 04Hard-carbon anode grade463.38 kg anode
96% carbon purity
- 05Cell assembly1,930.77 kg cells
anode = 24% of cell mass
- 06Pack energy delivered511.65 kWh
265 Wh/kg cell
Inspection checks
- ENR-01 Anode carbon purity96 % · PASS
- ENR-02 Specific capacity340 mAh/g · PASS
- ENR-03 Char yield32 % · PASS
- ENR-04 Fast-charge rate2.5 C · PASS
- ENR-05 Capacity fade3.4 %/100cy · PASS
- ENR-06 Target coverage0.04 % · FAIL
Model notes
- Residue = harvested algae biomass minus polymer and protein draw, plus hyacinth dry matter minus technical fibre.
- Hard carbon = residue × char yield × activation survival × carbon purity; cell mass follows the anode mass fraction.
- Storage behind the network = target power × buffer hours; coverage compares annual pack output to that requirement.
- Cycle life ≈ 20 × (100 / fade per 100 cycles), a linear-degradation approximation for hard-carbon anodes.