Submitted:
22 May 2025
Posted:
23 May 2025
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Abstract
Keywords:
1. Introduction
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
- no need for external power source network or fuel (PV cell power <20 W);
- no need for frequent maintenance;
- easiness of building up and operation (no need for trained personnel);
- low cost, almost limited to the building up investement some hundreds USD);
- adaptability to specific needs of small communities;
- portability;
- flexible design (materials, size, heating, depending on the specific use and site).
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
Abbreviations
| SDG | Sustainable Development Goal |
| LCA | Life Cycle assessment |
| EMA | Emergy Accounting |
| EYR | Emergy Yield Ratio |
| ELR | Environmental Loading Ratio |
References
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| Structural parameters |
|
| Operational parameters |
|
| External parameters |
|
| Item | Unit | Amount (unit) | Life-time (yrs) | Annual amount (unit/yr) | UEV (*) (sej/unit) | Ref. | Emergy (sej) |
% (w/out L&S) | % (with L&S) | |
|---|---|---|---|---|---|---|---|---|---|---|
| Locally available renewable inputs1 (R) | ||||||||||
| 1 | Solar radiation | J | 5.13E+09 | 5.13E+09 | 1 | 5.13E+09 | ||||
| 2 | Geothermal heat flow | J | 1.58E+06 | 1.58E+06 | 4,900 | [10] | 7.73E+09 | |||
| 3 | Wind, kinetic energy | J | 5.33E+06 | 5.33E+06 | 790 | [10] | 4.21E+09 | |||
| 4 | Rain, geopotential | J | 4.58E+04 | 4.58E+04 | 12,800 | [10] | 5.86E+08 | |||
| 5 | Well water | L | 6.57E+03 | 6.57E+03 | 1.79E+08 | [11] | 1.18E+12 | |||
| Driving renewable input** | 1.18E+12 | 26.7% | 0.5% | |||||||
| Locally available non-renewable inputs (N) | ||||||||||
| 6 | - | - | - | - | - | 0.00E+00 | 0.0% | 0.0% | ||
| Imported inputs (F) | ||||||||||
| 7 | Glass | kg | 3.10E+01 | 20 | 1.55E+00 | 1.71E+12 | [12] | 2.65E+12 | 60.1% | 1.2% |
| 9 | PE-IR, as plastics | kg | 1.41E-01 | 20 | 7.05E-03 | 6.48E+12 | [12] | 4.57E+10 | 1.0% | 0.0% |
| 8 | PE, UV-stabilised, a.p. | kg | 1.41E-01 | 20 | 7.05E-03 | 6.48E+12 | [12] | 4.57E+10 | 1.0% | 0.0% |
| 10 | PE “anti-drop”, a.p. | kg | 1.88E-01 | 20 | 9.40E-03 | 6.48E+12 | [12] | 6.09E+10 | 1.4% | 0.0% |
| 11 | Ethylene-vinyl ac., a.p. | kg | 1.67E-01 | 20 | 8.37E-03 | 6.48E+12 | [12] | 5.42E+10 | 1.2% | 0.0% |
| 12 | PVC, a.p. | kg | 2.10E-01 | 20 | 1.05E-02 | 6.48E+12 | [12] | 6.80E+10 | 1.5% | 0.0% |
| 13 | Polyester (Melinex) | kg | 1.44E-01 | 20 | 7.20E-03 | 6.48E+12 | [12] | 4.67E+10 | 1.1% | 0.0% |
| 14 | Hostaflon ETFE, a.p. | kg | 2.15E-01 | 20 | 1.08E-02 | 6.48E+12 | [12] | 6.97E+10 | 1.6% | 0.0% |
| 15 | Tediar PVF, a.p. | kg | 1.09E-01 | 20 | 5.46E-03 | 6.48E+12 | [12] | 3.54E+10 | 0.8% | 0.0% |
| 16 | Teflon, as plastics | kg | 1.10E-01 | 20 | 5.50E-03 | 6.48E+12 | [12] | 3.56E+10 | 0.8% | 0.0% |
| 17 | PV panel | m2 | 6.24E-02 | 20 | 3.12E-03 | 1.98E+12 | [13] | 6.17E+09 | 0.1% | 0.0% |
| 18 | Fan, as plastics | kg | 5.00E-02 | 20 | 2.50E-03 | 6.48E+12 | [12] | 1.62E+10 | 0.4% | 0.0% |
| 18 | Heat exchanger, as Al | kg | 2.00E-01 | 20 | 1.00E-02 | 9.90E+12 | [12] | 9.90E+10 | 2.2% | 0.0% |
| Labor and services (L&S) | ||||||||||
| 20 | Labor2 | J | 2.60E+07 | 2.60E+07 | 6.76E+06 | [14] | 1.76E+14 | 76.6% | ||
| 21 | Services3 | $ | 2.50E+02 | 20 | 1.25E+01 | 3.95E+12 | [15] | 4.94E+13 | 21.5% | |
| Output (per yr) | ||||||||||
| Purified water | L | 4380 | ||||||||
| Total Emergy (Y) | sej | 4.41E+12 | ||||||||
| Total Emergy with L&S | sej | 2.30E+14 | ||||||||
| Specific Emergy (no L&S) | sej/L | 1.01E+09 | ||||||||
| Specific Emergy (w. L&S) | sej/L | 5.24E+10 | ||||||||
| Specific Emergy (no L&S) | sej/m3 | 1.01E+12 | ||||||||
| Specific Emergy (w. L&S) | sej/m3 | 5.24E+13 | ||||||||
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