Evaluation of Environmental and Economic Benefits of Land Reclamation in the Indonesian Coal Mining Industry
Abstract
:1. Introduction
2. Methods and Materials
2.1. Methods
2.2. Materials
2.2.1. The Characteristics of the Site Location
2.2.2. Study Boundary
2.3. Data Collection
2.3.1. Land Preparation
- Land preparation was performed on the regular area (overburden without waste rocks), and with no Potential Acid Formation (PAF),
- The target area is relatively flat,
- Annually, an area of 100 ha was prepared,
- The topsoil layer was 30 cm in thickness,
- The distance between the land clearing area to the topsoil stockpile point was 5 km, and was the same as that from the topsoil stockpile to the reclamation area,
- Since no drainage channel was constructed, and the site did not require slope formation, or the building of infrastructure, only surface regrading and the spreading of topsoil were considered in this study.
2.3.2. Topsoil Management
2.3.3. Revegetation
- The density of trees 1100–1111 trees/ha with the range 3 m × 3 m,
- There is no watering activity in the field (watering only in the nursery),
- Moreover, maintenance allocation for replanting failed (dead) trees is 10% of the total trees planted.
2.4. Environmental Valuation
2.4.1. Water Usage Cost
- Up to 10 m3: USD 0.37/m3,
- Within a range of 11–20 m3: USD 0.41/m3,
- Twenty-one meters cubed and over: USD 0.45/m3,
- Fixed cost for abonnement USD 1.68/monthly.
2.4.2. The Cost of Emissions
2.4.3. The Cost of the Reclamation
2.4.4. The Benefits of the Reclamation Area
3. Results
3.1. Energy Consumption and Emissions
3.2. The Cost and the Benefit of Reclamation
4. Discussion
4.1. Energy Consumption and Emissions
4.2. The Cost and the Benefit of Reclamation
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Section | Fuel Consumption (ℓ/ha) | Electricity Consumption (KWh/ha) | Water Consumption (ℓ/ha) | Operational Cost (USD/ha) |
---|---|---|---|---|
Topsoil management | 3680 | N a | N a | 3751 |
Surface regrading | 1380–1610 | N a | N a | 3040 |
Topsoil spreading | 4670–4835 | N a | N a | |
Planting: Conventional technique | 50–60 | N a | 2500–4000 | 1646–2056 |
Planting: Mechanical technique | 143 | 23 | 22,000 | 2626 |
Resources and Materials | Unit | Conventional Technique | Mechanical Technique | Changes in Value |
---|---|---|---|---|
Fuel | ℓ/ha | 9983 | 10,071 | 1% |
Water | ℓ/ha | 3250 | 22,000 | 577% |
Electricity | kWh/ha | - | 23 | - |
Materials | t/ha | 3.3 | 7.67 | 132% |
Seeds of land cover crop and trees | kg/ha | 33 | 200 | 506% |
Seedlings | trees/ha | 1222 | - | - |
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Setiawan, I.E.; Zhang, Z.; Corder, G.; Matsubae, K. Evaluation of Environmental and Economic Benefits of Land Reclamation in the Indonesian Coal Mining Industry. Resources 2021, 10, 60. https://doi.org/10.3390/resources10060060
Setiawan IE, Zhang Z, Corder G, Matsubae K. Evaluation of Environmental and Economic Benefits of Land Reclamation in the Indonesian Coal Mining Industry. Resources. 2021; 10(6):60. https://doi.org/10.3390/resources10060060
Chicago/Turabian StyleSetiawan, Imam Eko, Zhengyang Zhang, Glen Corder, and Kazuyo Matsubae. 2021. "Evaluation of Environmental and Economic Benefits of Land Reclamation in the Indonesian Coal Mining Industry" Resources 10, no. 6: 60. https://doi.org/10.3390/resources10060060
APA StyleSetiawan, I. E., Zhang, Z., Corder, G., & Matsubae, K. (2021). Evaluation of Environmental and Economic Benefits of Land Reclamation in the Indonesian Coal Mining Industry. Resources, 10(6), 60. https://doi.org/10.3390/resources10060060