Bio-Geotechnologies for Mine Site Rehabilitation

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Bio-Geotechnologies for Mine Site Rehabilitation deals with the biological, physical, chemical, and engineering approaches necessary for the reclamation of mine waste. As mining has negative effects on natural resources and deteriorates the quality of the surrounding environment, this book provides coverage across different types of mining industries, which are currently creating industrial deserts overloaded with technogenic waste. The book offers cost-effective strategies and approaches for contaminated sites, along with remediation and rehabilitation methods for contaminated soils and waste dumps. It is an essential resource for students and academics, but is also ideal for applied professionals in environmental geology, mineral geologists, biotechnologists and policymakers.

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Detaljer
Størrelse og vægt
  • Vægt1470 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,4 cm

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    Wales Vegetation Mobility Heavy metal Succession China Forest Mining Rehabilitation Ecosystems Environmental economics Environmental impact Metals Multivariate analysis Land degradation Bioremediation Biodiversity Monitoring Carbon sequestration Transgenic plants Trace elements Compost Coal mining Ecological risk assessment Bioavailability Land use Soil remediation Bacteria Heavy metals Bioreactors Zeolites Remediation Restoration Bioengineering Green technology Afforestation Phytoremediation Biotechnology Humic acid Mycorrhizal fungi Sewage sludge Biofertilizers Synthesis Uranium mill tailings Mining industry Abandoned mines Biomass Fly ash Soil amendments Revegetation Sustainability Microbes Fabrication Waste Management Biochar Paradigm Shift Biological Soil Development Heavy metal removal PGPR Ecological restoration Légume Value chain Coal mine Nanomaterials Genome editing Arbuscular mycorrhiza Mitigation Activated Carbon Bioassays Trade Off Caatinga Acidic soil Biofortification Ecotoxicity Physicochemical Wastes Reclamation Remediation Technologies Reflective practice Hyperaccumulators Mulch Carbon Capture Sustainable Pollutant Zeolite Biosolids Mine tailings Soil Reclamation Organic Matter Iron oxide nanoparticles Water bodies Technosols Physicochemical properties Land reclamation Tailings Phytomining Ecotechnologies Recultivation Acid Drainage Active treatment Acid Generation Aided phytostabilization Arabidopsis halleri ssp. gemmifera of hyperaccumulator Adsorption isotherm Biodiversity reorganization and protection Ash pond reclamation Bioenergy Crops Cleanup techniques Conceptual Site Model Commodity beneficiation Coir mat Beneficial land use Conventional techniques Biogeochemical impacts of reclamation CO2 flux Domestication of wild plants Environmental Audit Extraction procedures Cleanup criteria Extra-large open-pit coal mine Cradle for nature Designing for self-sustainability Iron ore mine spoil dump Ecological reclamation Leachates Legacy sites Lime requirement Iron-based nanoparticles Metal-contaminated soil Mine-impacted agricultural land Mineral wastes Mine waste directive Mine exploitation Mine Rehabilitation NMR Analysis Metal tolerant Mine waste Mine soil property Mine waste rehabilitation Opencast coal lands Native grass Phytocenosis Phytobiome Potentially hazardous elements Phytoextraction using accumulator plant species Phytostabilization Recovery work plan Selection of rice variety SER international standards Soil reconstruction Semiarid Region Initial ecological succession Membrane technologies Uranium Mine sustainable remediation Vetiver system Technosol Landform remodeling Land Rehabilitation Metal fractionation Xerothermic plants Mine site Mine Spoil Preliminary assessment Mine Sites Mine Spoils phytomanagement replacement Passive Treatment Wastewater Treatment Watershed-wide remediation Pump-and-treat Pyritic tailings SOC and N stock Technology screening The Act to Prevent Soil Contamination on Agricultural Land Soil quality index

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