PHYTOREMEDIATION FOR HEAVY METAL‐CONTAMINATED SOILS COMBINED WITH BIOENERGY PRODUCTION
Фиторемедиация почв, загрязнённых тяжёлыми металлами, в сочетании с производством биоэнергии
2007-12-31
SCID: 54.1/mprpdgs8
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biodiesel productionbioenergy productionenergy-recovery techniquesheavy metal-contaminated soilsphytoremediation
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Abstract (AI)
In June 2007, a project started in Flanders (Belgium) in which we will apply phytoremediation to clean soils that are diffusely polluted with heavy metals. Uptake ranges of heavy metals by rape seed, maize and wheat will be enhanced by increasing the bioavailability of these heavy metals by the addition of biodegradable physico‐chemical agents and by stimulating the heavy‐metal uptake capacity of the microbial community in and around the plant. In addition, the harvested biomass crops will be converted into bioenergy by using different energy‐recovery‐techniques. The energy and heavy metal mass balances will be compared for four different energy‐recovery techniques (anaerobic digestion, incineration, gasification and production of biodiesel). The overall information obtained will result in an economic evaluation of the use of phytoremediation combined with bioenergy production for the remediation of sites which are diffusely polluted with heavy metals. In the present review we will first explain the most important research steps investigated in our phytoremediation project. Secondly, an overview of literature discussing the phytoremediation capacity of rape seed to clean soils that are contaminated with heavy metals and the possibilities to produce biodiesel from this (heavy metal polluted) rape seed will be discussed in more detail.
Key Findings
1
A Flanders, Belgium project applies phytoremediation using rapeseed, maize, and wheat to remediate diffusely heavy-metal-polluted soils.
2
Energy and heavy-metal mass balances will be compared across four energy-recovery technologies to assess remediation effectiveness and contaminant management.
3
Harvested phytoremediation biomass will be converted into bioenergy through anaerobic digestion, incineration, gasification, or biodiesel production.
4
Heavy-metal uptake is intended to be enhanced by biodegradable physicochemical agents and stimulation of microbial uptake capacity around plant roots.
5
The project will economically evaluate combining phytoremediation with bioenergy production, with particular attention to biodiesel from heavy-metal-contaminated rapeseed.
Research Object
Phytoremediation of diffusely heavy-metal-contaminated soils using rapeseed, maize, and wheat biomass for subsequent bioenergy production
Research Subject
Heavy-metal uptake enhancement, contaminant and energy mass balances, and economic feasibility of converting the harvested phytoremediation biomass into bioenergy
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2007-12-31
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