Copper phytoavailability and uptake by Elsholtzia splendens from contaminated soil as affected by soil amendments

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2005;40(4):839-56. doi: 10.1081/ese-200048283.

Abstract

Pot and field experiments were conducted to evaluate bioavailability of Cu in contaminated paddy soil (PS) and phytoremediation potential by Elsholtzia splendens as affected by soil amendments. The results from pot experiment showed that organic manure (M) applied to the PS not only remarkably raised the H2O exchangeable Cu, which were mainly due to the increased exchangeable and organic fractions of Cu in the PS by M, but also stimulated plant growth and Cu accumulation in E. splendens. At M application rate of 5.0%, shoot Cu concentration in the plant increased by four times grown on the PS, so as to the elevated shoot Cu accumulation by three times as compared to the control. In the field trial, soil amendments by M and furnace slag (F), and soil preparations like soil capping (S) and soil discing (D) were performed in the PS. Soil capping and discing considerably declined total Cu in the PS. Application of M solely or together with F enhanced plant growth and increased H2O exchangeable Cu levels in the soil. The increased extractability of Cu in the rhizosphere of E. splendens was noted, which may have mainly attributed to the rhizospheric acidification and chelation by dissolved organic matter (DOM), thus resulting in elevating Cu uptake and accumulation by E. splendens. Amendments with organic manure plus furnace slag (MF) to the PS caused the highest exactable Cu with saturated H2O in the rhizospheric soil of E. splendens after they were grown for 170 days in the PS, thus achieving 1.74 kg Cu ha(-1) removal from the contaminated soil by the whole plant of E. splendens at one season, which is higher than those of the other soil treatments. The results indicated that application of organic manure at a proper rate could enhance Cu bioavailability and increase effectiveness of Cu phytoextraction from the contaminated soil by the metal-tolerant and accumulating plant species (E. splendens).

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Biodegradation, Environmental
  • China
  • Copper / isolation & purification*
  • Copper / metabolism
  • Hydrogen-Ion Concentration
  • Incineration
  • Industrial Waste*
  • Lamiaceae / growth & development
  • Lamiaceae / metabolism*
  • Manure*
  • Plant Roots / metabolism
  • Plant Shoots / metabolism
  • Soil Pollutants / isolation & purification*
  • Soil Pollutants / metabolism

Substances

  • Industrial Waste
  • Manure
  • Soil Pollutants
  • Copper