Effects of attapulgite on the growth status of submerged macrophytes Vallisneria spiralis and sediment microenvironment

J Environ Manage. 2023 Oct 15:344:118496. doi: 10.1016/j.jenvman.2023.118496. Epub 2023 Jun 27.

Abstract

The effects of raw attapulgite clay and thermally modified attapulgite clay on the growth status of submerged plant Vallisneria Spiralis (V. spiralis) and the microenvironment of sediment were first explored. The results demonstrated that the attapulgite could effectively promote the development of V. spiralis and improve plant stress resistance by enhancing the activity of antioxidant enzymes. The 10% addition of attapulgite clay increased the biomass of V. spiralis by 27%∼174%, and the promoted rate of raw attapulgite clay was 2∼5 times of modified attapulgite clay. The attapulgite increased redox potential in sediment (P < 0.05) and provided proper niches for organism propagation, further promoting the degradation of organic matter and nutrient metabolism in sediment. The value of Shannon, Chao, and Ace was 9.98, 4865.15, 5029.08 in the 10% modified attapulgite group, and 10.12, 4856.85, 4947.78 in the 20% raw attapulgite group, respectively, indicating that the attapulgite could increase the microbial diversity and abundance in sediment. Additionally, the nutrient elements, such as Ca, Na, S, Mg, K, Zn, and Mo, that dissolved from attapulgite may also promote the V. spiralis growth. This study provided an environment-friendly approach to facilitating submerged macrophyte restoration in the eutrophic lake ecosystem.

Keywords: Raw attapulgite clay (RATP); Sediment microenvironment; Submerged plant growth; Thermally modified attapulgite clay (MATP).

MeSH terms

  • Biomass
  • Clay
  • Ecosystem*
  • Hydrocharitaceae* / metabolism
  • Lakes
  • Magnesium Compounds

Substances

  • attapulgite
  • Clay
  • Magnesium Compounds