4.6 Article

Co-Application of Porous Polysulfide Pellets with Acidithiobacillus thiooxidans Improves Sulfate Availability in Soil

期刊

JOURNAL OF POLYMERS AND THE ENVIRONMENT
卷 30, 期 11, 页码 4571-4579

出版社

SPRINGER
DOI: 10.1007/s10924-022-02520-3

关键词

Polysulfide; Fertilizer; Oxidation; Sulfur; Acidithiobacillus thiooxidans

资金

  1. CNPq (Brazilian National Council for Scientific and Technological Development) [169057/2018-6]
  2. FAPESP (Sao Paulo State Research Foundation) [2016/09343-6, 2016/10636-8, 2018/10104-1]
  3. CAPES/Alexander von Humboldt Foundation [001]
  4. CAPES [88881.145566/2017-1]
  5. Return Grant

向作者/读者索取更多资源

Porous polysulfide pellets as sulfur fertilizers with higher oxidation surface area are more effective than traditional elemental sulfur fertilizers. Co-application with the oxidizing bacterium A. thiooxidans can improve the release efficiency of sulfate.
Sulfur (S) fertilization is necessary to overcome the low availability of this essential nutrient in agricultural soils. Although elemental sulfur (S-8) pellets are often used, they tend to be poorly effective due to their low oxidation rate to sulfate, the form assimilated by plants. Here we designed highly porous polysulfide pellets (PolyS-porous) as S fertilizers with higher surface area for oxidation, aiming to improve sulfate delivery. A porosity of nearly 50% was achieved via inverse vulcanization of soybean oil and S-8 in the presence of a salt porogen. A culture medium test with S-oxidizing bacterium Acidithiobacillus thiooxidans revealed PolyS-porous had a faster initial oxidation than S-8-pellet, reaching respectively 57% and 20% at the end of 10 days. Sulfate released from PolyS-porous in soil was 3 times higher than from S-8-pellet in 30 days, and PolyS-porous co-application with A. thiooxidans achieved twice as much. Overall, the results from this study demonstrated the potential of porous polysulfide pellets as sulfur fertilizers with improved efficiency, especially when combined with A. thiooxidans. [GRAPHICS] .

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