4.6 Article

Short-term effects of biochar and gypsum on soil hydraulic properties and sodicity in a saline-alkali soil

期刊

PEDOSPHERE
卷 30, 期 5, 页码 694-702

出版社

SCIENCE PRESS
DOI: 10.1016/S1002-0160(18)60051-7

关键词

field water capacity; saline ice; saturated hydraulic conductivity; sodium adsorption ratio; soil alkalinity

资金

  1. National Key Research and Development Project of China [2016YFD0200303]
  2. Natural Science Foundation of China-Shandong Joint Key Project [U1806215, U1906221]
  3. Key Project of Chinese Academy of Sciences [KFZD-SW-112-03-02]
  4. National Natural Science Foundation of China [41977015]

向作者/读者索取更多资源

Salt and sodicity of saline-alkali soil adversely affect the construction of ecological landscapes and negatively impact crop production. The reclamation potential of biochar (BC, wheat straw biochar applied at 1% by weight), gypsum (G, 0.4% by weight), and gypsum coupled with biochar (GBC) was examined in this laboratory-based study by evaluating their effects on a saline-alkali soil (silt loam) with no amendment as a control (CK). Saline ice and fresh water (simulated rainfall) were leached through soil columns to investigate changes in salt content, sodium adsorption ratio (SAR), alkalinity, and pH of the leachate and the soil. Results showed that saturated water content and field water capacity (FWC) significantly increased by 4.4% and 5.6%, respectively, in the BC treatment after a short incubation time. Co-application of biochar and gypsum (GBC) increased soil saturated hydraulic conductivity (K-s) by 58.4%, which was also significantly higher than the sole addition. Electrical conductivity (EC) of the leachate decreased sharply after saline ice leaching; subsequent freshwater leaching accelerated the removal of the rest of the salts, irrespective of the amendment application. However, the application of gypsum (G and GB) significantly enhanced the removal of exchangeable Na+ and reduced leachate SAR. After leaching, the soil salt content decreased significantly for all treatments. The application of gypsum resulted in a significantly lower soil pH, exchangeable sodium percentage (ESP), SAR, and alkalinity values than those recorded for the CK and BC treatments. These results demonstrated that the co-application of gypsum and biochar could improve saline-alkali soil hydraulic conductivity and decrease leaching-induced sodicity over a short period.

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