富铁有机肥改良轻度苏打盐碱地的效应

Effects of iron-rich organic fertilizers on the improvement of light soda saline-alkali soil

  • 摘要: 针对吉林省大安市轻度苏打盐碱地存在的pH值高、盐分含量高、土壤养分有效性低等问题,通过盆栽法种植水稻,以不施有机肥为空白对照(CK),研究普通有机肥(M0)、1%生物炭负载纳米铁粒子(BC-FeNPs)制备有机肥(M1),按5%施加比例添加到土壤中,探究富铁有机肥改良轻度苏打盐碱地的效应。结果表明,与CK相比,施加有机肥显著增加了苏打盐碱地土壤总有机碳(TOC)含量,增幅达1.15倍,M0、M1处理分别使铁结合态有机碳(Fe-OC)含量提升0.25倍和1.75倍。与CK相比,添加BC-FeNPs有机肥处理的Fe-OC/TOC由30.0%提升至39.0%,而M0处理Fe-OC/TOC的比例下降。与M0相比,添加BC-FeNPs有机肥处理能显著提高土壤蔗糖酶、碱性磷酸酶和过氧化氢酶活性。与CK相比,添加BC-FeNPs有机肥处理能显著提高土壤细菌群落的丰富度以及土壤中变形菌门、拟杆菌门和放线菌门的相对丰度。上述菌门的相对丰度与土壤速效养分含量和土壤酶活性呈正相关关系。添加1%BC-FeNPs的有机肥处理能够通过促进Fe-OC形成,从而显著提高总有机碳含量,提高酶活性及细菌群落丰富度,有利于苏打盐碱地土壤改良。

     

    Abstract: To address the problems of high pH, high salt content, and low soil nutrient effectiveness in light saline-alkali soil in Da'an City, Jilin Province, a pot experiment with rice planting was conducted to investigate the effect of organic fertilizer in ameliorating light soda saline-alkali soil. Three treatments were implemented, i.e. no organic fertilizer as a blank control (CK), ordinary organic fertilizer (M0), and organic fertilizer (M1) prepared with 1% biochar loaded with iron nano-particles (BC-FeNPs). All organic fertilizers were applied at 5% of the soil weight. The results show that compared with CK, the application of organic fertilizer significantly increases the total organic carbon content in light saline-alkali soil by 115%. The M0 and M1 treatments increase the content of iron-bound organic carbon (Fe-OC) by 25% and 175%, respectively. Compared with CK, BC-FeNPs organic fertilizer increases the Fe-OC/TOC ratio from 30.0% to 39.0%while M0 treatment decreases the Fe-OC/TOC ratio. Compared with M0, the addition of BC-FeNPs organic fertilizer significantly enhances the activities of soil invertase, alkaline phosphatase, and catalase. Compared with CK, the addition of BC-FeNPs organic fertilizer significantly increases the richness of soil bacterial communities and the relative abundances of Proteobacteria, Bacteroidota, and Actinobacteriota. The relative abundances of the above-mentioned phyla are positively correlated with soil available nutrient content as well as soil enzyme activities. The organic fertilizer added with 1% BC-FeNPs can significantly increase the total organic carbon content, improve enzyme activity and bacterial community richness by promoting the formation of Fe-OC, thus demonstrating potential for the improvement of saline-alkali soil.

     

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