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生物炭和牡蛎壳粉对酸化茶园土壤碳组分及矿物保护机制的调控

Effects of Biochar and/or Oyster Shell Powder Applications in Regulating Carbon Pool and Mineral Preservation of Acidified Tea Plantation Soil

  • 摘要:
    目的 在改良酸化土壤的同时,有效提升土壤碳固存是当前土壤科学领域的研究热点。本研究旨在探究生物炭与牡蛎壳粉对酸化茶园土壤碳组分及矿物保护机制的调控作用,以期为酸化土壤改良与碳库协同提升提供科学依据。
    方法 以福建酸化红壤茶园为对象,设置对照(不施牡蛎壳粉和生物炭)、单施牡蛎壳粉(100、200、300 kg·hm−2)、单施生物炭(7.5、15 t·hm−2)及牡蛎壳粉与生物炭配施(50 kg·hm−2牡蛎壳粉+7.5 t·hm−2生物炭)共 7 个田间处理,探究不同改良方式对土壤总碳、总有机碳、活性碳组分及钙键/铁铝键结合态有机碳的影响。
    结果 施用牡蛎壳粉与生物炭显著提升了土壤总碳与总有机碳含量,二者配施处理土壤总碳和有机碳含量分别较对照增加137.4%和119.1%,且显著高于低量单施生物炭。各改良处理均显著增加了土壤可溶性有机碳(DOC)与易氧化有机碳(ROC),不同程度降低了铁铝键结合态有机碳含量。相关分析表明,总有机碳与溶解性有机碳、易氧化有机碳、钙键结合态有机碳呈正相关,与交换性铝呈负相关。
    结论 施用牡蛎壳粉与生物炭显著提升了土壤碳库,配施处理表现出协同增效作用,主要通过提高钙键结合态有机碳强化矿物保护机制来促进有机碳稳定固存。

     

    Abstract:
    Objective Effects of applying biochar and/or oyster shell powder at tea plantations on the regulations of soil carbon pool and mineral preservation were studied for improved carbon sequestration and ameliorated acidification in the soil.
    Method At acidified red soil tea plantations in Fujian Province, a field experimentation was conducted applying no treatments as control (CK) and addition of oyster shell powder at a rate of 100, 200, or 300 kg·hm−2, biochar at a rate of 7.5 or 15 t·hm−2, or the combined use of both oyster shell powder (50 kg·hm−2) and biochar (7.5 t·hm−2). Total carbon (TC), organic carbon (OC), labile carbon fractions, calcium-bound OC, and iron-aluminum-bound OC in the soil at the test sites were measured. Correlation between the various treatments and soil conditions was determined.
    Result The treatments significantly increased TC and OC in soil over CK. By using both oyster shell powder and biochar, TC and OC rose by 137.4% and 119.1%, respectively, which were significantly higher than the use of single additive at low dosage. All treatments significantly raised the dissolved OC (DOC) and readily oxidizable carbon (ROC) and reduced the iron-aluminum-bound OC in varying degrees. Total OC significantly correlated with DOC, ROC, and calcium-bound OC but inversely with exchangeable aluminum.
    Conclusion Although applying oyster shell powder or biochar alone significantly enhanced the carbon pool, the combined use of both soil modifiers even at low levels would synergistically further the improvement on soil. An elevated calcium-bound OC induced by the combination significantly stimulated the mechanism that preserves the mineral and promotes stable OC sequestration.

     

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