邹瑞晗, 王振华, 朱 艳, 宗 睿, 陈 睿. 非灌溉季节生物炭施用对滴灌棉田土壤团聚体及其碳含量的影响[J]. 土壤通报, 2023, 54(3): 626 − 635. DOI: 10.19336/j.cnki.trtb.2021122701
引用本文: 邹瑞晗, 王振华, 朱 艳, 宗 睿, 陈 睿. 非灌溉季节生物炭施用对滴灌棉田土壤团聚体及其碳含量的影响[J]. 土壤通报, 2023, 54(3): 626 − 635. DOI: 10.19336/j.cnki.trtb.2021122701
ZOU Rui-han, WANG Zhen-hua, ZHU Yan, ZONG Rui, CHEN Rui. Effect of Biochar Application before Winter on Soil Aggregates and Carbon Sequestration in Drip Irrigation Cotton Field[J]. Chinese Journal of Soil Science, 2023, 54(3): 626 − 635. DOI: 10.19336/j.cnki.trtb.2021122701
Citation: ZOU Rui-han, WANG Zhen-hua, ZHU Yan, ZONG Rui, CHEN Rui. Effect of Biochar Application before Winter on Soil Aggregates and Carbon Sequestration in Drip Irrigation Cotton Field[J]. Chinese Journal of Soil Science, 2023, 54(3): 626 − 635. DOI: 10.19336/j.cnki.trtb.2021122701

非灌溉季节生物炭施用对滴灌棉田土壤团聚体及其碳含量的影响

Effect of Biochar Application before Winter on Soil Aggregates and Carbon Sequestration in Drip Irrigation Cotton Field

  • 摘要:
      目的  为探究非灌溉季节生物炭施用对滴灌棉田耕层土壤团聚体及碳含量的调控效应,确定滴灌棉田在非灌溉季节的最佳施炭量。
      方法  以不施用生物炭(B0)为对照,探究非灌溉季节施用15(B1)、30(B2)、45(B3)和60 t hm−2(B4)生物炭对新疆滴灌棉田耕层(0 ~ 40 cm)土壤总碳、有机碳、微生物量碳、土壤呼吸速率、土壤团聚体及其结合态总碳和结合态有机碳的影响。
      结果  施用生物炭处理与对照处理相比土壤总碳、团聚体结合态总碳和土壤呼吸速率随生物炭用量的增加而增加,增幅分别为6.85% ~ 18.14%、6.15% ~ 17.71%和13.52% ~ 53.88%。> 0.25 mm水稳性团聚体含量、团聚体结合态有机碳、土壤有机碳和微生物量碳随生物炭用量的增加先增加后减少,增幅分别为11.80% ~ 21.68%、12.64% ~ 57.54、17.58% ~ 55.27%和13.02% ~ 46.96%。通过建立最小数据集计算土壤质量指数得出,土壤质量指数最高(0.4632)的为施用45 t hm−2(B3)生物炭处理。
      结论  生物炭在非灌溉季节施用有利于增加土壤大团聚体及其碳含量,但也会增加碳的排放。新疆滴灌棉田非灌溉季节生物炭最佳施用量为45 t hm−2

     

    Abstract:
      Objective  The aim was to explore the regulation effect of biochar application in non-irrigation season on soil aggregates and carbon sequestration in topsoil of drip irrigation cotton field.
      Method  Five treatments with the biochar applications of 15 t hm−2 (B1), 30 t hm−2 (B2), 45 t hm−2 (B3), 60 t hm−2 (B4), and no application (B0) were set up with three replicates. The effects of biochar in non-irrigation season on soil total carbon (C) and organic C, microbial biomass C, soil respiration rate, aggregate and aggregate-bound total C, and aggregate-bound organic C in the plough layer (0 - 40 cm) of drip irrigation cotton field in Xinjiang were analyzed.
      Result  Compared with the control treatment, the soil total C, aggregate-associated total C, and soil respiration rate increased with the increase of biochar application rate. Total C increased by 6.85% - 18.14%, aggregate-bound total C increased by 6.15% - 17.71%, and soil respiration rate increased by 13.52%-53.88%. > 0.25 mm water-stable aggregate content, aggregate-bound organic C, soil organic C, and microbial biomass C increased first and then decreased with the increase of C application rate. >0.25 mm water-stable aggregate content increased by 11.80% - 21.68%, aggregate-bound organic C increased by 12.64% - 57.54%, soil organic C increased by 17.58% - 55.27%, microbial biomass C increased by 13.02% - 46.96%. By establishing the minimum data set to calculate the soil quality index, the highest soil quality index score was B3 (0.4632).
      Conclusion  Application of biochar in non-irrigation season is beneficial to increase soil aggregate and soil C content, but also increases C emissions. The optimal application amount of biochar was 45 t·hm−2 in non-irrigation season of drip irrigation cotton field in Xinjiang.

     

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