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生物炭改良对稻田土壤微生物生物量碳、氮及溶解性有机碳、氮的影响

[Effects of Biochar Amendment on Soil Microbial Biomass Carbon, Nitrogen and Dissolved Organic Carbon, Nitrogen in Paddy Soils].

作者信息

Liu Jie-Yun, Qiu Hu-Sen, Tang Hong, Shen Jian-Lin, Wu Jin-Shui

机构信息

Key Laboratory of Water-Saving Irrigation Engineering, Ministry of Agriculture and Rural Affairs, Farmland Irrigation Research Institute, Chinese Academy of Agricultural Sciences, Xinxiang 453002, China.

Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, China.

出版信息

Huan Jing Ke Xue. 2019 Aug 8;40(8):3799-3807. doi: 10.13227/j.hjkx.201901182.

Abstract

Biochar can influence soil microbial biomass. It is not clear how biochar amendment affects soil microbial biomass carbon and nitrogen (MBC and MBN) and dissolved organic carbon and nitrogen (DOC and DON) in double-cropping rice soils. To address this problem, two subtropical double-cropping rice soils (S1 and S2) were selected for an incubation experiment. S1 is developed from granite-weathered red soil and S2 is developed from Quaternary red clay. The following three wheat straw-derived biochar application rates were used, without N fertilizer, in each paddy soil:0%, 1%, and 2% of soil weight, represented by CK, LB, and HB, respectively. After a 70 d incubation, soil mean MBC was 877.03 mg·kg, 832.11 mg·kg, and 849.30 mg·kg in S1 for the three application rates, and 902.94 mg·kg, 874.19 mg·kg, and 883.22 mg·kg, respectively, in S2. S1+LB, S1+HB, and S2+LB treatments reduced soil mean MBC compared to the CK treatment (<0.05). This may be attributed to biochar inhibiting microbial growth by adsorbing soil organic carbon and other low-molecular-weight organic matter. Low biochar application rates decreased mean soil MBN by 9.45% compared to the CK treatment in S1 (<0.05). No significant differences in mean MBC/MBN were observed among the S1 treatments, but LB reduced MBC/MBN in S2 (<0.05). Due to the soluble organic carbon content and strong alkalinity of biochar, biochar amendment increased mean soil DOC by 4.42%-22.20% and 10.57%-35.47% in S1 and S2, respectively (<0.05). However, biochar amendment (except for the S2+HB treatment) decreased mean soil DON in both paddy soils. This may have resulted from the adsorption of soil organic nitrogen by biochar and N consumption during the decomposition of the organic carbon within biochar. Biochar amendment increased mean soil DOC/DON in both paddy soils (<0.05) and mean DOC/DON increased with an increase in the biochar application rate. Based on these results, biochar amendment increased soil dissolved organic carbon, decreased soil microbial biomass, and enhanced the nitrogen deficit in double-cropping paddy soils. Therefore, biochar should be combined with the application with fertilizer in double-cropping rice systems in subtropical central China.

摘要

生物炭会影响土壤微生物生物量。目前尚不清楚生物炭改良如何影响双季稻田土壤中的微生物生物量碳和氮(MBC和MBN)以及溶解性有机碳和氮(DOC和DON)。为解决这一问题,选取了两种亚热带双季稻田土壤(S1和S2)进行培养试验。S1由花岗岩风化红壤发育而来,S2由第四纪红粘土发育而来。在每种稻田土壤中,不施氮肥,采用以下三种小麦秸秆衍生生物炭施用量:分别为土壤重量的0%、1%和2%,分别用CK、LB和HB表示。培养70天后,S1中三种施用量下土壤平均MBC分别为877.03 mg·kg、832.11 mg·kg和849.30 mg·kg,S2中分别为902.94 mg·kg、874.19 mg·kg和883.22 mg·kg。与CK处理相比,S1+LB、S1+HB和S2+LB处理降低了土壤平均MBC(<0.05)。这可能是由于生物炭通过吸附土壤有机碳和其他低分子量有机物质抑制了微生物生长。与S1中的CK处理相比,低生物炭施用量使土壤平均MBN降低了9.45%(<0.05)。S1处理间平均MBC/MBN未观察到显著差异,但LB降低了S2中的MBC/MBN(<0.05)。由于生物炭的可溶性有机碳含量和强碱性,生物炭改良分别使S1和S2中的土壤平均DOC增加了4.42%-22.20%和10.57%-35.47%(<0.05)。然而,生物炭改良(S2+HB处理除外)降低了两种稻田土壤中的土壤平均DON。这可能是由于生物炭对土壤有机氮的吸附以及生物炭中有机碳分解过程中的氮消耗所致。生物炭改良增加了两种稻田土壤中的平均土壤DOC/DON(<0.05),且平均DOC/DON随生物炭施用量的增加而增加。基于这些结果,生物炭改良增加了土壤溶解性有机碳,降低了土壤微生物生物量,并加剧了双季稻田土壤中的氮亏缺。因此,在亚热带中部的双季稻系统中生物炭应与肥料配合施用。

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