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生物炭和秸稈影響農(nóng)田凍融土壤水熱鹽運移機(jī)理分析
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國家自然科學(xué)基金區(qū)域聯(lián)合基金重點項目(U20A20318)、國家自然科學(xué)基金項目(52179033、52279035)和黑龍江省優(yōu)秀青年科學(xué)基金項目(YQ2020E002)


Effects of Biochar and Straw on Transport of Water, Heat and Salt in Freeze-thawed Soil in Farmland
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    摘要:

    在凍融循環(huán)過程中,土壤水分、熱量及鹽分發(fā)生顯著遷移,這些動態(tài)變化加劇了土壤鹽堿化,進(jìn)而對農(nóng)業(yè)生產(chǎn)穩(wěn)定性和土壤肥力持續(xù)性產(chǎn)生深遠(yuǎn)影響。基于大田試驗,將生物炭和秸稈分別施加于0~15cm土層(BQ和CQ)、15~30cm(BS和CS),另設(shè)空白對照組(CK),監(jiān)測凍融期0~15cm、15~30cm、30~45cm 3層土壤的含水率、溫度及含鹽量,探討生物炭與秸稈在不同施用深度對土壤水、熱、鹽動態(tài)變化的影響。同時,采用結(jié)構(gòu)方程模型分析不同土層間水分、溫度和鹽分的相互關(guān)系。研究結(jié)果表明:試驗周期內(nèi),施加生物炭和秸稈顯著改善了土壤水、熱、鹽特性。其中,BQ、BS、CQ、CS處理在0~45cm土層平均含水率分別較對照組提高2.85、3.13、1.56、2.15個百分點;各處理均有效提升了土壤溫度并減小了凍融期溫度波動;BQ和BS處理在0~45cm土層平均含鹽量較對照組分別增加0.34、0.40g/kg,且施加生物炭通過吸附鹽分有效抑制了鹽分遷移。結(jié)構(gòu)方程模型結(jié)果表明:水分遷移會對熱量傳遞和溶質(zhì)運移造成影響,生物炭和秸稈施用改變了不同土層間水、熱、鹽的相關(guān)性。研究結(jié)果可為季節(jié)性凍土區(qū)土壤生態(tài)環(huán)境調(diào)控提供理論依據(jù)和技術(shù)支撐。

    Abstract:

    During freeze-thaw cycles, significant migration of soil moisture, heat, and salts occurs, which exacerbates soil salinization, thereby having a profound impact on agricultural production stability and the sustainability of soil fertility. Based on field experiments, biochar and straw were applied to the 0~15cm soil layer (BQ and CQ) and the 15~30cm layer (BS and CS), with a blank control group (CK) as a comparison. The moisture content, temperature, and salt concentration in the 0~15cm, 15~30cm, and 30~45cm layers were monitored during the freeze-thaw period to investigate the effects of biochar and straw applied at different depths on soil moisture, heat, and salt dynamics. A structural equation model was used to analyze the relationships between moisture, temperature, and salts across different soil layers. The results showed that during the experimental period, the application of biochar and straw significantly improved the water, heat, and salt characteristics of the soil. Specifically, the average moisture content in the 0~45cm soil layer for the BQ, BS, CQ, and CS treatments was increased by 2.85, 3.13, 1.56, and 2.15 percentage points, respectively, compared with that of the control group. All treatments effectively increased soil temperatures and reduced temperature fluctuations during the freeze-thaw period. The average salt concentration in the 0~45cm soil layer for the BQ and BS treatments was increased by 0.34g/kg and 0.40g/kg, respectively, compared with that of the control group. Furthermore, the application of biochar effectively suppressed salt migration by adsorbing salts. The structural equation model results indicated that moisture migration affected both heat transfer and solute movement, and the application of biochar and straw changed the correlations between water, heat, and salts across the different soil layers. These findings can provide theoretical and technical support for regulating soil ecological environments in regions with seasonal frozen soil.

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付強(qiáng),陳旭陽,李天霄,侯仁杰.生物炭和秸稈影響農(nóng)田凍融土壤水熱鹽運移機(jī)理分析[J].農(nóng)業(yè)機(jī)械學(xué)報,2025,56(5):501-511. FU Qiang, CHEN Xuyang, LI Tianxiao, HOU Renjie. Effects of Biochar and Straw on Transport of Water, Heat and Salt in Freeze-thawed Soil in Farmland[J]. Transactions of the Chinese Society for Agricultural Machinery,2025,56(5):501-511.

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  • 收稿日期:2024-11-17
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  • 在線發(fā)布日期: 2025-05-10
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