0.56),,三者相對(duì)增量的變化規(guī)律幾乎一致,;在降雨頻率為20%~80%的年份內(nèi),氮素流失量相對(duì)穩(wěn)定,,維持在均值的0.8~1.2倍之間,;只有在重現(xiàn)期大于5年的干旱或濕潤(rùn)年份,,氮素流失量才會(huì)出現(xiàn)較大變化。因此,,通過排灌控制措施穩(wěn)定農(nóng)田水文過程是有效控制農(nóng)田排水氮素流失的關(guān)鍵,。"/>

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平原河網(wǎng)地區(qū)稻麥輪作農(nóng)田排水與氮素流失特征研究
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Characteristics of Drainage and Nitrogen Losses from Rice-wheat Rotation Fields in Plain River Network Area of Eastern China
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    摘要:

    長(zhǎng)江下游稻麥輪作區(qū)農(nóng)田排水是區(qū)域面源污染的主要來源,,明確農(nóng)田排水與氮素流失特征對(duì)于區(qū)域農(nóng)業(yè)生產(chǎn)可持續(xù)發(fā)展與生態(tài)環(huán)境保護(hù)具有重要意義?,F(xiàn)有稻麥輪作農(nóng)田排水與氮素流失研究中,,一般采用農(nóng)田測(cè)筒觀測(cè)地表徑流與深層滲漏量來估算農(nóng)田氮素流失量,,這與農(nóng)田土壤水分與氮素主要通過側(cè)向徑流進(jìn)入農(nóng)田排水系統(tǒng)的實(shí)際情況存在偏差。本文基于4年的大田監(jiān)測(cè)數(shù)據(jù),,運(yùn)用田間水文水質(zhì)模型DRAINMOD-N〖KG-*3〗Ⅱ,,模擬研究了不同氣象條件下稻麥輪作農(nóng)田排水與氮素流失規(guī)律。結(jié)果表明,,稻麥輪作周年內(nèi),,由排水造成的氮素流失量多年平均值為28.4kg/hm2,占施肥量的6.0%,,其中大部分集中在稻季,,平均為25.6kg/hm2,麥季氮素流失量?jī)H為2.8kg/hm2,。與現(xiàn)有文獻(xiàn)報(bào)道值相比,,本文模擬得出的排水總量高35.4%,氮素流失總量則低44.6%,;差異主要來自麥作期,,文獻(xiàn)報(bào)道平均值(31.8kg/hm2)是本文的11倍,,估算方法不同可能是造成這一差異大的主要原因。結(jié)合降雨規(guī)律分析發(fā)現(xiàn),,農(nóng)田排水量和氮素流失量與降雨變化關(guān)系顯著(決定系數(shù)R2>0.56),,三者相對(duì)增量的變化規(guī)律幾乎一致;在降雨頻率為20%~80%的年份內(nèi),,氮素流失量相對(duì)穩(wěn)定,,維持在均值的0.8~1.2倍之間;只有在重現(xiàn)期大于5年的干旱或濕潤(rùn)年份,,氮素流失量才會(huì)出現(xiàn)較大變化,。因此,通過排灌控制措施穩(wěn)定農(nóng)田水文過程是有效控制農(nóng)田排水氮素流失的關(guān)鍵,。

    Abstract:

    Farmland drainage is the main contributor to regional non-point source pollution in the rice-wheat rotation area in the lower reaches of the Yangtze River, China, it is of great importance to examine the characteristics of farmland drainage and nitrogen (N) losses for sustainable development of regional agricultural production and ecological environment protection. In the existing studies on drainage and nitrogen losses from rice-wheat rotation fields, nitrogen losses were generally estimated by observing surface runoff and deep percolation with lysimeters or soil column test, which was different from the actual situation that soil moisture and nitrogen entered the drainage system mainly through the lateral flow path. A simulation study on nitrogen losses with field drainage was presented by using the DRAINMOD-NⅡ model; drainage and nitrogen losses from rice-wheat rotation fields under different rainfall conditions were predicted after validating the model with 4-year field monitoring data. The results showed that the predicted average annual nitrogen loss in drainage was 28.4kg/hm2, accounting for 6.0% of the fertilizer application rate; most N losses occurred in the rice growing season with the average value of 25.6kg/hm2. The predicted nitrogen losses in the wheat growing season was only 2.8kg/hm2. When compared with the report values in the existing literature, the total drainage volume was 35.4% higher, and the total nitrogen loss was 44.6% lower. The differences were mainly from wheat growing season, the average reported N losses (31.8kg/hm2) was 11 times of this research. The predicted field drainage and nitrogen losses were significantly correlated to the rainfall pattern (coefficient of determination R2>0.5), the probabilities of the relative increment of the three variables were distributed nearly the same; the predicted nitrogen losses were relatively stable and maintained at 0.8~1.2 times of the average value in normal years with the rainfall return period of less than five years. In the drier or wetter years (i.e., with rainfall return period greater than five years), the predicted nitrogen losses appeared to be more variable. Hence, drainage reduction during the rice growing period through proper control measures was critical to overall reduction of drainage and nitrogen losses from the rice-wheat rotation fields.

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鄒家榮,賈忠華,朱衛(wèi)彬,劉文龍,丁世洪,羅紈.平原河網(wǎng)地區(qū)稻麥輪作農(nóng)田排水與氮素流失特征研究[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2024,55(3):321-330. ZOU Jiarong, JIA Zhonghua, ZHU Weibin, LIU Wenlong, DING Shihong, LUO Wan. Characteristics of Drainage and Nitrogen Losses from Rice-wheat Rotation Fields in Plain River Network Area of Eastern China[J]. Transactions of the Chinese Society for Agricultural Machinery,2024,55(3):321-330.

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  • 收稿日期:2023-07-05
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  • 在線發(fā)布日期: 2023-11-14
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