水分和氮肥是制约旱地农业生产的重要因素。基于2013—2022年内蒙古自治区突泉春玉米发育期、单产和田间管理数据,对农业生产系统模型(agricultural production system simulator,APSIM)调参验证;基于验证后的模型,结合1981—2022年突...水分和氮肥是制约旱地农业生产的重要因素。基于2013—2022年内蒙古自治区突泉春玉米发育期、单产和田间管理数据,对农业生产系统模型(agricultural production system simulator,APSIM)调参验证;基于验证后的模型,结合1981—2022年突泉气象数据,设计不同水分亏缺程度下水氮管理情景,以春玉米单产、水氮用量和效率为指标,提出春玉米最优水氮管理措施,并分析不同降水年型下春玉米适宜灌溉量和施氮量。结果表明:APSIM对春玉米出苗-开花日数、出苗-成熟日数和单产模拟值与实测值的归一化均方根误差分别为1.3%、1.2%和2.8%,APSIM可定量模拟春玉米发育期和单产。综合春玉米单产、灌溉量、施氮量、水分生产力和氮肥农学效率,最优管理措施为0~100 cm土壤剖面深度下水分亏缺程度为60%时补充灌溉,灌溉量为171.0 mm,施氮量为197.8 kg·hm^(-2)。当春玉米生长季降水量为200~400、401~600 mm和601~800 mm时,适宜的灌溉量分别为233.0~283.5、110.5~148.4 mm和125.0~155.0 mm,施氮量分别为176.9~219.3、218.3~241.5 kg·hm^(-2)和211.8~249.9 kg·hm^(-2)。展开更多
The soybean, cotton, maize and sorghum were planted in pot under low nitrogen, high nitrogen treatments, the soil available nitrogen constitution and con- version and utilization of nitrogen fertilizer were determined...The soybean, cotton, maize and sorghum were planted in pot under low nitrogen, high nitrogen treatments, the soil available nitrogen constitution and con- version and utilization of nitrogen fertilizer were determined, so as to provide techni- cal guidance for reasonable use and improving use efficiency of nitrogen fertilizer for different types of crops. Compared with the control with nitrogen but unplanted crop, growing soybean, cotton, maize, sorghum significantly decreased the soil available N contents by 53. 48%, 51.54%, 33.10%, 55.03%,and influenced the constitution of soil available N. Thereinto, growing soybean, cotton, maize and sorghum significantly decreased soil inorganic N contents by 85.41%, 83.09%, 70.89% and 83.35%,but increased soil hydrolysable organic N contents by 1.41, 1.53, 2.11 and 1.28 times, respectively; growing soybean, cotton, maize and sorghum significantly decreased the rate of soil inorganic N to available N by 68.61%, 65.09%, 56.47% and 63.00%, but increased the rate of soil hydrolysable organic N to available N by 4.18, 4.21, 3.66 and 4.08 times, respectively. Compared with the control, growing soybean, cotton, maize and sorghum significantly increased the transform rate of ammonium nitrogen fertilizer by 93.66%, 38.19%, 32.58% and 38.31% respectively, and growing soybean treatment had the highest increasing range; the nitrification rates of ammo- nium nitrogen fertilizer of growing soybean, cotton, maize and sorghum treatments were negative values, and growing soybean treatment had the highest decreasing amplitude. The ammonium nitrogen fertilizer use efficiency of growing soybean, cot- ton, maize and sorghum treatments were 52.01%, 28.31%, 24.16% and 28.40% re- spectively and growing soybean treatment had the highest value. In conclusion, growing crops suppressed the soil nitrification and accelerated the development of soil hydrolysable organic nitrogen by the utilization of soil available nitrogen and the alteration of soil environment, and hence impacted the constitution of soil available nitrogen and the transform and use of ammonium nitrogen applied in soil. Legumi- nous crops had stronger ability of suppressing nitrification, making use of ammonium compared with non-Leguminous crops.展开更多
本研究旨在明确传统双季晚籼稻地区双季杂交晚粳稻超高产产量构成及其群体特征,阐明双季杂交晚粳稻超高产形成规律。以江西省上高县6.77 hm2连片双季杂交晚粳稻高产攻关示范方为依托,选用杂交粳稻甬优8号为材料,对中产(8.25~9.75 t hm...本研究旨在明确传统双季晚籼稻地区双季杂交晚粳稻超高产产量构成及其群体特征,阐明双季杂交晚粳稻超高产形成规律。以江西省上高县6.77 hm2连片双季杂交晚粳稻高产攻关示范方为依托,选用杂交粳稻甬优8号为材料,对中产(8.25~9.75 t hm–2)、高产(9.75~10.50 t hm–2)和超高产(>10.50 t hm–2)3个产量水平群体的产量构成及群体特征进行系统比较研究。结果表明,与中产、高产水平群体相比,超高产水平群体表现穗数足、穗型大、群体颖花量多(50 000×104 hm-2以上)的显著特点,但结实率和千粒重略低,差异不显著;群体茎蘖动态上,群体起点较高,可及时够苗;够苗后增长平缓,高峰苗数量较少、下降平缓,成穗率高(78.0%左右)。群体叶面积指数前期增长较缓,最大值出现在孕穗期,为8.0左右,此后下降缓慢,成熟期仍保持3.5以上;群体光合势生育前期较小,中、后期较大,抽穗至成熟期光合势为300×104 m2 d hm-2以上,总光合势为560×104 m2 d hm-2以上。拔节前干物质量积累速度较慢,拔节后积累速度较快,至抽穗期群体干物质量为10.5 t hm-2左右,抽穗后积累量亦高,成熟期干物质量达19.0 t hm-2左右,后期茎鞘物质转运率大于14.0%。超高产群体根量多、活力较强;植株吸氮能力强、成熟期氮素累积量高,氮素利用率40%以上。根据双季杂交晚粳稻超高产形成特征,我们探讨了培育双季晚粳稻超高产群体的关键栽培技术。展开更多
为探究狼尾草作为生物质能源原材料在南方贫瘠旱坡地生长对氮素的响应,研究4个施氮水平(0、112.5、225.0和337.5 kg N·hm^(-2))对能源型狼尾草桂能草1号农艺性状、产量、SPAD值、生物质能源品质及氮肥利用率的影响。结果表明,施用...为探究狼尾草作为生物质能源原材料在南方贫瘠旱坡地生长对氮素的响应,研究4个施氮水平(0、112.5、225.0和337.5 kg N·hm^(-2))对能源型狼尾草桂能草1号农艺性状、产量、SPAD值、生物质能源品质及氮肥利用率的影响。结果表明,施用氮肥可促进狼尾草横、纵向生长,随施氮量的增加狼尾草的株高、茎粗和单位面积有效茎数逐步提高,但叶片叶绿素含量和鲜、干草产量的提高程度在施氮量超过225.0 kg N·hm^(-2)后,有饱和趋势。施用氮肥还可明显提高狼尾草纤维素含量、半纤维素含量、热值和折合标准煤产量,显著降低干物质、木质素和灰分含量,总体改善了狼尾草的能源利用品质;但施氮量达337.5 kg N·hm^(-2)时,狼尾草热值下降,且对折合标准煤产量的增加作用不明显,降低了狼尾草的能源利用品质。此外,在一定施氮量范围内(112.5~225.0 kg N·hm^(-2)),狼尾草氮肥利用效率并未随施氮量的增加而显著降低,但施氮量达337.5 kg N·hm^(-2)时,氮肥利用率显著降低。因此,狼尾草在南方贫瘠旱坡地种植,为获得理想的生物质能源材料需及时补充氮素营养,但施氮量不宜超过225.0kg N·hm^(-2)。展开更多
基金Supported by National Natural Science Foundation of China(41371259)Hubei Natural Science Foundation(2014CFB545)~~
文摘The soybean, cotton, maize and sorghum were planted in pot under low nitrogen, high nitrogen treatments, the soil available nitrogen constitution and con- version and utilization of nitrogen fertilizer were determined, so as to provide techni- cal guidance for reasonable use and improving use efficiency of nitrogen fertilizer for different types of crops. Compared with the control with nitrogen but unplanted crop, growing soybean, cotton, maize, sorghum significantly decreased the soil available N contents by 53. 48%, 51.54%, 33.10%, 55.03%,and influenced the constitution of soil available N. Thereinto, growing soybean, cotton, maize and sorghum significantly decreased soil inorganic N contents by 85.41%, 83.09%, 70.89% and 83.35%,but increased soil hydrolysable organic N contents by 1.41, 1.53, 2.11 and 1.28 times, respectively; growing soybean, cotton, maize and sorghum significantly decreased the rate of soil inorganic N to available N by 68.61%, 65.09%, 56.47% and 63.00%, but increased the rate of soil hydrolysable organic N to available N by 4.18, 4.21, 3.66 and 4.08 times, respectively. Compared with the control, growing soybean, cotton, maize and sorghum significantly increased the transform rate of ammonium nitrogen fertilizer by 93.66%, 38.19%, 32.58% and 38.31% respectively, and growing soybean treatment had the highest increasing range; the nitrification rates of ammo- nium nitrogen fertilizer of growing soybean, cotton, maize and sorghum treatments were negative values, and growing soybean treatment had the highest decreasing amplitude. The ammonium nitrogen fertilizer use efficiency of growing soybean, cot- ton, maize and sorghum treatments were 52.01%, 28.31%, 24.16% and 28.40% re- spectively and growing soybean treatment had the highest value. In conclusion, growing crops suppressed the soil nitrification and accelerated the development of soil hydrolysable organic nitrogen by the utilization of soil available nitrogen and the alteration of soil environment, and hence impacted the constitution of soil available nitrogen and the transform and use of ammonium nitrogen applied in soil. Legumi- nous crops had stronger ability of suppressing nitrification, making use of ammonium compared with non-Leguminous crops.
文摘本研究旨在明确传统双季晚籼稻地区双季杂交晚粳稻超高产产量构成及其群体特征,阐明双季杂交晚粳稻超高产形成规律。以江西省上高县6.77 hm2连片双季杂交晚粳稻高产攻关示范方为依托,选用杂交粳稻甬优8号为材料,对中产(8.25~9.75 t hm–2)、高产(9.75~10.50 t hm–2)和超高产(>10.50 t hm–2)3个产量水平群体的产量构成及群体特征进行系统比较研究。结果表明,与中产、高产水平群体相比,超高产水平群体表现穗数足、穗型大、群体颖花量多(50 000×104 hm-2以上)的显著特点,但结实率和千粒重略低,差异不显著;群体茎蘖动态上,群体起点较高,可及时够苗;够苗后增长平缓,高峰苗数量较少、下降平缓,成穗率高(78.0%左右)。群体叶面积指数前期增长较缓,最大值出现在孕穗期,为8.0左右,此后下降缓慢,成熟期仍保持3.5以上;群体光合势生育前期较小,中、后期较大,抽穗至成熟期光合势为300×104 m2 d hm-2以上,总光合势为560×104 m2 d hm-2以上。拔节前干物质量积累速度较慢,拔节后积累速度较快,至抽穗期群体干物质量为10.5 t hm-2左右,抽穗后积累量亦高,成熟期干物质量达19.0 t hm-2左右,后期茎鞘物质转运率大于14.0%。超高产群体根量多、活力较强;植株吸氮能力强、成熟期氮素累积量高,氮素利用率40%以上。根据双季杂交晚粳稻超高产形成特征,我们探讨了培育双季晚粳稻超高产群体的关键栽培技术。
文摘为探究狼尾草作为生物质能源原材料在南方贫瘠旱坡地生长对氮素的响应,研究4个施氮水平(0、112.5、225.0和337.5 kg N·hm^(-2))对能源型狼尾草桂能草1号农艺性状、产量、SPAD值、生物质能源品质及氮肥利用率的影响。结果表明,施用氮肥可促进狼尾草横、纵向生长,随施氮量的增加狼尾草的株高、茎粗和单位面积有效茎数逐步提高,但叶片叶绿素含量和鲜、干草产量的提高程度在施氮量超过225.0 kg N·hm^(-2)后,有饱和趋势。施用氮肥还可明显提高狼尾草纤维素含量、半纤维素含量、热值和折合标准煤产量,显著降低干物质、木质素和灰分含量,总体改善了狼尾草的能源利用品质;但施氮量达337.5 kg N·hm^(-2)时,狼尾草热值下降,且对折合标准煤产量的增加作用不明显,降低了狼尾草的能源利用品质。此外,在一定施氮量范围内(112.5~225.0 kg N·hm^(-2)),狼尾草氮肥利用效率并未随施氮量的增加而显著降低,但施氮量达337.5 kg N·hm^(-2)时,氮肥利用率显著降低。因此,狼尾草在南方贫瘠旱坡地种植,为获得理想的生物质能源材料需及时补充氮素营养,但施氮量不宜超过225.0kg N·hm^(-2)。