Direct-sowing establishment method has great significance in improving winter oilseed rape(Brassica napus L.) production and guaranteeing edible oil security in China. However, nutrient responses on direct sown wint...Direct-sowing establishment method has great significance in improving winter oilseed rape(Brassica napus L.) production and guaranteeing edible oil security in China. However, nutrient responses on direct sown winter oilseed rape(DOR) performance and population development dynamic are still not well understood. Therefore, five on-farm experiments were conducted in the reaches of the Yangtze River(RYR) to determine the effects of nitrogen(N), phosphorus(P), and potassium(K) deficiencies on population density, dry matter production, nutrient uptake, seed yield, and yield components of DOR plants. Four fertilization treatments included the balanced NPK application treatment(NPK, 180 kg N, 39.3 kg P, 100 kg K, and 1.8 kg borax ha–1) and three nutrient deficiency treatments based on the NPK treatment, i.e., –N, –P, and –K. The results indicated that DOR population density declined gradually throughout the growing season, especially at over-wintering and pod-development stages. Nutrient deficiency decreased nutrient concentration in DOR plants, limited dry matter production and nutrient uptake, and thereby exacerbated density reduction during plants growth. The poor individual growth and reduced population density together decreased seed yield in the nutrient deficiency treatment. Averaged across all the experiments, seed yield reduced 61% by N deficiency, 38.3% by P deficiency, and 14.4% by K deficiency. The negative effects of nutrient deficiency on DOR performances followed the order of –N–P–K, and the effects were various among different nutrient deficiencies. Although N deficiency improved DOR emergence, but it seriously limited dry matter production and nutrient uptake, which in turn led to substantial plants death and therefore resulted in a very low harvested density. The P deficiency significantly reduced initial density, limited plants growth, and exacerbated density reduction. The K deficiency mainly decreased individual growth and yield, but did not affect density 展开更多
The springback of tailor rolled blanks with quenching and partitioning steels was investigated.In order to find out the springback behavior and related influence factors for the novel sheets,both experimental and simu...The springback of tailor rolled blanks with quenching and partitioning steels was investigated.In order to find out the springback behavior and related influence factors for the novel sheets,both experimental and simulation methods have been used to compare and analyze the springback characteristics of equal thickness blanks and tailor rolled blanks in U-channel forming.From the results,the overall springback angles of tailor rolled blanks at thin and thick sides are respectively 106.79° and 99.705°,which are both lower than those of the corresponding equal thickness blanks.Due to the existence of the thickness transition zone,the stress distribution in thin and thick sides of blanks is changed.The location of dangerous region in thin side of tailor rolled blanks is closer to the end of side,and the thick side moved to the middle of straight wall,which are different with the equal thickness blanks.Afterwards,the released quantitles of tangential stress and strain per unit section of blank are adopted to calculate relative springback angles and give novel evaluation criteria for qualitatively analyzing the amount of springback angles.By comparing the results,it shows that the tangential strain method is more suitable for the actual situation.展开更多
Overestimation of nitrogen(N) uptake requirement is one of the driving forces of the overuse of N fertilization and the low efficiency of N use in China. In this study, we collected data from 1 844 site-years of ric...Overestimation of nitrogen(N) uptake requirement is one of the driving forces of the overuse of N fertilization and the low efficiency of N use in China. In this study, we collected data from 1 844 site-years of rice(Oryza sativa L.) under various rotation cropping systems across the Yangtze River Valley. Selected treatments included without(N0 treatment) and with N application(N treatment) which were recommended by local technicians, with a wide grain range of 1.5–11.9 t ha–1. Across the 1 844 site-years, over 96% of the sites showed yield increase(relative yield〉105%) with N fertilization, and the increase rates decreased from 78.9 to 16.2% within the lowest range 〈4.0 to the highest 〉6.5 t ha–1. To produce one ton of grain, the rice absorbed approximately 17.8 kg N in the N0 treatment and 20.4 kg N in the N treatment. The value of partial factor productivity by N(PFP N) reached a range of 35.2–51.4 kg grain kg–1 with N application under the current recommended N rate. Averaged recovery rate of N(RE N) was above 36.0% in yields below 6.0 t ha–1 and lower than 31.7% in those above 6.0 t ha–1. Soil properties only affected yield increments within low rice yield levels(〈5.5 t ha–1). There is a poor relationship between N application rates and indigenous nitrogen supply(INS). From these observations and considering the local INS, we concluded there was a great potential for improvement in regional grain yield and N efficiency.展开更多
A yield gap analysis for rapeseed(Brassica napus L.) is critical to meeting the oil demand by identifying yield potential and yield constraints. In this study, potential yield(Y_p), attainable yield(Y_(att)), and actu...A yield gap analysis for rapeseed(Brassica napus L.) is critical to meeting the oil demand by identifying yield potential and yield constraints. In this study, potential yield(Y_p), attainable yield(Y_(att)), and actual yield(Y_(act)) for winter rapeseed were determined in five different zones of China. A boundary line approach was adopted to calculate Y_p, based on a large-scale field experimental database. A meta-analysis was conducted on the data obtained from 118 published studies to evaluate the effects of agronomic factors on rapeseed yield. The main results indicated that farmers only achieved 37–56% of the yield potential across the zones. The low altitude areas(L-URY) and lower reaches(LRY) of the Yangtze River Basin(YRB), China had high yield levels. The total yield gap was 1 893 kg ha^(–1), due to the agronomic management factors, environmental factors, and socioeconomic factors. The meta-analysis showed that weed control and drainage were the best management practices to improve yields(45.6 and 35.3%, respectively), and other practices improved yields by 17.1–21.6%. Consequently, to narrow the yield gap over the short term, the study could focus on techniques that are easily implemented to farmers.展开更多
为探明不同氮肥用量对冬油菜籽粒产量和品质的影响,于2019/2020以及2020/2021年在湖北省武穴市开展田间试验,试验设置0、90、180、270、360 kg N hm^(-2)5个氮肥施用水平。在成熟期测定油菜籽产量、氮含量和油菜籽品质指标。结果表明,...为探明不同氮肥用量对冬油菜籽粒产量和品质的影响,于2019/2020以及2020/2021年在湖北省武穴市开展田间试验,试验设置0、90、180、270、360 kg N hm^(-2)5个氮肥施用水平。在成熟期测定油菜籽产量、氮含量和油菜籽品质指标。结果表明,施氮显著提高冬油菜籽粒产量及氮含量,与不施氮相比,氮肥施用后平均增产1548 kg hm^(-2),平均增产率达32.9%,在施氮量为0~270 kg N hm^(-2)范围内,油菜籽产量随氮肥施用量显著增加,继续增施氮肥,油菜籽产量无明显变化或有下降趋势,施氮主要通过提高单株角果数来提高油菜籽粒产量。施氮显著增加了籽粒蛋白质含量,当施氮量达270 kg N hm^(-2)时籽粒氮含量和蛋白质含量最高。施氮显著降低籽粒含油量,氮肥用量每增加100 kg N hm^(-2),籽粒含油量下降1.6个百分点。随着氮肥用量的增加,籽粒硫甙、油酸、亚麻酸、芥酸以及饱和脂肪酸(棕榈酸和硬脂酸)呈升高趋势,亚油酸呈降低趋势,油菜籽粒品质整体呈降低趋势。综上所述,以追求高品质食用油为目标,同时兼顾油菜籽粒产量,氮肥适宜用量约为180kgNhm^(-2);以追求油菜籽粒产量并考虑油菜饼粕作饲料为目标时,氮肥适宜用量约为270 kg N hm^(-2)。展开更多
在轻简化施肥背景下,为减少渍害损失,解决长江流域冬油菜产区生产面临的重要问题,开展氮肥施用对油菜渍害的缓解作用研究。设置三因素田间试验,分别为不同氮肥用量(0、60、120、180、240和300 kg N/hm^2)、氮肥类型(油菜专用控释尿素和...在轻简化施肥背景下,为减少渍害损失,解决长江流域冬油菜产区生产面临的重要问题,开展氮肥施用对油菜渍害的缓解作用研究。设置三因素田间试验,分别为不同氮肥用量(0、60、120、180、240和300 kg N/hm^2)、氮肥类型(油菜专用控释尿素和普通尿素)和水分处理(苗期渍水和正常排水),测定各处理产量和氮肥农学利用率,明确苗期渍水对不同氮素供应水平油菜的影响,并比较油菜专用控释尿素一次性施用和普通尿素分次施用下油菜对苗期渍水的响应。结果表明,直播冬油菜产量随氮肥施用量增加而提高,至240 kg N/hm^2时不再增加。油菜专用控释尿素一次性施用,在氮肥用量为60~180 kg N/hm^2时产量高于普通尿素分次施用;在氮肥用量为240~300 kg N/hm^2时,两种氮肥类型产量基本相当。氮肥施用通过增加收获密度、单株角果数和每角粒数提高产量。苗期渍水导致直播冬油菜产量损失1.1%~41.9%,随氮肥用量增加,渍水引起的产量损失率呈先增加后降低趋势。0~60 kg N/hm^2处理时,渍水使收获密度显著降低(降幅达29.4%~45.0%),单株角果数增加;施氮量为120~180 kg N/hm^2时,渍水导致收获密度和单株角果数分别降低19.5%~33.7%和1.4%~17.7%;施氮高于180 kg N/hm^2时,收获密度和单株角果数降幅减小(降幅分别为5%~30.9%和3.6%~9.5%)。普通尿素分次施用和油菜专用控释尿素一次性施用,分别在施氮量为120和180 kg N/hm^2时产量损失率最高,分别达29.8%和41.9%。相同氮肥用量下油菜专用控释尿素一次性施用的产量损失率大于普通尿素分次施用。渍水显著降低氮肥农学利用率,降幅为8.4%~51.9%,施氮充足(240~300 kg N/hm^2)时氮肥农学利用率降幅低于氮素用量较低处理(120~180 kg N/hm^2),油菜专用控释尿素一次施用处理的农学利用率平均降幅(36.5%)高于普通尿素分次施用(17.3%)。综上可知,苗期渍水时,油菜专用控释尿素一次施用展开更多
旱-旱和水-旱轮作是我国长江流域冬油菜的典型种植模式,氮养分缺乏是油菜产量主要限制因子。利用2016—2023年在湖北省武汉市布置的裂区同田对比定位试验,探究氮肥用量对不同轮作模式下油菜产量和氮素吸收利用的影响差异,为科学施氮提...旱-旱和水-旱轮作是我国长江流域冬油菜的典型种植模式,氮养分缺乏是油菜产量主要限制因子。利用2016—2023年在湖北省武汉市布置的裂区同田对比定位试验,探究氮肥用量对不同轮作模式下油菜产量和氮素吸收利用的影响差异,为科学施氮提供依据。试验设计的主处理为旱地油菜(玉米-油菜)和水田油菜(水稻-油菜)2种轮作模式,副处理为4个氮肥用量(0 kg N hm^(-2)、75 kg N hm^(-2)、150 kg N hm^(-2)、225 kg N hm^(-2)),分析了油菜产量、产量构成因子和氮素积累量等相关指标。7年试验结果表明,旱地和水田油菜的产量和氮素吸收在不同氮肥投入下的响应存在差异。当不施氮或低施氮(75 kg N hm^(-2))时,水田油菜产量显著高于旱地油菜,分别高出53.9%和20.8%,地上部氮素积累量分别高出57.8%和18.3%;当施氮量为150 kg N hm^(-2)时,2种轮作无显著差异;在高施氮(225 kg N hm^(-2))时,旱地油菜产量和氮素积累量较水田分别增加11.2%和16.0%。旱地油菜的氮肥农学利用效率、贡献率和表观利用率较水田油菜分别平均增加16.5%、20.5%和22.0%,氮肥对旱地油菜的增产潜力更大,但水田油菜季土壤基础氮素供应量较旱地高61.5%,对氮肥的依赖性更小。综上,增加氮肥用量显著提高了油菜产量和氮素积累,水田油菜在低氮投入下表现出较高的稳产性,而旱地油菜在较高氮投入下丰产潜力更高。因此,在实际生产中应根据不同轮作模式调整油菜施氮量,旱地油菜可以适当增加氮肥用量以获得高产,水田油菜要充分利用土壤供氮能力适当控制氮肥用量,以达到油菜高产高效生产和氮肥高效利用的目的。展开更多
基金supported by the National Key Technologies R&D Program of China during the 11th Five-Year Plan period (2010BAD01B05)the Earmarked Fund for China Agriculture Research System (CARS-13)+1 种基金the Program for Changjiang Scholars and Innovative Research Team in University of China (IRT1247)the Fundamental Research Funds for the Central Universities,China (2013PY113)
文摘Direct-sowing establishment method has great significance in improving winter oilseed rape(Brassica napus L.) production and guaranteeing edible oil security in China. However, nutrient responses on direct sown winter oilseed rape(DOR) performance and population development dynamic are still not well understood. Therefore, five on-farm experiments were conducted in the reaches of the Yangtze River(RYR) to determine the effects of nitrogen(N), phosphorus(P), and potassium(K) deficiencies on population density, dry matter production, nutrient uptake, seed yield, and yield components of DOR plants. Four fertilization treatments included the balanced NPK application treatment(NPK, 180 kg N, 39.3 kg P, 100 kg K, and 1.8 kg borax ha–1) and three nutrient deficiency treatments based on the NPK treatment, i.e., –N, –P, and –K. The results indicated that DOR population density declined gradually throughout the growing season, especially at over-wintering and pod-development stages. Nutrient deficiency decreased nutrient concentration in DOR plants, limited dry matter production and nutrient uptake, and thereby exacerbated density reduction during plants growth. The poor individual growth and reduced population density together decreased seed yield in the nutrient deficiency treatment. Averaged across all the experiments, seed yield reduced 61% by N deficiency, 38.3% by P deficiency, and 14.4% by K deficiency. The negative effects of nutrient deficiency on DOR performances followed the order of –N–P–K, and the effects were various among different nutrient deficiencies. Although N deficiency improved DOR emergence, but it seriously limited dry matter production and nutrient uptake, which in turn led to substantial plants death and therefore resulted in a very low harvested density. The P deficiency significantly reduced initial density, limited plants growth, and exacerbated density reduction. The K deficiency mainly decreased individual growth and yield, but did not affect density
文摘The springback of tailor rolled blanks with quenching and partitioning steels was investigated.In order to find out the springback behavior and related influence factors for the novel sheets,both experimental and simulation methods have been used to compare and analyze the springback characteristics of equal thickness blanks and tailor rolled blanks in U-channel forming.From the results,the overall springback angles of tailor rolled blanks at thin and thick sides are respectively 106.79° and 99.705°,which are both lower than those of the corresponding equal thickness blanks.Due to the existence of the thickness transition zone,the stress distribution in thin and thick sides of blanks is changed.The location of dangerous region in thin side of tailor rolled blanks is closer to the end of side,and the thick side moved to the middle of straight wall,which are different with the equal thickness blanks.Afterwards,the released quantitles of tangential stress and strain per unit section of blank are adopted to calculate relative springback angles and give novel evaluation criteria for qualitatively analyzing the amount of springback angles.By comparing the results,it shows that the tangential strain method is more suitable for the actual situation.
基金the Special Fund for Agro-Scientific Research in the Public Interest in China (201103039)the Fundamental Research Funds for the Central Universities Key Projects, China (2013PY113)+1 种基金the Natural Science Foundation of Hubei Province, China (2013CFB203)the Research Funds of Huazhong Agricultural University, China (52209814032) for providing financial support
文摘Overestimation of nitrogen(N) uptake requirement is one of the driving forces of the overuse of N fertilization and the low efficiency of N use in China. In this study, we collected data from 1 844 site-years of rice(Oryza sativa L.) under various rotation cropping systems across the Yangtze River Valley. Selected treatments included without(N0 treatment) and with N application(N treatment) which were recommended by local technicians, with a wide grain range of 1.5–11.9 t ha–1. Across the 1 844 site-years, over 96% of the sites showed yield increase(relative yield〉105%) with N fertilization, and the increase rates decreased from 78.9 to 16.2% within the lowest range 〈4.0 to the highest 〉6.5 t ha–1. To produce one ton of grain, the rice absorbed approximately 17.8 kg N in the N0 treatment and 20.4 kg N in the N treatment. The value of partial factor productivity by N(PFP N) reached a range of 35.2–51.4 kg grain kg–1 with N application under the current recommended N rate. Averaged recovery rate of N(RE N) was above 36.0% in yields below 6.0 t ha–1 and lower than 31.7% in those above 6.0 t ha–1. Soil properties only affected yield increments within low rice yield levels(〈5.5 t ha–1). There is a poor relationship between N application rates and indigenous nitrogen supply(INS). From these observations and considering the local INS, we concluded there was a great potential for improvement in regional grain yield and N efficiency.
基金supported by the National Key Research and Development Program of China(2018YFD0200900)the earmarked fund for China Agriculture Research System(CARS-12)+1 种基金the Fundamental Research Funds for the Central Universities,China(2662017JC010)the National Project of Soil Testing and Fertilizer Recommendation,China support of the large-scale field experiments。
文摘A yield gap analysis for rapeseed(Brassica napus L.) is critical to meeting the oil demand by identifying yield potential and yield constraints. In this study, potential yield(Y_p), attainable yield(Y_(att)), and actual yield(Y_(act)) for winter rapeseed were determined in five different zones of China. A boundary line approach was adopted to calculate Y_p, based on a large-scale field experimental database. A meta-analysis was conducted on the data obtained from 118 published studies to evaluate the effects of agronomic factors on rapeseed yield. The main results indicated that farmers only achieved 37–56% of the yield potential across the zones. The low altitude areas(L-URY) and lower reaches(LRY) of the Yangtze River Basin(YRB), China had high yield levels. The total yield gap was 1 893 kg ha^(–1), due to the agronomic management factors, environmental factors, and socioeconomic factors. The meta-analysis showed that weed control and drainage were the best management practices to improve yields(45.6 and 35.3%, respectively), and other practices improved yields by 17.1–21.6%. Consequently, to narrow the yield gap over the short term, the study could focus on techniques that are easily implemented to farmers.
文摘为探明不同氮肥用量对冬油菜籽粒产量和品质的影响,于2019/2020以及2020/2021年在湖北省武穴市开展田间试验,试验设置0、90、180、270、360 kg N hm^(-2)5个氮肥施用水平。在成熟期测定油菜籽产量、氮含量和油菜籽品质指标。结果表明,施氮显著提高冬油菜籽粒产量及氮含量,与不施氮相比,氮肥施用后平均增产1548 kg hm^(-2),平均增产率达32.9%,在施氮量为0~270 kg N hm^(-2)范围内,油菜籽产量随氮肥施用量显著增加,继续增施氮肥,油菜籽产量无明显变化或有下降趋势,施氮主要通过提高单株角果数来提高油菜籽粒产量。施氮显著增加了籽粒蛋白质含量,当施氮量达270 kg N hm^(-2)时籽粒氮含量和蛋白质含量最高。施氮显著降低籽粒含油量,氮肥用量每增加100 kg N hm^(-2),籽粒含油量下降1.6个百分点。随着氮肥用量的增加,籽粒硫甙、油酸、亚麻酸、芥酸以及饱和脂肪酸(棕榈酸和硬脂酸)呈升高趋势,亚油酸呈降低趋势,油菜籽粒品质整体呈降低趋势。综上所述,以追求高品质食用油为目标,同时兼顾油菜籽粒产量,氮肥适宜用量约为180kgNhm^(-2);以追求油菜籽粒产量并考虑油菜饼粕作饲料为目标时,氮肥适宜用量约为270 kg N hm^(-2)。
文摘在轻简化施肥背景下,为减少渍害损失,解决长江流域冬油菜产区生产面临的重要问题,开展氮肥施用对油菜渍害的缓解作用研究。设置三因素田间试验,分别为不同氮肥用量(0、60、120、180、240和300 kg N/hm^2)、氮肥类型(油菜专用控释尿素和普通尿素)和水分处理(苗期渍水和正常排水),测定各处理产量和氮肥农学利用率,明确苗期渍水对不同氮素供应水平油菜的影响,并比较油菜专用控释尿素一次性施用和普通尿素分次施用下油菜对苗期渍水的响应。结果表明,直播冬油菜产量随氮肥施用量增加而提高,至240 kg N/hm^2时不再增加。油菜专用控释尿素一次性施用,在氮肥用量为60~180 kg N/hm^2时产量高于普通尿素分次施用;在氮肥用量为240~300 kg N/hm^2时,两种氮肥类型产量基本相当。氮肥施用通过增加收获密度、单株角果数和每角粒数提高产量。苗期渍水导致直播冬油菜产量损失1.1%~41.9%,随氮肥用量增加,渍水引起的产量损失率呈先增加后降低趋势。0~60 kg N/hm^2处理时,渍水使收获密度显著降低(降幅达29.4%~45.0%),单株角果数增加;施氮量为120~180 kg N/hm^2时,渍水导致收获密度和单株角果数分别降低19.5%~33.7%和1.4%~17.7%;施氮高于180 kg N/hm^2时,收获密度和单株角果数降幅减小(降幅分别为5%~30.9%和3.6%~9.5%)。普通尿素分次施用和油菜专用控释尿素一次性施用,分别在施氮量为120和180 kg N/hm^2时产量损失率最高,分别达29.8%和41.9%。相同氮肥用量下油菜专用控释尿素一次性施用的产量损失率大于普通尿素分次施用。渍水显著降低氮肥农学利用率,降幅为8.4%~51.9%,施氮充足(240~300 kg N/hm^2)时氮肥农学利用率降幅低于氮素用量较低处理(120~180 kg N/hm^2),油菜专用控释尿素一次施用处理的农学利用率平均降幅(36.5%)高于普通尿素分次施用(17.3%)。综上可知,苗期渍水时,油菜专用控释尿素一次施用
文摘旱-旱和水-旱轮作是我国长江流域冬油菜的典型种植模式,氮养分缺乏是油菜产量主要限制因子。利用2016—2023年在湖北省武汉市布置的裂区同田对比定位试验,探究氮肥用量对不同轮作模式下油菜产量和氮素吸收利用的影响差异,为科学施氮提供依据。试验设计的主处理为旱地油菜(玉米-油菜)和水田油菜(水稻-油菜)2种轮作模式,副处理为4个氮肥用量(0 kg N hm^(-2)、75 kg N hm^(-2)、150 kg N hm^(-2)、225 kg N hm^(-2)),分析了油菜产量、产量构成因子和氮素积累量等相关指标。7年试验结果表明,旱地和水田油菜的产量和氮素吸收在不同氮肥投入下的响应存在差异。当不施氮或低施氮(75 kg N hm^(-2))时,水田油菜产量显著高于旱地油菜,分别高出53.9%和20.8%,地上部氮素积累量分别高出57.8%和18.3%;当施氮量为150 kg N hm^(-2)时,2种轮作无显著差异;在高施氮(225 kg N hm^(-2))时,旱地油菜产量和氮素积累量较水田分别增加11.2%和16.0%。旱地油菜的氮肥农学利用效率、贡献率和表观利用率较水田油菜分别平均增加16.5%、20.5%和22.0%,氮肥对旱地油菜的增产潜力更大,但水田油菜季土壤基础氮素供应量较旱地高61.5%,对氮肥的依赖性更小。综上,增加氮肥用量显著提高了油菜产量和氮素积累,水田油菜在低氮投入下表现出较高的稳产性,而旱地油菜在较高氮投入下丰产潜力更高。因此,在实际生产中应根据不同轮作模式调整油菜施氮量,旱地油菜可以适当增加氮肥用量以获得高产,水田油菜要充分利用土壤供氮能力适当控制氮肥用量,以达到油菜高产高效生产和氮肥高效利用的目的。