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Nitrogen Losses from Flooded Rice Field 被引量:42
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作者 GAOXIAOJIANG HUXUEFENG 《Pedosphere》 SCIE CAS CSCD 2002年第2期151-156,共6页
A field microplot experiment was conducted during the tillering stage of paddy rice to investigate nitrogen(N) Iosses from flooded rice fields following fertilizer application. After application of ammonium bicarbonat... A field microplot experiment was conducted during the tillering stage of paddy rice to investigate nitrogen(N) Iosses from flooded rice fields following fertilizer application. After application of ammonium bicarbonate,most of nitrogen in the floodwater was present as NH4-N and its concentration varied widely with time.Concentrations of both NO3-N and NO2-N in the floodwater were low due to the weakened nitrification.Under flooded anaerobic reducing conditions, soil solution concentrations of NO3-N and NH4-N were nothigh, ranging from 0.6 mg L-1 to 4.8 mg L-1, and decreased with soil depth. However, the groundwater wasstill contaminated with NO3-N and NH4-N. Rainfall simulation tests showed that the N losses via runoff inrice fields were closely related to the time intervals between fertilizer applications and rainfall events. Whena large rain fell for a short period after fertilizer application, the N losses via runoff could be large, whichcould have a considerable effect on surface water quality. Both irrigation and N fertilizer application mustbe controlled and managed with great care to minimize N losses via runoff from agricultural land. 展开更多
关键词 flooded rice fields FERTILIZER-n n losses RUnOFF water quality
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Effect of N Fertilization on Grain Yield of Winter Wheat and Apparent N Losses 被引量:45
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作者 CUI Zhen-Ling CHEN Xin-Ping +3 位作者 LI Jun-Liang XU Jiu-Fei SHI Li-Wei ZHANG Fu-Suo 《Pedosphere》 SCIE CAS CSCD 2006年第6期806-812,共7页
Excessive nitrogen (N) fertilizer application to winter wheat is a common problem on the North China Plain. To determine the optimum fertilizer N rate for winter wheat production while minimizing N losses, field exper... Excessive nitrogen (N) fertilizer application to winter wheat is a common problem on the North China Plain. To determine the optimum fertilizer N rate for winter wheat production while minimizing N losses, field experiments were conducted for two growing seasons at eight sites, in Huimin County, Shandong Province, from 2001 to 2003. The optimum N rate for maximum grain yield was inversely related to the initial soil mineral N content (Nmin) in the top 90 cm of the soil profile before sowing. There was no yield response to the applied N at the three sites with high initial soil mineral N levels (average 212 kg N ha-1). The average optimum N rate was 96 kg N ha-1 for the five sites with low initial soil Nmin (average 155 kg N ha-1) before sowing. Residual nitrate N in the top 90 cm of the soil profile after harvest increased with increasing fertilizer N application rate. The apparent N losses during the wheat-growing season also increased with increasing N application rate. The average apparent N losses with the optimum N rates were less than 15 kg N ha-1, whereas the farmers' conventional N application rate resulted in losses of more than 100 kg N ha-1. Therefore, optimizing N use for winter wheat considerably reduced N losses to the environment without compromising crop yields. 展开更多
关键词 apparent n losses optimum n rate residual soil nitrate n soil mineral n winter wheat yield
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Ammonia Volatilization and Deriitrification Losses from an Irrigated Maize-Wheat Rotation Field in the North China Plain 被引量:29
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作者 ZHANGYu-Ming CHENDe-Li +3 位作者 ZHANGJia-Bao R.EDIS HUChun-Sheng ZHUAn-Ning 《Pedosphere》 SCIE CAS CSCD 2004年第4期533-540,共8页
Ammonia (NH3) volatilization, denitrification loss, and nitrous oxide (N2O) emission were investigated from an irrigated wheat-maize rotation field on the North China Plain, and the magnitude of gaseous N loss from de... Ammonia (NH3) volatilization, denitrification loss, and nitrous oxide (N2O) emission were investigated from an irrigated wheat-maize rotation field on the North China Plain, and the magnitude of gaseous N loss from denitrification and NH3 volatilization was assessed. The micrometeorological gradient diffusion method in conjunction with a Bowen Ratio system was utilized to measure actual NH3 fluxes over a large area, while the acetylene inhibition technique (intact soil cores) was employed for measurement of denitrification losses and N2O emissions. Ammonia volatilization loss was 26.62% of the applied fertilizer nitrogen (N) under maize, while 0.90% and 15.55% were lost from the wheat field at sowing and topdressing, respectively. The differences in NH3 volatilization between different measurement events may be due to differences between the fertilization methods, and to differences in climatic conditions such as soil temperature.Denitrification losses in the fertilized plots were 0.67%-2.87% and 0.31%-0.49% of the applied fertilizer N under maize and wheat after subtracting those of the controls, respectively. Nitrous oxide emissions in the fertilized plots were approximately 0.08%-0.41% and 0.26%-0.34% of the applied fertilizer N over the maize and wheat seasons after subtracting those of the controls, correspondingly. The fertilizer N losses due to NH3 volatilization were markedly higher than those through denitrification and nitrous oxide emissions. These results indicated that NH3 volatilization was an important N transformation in the crop-soil system and was likely to be the major cause of low efficiencies with N fertilizer in the study area. Denitrification was not a very important pathway of N fertilizer loss, but did result in important evolution of the greenhouse gas N2O and the effect of N2O emitted from agricultural fields on environment should not be overlooked. 展开更多
关键词 ammonia volatilization DEnITRIFICATIOn gaseous n loss n_2O emission
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Hole fertilization in the root zone facilitates maize yield and nitrogen utilization by mitigating potential N loss and improving mineral N accumulation 被引量:2
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作者 SHI Wen-xuan ZHANG Qian +3 位作者 LI Lan-tao TAN Jin-fang XIE Ruo-han WANG Yi-lun 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第4期1184-1198,共15页
Reducing environmental impacts and improving N utilization are critical to ensuring food security in China.Although root-zone fertilization has been considered an effective strategy to improve nitrogen use efficiency ... Reducing environmental impacts and improving N utilization are critical to ensuring food security in China.Although root-zone fertilization has been considered an effective strategy to improve nitrogen use efficiency (NUE),the effect of controlled-release urea (CRU) applied in conjunction with normal urea in this mode is unclear.Therefore,a 3-year field experiment was conducted using a no-N-added as a control and two fertilization modes (FF,furrow fertilization by manual trenching,i.e.,farmer fertilizer practice;HF:root-zone hole fertilization by point broadcast manually) at 210 kg N ha^(–1) (controlled-release:normal fertilizer=5:5),along with a 1-year in-situ microplot experiment.Maize yield,NUE and N loss were investigated under different fertilization modes.The results showed that compared with FF,HF improved the average yield and N recovery efficiency by 8.5 and 22.3%over three years,respectively.HF had a greater potential for application than FF treatment,which led to increases in dry matter accumulation,total N uptake,SPAD value and LAI.In addition,HF remarkably enhanced the accumulation of ^(15)N derived from fertilizer by 17.2%compared with FF,which in turn reduced the potential loss of^(15)N by 43.8%.HF increased the accumulation of N in the tillage layer of soils at harvest for potential use in the subsequent season relative to FF.Hence,HF could match the N requirement of summer maize,sustain yield,improve NUE and reduce environmental N loss simultaneously.Overall,root-zone hole fertilization with blended CRU and normal urea can represent an effective and promising practice to achieve environmental integrity and food security on the North China Plain,which deserves further application and investigation. 展开更多
关键词 maize yield hole fertilization nUE ^(15)n-labeled blended urea ^(15)n loss
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Nitrogen Runoff and Leaching Losses During Rice-Wheat Rotations in Taihu Lake Region,China 被引量:69
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作者 TIAN Yu-Hua YIN Bin +2 位作者 YANG Lin-Zhang YIN Shi-Xue ZHU Zhao-Liang 《Pedosphere》 SCIE CAS CSCD 2007年第4期445-456,共12页
Although nitrogen (N) loss through runoff and leaching from croplands is suspected to contribute to the deterioration of surrounding water systems, there is no conclusive evidence for paddy soils to prove this hypot... Although nitrogen (N) loss through runoff and leaching from croplands is suspected to contribute to the deterioration of surrounding water systems, there is no conclusive evidence for paddy soils to prove this hypothesis. In this study, field plot experiments were conducted to investigate N losses through runoff and leaching for two consecutive years with 3 N fertilization rates in rice (Oryza sativa L.)-wheat (Triticum aestivum L.) rotations in the Taihu Lake region, China. A water collection system was designed to collect runoff and leachates for both the rice and wheat seasons. Results showed that dissolved N (DN), rather than particulate N (PN), was the main form of N loss by runoff. The NO3^--N concentration in runoff was between 0.1 and 43.7 mg L^-1, whereas the NH4^+-N concentration ranged from below detection limit to 8.5 mg L^-1. Total N (TN) loads by runoff were 1.0-17.9 and 5.2-38.6 kg ha^-1 during rice and wheat seasons, respectively, and the main loss occurred at the early growing stage of the crops. Nitrogen concentrations in leachates during the rice seasons were below 1.0 mg L^-1 and independent of the N application rate, whereas those during the wheat season increased to 8.2 mg L^-1 and were affected by the fertilizer rate. Annual losses of TN through runoff and leaching were 13.7-48.1 kg ha^-1 from the rice-wheat cropping system, accounting for 5.6%-8.3% of the total applied N. It was concluded that reduction in the N fertilization rate, especially when the crop was small in biomass, could lower the N pollution potential for water systems. 展开更多
关键词 LEACHInG n fertilization rate n loss paddy soil RUnOFF
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Gaseous Loss of Nitrogen from Fertilizers Applied to a Paddy Soil in Southeastern China 被引量:9
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作者 CAIGUI-XIN YANGHAN-CHANG 《Pedosphere》 SCIE CAS CSCD 1992年第3期209-217,共9页
Total nitrogen (N) loss and ammonia volatilization from urea applied to flooded rice grown on a paddy soil in Zhejiang Province were measured by 15N balance and micro-meteorological methods, respectively. Floodwater p... Total nitrogen (N) loss and ammonia volatilization from urea applied to flooded rice grown on a paddy soil in Zhejiang Province were measured by 15N balance and micro-meteorological methods, respectively. Floodwater properties and ammonia loss from the circular plot were compared with those from the microplots. And the effectiveness of urease inhibitor, NBPT [N-(n-butyl) thiophosphonc triamide], was also tested Results showed that the total losses from urea broadcast and incorporated at transplanting (basal dressing) were similar with those from urea broadcast 12 days after transplanting (top-dressing) (51.5% and 48%, respectively, of applied N), and ammonia losses were low, the corresponding figures were 10.8% and 7.0% of applied N, respectively. Thus, denitrification was a much more important pathway of nitrogen loss than ammonia volatilization under the particular conditions. Addition of NBPT retarded urea hydrolysis, reduced pHs and ammoniacal nitrogen concentrations of floodwater for either the application of urea as basal or as top-dressing, but these effects were not translated into the reduction of total nitrogen loss. Floodwater pHs and ammonia loss in the microplots were apparently lower than those in the circular plot from urea applied as basal dressing; however, such differences were not found when urea was top-dressed. The frequently raining days occurred after top-dressing may be responsible for the insignificant effect of plot size on floodwater pHs and ammonia volatilization. It seems that the effects of plot size on floodwater properties and ammonia loss mainly depend on weather conditions, in addition to the height and leaf area index of the crop. 展开更多
关键词 ammonia volatilization flooded rice InHIBITOR n loss UREA
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Surface N balances and reactive N loss to the environment from global intensive agricultural production systems for the period 1970-2030 被引量:6
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作者 A.F.Bouwman G.Van Drecht K.W.van der Hoek 《Science China(Life Sciences)》 SCIE CAS 2005年第z2期767-779,共13页
Data for the historical years 1970 and 1995 and the FAO-Agriculture Towards 2030 projection are used to calculate N inputs (N fertilizer, animal manure, biological N fixation and atmospheric deposition) and the N expo... Data for the historical years 1970 and 1995 and the FAO-Agriculture Towards 2030 projection are used to calculate N inputs (N fertilizer, animal manure, biological N fixation and atmospheric deposition) and the N export from the field in harvested crops and grass and grass consumption by grazing animals. In most industrialized countries we see a gradual increase of the overall N recovery of the intensive agricultural production systems over the whole 1970-2030 period. In contrast, low N input systems in many developing countries sustained low crop yields for many years but at the cost of soil fertility by depleting soil nutrient pools. In most developing countries the N recovery will increase in the coming decades by increasing efficiencies of N use in both crop and livestock production systems. The surface balance surplus of N is lost from the agricultural system via different pathways, including NH3 volatilization, denitrification, N2O and NO emissions, and nitrate leaching from the root zone. Global NH3-N emissions from fertilizer and animal manure application and stored manure increased from 18 to 34 Tg·yr-1 between 1970 and 1995, and will further increase to 44 Tg·yr-1 in 2030. Similar developments are seen for N2O-N (2.0 Tg·yr-1 in 1970, 2.7 Tg·yr-1 in 1995 and 3.5 Tg·yr-1 in 2030) and NO-N emissions (1.1 Tg·yr-1 in 1970, 1.5Tg·yr-1 in 1995 and 2.0 Tg·yr-1 in 2030). 展开更多
关键词 surface n balances reactive n loss global intensive agricultural system.
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N-乙酰半胱氨酸对冻融人卵巢组织的保护作用
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作者 李扬璐 阮祥燕 +8 位作者 李妍秋 谷牧青 杜娟 王泽铖 程姣姣 金凤羽 蒋玲玲 杨瑜 Alfred O.Mueck 《首都医科大学学报》 CAS 北大核心 2024年第4期573-582,共10页
目的以首都医科大学附属北京妇产医院生育力保护中心现有冻存复苏方案为基础,以雌性去势裸鼠为模型,通过人冻融卵巢组织异种移植探讨抗氧化剂N-乙酰半胱氨酸(N-Acetyl-L-Cysteine,NAC)对人卵巢组织的保护作用。方法将4例患者的卵巢组织... 目的以首都医科大学附属北京妇产医院生育力保护中心现有冻存复苏方案为基础,以雌性去势裸鼠为模型,通过人冻融卵巢组织异种移植探讨抗氧化剂N-乙酰半胱氨酸(N-Acetyl-L-Cysteine,NAC)对人卵巢组织的保护作用。方法将4例患者的卵巢组织按照原有冻融方案和改良方案(加入NAC)进行冻融,所有患者取材后留取新鲜卵巢组织进行钙黄绿素AM(Calcein acetoxymethyl ester,Calcein-AM)和苏木精-伊红(hematoxylin-eosin staining,HE)染色评估卵泡活性并计数。将36只雌性去势裸鼠随机分为4组,将复苏后的卵巢组织移植于双侧裸鼠肾被膜下,按照移植卵巢组织的冻融方案分为原有冻融方案组(control group),改良方案组(NAC group),卵巢去势组(ovariectomy group)和正常对照组(normal group,不进行手术)。分别在移植第3天、第7天、第21天处死裸鼠,取血清及卵巢组织移植物。采用酶联免疫吸附试验(enzyme-linked immunosorbent assay,ELISA)法检测血清雌二醇(estradiol,E2)、卵泡刺激素(follicle stimulating hormone,FSH)和抗苗勒管激素(anti-mullerian hormone,AMH)水平,取卵巢组织移植物1片用于HE染色观察卵泡发育情况,1片用于总抗氧化能力(total antioxidant capability,TAC)的检测。结果移植后各时间点两移植组卵泡发育分级差异无统计学意义(P>0.05)。NAC组总抗氧化能力显著高于control组(P<0.05),与新鲜卵巢组织相比差异无统计学意义(P>0.05)。移植第3天control组裸鼠血清中E2水平显著高于卵巢去势组(P<0.05),余各时间点两移植组与卵巢去势组差异无统计学意义(P>0.05)。移植后第3天和第21天两移植组裸鼠血清中FSH水平低于卵巢去势组(P<0.05),与正常对照组差异无统计学意义(P>0.05)。移植后第3天control组AMH显著高于卵巢去势组(P<0.05),与其余各组差异无统计学意义(P>0.05),移植第7天两移植组AMH水平下降,显著低于正常对照组(P<0.05),移植第21天两移植组AMH水平均显著高于卵巢去势组(P<0.05),与正常对照组差异无统计学意义(P>0.05)。结论原有冻存方案及改良冻存方案均能有效恢复卵巢组织的内分泌功能。与原有冻存方案相比,NAC改良方案能够提高移植卵巢组织的抗氧化能力,并减少移植初期原始卵泡的激活,保存更多的原始卵泡数量。 展开更多
关键词 n-乙酰半胱氨酸 原始卵泡 卵泡激活 卵泡丢失 卵巢储备
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DC performance and AC loss of cable-in-conduit conductors for International Thermonuclear Experimental Reactor 被引量:2
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作者 Wei Zhou Xin-Yu Fang +1 位作者 Jin Fang Bo Liu 《Nuclear Science and Techniques》 SCIE CAS CSCD 2016年第3期176-185,共10页
A reliable prediction of AC loss is essential for the application of International Thermonuclear Experimental Reactor(ITER) cable-in-conduit conductors(CICCs);however,the calculation of AC loss of ITER CICCs is a cumb... A reliable prediction of AC loss is essential for the application of International Thermonuclear Experimental Reactor(ITER) cable-in-conduit conductors(CICCs);however,the calculation of AC loss of ITER CICCs is a cumbersome task due to the complicated geometry of the multistage cables and the extreme operating conditions in ITER.In this paper,we described the models developed for hysteresis and coupling loss calculation,which can be suitable for the construction of ITER magnetic system.Meanwhile,we compared the results of theoretical analysis with the SULTAN test result to evaluate the numerical model we used.In addition,we introduced the n-value and AC loss with transport current for CICCs based on the DC measurement results at SULTAN,which lays the foundation for the further study. 展开更多
关键词 国际热核聚变实验堆 交流损耗 电缆导体 电缆导管 直流测量 ITER计划 国际热核实验反应堆 性能
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基于UM-Ansys-MATLAB联合仿真的60N新性能钢轨磨耗规律研究
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作者 宋颖 安亚茹 陈怡琼 《计算机辅助工程》 2024年第4期32-37,共6页
采用UM-Ansys-MATLAB联合仿真技术,建立60 N新性能钢轨磨耗预测模型,仿真分析运营参数和轨道结构参数综合影响下60 N新性能钢轨廓形磨耗规律,并与U75V 60 kg/m钢轨进行对比,提出最优轨道参数建议值。仿真结果表明:轨底坡设置为1∶20、... 采用UM-Ansys-MATLAB联合仿真技术,建立60 N新性能钢轨磨耗预测模型,仿真分析运营参数和轨道结构参数综合影响下60 N新性能钢轨廓形磨耗规律,并与U75V 60 kg/m钢轨进行对比,提出最优轨道参数建议值。仿真结果表明:轨底坡设置为1∶20、轨距加宽2 mm、外股钢轨欠超高约15%时,采用60 N新性能钢轨可延长重载铁路小半径曲线钢轨使用寿命约50%。 展开更多
关键词 重载铁路 小半径曲线 60 n新性能钢轨 金属损失速率 侧面磨耗发展速率
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C/N对陶粒强化蔬菜废弃物好氧堆肥过程和产品品质的影响
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作者 朱颖 梅娟 +2 位作者 郑傲 陈泉 吴娇 《中国瓜菜》 CAS 北大核心 2024年第12期149-156,共8页
蔬菜废弃物的结构性差不利于堆肥处理。用陶粒做结构调理剂,研究C/N对陶粒强化蔬菜废弃物好氧堆肥过程的影响。试验设置4个处理,用玉米粉调节蔬菜废弃物的C/N,SP1、SP2、SP3的初始C/N分别为15、20、25,不加陶粒的SP4的C/N为20。结果表明... 蔬菜废弃物的结构性差不利于堆肥处理。用陶粒做结构调理剂,研究C/N对陶粒强化蔬菜废弃物好氧堆肥过程的影响。试验设置4个处理,用玉米粉调节蔬菜废弃物的C/N,SP1、SP2、SP3的初始C/N分别为15、20、25,不加陶粒的SP4的C/N为20。结果表明,SP450℃以上仅持续2 d,SP1~SP3持续8~16 d,陶粒有利于蔬菜废弃物堆肥升温,能明显加快堆肥进程。SP2升温速度最快且温度最高,60℃以上4 d,有机质的降解率为21.82%,也显著高于其他组。SP1、SP2、SP3最终的pH分别为8.46、8.19、8.00,EC值分别为3.85、3.78、3.79 mS·cm^(-1),C/N均小于14。SP2和SP3最终种子发芽指数分别为101.1%和91.4%,达到腐熟要求,而SP1仅为56.7%,未完全腐熟。且SP2、SP3相比SP1,有效提高了产品的总氮含量,最终总氮含量分别为初始值的1.42、1.55倍。综上所述,蔬菜废弃物加陶粒堆肥,初始C/N为20是最优条件,有利于加快有机质的降解和稳定过程,延长堆肥高温期,保证产品的安全性。 展开更多
关键词 好氧堆肥 蔬菜废弃物 C/n 陶粒 氮损失
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Effects of Soil C/N Ratio on Apple Growth and Nitrogen Utilization,Residue and Loss
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作者 Shunfeng GE Yihua REN +4 位作者 Ling PENG Haigang XU Mengmeng JI Shaochong WEI Yuanmao JIANG 《Asian Agricultural Research》 2014年第2期69-72,76,共5页
Soil C /N ratio is an important influencing factor in soil nitrogen cycling. Two-year old apple trees( Borkh. cv. ‘Fuji'/Malus hupehensis) were used to understand the effect of soil C/N ratio [6. 52( CK),10,15,20... Soil C /N ratio is an important influencing factor in soil nitrogen cycling. Two-year old apple trees( Borkh. cv. ‘Fuji'/Malus hupehensis) were used to understand the effect of soil C/N ratio [6. 52( CK),10,15,20,25,30,35 and 40]on apple growth and nitrogen utilization and loss by using15N trace technique. The results showed that,with the increasing of soil C/N ratio,apple shoot length and fresh weight increased at first,and then decreased; the higher apple shoot length and fresh weight appeared in C/N = 15,20 and 25 treatments,and there were no significant differences among these three treatments,but significantly higher than the other treatments. Statistical analysis revealed that there was significant difference in nitrogen utilization rate between the different treatments,the highest N utilization rate was occurred in soil C/N = 25 treatment which value was 22. 87%,and there was no significant difference between soil C/N = 25 and C/N = 20 treatments,but both the two treatments were significantly higher than the other treatments; Soil C/N = 40 had the lowest N utilization rate which value was 15. 43%,and this value was less than CK( 16. 65%). The proportion of plant absorption nitrogen from fertilizer was much higher when the value of soil C/N ratio in the range of 15- 25,but the percentage of plant absorption nitrogen from soil was much higher when the soil C/N ratio was too low( < 15) or high( < 25). Amount of residual nitrogen in soil increased gradually with the soil C/N ratio increasing,the amount of residual nitrogen in C/N = 40 treatment was 1. 32 times than that in CK. With the increasing of soil C/N ratio,fertilizer nitrogen loss decreased at first,and then increased,fertilizer nitrogen loss was the minimum in C/N = 25 treatments( 49. 87%) and the maximum were occurred in CK( 61. 54%). Therefore,regarding the apple growth and nitrogen balance situation,the value of soil C/N ratio in the range of 15- 25 would be favorable for apple growth and could increase effectively nitrogen fixed by soil,reduce nitrogen loss,and improve the nitrogen utilization ratio. 展开更多
关键词 SOIL C/n ratio APPLE 15n nitrogen UTILIZATIOn nitr
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N,N'-亚甲基双丙烯酰胺与OP-10对Q235钢在1 mol/L HCl中的缓蚀作用
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作者 樊林 王鹏杰 +3 位作者 宋昱灏 刘婉颖 梅宗斌 林元华 《电镀与精饰》 CAS 北大核心 2024年第7期49-57,共9页
针对在酸洗工况下金属的腐蚀问题,为解决单一缓蚀剂的成本高、效率低的问题,在N,N’-亚甲基双丙烯酰胺(NN)的最佳缓蚀浓度基础上将其与OP-10复配(N&P),采取失重实验、电化学实验、表面分析和理论模拟的方法,研究了NN和N&P缓蚀剂... 针对在酸洗工况下金属的腐蚀问题,为解决单一缓蚀剂的成本高、效率低的问题,在N,N’-亚甲基双丙烯酰胺(NN)的最佳缓蚀浓度基础上将其与OP-10复配(N&P),采取失重实验、电化学实验、表面分析和理论模拟的方法,研究了NN和N&P缓蚀剂对Q235钢在1.0 mol/L HCl溶液中的缓蚀性能。结果表明:在30℃条件下,NN的交流阻抗谱、动电位极化曲线和失重实验所得的最佳缓蚀率分别为73.32%、85.57%、77.46%,而将NN与OP-10复配后的缓蚀效率分别提升至92.34%、96.26%、90.14%。量子化学表明:N&P吸附位点主要为OP-10分子中的大Π键和C-O键以及NN分子中的C=O键、C=C键、C-N键,具有较好的协同效应。 展开更多
关键词 nn-亚甲基双丙烯酰胺 OP-10 电化学 失重实验 缓蚀性能 量子化学
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北京潮土NO_3—N在土体中的移动特点及其淋失动态 被引量:60
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作者 陈子明 袁锋明 +4 位作者 姚造华 周春生 傅高明 宋永林 李小平 《植物营养与肥料学报》 CAS CSCD 1995年第2期71-79,共9页
利用养分渗滤池研究了北京潮土地区春小麦—夏玉米连作期间NO_3—N在土壤剖面中移动的时空动态。结果表明,NO_3—N的移动同降雨、灌水以及整个土壤系统中的水分状况密切相关。在春小麦期间只有个别处理在0—20cm和20-40cm中有显著移动,... 利用养分渗滤池研究了北京潮土地区春小麦—夏玉米连作期间NO_3—N在土壤剖面中移动的时空动态。结果表明,NO_3—N的移动同降雨、灌水以及整个土壤系统中的水分状况密切相关。在春小麦期间只有个别处理在0—20cm和20-40cm中有显著移动,而夏玉米期间在0—130cm的土体中NO_3—N发生了“波浪式”的移动。淋失量同当时的降雨量线性相关。130cm深处NO_3—N含量在淋失高峰期可达10mgN.L^(-1)以上。此外,NO_3—N的移动同尿素施用量的多少有着密切关系,而尿素、硝铵和硫铵等肥料品种之间差异则不明显。^(15)N示踪结果表明,在春小麦前期尿素中的酰胺态氮或NH_4—N在0-20cm土层中直接移动,而来自肥料的NO_3—N在40—60cm处移动;夏玉米生长期间,在60cm以下深处有大量来自尿素和硝铵等残留标记氮的NO_3—N移动。 展开更多
关键词 土壤 氮素移动 淋洗损失 北京潮土 硝态氮
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基于DNDC模型的稻田氮素流失及其影响因素研究 被引量:12
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作者 赵峥 吴淑杭 +2 位作者 周德平 褚长彬 曹林奎 《农业环境科学学报》 CAS CSCD 北大核心 2016年第12期2405-2412,共8页
稻田氮素流失是导致农业面源污染的主要原因之一。采用测坑定位实验获得的野外观测数据对DNDC模型模拟稻田氮素流失的可行性进行验证,同时重点采用模型的敏感性分析功能对影响稻田氮素流失的关键因素进行分析研究。结果表明:DNDC模型能... 稻田氮素流失是导致农业面源污染的主要原因之一。采用测坑定位实验获得的野外观测数据对DNDC模型模拟稻田氮素流失的可行性进行验证,同时重点采用模型的敏感性分析功能对影响稻田氮素流失的关键因素进行分析研究。结果表明:DNDC模型能够准确地模拟不同施肥条件下稻田的氮素流失和水稻产量,施肥和降雨是影响稻田氮素流失的主要因素,与稻田氮素流失呈正比。值得注意的是,在目前施肥水平下有机肥的施用对稻田氮素的渗漏流失无明显贡献。此外,稻田氮素的渗漏流失还与土壤硝态氮的含量呈正比,而与土壤有机碳含量和黏土比例呈反比。根据敏感性分析结果可知,在我国稻田目前的施肥水平下,降低施肥量、采用节水灌溉以及增施有机肥等措施均是减少稻田氮素流失的有效手段。 展开更多
关键词 稻田 氮素流失 DnDC模型 敏感性分析 径流 渗漏
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菜地不同施氮量下N_2O逸出量的研究 被引量:28
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作者 梁东丽 同延安 +1 位作者 Ove Emteryd 马林英 《西北农林科技大学学报(自然科学版)》 CSCD 北大核心 2002年第2期73-77,共5页
用田间原位密闭气室法和乙炔抑制原状土柱培养法 ,研究了蔬菜地不同施氮量下 N2 O的逸出量。结果表明 ,在一定施氮量范围内 ,N2 O通量随施肥量的增加而上升 ;除最高施肥量 (N4 50 )外 ,N2 O占 (N2 +N2 O)的比率随施肥量的增加而增加。... 用田间原位密闭气室法和乙炔抑制原状土柱培养法 ,研究了蔬菜地不同施氮量下 N2 O的逸出量。结果表明 ,在一定施氮量范围内 ,N2 O通量随施肥量的增加而上升 ;除最高施肥量 (N4 50 )外 ,N2 O占 (N2 +N2 O)的比率随施肥量的增加而增加。在施肥水平低时 ,氮素的损失以 N2 为主 ,当施肥量高于 30 0 kg/ hm2后 ,则以 N2 O为主。 2 m土体中 NO3- N分析结果表明 ,试验结束时对照和 N4 50 处理土壤剖面中有 NO3- N累积 ,其余各个处理氮素都存在一定程度的损失 ,其中损失量最大的是 N1 50 处理 ,与 N2 O逸出量的趋势相一致。 N2 O逸出量占肥料 N总用量的 0 .15 %~ 0 .6 6 % ,肥料逸出量占土壤 N2 O总逸出量的 39.0 %~ 70 .3% ,且在施氮水平低于 N30 0 以下时 ,N2 展开更多
关键词 菜地 施氮量 n2O逸出量 氮素损失 反硝化
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UAN添加氮肥抑制剂对生菜产量、品质及土壤氮平衡的影响 被引量:15
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作者 杨俊刚 李艳梅 +3 位作者 孙焱鑫 廖上强 邹国元 顾红艳 《中国土壤与肥料》 CAS CSCD 北大核心 2020年第1期67-74,共8页
设施蔬菜生产中过量施氮的现象十分普遍,其高强度的水肥投入和不断扩大的种植面积,对环境的影响和面源污染的贡献越来越大。施用新型肥料是当前实现减肥增效的一个重要技术途径。尿素硝酸铵溶液(UAN)是近年来我国开始施用的一种新型液... 设施蔬菜生产中过量施氮的现象十分普遍,其高强度的水肥投入和不断扩大的种植面积,对环境的影响和面源污染的贡献越来越大。施用新型肥料是当前实现减肥增效的一个重要技术途径。尿素硝酸铵溶液(UAN)是近年来我国开始施用的一种新型液体氮肥,其在设施蔬菜中的高效应用与技术方法尚不明确。将UAN与脲酶抑制剂(NBPT)和硝化抑制剂(DCD)组成的双效抑制剂配施,设置田间试验,不同施氮组合分别为:不施氮CK、UAN、UAN+5 kg/t双效抑制剂(ND5)、UAN+8 kg/t双效抑制剂(ND8)、UAN+10 kg/t双效抑制剂(ND10)。采用滴灌施肥,全生育期共施肥2次,总氮量144 kg/hm^2,滴灌4次,总灌水量140 mm。结果表明,在UAN中添加氮肥抑制剂对生菜产量、品质和环境均有显著影响,生菜产量比UAN处理增加10%~21%,其中ND8处理产量最高,添加双效抑制剂的处理其叶片硝酸盐含量有降低趋势,土壤剖面硝态氮残留量也出现下降,有利于减少硝态氮的淋洗损失,减轻环境负荷。施肥增加了氮素表观损失,与UAN处理相比,添加中高量抑制剂有降低表观损失的趋势。随抑制剂添加量增加,经济收入先增加后降低,施用高量抑制剂产投比下降,经济效益变差。本试验中,液体氮肥UAN添加中等用量(8 kg/t)的双效抑制剂为兼顾生菜产量、品质与环境经济效益的适宜用量。 展开更多
关键词 双效氮肥抑制剂 土壤氮残留 氮素表观损失 经济效益
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菜地土壤N_2O排放及其氮素反硝化损失 被引量:10
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作者 金雪霞 范晓晖 +1 位作者 蔡贵信 黄耀 《农业环境科学学报》 CAS CSCD 北大核心 2004年第5期861-865,共5页
采用培养试验方法,对南京郊区3对菜地土和水稻土的N2O排放和氮素反硝化损失进行了研究。不加乙炔培养测定土壤N2O排放,加乙炔(10%V/V)培养测定反硝化损失。菜地土为相同类型水稻土改种为蔬菜约20年的土壤。结果表明,在培养0~1d期间,菜... 采用培养试验方法,对南京郊区3对菜地土和水稻土的N2O排放和氮素反硝化损失进行了研究。不加乙炔培养测定土壤N2O排放,加乙炔(10%V/V)培养测定反硝化损失。菜地土为相同类型水稻土改种为蔬菜约20年的土壤。结果表明,在培养0~1d期间,菜地土本身N2O排放通量(5.15~218.37ngN·g-1soil·h-1)均高于相同类型的水稻土(2.50~3.94ngN·g-1soil·h-1)。3对供试土壤中,2个菜地土培养21d排放的N2O总量与反硝化损失总量均显著高于相同类型的水稻土(P<0.05)。3对供试土壤施尿素后反硝化损失均未显著增加。施肥和不施肥处理,土壤N2O排放累积量和反硝化损失累积量随时间t的变化均符合修正的Elovich方程y=bln(t)+a。 展开更多
关键词 菜地土 水稻土 n2O排放 反硝化损失
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麦秸还田对水稻产量及地表径流NPK流失的影响 被引量:18
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作者 刘红江 陈留根 +1 位作者 周炜 郑建初 《农业环境科学学报》 CAS CSCD 北大核心 2011年第7期1337-1343,共7页
在大田试验条件下,以水稻品种运2645为供试材料,设置常规处理(A)、麦秸还田(B)、麦秸还田减肥(C)、肥料运筹(D)和旋耕(E)5个处理组合,研究不同处理对水稻产量及农田地表径流NPK流失的影响。结果表明:(1)麦秸还田使水稻产量比常规处理增... 在大田试验条件下,以水稻品种运2645为供试材料,设置常规处理(A)、麦秸还田(B)、麦秸还田减肥(C)、肥料运筹(D)和旋耕(E)5个处理组合,研究不同处理对水稻产量及农田地表径流NPK流失的影响。结果表明:(1)麦秸还田使水稻产量比常规处理增加3.0%左右;(2)试验年度稻季农田总地表径流水量为4.3×103m3·hm-2;(3)麦秸还田减肥和麦秸还田处理比其处理明显降低农田地表径流水体NPK流失量,不同处理地表径流总N流失量由低到高依次为麦秸还田减肥、麦秸还田、常规处理、肥料运筹和旋耕,不同处理地表径流总P和K的流失量由低到高依次为麦秸还田减肥、麦秸还田、肥料运筹、常规处理和旋耕;(4)麦秸还田能够降低稻田地表径流NPK的流失率,但麦秸还田减肥处理由于流失量减小幅度远低于肥料施用量的减小幅度,其NPK流失率均表现为最高;(5)麦秸还田使水稻产量略有增加,使稻田地表径流水体NPK流失量和流失率均明显降低。 展开更多
关键词 麦秸还田 水稻产量 地表径流 nPK流失量 nPK流失率
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有机、无机肥料施用后土壤生物量C、N、P的变化及N素转化 被引量:99
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作者 王岩 沈其荣 +1 位作者 史瑞和 黄东迈 《土壤学报》 CAS CSCD 北大核心 1998年第2期227-234,共8页
研究结果表明,有机、无机肥施用后,土壤微生物量C、N、P开始增加很快,随着时间的推移,土壤微生物量C又有所降低,但生物量N和P则基本保持稳定。硫铵施入土壤后,微生物对肥料(15)N的生物固持10天后达到最高峰,以后被固持在体内的(1... 研究结果表明,有机、无机肥施用后,土壤微生物量C、N、P开始增加很快,随着时间的推移,土壤微生物量C又有所降低,但生物量N和P则基本保持稳定。硫铵施入土壤后,微生物对肥料(15)N的生物固持10天后达到最高峰,以后被固持在体内的(15)N有一部分被逐渐释放出来,但一个月后仍有17%左右的(15)N被固持在微生物体内。硫铵与有机肥配合施用时,微生物对硫铵(15)N固持比例有所增加。有机肥中的15N被微生物固持的比例也较大,在肥料施入20天左右达到最大值,一个月后仍有19—25%存在于微生物体内。硫铵施用一个月后(15)N损失高达18%,有机肥中的N也有少量被损失。 展开更多
关键词 土壤微生物量 氮素转化 有机肥料 无机肥料
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