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31.
Increasing soil carbon (C) in arable soils is an important strategy to achieve sustainable yields and mitigate climate change. We investigated changes in soil organic and inorganic carbon (SOC and SIC) under conservation agriculture (CA) in a calcareous soil of the eastern Indo-Gangetic Plains of India. The treatments were as follows: conventional-till rice and wheat (CT-CT), CT rice and zero-till wheat (CT-ZT), ZT direct seeded rice (DSR) and CT wheat (ZT-CT), ZTDSR and ZT wheat without crop residue retention (ZT-ZT), ZT-ZT with residue (ZT-ZT+R), and DSR and wheat both on permanent beds with residue (PB-PB+R). The ZT-ZT+R had the highest total SOC in both 0–15 and 15–30 cm soil layers (20% and 40% higher (p < .05) than CT-CT, respectively), whereas total SIC decreased by 11% and 15% in the respective layers under ZT-ZT+R compared with CT-CT. Non-labile SOC was the largest pool, followed by very labile, labile and less labile SOC. The benefits of ZT and residue retention were greatest for very labile SOC, which showed a significant (p < .05) increase (~50%) under ZT-ZT+R compared with CT-CT. The ZT-ZT+R sequestered ~2 Mg ha−1 total SOC in the 0–15 cm soil layer in 6 years, where CT registered significant losses. Thus, the adoption of CA should be recommended in calcareous soils, for C sequestration, and also as a reclamation technique.  相似文献   
32.
供氮方式对冬马铃薯氮肥利用效率及氮素去向的影响   总被引:2,自引:0,他引:2  
以马铃薯费乌瑞它为试材,采用田间微区~(15)N示踪技术,研究施N量160kg·hm~(-2)全部基施(T1)、55%基施+45%在齐苗期追施(T2)、55%基施+30%在齐苗期追施+15%在现蕾期追施(T3)3种方式,对冬马铃薯氮肥利用效率及去向的影响。结果表明:马铃薯吸收的N约46%~52%来源于当季施用的氮肥,48%~54%来自土壤和种薯;肥料N利用率为35.16%~39.99%,残留率为47.71%~51.78%,损失率为8.23%~15.50%。3种施氮方式下,肥料N主要残留在0~15cm土层。随施氮时间后移,肥料N残留在0~15cm土层呈上升趋势,在15~45cm土层呈下降趋势。施氮方式对马铃薯干物质积累总量和块茎干物质积累量影响不明显,但T3肥料N利用率、肥料N残留率明显大于T1、T2。因此,综合经济效益和环境效益,T3施氮方式的效果较为理想。本研究为马铃薯氮素养分的有效管理提供了指导依据。  相似文献   
33.
为评估两广地区番木瓜中主要农药的残留情况及其产生的风险,采集了广东、广西地区40个生产基地的番木瓜样品进行测试分析,研究其生产过程中使用的杀虫剂、杀菌剂、杀螨剂和植物生长调节剂等各种农药残留情况,并对我国不同人群的膳食暴露风险进行了评估。结果显示,40批次番木瓜中检出农药残留32批次;在检出的32份番木瓜样品中,检出率超过10%的有咪鲜胺、吡虫啉、多菌灵、啶虫脒和苯醚甲环唑5种农药,检出率分别为51.1%、21.5%、13.3%、11.1%、10.9%。采用点评估方法,选择检出率在10%以上的咪鲜胺、吡虫啉、多菌灵、啶虫脒和苯醚甲环唑,进行农药残留慢性膳食摄入风险(%ADI)评估、急性膳食摄入风险(%ARfD)评估,并进行不同消费人群暴露点评估。结果显示:检出的5种农药%ADI均低于100.00%,为0.00023%~0.0059%;%ARfD远低于100%,为0.50%~28.3%,5种农药的急性和慢性摄入风险均为儿童高于成年人,绝大多数女性的摄入风险高于男性;5种农药急性摄入风险均高于慢性摄入风险,风险水平由高到低为咪鲜胺>啶虫脒>苯醚甲环唑>多菌灵>吡虫啉,但点评估结果均远低于100%,说明通过食用番木瓜摄入的农药残留极其微量,不会对人体产生急性或慢性风险。  相似文献   
34.
建立了同时测定干菊花中5种防腐剂的高效液相色谱分析方法,优化后的色谱条件为采用Waters XTerra C18色谱柱(3.9 mm×150 mm,5μm)分离,流动相为乙酸水溶液(0.1%)/甲醇梯度洗脱,用二极管阵列检测器在波长254 nm处进行检测。结果表明,5种防腐剂在18 min内可获得较好的分离效果,在0.1~20.0 mg/L范围内线性关系良好(r≥0.999 8),检出限为0.001 5~0.059 0 mg/L,定量限为0.005 0~0.196 8 mg/L,加标回收率为85.9%~97.8%,RSD为0.5%~12.5%。该方法操作简单、灵敏度高、重复性好,可用于检测干菊花中防腐剂。  相似文献   
35.
Although the effects of cover crops (CC) on various soil parameters have been fully investigated, less is known about the impacts at different stages in CC cultivation. The objective of this study was to quantify the influence of CC cultivation stages and residue placement on aggregates and microbial carbon (Cmic). Additionally, the influence of residue location and crop species on CO2 emissions and leached mineralized nitrogen (Nmin) during the plant degradation period was also investigated. Within an incubation experiment, four CC species were sown in soil columns, with additional columns being kept plant‐free. After plant growth, the columns were frozen (as occurs in winter under field conditions) and then incubated with the plant material either incorporated or surface‐applied. With CC, concentrations of large and medium macroaggregates were twice that of the fallow, confirming positive effects of root growth. Freezing led to a decrease in these aggregate size classes. In the subsequent incubation, the large macroaggregates decreased far more in the samples with CC than in the fallow, leading to similar aggregate size distributions. No difference in Cmic concentration was found among the CC cultivation stages. CO2 emissions were roughly equivalent to the carbon amounts added as plant residues. Comparison of columns with incorporated or surface‐applied residues indicated no consistent pattern of aggregate distribution, CO2 emission or Cmic and Nmin concentrations. Our results suggest that positive effects of CC cultivation are only short term and that a large amount of organic material in the soil could have a greater influence than CC cultivation.  相似文献   
36.
衷明华 《安徽农业科学》2011,39(6):3157-3158
[目的]同时测定潮州蔬菜汤中F-、Cl-、NO2-和NO3-的含量。[方法]利用WICⅡ-型离子色谱仪,测定潮州不同鲜度6种蔬菜汤中F-、Cl-、NO2-和NO3-的的含量。[结果]菜汤中NO3-的含量较高;菜汤中有适宜的F-、Cl-含量。[结论]保鲜处理放置的蔬菜中,NO2-、NO3-含量增加。  相似文献   
37.
为探讨酸化红薯粉渣对肉兔生长性能、免疫器官指数和胃肠pH的影响,试验采用单因子完全随机分组设计,选取128只(公母各半)50日龄体重相近的新西兰兔随机分为4个处理组(对照组、试验1组、2组和3组),每组4个重复,分别饲喂含0%、5%、10%、15%酸化红薯粉渣的饲粮。结果表明,与对照组相比,试验2组和3组肉兔日均采食量、平均日增重、胸腺指数和脾脏指数均显著提高(P<0.05),胃pH显著降低(P<0.05);试验1、2和3组腹泻率、十二指肠pH、盲肠pH均有所降低(P>0.05)。由此可见,在饲料中添加适量的酸化红薯粉渣能提高肉兔的生长性能和免疫器官指数,降低胃肠pH,其中添加量为10%~15%效果较理想。  相似文献   
38.
Abstract

The usefulness of the nitrate‐specific ion electrode (NE) for the determination of nitrate nitrogen (NO3‐N) in surface and ground water was determined. The NE method had several advantages that made it superior to the phenoldisulfonic acid (PDS) method in our environmental quality studies. Samples could be analyzed quickly and with a minimum of sample preparation. Sample coloration and soluble salts did not interfere with the performance of the electrode. Range of detection without dilution was much wider than by the PDS method. Also, the values obtained by the NE method, although slightly greater than those obtained by the PDS method, were satisfactory.  相似文献   
39.
Emissions of N2O were measured following addition of 15N‐labelled residues of tropical plant species [Vigna unguiculata (cowpea), Mucuna pruriens and Leucaena leucocephala] to a Ferric Luvisol from Ghana at a rate of 100 mg N/kg soil under controlled environment conditions. Residues were also applied in different ratio combinations with inorganic N fertilizer, at a total rate of 100 mg N/kg soil. N2O emissions were increased after addition of residues, and further increased with combined (ratio) applications of residues and inorganic N fertilizer. However, 15N‐N2O production was low and short‐lived in all treatments, suggesting that most of the measured N2O‐N was derived from the applied fertilizer or native soil mineral N pools. There was no consistent trend in magnitude of emissions with increasing proportion of inorganic fertilizer in the application. The positive interactive effect between residue‐ and fertilizer‐N sources was most pronounced in the 25:75 Leucaena:fertilizer and cowpea:fertilizer treatments where 1082 and 1130 mg N2O‐N/g residue were emitted over 30 days. N2O (loge) emission from all residue amended treatments was positively correlated with the residue C:N ratio, and negatively correlated with residue polyphenol content, polyphenol:N ratio and (lignin + polyphenol):N ratio, indicating the role of residue chemical composition in regulating emissions even when combined with inorganic fertilizer. The positive interactive effect in our treatments suggests that it is unlikely that combined applications of residues and inorganic fertilizer can lower N2O emissions unless the residue is of very low quality promoting strong immobilisation of soil mineral N.  相似文献   
40.
本试验旨在通过体外产气法研究木薯渣与甜菜颗粒粕组合用作泌乳中后期奶牛饲料的可行性及适宜组合比例。试验设计7个处理:木薯渣分别以0%(对照组)、5%、10%、15%、20%、25%和30%与甜菜颗粒粕(风干物质基础)组合,使用AGRS-Ⅲ型微生物发酵产气系统进行体外瘤胃微生物发酵试验,监测体外培养3、6、12、24、48h后的发酵液pH、氨态氮(NH3-N)、微生物蛋白(MCP)含量和体外培养48h后干物质消失率(IVDMD)、累积产气量(GP)及挥发性脂肪酸(VFA)含量等指标。结果表明:体外培养48 h后,GP和底物的最大降解率(RmaxS)随木薯渣占比增加呈线性或二次增加(P<0.05);发酵液各VFA和TVFA含量均随木薯渣占比增加呈线性或二次降低(P<0.05);根据多项组合效应值,以0%组为对照时,5%组和10%组表现为正组合效应,其余组合均表现为负组合效应。在本试验条件下,当木薯渣与甜菜颗粒粕组合使用,且木薯渣为5%~10%较为适宜,但此结果仍需奶牛饲养试验进一步验证。  相似文献   
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