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81.
The effects of tillage methods on percent surface residue cover remaining and decomposition rates of crop residues were evaluated in this study. The line transect method was used to measure residue cover percentage on continuous corn (Zea mays L.) plots under no tillage (NT), conventional tillage (CT), chisel plow (CH), and disk tillage (DT). Samples of rye (Secale cereale L.) and hairy vetch (Vicia villosa Roth) were used for residue decomposition study. Results showed that the percentage of residue cover remaining was significantly higher for NT than for CH and DT and that for CT was the lowest (< 10%). For the same tillage system, the percent residue cover remaining was significantly higher in the higher fertilizer N rate treatments relative to the lower fertilizer N treatments. Weight losses of rye and vetch residues followed a similar pattern under CT and DT, and they were significantly faster in CT and DT than in NT system. Also, the amounts of residue N remaining during the first 16 weeks were always higher under NT than under CT and DT. 相似文献
82.
Intercropping or rotating of P‐efficient crop species which mobilize sparingly soluble P by their root exudates can have beneficial effects on growth and P uptake of P‐inefficient species. We aimed at studying the effect of intercropping or incorporating of crop residues of P‐efficient crops on the components of maize P‐uptake, i.e. the root‐system size and P influx (P‐uptake rate per unit root length). This was studied in 3 pot experiments in a low‐P sandy soil. In the first experiment, maize was intercropped with white lupine, sugar beet or oilseed rape, and with groundnut in the second experiment. In the third experiment, maize was grown after incorporating the crop residues of white lupine, sugar beet or oilseed rape. Maize growth and yield was strongly inhibited when intercropped with white lupine, sugar beet or oilseed rape, probably because of competition for nutrients. But with groundnut as the accompanying species, maize yield was increased by a factor of 3, mainly because of an enhanced P influx. Crop residues of oilseed rape and sugar beet increased the yield of maize by factors 2 and 1.6, respectively, because of a 3 and 2 times higher P uptake as compared to maize grown after maize without incorporation of crop residue. The reason for the higher maize P‐uptake after oilseed rape was an 11 times higher P influx as compared to maize without crop residues, and after sugar beet residues because of an enhanced root growth and a 4 times higher P influx. Lupine residues did not improve maize growth, mainly because of a low P influx, which was even less than that of maize grown without crop residues. The soil solution P concentration and calcium acetate lactate‐extractable P (CAL P) measured in this study did not reflect the P availability as indicated by the plants (P uptake, P influx). This indicates that other mechanisms such as P mobilization in the rhizosphere by root exudates or cell‐wall components were responsible for the increased P availability. These mechanisms need further investigation. 相似文献
83.
84.
旱地土壤硝态氮残留淋溶及影响因素研究 总被引:29,自引:1,他引:29
在我国北方旱地,施入土壤而未被作物吸收利用的肥料N,主要以NO3--N的形式残留于土壤中。残留的NO3--N如不及时被作物吸收利用,在降水或灌水的作用下,会淋入土壤深层,或随径流进入地表水体,或经反硝化形成N2O进入大气,对土壤、水体和大气环境构成严重威胁。本文分析了旱地农田生态系统中,NO3--N在土壤剖面的残留淋溶与施肥、灌溉/降水、耕作、土壤、植物等因素的关系。提出在今后的研究工作中应特别注意的问题:①建立长期定位试验,确定NO3--N淋溶阈值,评价和预测NO3--N残留和淋失的趋势;②优化作物栽培和养分资源管理措施,提高作物利用土壤NO3--N的能力;③改进N肥施用技术,加强N素管理,防止NO3--N在土壤中大量累积。 相似文献
85.
Ryan A. Davis David Huggins R. James Cook Timothy C. Paulitz 《Soil & Tillage Research》2008,101(1-2):37-43
Rhizoctonia root rot of wheat can be a problem in no-till systems, especially during the transition from conventional tillage. There are no effective chemical controls or resistant varieties, leaving only cultural methods to manage this disease. In a no-till system, residue and inoculum of soilborne pathogens are not moved by cultivation, therefore the inoculum may be concentrated in the seeding row of the previous year. Using GPS tracking systems with sub-meter accuracy, the seeding row could be placed away from the row of the previous year. We tested the hypothesis that seeding away from the relic row may reduce Rhizoctonia root rot. In two field experiments, plants were sampled at three distances from the seed row, as well as from fumigated plots. Intact soil cores were also removed from the field, planted with seeds at various distances from the previous row, and grown in the greenhouse under controlled conditions. Pasteurized cores served as controls. Disease levels were higher in the field in the second year, but there was no consistent effect of seed row placement on disease or plant parameters. However, soil fumigation and pasteurization had significant effects, indicating that soilborne pathogens were active. Inoculum of Rhizoctonia is not produced in the crowns and lower stems of the plant, but the pathogen survives in living and dead roots of the previous year crop, volunteers, and grassy weeds. Thus, high inoculum densities may be present in between the relic rows, as well as within the rows. If this is the situation with Rhizoctonia, precision placement of seed rows would not be efficacious. 相似文献
86.
对南昌市2005年6月~2006年3月的蔬菜采用酶抑制显色化学动力学方法进行了检测,结果表明南昌市蔬菜有机磷农药残留平均为8.10%,其中茄果类的残留最高,为12.32%,叶菜类残留最低,为3.68%。并对酶抑制显色化学动力学方法快速检测农药残留的优缺点进行了讨论。 相似文献
87.
建立鸡蛋、牛奶中甲硝唑残留检测的高效液相色谱法(HPLC)。样品中甲硝唑用乙酸乙酯提取、浓缩后用正己烷-乙酸乙酯(2∶1)溶解,Silica(SiO2)固相萃取柱净化,氮气吹干,流动相溶解,HPLC测定。固定相为C18色谱柱,流动相为pH 4.3醋酸缓冲液∶乙腈(88∶12,V/V),紫外检测波长325 nm。该方法可检出鸡蛋、牛奶中甲硝唑的最低定量限为1μg/kg,在空白样品添加浓度为1μg/kg时,鸡蛋、牛奶中甲硝唑的平均回收率分别为69%和75%,日间变异系数均小于15%。产蛋鸡连续饲喂含甲硝唑(250 mg/kg)饲料1周,用所建方法可检测到停药后14 d内鸡蛋中原药及代谢物残留。结果表明,该方法的样品处理方法简单,最低定量限、回收率和变异系数符合兽药残留检测方法要求。 相似文献
88.
89.
为摸清河套灌区地膜使用及其在土壤中的残留现状,本研究对不同作物种植区进行问卷调查和典型样点采集分析。结果表明,内蒙古河套灌区地膜污染整体处于中度污染水平,农田地膜残留量介于18.20~418.60 kg·hm-2之间,平均值为131.11 kg·hm-2。地膜残留量受覆膜年限、作物类型、回收情况、土壤质地等因素影响,其中覆膜年限对残膜量的影响最大,随着覆膜年限的延长,地膜残留量显著增加,覆膜20年以上地块残膜量显著高于覆膜年限少于20年地块(P<0.05)。玉米种植区地膜残留量(132.77 kg·hm-2)高于向日葵种植地区(127.88 kg·hm-2)。地膜回收意识是影响河套灌区地膜残留量的重要因素,回收方式主要为人工拾捡或耙地带出农田,研究区地膜回收率仅为38.10%,地膜回收地块的残留量(108.28 kg·hm-2)低于不回收地块(145.03 kg·hm-2)。相同条件下,不同质地土壤中砂质壤土残膜量最多(153.84 kg·hm 相似文献
90.
为明确丁硫克百威在豇豆播种期、苗期、结荚期使用后的降解代谢,以及可能产生的膳食风险,分别以其在蔬菜上登记的最低剂量、最高剂量、最高剂量的1.5倍3种剂量施药,进行田间模拟残留试验。将采集的成熟豇豆通过乙腈提取、C18分散净化,经超高效液相色谱串联质谱方法检测,测定豇豆中丁硫克百威及其代谢物——克百威和3-羟基克百威的残留量。结果表明,丁硫克百威、克百威和3-羟基克百威在豇豆中的定量限均为0.01 mg·kg-1,在0.01~1 mg·kg-1的添加水平下,丁硫克百威、克百威和3-羟基克百威的平均回收率为72%~105%,相对标准偏差为1.4%~20.1%。丁硫克百威使用后的超标风险主要源于其代谢物——克百威和3-羟基克百威。播种期施药后的豇豆样品均无丁硫克百威及其代谢物检出;苗期以最高剂量的1.5倍施药后,第10天的样品中克百威(含3-羟基克百威)的残留值超出中国国家标准中规定的最大允许残留限量(MRL);结荚期2次或3次施药后7 d内克百威(含3-羟基克百威)的残留值超出MRL。结荚期施药时,丁硫克百威在2次施药和3次施药后的慢性膳食摄入风险和急性膳食摄入风险均较低,小于100%;但克百威(含3-羟基克百威)的急性膳食摄入风险较高,以最高剂量的1.5倍2次施药或3次施药后,克百威(含3-羟基克百威)的急性膳食摄入风险于药后7 d才降至100%以下。综上,播种期使用丁硫克百威不会导致豇豆中残留超标,可以安全使用;但苗期和结荚期使用丁硫克百威存在极高的风险,应禁止其在播种期以外的使用。 相似文献