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71.
循环曝气灌溉条件下小白菜生长及水分与养分利用   总被引:4,自引:1,他引:3  
研究循环曝气灌溉对不同土壤作物水分及养分利用影响的规律可为循环曝气灌溉技术在不同土壤中的应用提供理论指导。以河南省3种典型土壤(郑州黏土、洛阳粉壤土和驻马店砂壤土)为供试对象,小白菜为供试作物,设置常规地下滴灌为对照组(CK)、循环曝气灌溉为试验组(CAI)开展盆栽试验,研究了循环曝气灌溉对作物生长生理指标及水分与养分利用的影响。结果表明,与CK相比,CAI可促进根系生长,其中郑州黏土和洛阳粉壤土CAI根系活力分别显著增大46.36%和16.79%(P0.05),根干质量分别显著增大35.33%和26.22%(P0.05)。CAI处理净光合速率较CK有显著提高(P0.05),其中郑州黏土、洛阳粉壤土、驻马店砂壤土依次增大了17.69%、12.41%和21.43%。循环曝气处理有效提高了作物氮、磷、钾的吸收效率,其中,郑州黏土和洛阳粉壤土氮素吸收量较CK分别显著提高23.68%和27.72%(P0.05);3种土壤CAI作物磷、钾吸收效率均有显著提高(P0.05),其中郑州黏土分别增加了27.54%和62.81%,洛阳粉壤土增加了25.20%和63.26%,驻马店砂壤土增加了26.86%和23.97%。循环曝气灌溉能显著提高小白菜产量和水分利用效率,其中,郑州黏土和洛阳粉壤土小白菜地上部鲜质量较CK分别提高了58.42%和62.03%,水分利用效率分别提高了27.86%和16.47%。综合比较小白菜生长指标、产量、水分利用及养分吸收效率,郑州黏土循环曝气灌溉处理具有最为显著的改善作用。  相似文献   
72.
为提高我国循环式岩棉栽培水肥管理水平,自主研发设计了循环式岩棉栽培水肥一体化智能装备及控制系统。系统根据植株的生长发育状态、需水需肥规律以及环境条件,通过智能控制系统全自动地进行营养液的检测、配比和灌溉决策,并结合营养液回收消毒技术,实现营养液的重复利用。系统提供便于操作的硬件设备以及全自动智能运行的控制系统,可对岩棉栽培水肥实现全自动智能精准管理,节水节肥20%以上,实现农业生产的零排放。经过在不同园区的试验和应用,验证该系统运行稳定,适用性强。在宁夏园艺产业园番茄生产应用可达到45.4 kg/m2的高产。   相似文献   
73.
为明确华北地区不同小麦品种在正常和缺水条件下N、P、K的吸收利用特点,进一步实现资源高效利用,选用3个不同生态类型品种(沧麦6001、邯麦9、济麦22),设置相对含水量分别为60%~80%(正常)和40%~60%(亏缺)两个浇灌水平,进行人工气候室箱体栽培试验,测定各小麦品种不同器官N、P、K含量和分配、干物质积累以及对籽粒产量构成要素的影响。结果表明,N、P、K含量和分配具有明显的器官特性,其中籽粒N和P含量显著高于其他部位,K含量最低。水分亏缺限制了沧麦6001籽粒N和K的吸收,同时促进了N和P向籽粒的转运;限制了邯麦9茎秆K的吸收,促进了P向颖壳的转运;限制了济麦22叶片、籽粒P的吸收,同时促进了N向颖壳和籽粒的转运,从而改变了小麦不同部位养分比例平衡以及干物质积累。N、P含量与干物质积累呈显著正相关,K含量与其呈显著负相关,但均未直接影响产量及其构成要素。亏缺灌溉下(亏缺量为24.39mm),邯麦9穗数、产量及济麦22穗数显著降低,而沧麦6001穗数、穗粒数和产量显著提高。因此,适度控制水分并提高营养元素向籽粒的转运效率是提高小麦产量和品质的重要途径。  相似文献   
74.
灌水次数和施钾量对冬小麦茎秆形态特征和抗倒性的影响   总被引:4,自引:0,他引:4  
为进一步明确兼顾节水高产抗倒的最佳灌水与施钾量组合,以冬小麦品种藁优2018为材料,通过二因素随机区组试验,研究了3种灌水次数(不灌溉、灌拔节水、灌拔节水和扬花水)和4个施钾量(施K_2O0、75、150和225kg·hm~(-2))对冬小麦茎秆形态特征和抗倒性的影响。结果表明,随灌水次数和施钾量的增加,小麦株高和重心高度显著增高,茎秆基部2个节间的单位长度干重、直径、机械强度和抗倒指数显著增加。而茎秆壁仅随施钾量的增加而显著增厚。小麦产量和3个产量构成因素也随灌水次数和施钾量的增加而增加,但4个施钾量之间的千粒重差异不显著,K225与K150之间的穗数、穗粒数和籽粒产量差异不显著。茎秆抗倒指数与茎秆基部第1、2节间的单位长度干重、直径呈极显著正相关,与株高、重心高度也呈极显著正相关。综合各项指标,春季在拔节期和扬花期灌2次水,施K_2O 150kg·hm~(-2)有利于实现小麦高产和钾肥高效,且茎秆抗倒性能较好。  相似文献   
75.
Removal of diseased plants (roguing) is commonly practiced in seed potato production. Diseased plants left to desiccate in fields could possibly serve as sources of Potato virus Y (PVY). PVY acquisition by three aphid species (Myzus persicae, Rhopalosiphum padi, Aphis fabae) was evaluated with leaflets from rogued plants for seven days. Results showed greater PVY acquisition rates in non-colonizing aphids species compared to colonizing ones. The proportion of aphids leaving leaflets increased with time (i.e. days after plants were uprooted) and some aphids were carrying PVY in their stylets on each of the seven days of the experiment, suggesting that aphids were able to probe and acquire PVY even when plants wilted. These results confirmed that diseased plants left in fields can serve as a source of PVY for aphids even after they wilted and emphasises that proper actions must be taken to efficiently remove diseased plants from fields.  相似文献   
76.
In the 2014 and 2015 crop seasons, the efficacies of different types, rates and combinations of mineral oil and insecticide foliar sprays for reducing Potato virus Y (PVY) spread were tested in controlled field trials in New Brunswick (NB), Canada. Experimental plots were planted with certified PVY-free Goldrush, supplemented with known virus-infected seed to raise PVY inoculum to 2.3% and 3% at the beginning of the 2014 and 2015 seasons, respectively. Treatments consisted of mineral oil-only sprays at different application rates, insecticide-only sprays of differing numbers, and several combined mineral oil and insecticide spray regimes, all compared to a no-spray control treatment. PVY spread to 18% (2014) and 22% (2015) of initially virus-free plants in no-spray control plots, with significant reductions observed in PVY spread in several treatments. Greatest PVY reductions, as low as 4% (2014) and 12% (2015), were in combined mineral oil and insecticide spray treatments, followed by oil-only sprays; while insecticide-only sprays did not significantly reduce PVY spread. As well as measuring PVY spread to marked test plants and randomly collected post-harvest tuber sample from the plots, exhibited similar treatment pattern for PVY incidence. Multiple logistic regression modeling confirmed the relative efficacy of combined oil and insecticide sprays for reducing PVY spread, while accounting for variable inoculum and aphid factors. Modeling also highlighted the importance of planting low-PVY seed initially, and of early application of foliar sprays. Local best management practice recommendations for reduction of in-field PVY spread were discussed.  相似文献   
77.
在上止点压力1.5 MPa,上止点温度670~795 K,当量比为1的实验条件下,利用快速压缩机(RCM)研究了N_2、N_2/Ar(50%/50%)和Ar/CO_2(61.2%/38.8%)稀释气体对二甲醚(DME)着火延迟期的影响。利用CHMKINPRO软件在较大温度范围内进行了模拟研究。结果表明:不同稀释气体组分对二甲醚混合气体第一阶段着火延迟期影响很小,但对总着火延迟期具有较大的影响,尤其在负温度系数(NTC)区间的起点温度附近。与N_2相比,N_2/Ar(50%/50%)使得实验中总着火延迟期缩短30%。稀释气体的化学效应对第一阶段着火延迟期和总着火延迟期的影响均很小。在低温区间和NTC区间,稀释气体的热效应起主导作用,而当上止点温度超过NTC区间时,CO_2的化学效应影响增强且超过热效应而起到主导作用。随稀释率增加,DME混合气体第一阶段着火延迟期略有延长,而总着火延迟期出现明显延长,且总着火延迟期的NTC现象变得更加明显。  相似文献   
78.
79.
基于15N示踪技术的干旱区滴灌葡萄氮素利用分析   总被引:1,自引:0,他引:1  
李鑫鑫  刘洪光  林恩 《核农学报》2020,34(11):2551-2560
为研究水氮调控对干旱区滴灌葡萄氮素吸收利用的影响,以新疆鲜食葡萄弗雷为试验材料,利用15N 示踪技术,设置2种灌水处理(灌水量为4 950、5 400 m3·hm-2,分别记作W1、W2),3种施氮处理(施氮量为177、235、292 kg·hm-2,分别记作F1、F2、F3)进行大田试验。结果表明,各处理土壤全氮含量和15N丰度差异极显著(P<0.01),并且在0~20 cm土层出现富集现象。各器官征调氮素能力随水氮投入加大极显著增强(P<0.01)。根系、茎秆、叶片器官的生物量随着吸氮量的增加极显著提高(P<0.01),而较高施氮量(F3)不利于果实器官生物量的积累。果树吸收的肥料氮量随水氮投入的加大逐渐增加,受水氮调控影响极显著(P<0.01),果树吸收的土壤氮量大于肥料氮量。W2F1的15N标记氮肥利用率和15N标记氮肥偏生产力最高,分别为38.36%和114.20 kg·kg-1,W2F2的产量最高,为20 253 kg·hm-2,但与W2F1差异不显著。表明水氮投入过多会引起茎秆和叶片器官徒长且不利于提高15N标记氮肥利用率。综上所述,灌水量5 400 m3·hm-2、施氮量177 kg·hm-2(W2F1)是兼顾经济效益与生态效应的可行水氮运筹模式。本研究结果为干旱区滴灌葡萄高产高效种植提供了参考。  相似文献   
80.
Nie  Xinxing  Zhang  Zhiyi  Xia  Xiange  Yang  Li  Fan  Xianpeng  Zheng  Manjie 《Journal of Soils and Sediments》2020,20(4):2043-2052
Purpose

Magnetic removal techniques using functionalized magnetic nanoparticles as adsorbents have been frequently tested for use in the removal of heavy metals in aqueous solution, but seldom in farmland soil. Here, a novel magnetic microparticle solid chelator (MSC) was employed as the adsorbent for magnetic removal and/or immobilization of Cd and Zn in a paddy soil (PS), an upland soil (US), and a paddy–upland rotation soil (RS) with different degrees of pollution.

Materials and methods

MSC was applied to 14 kg air-dried soil samples (PS, US, and RS) at the dosage of 1% (w/w), and then watered, and intermittently stirred. Finally, the MSC–metal complexes were retrieved using a magnetic device (MCR treatment) or not (MC treatment), and the removal efficiency of soil Cd and Zn in MCR treatment was evaluated. After magnetic separation of MSC–metal complexes, pot experiments were performed to investigate the impacts of the magnetic remediation process on rice growth, the phytoavailability of soil Cd and Zn, and the accumulation of Cd and Zn in rice plants.

Results and discussion

The MCR treatment exhibited recovery rates of 55.4%, 49.6%, and 19.0% for MSC–metal complexes in PS, US, and RS, respectively, which brought about removal efficiencies of 2.2–12.2% for Cd and 1.9–4.6% for Zn. The MC and MCR treatments substantially decreased the availability of soil Cd, but not soil Zn; this effect was more remarkable when using CaCl2 instead of DTPA as the extractant for determination of bioavailable metals. Furthermore, the CaCl2-extractable Cd and Zn had a more significant relationship with Cd and Zn concentrations in rice roots. The MC and MCR treatments led to dramatic reductions in rice grain Cd of 23.9–72.1% and 37.3–63.9%, respectively, in the three soils relative to the respective controls. The MC and MCR treatments also exhibited an inhibitory effects on rice grain Zn accumulation in US (10.6% and 4.3% decreases, respectively) and RS (9.3% and 19.5% decreases, respectively), but not in PS. Moreover, the grain yield was unaffected under the MCR treatment in the three soils, and significantly increased by 29.8% under the MC treatment in US.

Conclusions

Our study suggests that MSC-based magnetic remediation technique can effectively immobilize and/or remove Cd and Zn in farmland soils, decreasing their uptake by rice plants, with no adverse effects on grain yield.

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