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1.
Seven potassium (K) rates (0, 50, 150, 350, 450, 550, and 650 kg K/ha) were used to determine the optimum rate of K for turf‐type perennial ryegrass during the winter based on turf growth, quality, and winter hardiness. Turf density, color, growth, and winter hardiness were increased as the rate of K application increased up to 350 kg K/ha. However, there were no beneficial effects of K application beyond that rate. Potassium content of the whole plant was 1.72% of the dry matter at the 350 kg K/ha rate. Calcium and Mg contents of the plant were reduced as the result of K application, and a reduction in growth and K content was detected at the higher K application rates. It is suggested that the optimum K rate for perennial ryegrass is about 350 kg K/ha under our experimental conditions in the winter, and that the K content should be about 1.72% of dry weight of whole plant.  相似文献   

2.
Nitrogen (N) leaching from soil into water is a significant concern for intensively grazed forage‐based systems because it can cause a decline in water quality and is a risk to human health. Urine patches from grazing animals are the main source of this N. The objective of this study was to quantify the effect that forage type and gibberellic acid (GA) application had on N leaching and herbage N uptake from urine patches on perennial ryegrass–white clover (RGWC), Italian ryegrass and lucerne. A lysimeter study was conducted over 17 months to measure herbage growth, N uptake and N loss to water beneath each of the three forage types with the following treatments: control, urine (700 kg N/ha) and urine with GA (8 g GA active ingredient/ha). Compared with RGWC (205 kg N/ha), N leaching losses were 35.3% lower from Italian ryegrass (133 kg N/ha) and 98.5% higher from lucerne (407 kg N/ha). These differences in leaching loss are likely to be due to winter plant growth and N uptake. During the winter months, Italian ryegrass had higher N uptake, whereas lucerne had lower N uptake, compared with RGWC. The application of GA had no effect on N leaching losses, DM yield or N uptake of forage treated with 700 kg N/ha urine.  相似文献   

3.
Abstract

Pearl millet and annual ryegrass were continually doubled‐cropped on Olivier silt loam soil for seven years at six levels of N, applied as ammonium nitrate in three applications to millet and in two applications to ryegrass. Forage yields increased as N application rates increased. During seven years at the 0 and 448 kg/ha N rate, millet produced 35% and 95%, respectively, as much yield as it produced at the 800 kg/ha N rate, while comparable values for ryegrass were 19% and 83%. At 448 kg/ha of N the two grasses produced a combined yield of over 20 Mg/ha of dry forage per year. Ryegrass yields following millet were consistently lower than yields previously obtained at this site.

Nitrogen applications consistently increased concentrations of N, Ca, and Mg in both forage grasses, while effects on P and K were variable and S concentrations were unaffected. The amounts of all nutrients removed in the forages were increased as yields increased with N application rates. Nitrate‐N levels considered to be toxic to ruminant animals occurred only where N applications exceeded 170 kg/ha at any one time. In vitro digestibility of each grass was consistently increased by N applications.

The percentage of fertilizer N that was removed in the crops ranged from 66% to 68% for millet and from 35 to 52% for ryegrass as N applications increased up to 448 kg/ha. Residual ammonium and nitrate levels in the top 1.2 m of soil were not increased by N rates of 448 kg/ha or lower. At the 800 kg/ha N‐rate, the apparent N recovery rate decreased and residual ammonium and nitrate levels increased throughout the soil profile.  相似文献   

4.
不同供氮水平对夏玉米养分累积、转运及产量的影响   总被引:103,自引:20,他引:83  
通过田间小区试验,研究了高肥力土壤上施N.125、250、375.kg/hm2对夏玉米生物量、子粒产量、N、P、K养分累积动态、及氮肥表观利用率、养分转运的影响。结果表明,不同施氮量只影响夏玉米不同生育时期养分的阶段累积量,而对累积趋势基本无影响。植株生物量及N、P、K养分累积量随生育期的延长而增加,且它们的累积趋势相似,都呈S型曲线。各处理的子粒产量在7000~7700.kg/hm2之间,只有N250处理增产达显著水平;氮肥表观利用率在10%~18%之间,随施氮量的增加略有降低。施氮可提高子粒中的氮素累积量,而对磷的累积量影响不大。随着施氮量的增加,氮素的转运量、转运效率及其在子粒中的比例都降低,磷的转运与氮表现出类似的趋势。综合考虑产量、氮肥利用率、养分转运及环境污染等因素,该地区夏玉米的推荐施氮量应控制在125.kg/hm2以内。  相似文献   

5.
不同氮素用量对杭白菊养分累积、转运及产量的影响   总被引:3,自引:2,他引:1  
通过田间小区试验,研究不同施氮量对杭白菊养分积累、转运及产量的影响,以确定杭白菊最佳氮肥用量。试验设5个处理,氮素用量分别为0、90 kg/hm2、120 kg/hm2、150 kg/hm2、180 kg/hm2,以N0、N1、N2、N3、N4表示,5次重复。结果表明,不同氮素用量影响杭白菊不同时期干物质和养分的阶段积累量,但不影响其积累趋势,整个生育期内杭白菊氮、磷、钾积累量为钾氮磷。不同施氮量影响茎叶氮、磷、钾的转移效率和在不同器官中的分配比率,以不施肥处理最高,N3(150 kg/hm2)次之。在氮、磷、钾三种元素中,转运效率磷氮钾。收获期氮、磷、钾在不同器官的分配比率不同,氮素、钾素分配比率为茎花叶根,磷素分配比率为茎花根叶。各处理杭白菊花的产量在1746.232~211.3 kg/hm2之间,以N3(150 kg/hm2)处理产量最高。在本实验条件下,杭白菊的推荐施氮量为150 kg/hm2。  相似文献   

6.
The effect of the addition of SMS to soil on the growth of perennial ryegrass was studied in a pot experiment. SMS raised the analyzed levels of P, K, Mg and Electrical Conductivity (EC) but not the level of NO3-N. At the first harvest, there was a positive response of growth up to a rate equivalent to 50 t/ha but above this growth declined. By the final harvest, there was a positive response of dry matter production up to the highest rate, 400 t/ha. The calculated nitrogen efficiency of dry matter production for SMS averaged 3.1 as against 21.1 for calcium ammonium nitrate. Leaching an SMS/peat column with distilled water at 10 day intervals over a 60 day period recovered 94 percent of the K in the leachate, 33 percent of the P and only 15 percent of the N. In SMS/peat mixes, early growth of tomato seedlings did not respond to rates above five percent of SMS by volume and was reduced when the SMS rate was above 20 percent. When the plants were grown on to a more mature stage, there was a response up to 20 percent SMS. In three experiments, SMS was used as a single nutrient source to supply N, P and K respectively. When used as a source of P and K, there was little benefit from increasing the rate of SMS above five percent. However, when used as a source of N, plant growth increased up to a rate of 25 percent SMS. There was no response to the addition of trace elements to SMS/peat substrates. When an SMS/peat substrate, containing five percent SMS by volume was supplemented with extra N, plant performance was as good as in a peat substrate with inorganic fertilizers.  相似文献   

7.
长期不同氮、 磷用量对冬小麦籽粒锌含量的影响   总被引:13,自引:5,他引:8  
【目的】小麦是我国西北地区主要的粮食作物,主要种植在低锌的石灰性土壤上,其籽粒锌含量普遍较低,难以满足人们的锌营养需求,因此提高冬小麦籽粒中的锌含量对保证人体健康具有非常重要的意义。氮素、 磷素供应不足或过量会影响冬小麦对锌的吸收与利用,本文基于黄土高原南部9年的长期定位试验,研究了长期不同氮、 磷肥用量对旱地冬小麦籽粒锌含量的影响及籽粒锌含量与氮、 磷吸收与分配的关系,以期为有效调控冬小麦籽粒锌营养品质和优化旱地冬小麦氮、 磷肥管理提供理论依据和切实可行的措施。【方法】田间定位试验开始于2004年10月,位于陕西杨凌西北农林科技大学农作一站。采用单因素完全随机区组设计,重复4次。供试小麦品种为小偃22,整个生育期不灌水。试验一为小麦施氮量试验,在施磷量为P2O5100 kg/hm2的基础上,设置0、 80、 160、 240、 320 kg/hm2 5个氮肥(N)水平;试验二为小麦施磷量试验,在施氮量为N 160 kg/hm2的基础上,设置P2O5 0、 50、 100、 150、 200 kg/hm2 5个磷肥水平。分别于2011~2013年连续两年进行田间取样,测定小麦籽粒产量及其构成因素,籽粒、 茎叶和颖壳中的氮、 磷、 锌含量,计算小麦地上部的氮、 磷、 锌吸收量。【结果】小麦施氮量试验表明,氮肥用量不超过N 320 kg/hm2时,小麦籽粒锌含量和地上部锌吸收量与施氮量呈极显著的正相关关系,施氮量每增加N 100 kg/hm2,籽粒锌含量平均提高4.0 mg/kg,地上部锌吸收量平均提高36.4 g/hm2;籽粒中的锌含量与氮含量之间、 地上部的锌吸收量与氮吸收量之间也均呈极显著的正相关关系,籽粒氮含量每增加1 g/kg,籽粒锌含量平均提高2.0 mg/kg,地上部氮吸收量每增加100 kg/hm2,其锌吸收量平均提高142.9 g/hm2。小麦施磷量的试验结果表明,施磷量不超过200 kg/hm2时,籽粒锌含量与施磷量呈极显著的负相关关系,施磷量每增加P2O5 100 kg/hm2,籽粒锌含量平均下降9.2 mg/kg;籽粒锌含量与磷含量也呈极显著的负相关关系,籽粒磷含量每增加1 g/kg,籽粒锌含量平均降低24.0 mg/kg;地上部锌吸收量与施磷量、 地上部磷吸收量之间均没有显著相关关系。【结论】综合考虑冬小麦籽粒产量和籽粒锌含量,建议这一地区冬小麦的施氮量和施磷量分别控制在N 160~240 kg/hm2和P2O5 50~100 kg/hm2。  相似文献   

8.
氮、磷、钾肥对卡因菠萝产量和品质的影响   总被引:5,自引:1,他引:5  
运用3414试验设计,在大田试验条件下研究氮、 磷、 钾肥不同配比对卡因菠萝产量和品质的影响,提出适宜的肥料用量。结果表明:施用氮(N)、 磷(P2O5)、 钾肥(K2O)卡因菠萝分别增产15.5、 4.8和12.6 t/hm2,增产率为16.8%、 4.5%和13.1%,增加纯收入34800、 11000和27600 Yuan/hm2,农学效率分别为39.3、 42.3和29.6 kg/kg; 施肥增产、 增收效果以及对产量的贡献率均表现为N>K2O>P2O5, 肥料农学效率则表现为P2O5>N>K2O。在 P2(100 kg/hm2)K2(500 kg/hm2)基础上,施氮降低果实中维生素C和可滴定酸含量,增加了可溶性糖含量,而在N2(400 kg/hm2)P2(100 kg/hm2)基础上,施钾增加果实中维生素C、 可滴定酸和可溶性糖含量,施用磷肥对果实品质影响不大。对卡因菠萝产量效应函数进行频率分析法寻优得出,卡因菠萝目标产量超过105 t/hm2, 95%置信区间的优化施肥量为氮(N)281.27~436.48 kg/hm2、 磷(P2O5)64.03~121.69 kg/hm2、 钾(K2O)428.59~628.55 kg/hm2,N、 P2O5、 K2O的最优施肥量配比为1∶0.15~0.43∶0.982.23。研究结论可为果农从事卡因菠萝栽培提供施肥参考。  相似文献   

9.
Abstract

Field trials were conducted for three years on the response of maize to nitrogen (N), phosphorus (P), and potassium (K) fertilizers on Oyo Soil Series (Arenic Haplustalf) and Iregun series (Aquic Haplustalf) in the derived savanna and southern guinea savanna zones of Nigeria, respectively. Nitrogen fertilizer as granulated urea at rates 0–300 kg N/ha, P fertilizer as single superphosphate at rates 0–120 kg P/h, and K fertilizer as muriate of potash at rates 0–180 kg K/ha were used for the different nutrient combinations. The base rates for N, P, and K were 100 kg N/ha, 40 kg P/ha, and 60 kg K/ha, respectively. The results of the trials showed that annual application of the blanket recommended N, P, and K rates to maize grown under intensive land use system could not produce optimum yield. Fertilizer efficiency varied along with soil test values from year to year. The highest response by maize in these zones was to N, the optimum rate ranged from 50–100 kg N/ha. Application of high rates of P and K fertilizers on soils with fairly sufficient nutrient level showed no significant effect on maize yield. But when P and K were applied at low rates (20 kg P/ha and 30 kg K/ha), their contents in the leaf and maize yield, in most cases, increased significantly. The results, however, showed that N, P, and K recommendations for optimum maize yield in both zones are 50–100 kg N/ha, 20 kg P/ha, and 0–30 kg K/ha, respectively.  相似文献   

10.
氮磷钾肥对高羊茅生长及抗寒性的影响   总被引:4,自引:0,他引:4  
利用盆栽试验研究了氮磷钾肥对冷季型草坪草高羊茅生长、叶绿素含量及抗寒性的影响。结果表明,NPK配合施用能有效促进草坪草生长、叶绿素合成及提高抗寒性。NPK处理的叶片数、叶长及株高分别是不施氮处理的1.23、1.73和1.68倍,是不施磷处理的1.96、2.25和2.04倍。播种后100.d,NPK处理SPAD值分别比PK和NK处理高出2.53和3.14倍;越冬期NPK处理的脯氨酸(Pro)、丙二醛(MDA)和电解质渗透率(EL)分别是PK处理的313.6%、36.4%和13.4%,是NK处理的104.2%、14.0%和11.6%。试验结果还表明,磷肥对草坪草生长影响最大,氮肥次之,氮磷肥缺乏均降低草坪草抗寒性;钾肥施用与否对草坪草生长及抗寒性影响不大。说明氮磷钾肥合理施用能有效改善越冬期草坪质量。  相似文献   

11.
Abstract

A field experiment was conducted to optimize fertilizer inputs for maximizing the yield of irrigated com (Zea mays L.). This report is a summary of the nutrient composition of leaf and grain samples from the highest yielding treatment in the experiment. The experiment had 15 treatments replicated three times in a randomized complete block design. The N rate treatments were 45,100, 200, 300, and 400 kg N/ha with and without 50 kg P/ha, 67 kg K/ha, and 22 kg S/ha. The plant populations were 74,000 plants/ha (30,000 plants/A) and 100,000 plants/ha. The highest corn yield was 15.6 Mg/ha (250 bu/A with 15.5% moisture) which was produced with 300 kg N/ha combined with complete N, P, K, and S fertilization. It is assumed that samples of corn leaf and grain from a plot yielding that high would have nutrient concentrations in the sufficiency range. Many of the nutrient concentrations from these arbitrarily designated sufficiency ranges are close to the critical ranges and concentrations reported in the literature. It can be concluded that established critical concentrations and ranges could be useful for diagnosing high‐yielding corn. Furthermore, the negative DRIS indices for N, P, K, S, and Cu indicate that these nutrients are most likely to be limiting based on the published norms.  相似文献   

12.
Efficient use of potassium (K) by turf depends on the ability of roots to absorb a high proportion of the fertilizer K applied to the soil. Among turfgrass genotypes, variation in K absorption kinetics of roots and its inheritance is important in the development of genotypes that are more efficient in K absorption from the soil. Therefore, K uptake kinetics of six cultivars each of Kentucky bluegrass (Poa pratensis L.), perennial ryegrass (Lolium perenne L.), and tall fescue (Festuca arundinacea Schreb.) were compared under greenhouse conditions. In 1990 and 1991, field studies of the same cultivars were conducted comparing clipping production rate, leaf blade K concentration, K recovery rate in clippings, K efficiency ratio and visual quality under a moderate K fertilization of 59 kg K/ha/year. Significant differences among species and cultivars were obtained for both absorption kinetics and field recovery of K. Significant correlations between some K uptake parameters and field performance were identified. These results show that genetic differences exist among turfgrasses for K utilization at both the interspecific and intraspecific levels and suggest that a screening program could be developed to identify turfgrass genotypes possessing superior K utilization.  相似文献   

13.
氮肥与多效唑对冬小麦叶片生理功能的调控   总被引:12,自引:0,他引:12  
为解决冬小麦拔节期培育壮苗、后期抗倒伏能力以及追施氮肥导致营养生长过旺之间的矛盾,达到提高冬小麦产量和品质的目的。采用二因素交叉试验设计,研究了不同施氮水平下多效唑对小麦叶片生理功能的影响。结果表明,与对照相比,氮肥与多效唑配合施用不仅提高了小麦的叶面积,显著增加叶片的叶绿素含量和光合速率;同时也增强了冬小麦叶片中超氧化物歧化酶活性,提高了冬小麦的抗逆性。石灰性褐土上冬小麦拔节期氮肥与多效唑的推荐用量分别为N 104.2~156.3 kg/hm2和1.13~1.50 kg/hm2。  相似文献   

14.
Abstract

Depression of corn grain yields from nutrient stress has been studied extensively, but effects of nutrient stress on rates of corn development and yield determinants are less well understood. Nutritional effects on the number of kernels/unit area, growth rate/kernel, and duration of growth have implications concerning fertilization practices and yield potentials of crops. Two corn hybrids with equivalent silking dates but having different grain filling periods were grown in a field experiment. Fertility treatments consisted of a N series receiving 0, 112, or 336 kg of N/ha and a P‐K series receiving factorial combinations of 0, 22, or 112 kg of P/ha and 0, 56, or 224 kg of K/ha. Dates for grain initiation and maturity were determined for each plot along with tissue analyses of ear leaves, grain yields, and kernel weights. Concentrations of N and K in ear leaves generally corresponded to treatment levels of these nutrients, although Pioneer Hi‐bred 3390 appeared to be less efficient than Pioneer Hi‐bred 3334 in K uptake. Effects of nutrient stress on yield determinants depended on the determinant and nutrient under consideration. Severe N stress did not change length of grain filling periods, but decreased kernel numbers 30 to 70%. Stress for K, on the other hand, shortened grain filling periods about 13% and had only a slight effect on kernel number. Negligible P stress occurred in the experiment. The two hybrids produced equal quantities of grain/ha/day but the hybrid with a longer filling period (Pioneer 3334) filled many more kernels at a slightly slower rate and for a longer period of time to give a significantly greater grain yield compared to Pioneer 3390.  相似文献   

15.
Acid, sandy soils selected for blueberry production are usually deficient in plant available phosphorus. Fertilizer addition at planting has not been a recommended practice. This research was designed to evaluate potted blueberry (Vaccinium ashei Reade) plant growth response to P applied at establishment and interacted with N applied during the growing season. Four liter containerized ‘Tifblue’ rabbiteye blueberry plants were transplanted into 4.4 kg of 1:1 v/v loamy sand:peat mixture in an 8‐liter container. Preplant P was incorporated into the mixture at 0, 20, 40, 60, and 80 kg/ha rates. Nitrogen was split‐applied post‐plant four times at 60‐day intervals beginning 30 days after blueberry bushes were transplanted. Total N rates were equivalent to 0, 112, 224, or 336 kg/ha. Plants were harvested 270 days after transplanting. Phosphorus at the 60 and 80 kg/ha rates increased plant growth 40 and 31%, respectively. Plant growth responded linearly to increasing N rate. Leaf and stem weight increases contributed to this linear response while root weight was not affected by fertilizer N. Total plant dry weight was increased by N rates at the 60 and 80 kg/ha P levels. Phosphorus applications increased leaf P levels, but did not increase soil test P. Leaf redness, caused by cool temperatures, was reduced by high N rates. The optimum P rate for fertilization of the soilrpeat mixture in the planting hole under conditions of this experiment was the equivalent of 60 kg/ha.  相似文献   

16.
华北平原冬小麦/夏玉米轮作体系对氮素环境承受力分析   总被引:35,自引:13,他引:35  
通过田间试验研究了华北地区冬小麦/夏玉米轮作体系对氮素的环境承受力。结果表明,冬小麦和夏玉米达到最高产量时的施氮量分别是112和180.kg/hm2。氮肥利用率和农学利用率随施氮量的增加而降低,生理利用率表现出抛物线的趋势。在农户习惯施氮条件下,冬小麦和夏玉米的氮肥利用率分别是10%和6%,每千克氮肥分别增产2和3千克。灌水和集中降雨是引起土壤硝态氮明显下移的主要因素。氮素平衡计算的结果表明,低施氮量时,氮素盈余以残留Nmin为主,高量施氮则以表观损失为主。将收获后090.cm土壤中的硝态氮的量控制到150kg/hm2,可以在兼顾环境的前提下获得较高的产量;此时冬小麦季的施氮量是122.kg/hm2,产量(干物重)达到最高产量4331.kg/hm2;夏玉米季的施氮量是145.kg/hm2,产量(干物重)是7965.kg/hm2,达到最高产量的97%。  相似文献   

17.
Abstract

Corn (Zea mays L.) was grown for three consecutive years on Congaree loam to measure the effects of rates of N, P, and K fertilization and irrigation on the nutrient concentration of leaves, the level of available K in the soil, and on the yield of corn. Plant nutrients consisting of 0, 56, 140, 224, and 280 kg N/ha; 0, 15, 37.5, 60, and 75 kg P/ha, and 0, 28, 70, 112, and 140 kg K/ha were applied in a central composite rotatable design in each of the three years. All plant residue was removed each year when the corn was harvested, and the plots remained fallow during the winter months. One half of the experiment was irrigated when there was a 50% depletion of available soil moisture in the 0‐ to 46‐cm soil depth.

Leaf composition was affected by fertilization and irrigation. A rapid decrease in available soil K in the 0‐ to 15‐cm depth was evident the first year with all rates of added K. The decline in available soil K was unaffected by irrigation and levels of applied N and P.

There were consistent yield responses each year to added N, no response to added P, and a response to added K only during the second year.  相似文献   

18.
不同供氮方式和施氮量对烤烟生长和氮素吸收的影响   总被引:36,自引:2,他引:36  
2005年5月至9月在云南玉溪采用田间试验和微区试验相结合的方法,研究了传统施肥和优化施肥2个施氮水平对烤烟生长和氮素积累的影响。结果表明,施N.120.kg/hm2的烟株在打顶以后以吸收土壤氮为主;施N52.5.kg/hm2的烟株在团棵期以后以吸收土壤氮为主,该施氮量能够保证烟株从移栽至打顶(即移栽后60.d)阶段的生长需要。但与施N.120.kg/hm2相比,植株氮素营养略有不足,烟株各部位及整株的干物重和氮素积累量略有降低;各时期干物重的分配比例没有区别。另外,打顶期和成熟期,两施氮处理植株所吸收的肥料氮绝对量差异达显著水平,施氮量越高,吸收量也越大。同时,施氮量越多,各个时期各部位和整株中肥料氮的比例越大,且均在团棵期达到最大值;之后呈下降趋势,施氮越多,下降幅度越小。两处理植株都呈现肥料氮比例随叶位上升而减少的规律,施氮量越高,部位间差异越小。  相似文献   

19.
磷、钾营养对柑桔果实产量、品质和贮藏性的影响   总被引:15,自引:3,他引:15  
采用田间试验以柑为材料研究了连续4年施用磷、钾肥后对柑桔果实的产量、品质和贮藏性的影响。结果表明,施用磷、钾肥,尤其磷、钾肥配施可显著提高柑桔果实的单果重和产量,以及采收时果实的可溶性固形物含量、可溶性糖含量、还原糖含量、糖/酸比和维生素C(Vc)含量,降低可滴定酸含量;并且可以有效地降低柑桔果实在贮藏过程中的失重率和烂果率,减缓糖分、酸度和Vc含量的下降。磷钾营养对于提高柑桔果实的耐贮性和维持贮藏过程中果实的风味和营养品质有一定的作用。  相似文献   

20.
秋延迟番茄氮、磷、钾优化施肥方案研究   总被引:4,自引:2,他引:2  
采用三因子二次饱和D-最优设计(310),研究了氮、磷、钾配施对秋延迟番茄产量和品质的影响,并建立了以氮、磷、钾用量为变量因子,番茄产量和品质为目标函数的三元二次数学模型。通过对模型解析表明,氮、磷、钾对番茄产量和品质均有显著影响,且两两间存在显著的互作效应,但以钾肥对番茄产量、品质的影响较大。在低水平条件下,番茄产量、品质均随氮、磷、钾使用量的增加而提高;当氮、磷、钾用量过多,则导致产量、品质降低。通过计算机模拟运算得出,本试验条件下,番茄产量达140 t/hm2、品质综合评分达95分以上的施肥方案为N 520.2~758.4 kg/hm2、P2O5294.8~367.3 kg/hm2、K2O 1051.5~1299.8 kg/hm2,适宜的N、P2O5、K2O施用比例约为1∶0.52∶1.84。  相似文献   

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