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1.
土壤磷固定是影响石灰性磷肥肥效的主要原因。本文在田间滴灌条件下采用连续浸提的方法对液体磷肥和固体颗粒磷肥及其不同施用方法对石灰性土壤各形态无机磷含量动态变化的影响进行了研究,并比较了不同处理下加工番茄磷素营养效应。结果表明:各施肥处理0—20 cm土层Ca2-P和Ca8-P含量随施肥时间明显下降,而Ca10-P含量则显著上升,表明磷肥在石灰性土壤中不断向Ca10-P转化并被固定。液体磷肥追肥处理0—20 cm土层Ca2-P含量在各时期均显著高于其他施肥处理(P<0.05),且液体磷肥追肥可以明显保持土壤0—20 cm土层较高的Ca8-P含量。与其他施肥处理相比,液体磷肥追施可减少石灰性土壤对磷的固定,增加0—20 cm土层Ca2-P和Ca8-P含量(P<0.05),显著提高土壤磷的有效性。液体磷肥追施处理可显著提高加工番茄叶片含磷量和经济产量(91725 kg/hm2)。与传统过磷酸钙颗粒磷肥作基肥处理(CK1)相比,液体肥料全做追肥可使加工番茄经济产量提高26.7%,并明显提高了磷肥利用率。在滴灌条件下石灰性土壤上液体磷肥分次追施比传统的固体颗粒磷肥基施具有明显的优势,是一种非常具有应用前景的施肥方式。  相似文献   

2.
实验室培养条件下,研究了有机复混磷肥对石灰性土壤无机磷组成变化的影响。结果表明: 1)单独施用有机物料对提高土壤速效磷含量的影响不大,但施用磷肥,无论是磷酸一铵化肥还是有机复混磷肥,均显著提高了土壤速效磷含量;施用有机复混磷肥提高土壤速效磷的幅度(67.5mg/kg~80.4mg/kg)高于施用磷酸一铵化肥处理(62.3mg/kg);有机复混磷肥中有机物料的含量高低对土壤速效磷含量的影响不大。2)单独施用有机物料具有提高土壤Ca2-P含量的作用,且明显提高了Ca8-P含量,但对Al-P、Fe-P、O-P、Ca10-P含量影响不大;施用无机磷肥和有机复混磷肥,显著提高了土壤Ca2-P、Ca8-P、Al-P含量,而对Fe-P、O-P、Ca10-P含量的影响很小;与磷酸一铵化学磷肥处理相比,施用有机复混磷肥对Ca2-P含量影响较小,但明显提高了Ca8-P含量,Fe-P含量也表现增加的趋势,而Al-P含量明显降低,O-P和Ca10-P含量的变化则没有明显规律;有机复混磷肥中有机物料的比例高低对土壤无机磷组成变化的影响没有表现出明显的规律性。3)施用磷肥引起速效态Ca2-P和缓效态Ca8-P的变化最大,其它形态无机磷的变化相对较小。与磷酸一铵化肥处理相比,有机复混磷肥处理Ca8-P的变异提高幅度增加,而Al-P的变异提高幅度减小,其它指标库容的变异幅度与之相近。4)施磷处理土壤速效磷含量与土壤Ca2-P、Ca8-P含量呈线性正相关,相关系数分别达到0.9888、0.9867,而Al-P、 Fe-P、O-P、Ca10-P与土壤速效磷相关性不显著,磷肥施入土壤后,土壤无机磷库中Ca2-P、Ca8-P的变化对土壤速效磷含量的贡献最大。  相似文献   

3.
在河北衡水潮土上进行田间试验,研究小麦/玉米轮作体系下,小麦季施用磷肥对玉米的后效及土壤中无机磷形态转化的影响。结果表明,与高施磷量(187.5 kg hm-2 P2O5)相比,小麦季磷肥施用量减少20%或40%,甚至当年不施磷,对后作玉米籽粒产量、生物量、植株吸磷量均无明显影响。从玉米苗期到成熟期,土壤中各形态无机磷下降幅度表现为Ca2-P最大,其次是Ca8-P,再次为Al-P。随着施磷量的减少,土壤Olsen-P、Ca2-P含量开始呈现下降趋势。与单施无机磷肥150.0 kg hm-2 P2O5相比,用有机肥猪粪磷替代其中20%无机磷肥,显著提高了土壤Olsen-P、Ca2-P和Ca8-P含量。本文结论认为在高肥力的华北地区小麦/玉米一个轮作周期中,小麦季减少磷肥用量,对后作玉米生长和产量尚未产生明显的影响。适当配施猪粪,减少无机磷肥,可以提高土壤中的Olsen-P和Ca2-P含量,较好地维持玉米季土壤中磷素肥力水平。  相似文献   

4.
栗钙土中磷肥转化及效应的研究   总被引:12,自引:2,他引:12  
采用石灰性土壤无机磷的分级方法,研究了磷肥在栗钙土中的转化以及包被物对土壤中磷肥转化的影响和莜麦的磷肥效应。研究结果表明,在不种作物的情况下,磷肥施入土壤后很快转化为Ca2-P、Ca8-P、Al-P、Fe-P等形态,随施肥时间的延长,Ca2-P呈减少趋势,其它形态的无机磷则逐渐增加;在种植莜麦的情况下,莜麦对磷肥的吸收利用率为31.1%,土壤残留为68.9%,残留磷中各形态无机磷占施入磷的比率:28.9%为Ca2-P,11.0%为Ca8-P,10.3%为Al-P,5.5%为Fe-P,9.5%为O-P,3.7%为Ca10-P;包被磷肥较未包被磷肥减少了土壤中Ca2-P向Ca8-P转化,增加了施入磷向Al-P的转化而减少了向Fe-P、O-P的转化,磷肥的利用率提高2.9个百分点。施用磷肥莜麦增产178%。  相似文献   

5.
探究水肥一体化下磷肥种类和施用方式对棉花产量、磷素积累量、土壤磷素有效性和磷肥利用率的影响,以期为棉田优化磷肥施用方式提供理论依据和技术参考。田间试验于2021年在新疆昌吉州棉花主产区进行。试验设不施磷肥对照(CK)、基施重过磷酸钙(TSP)、基施磷酸一铵(MAP-B)、基施+滴施磷酸一铵(50%基施,25%+25%分别在蕾期和花铃前期)(MAP-D)、基施+滴施磷酸一铵(50%基施,25%+25%分别在蕾期和花铃前期)和聚谷氨酸(MAP-P)5个不同施肥处理,测定指标包括土壤有效磷、植株生物量、植株磷积累量和籽棉产量,并计算磷肥利用率。在棉花盛花期和盛铃期,磷肥滴施显著提高0~20 cm土层有效磷含量,0~5 cm土层尤为显著,MAP-P处理有效磷含量比CK处理分别提高136.27%和113.99%。TSP、MAP-B、MAP-D和MAP-P处理产量比CK处理分别提高17.65%、16.25%、19.37%和31.88%。棉花生育期内,磷肥滴施植株累积吸磷量高于基施,各处理植株累积吸磷量在盛铃期达最大,MAP-P处理植株累积吸磷量整体高于其余处理,在苗期、蕾期、盛花期和盛铃期比CK处理分别提高50.92%、55.38%、81.33%和84.69%。在等量施磷条件下,磷肥滴灌追施的磷肥利用率高于基施。MAP-P处理磷肥利用率、磷肥累积利用率、磷肥农学效率和磷肥偏生产力均高于其余处理,磷素表观平衡低于其余处理,磷肥利用率达33.94%,比TSP、MAP-B和MAP-D处理分别提高20.23%、25.28%和16.71%。水磷一体下,磷肥结合活化剂(聚谷氨酸)滴施显著提高土壤磷素有效性和棉花产量。MAP-P处理提高了棉花产量和磷肥利用率,减少了土壤磷素的盈余。  相似文献   

6.
外源磷对土壤无机磷的影响及有效性   总被引:5,自引:0,他引:5  
通过对我国具有代表性的几个典型土类15年长期定位试验的CK和NPK处理以及原始土壤中无机磷组分的分析,研究施磷肥对土壤无机磷形态的影响及有效性。结果表明,原始土壤中闭蓄态磷和Ca10-P占无机磷比例大,土壤磷有效性低;在不施外源磷条件下连续耕作,各个土类的无机磷总量均逐年减少,其中主要是Ca2-P、Al-P和Fe—P明显降低;长期施用磷肥提高了土壤无机磷总量(TIP)和各组分的含量,其中以Ca2-P、Al-P和Fe—P提高比例显著,而0-P和Ca10-P提高的比例少。说明累积在土壤中的肥料磷多以有效性较高的形态存在。  相似文献   

7.
安徽省土壤无机磷组分状况及施肥对土壤磷素的影响   总被引:14,自引:0,他引:14  
采用石灰性土壤无机磷分级方法,研究了安徽省不同类型土壤无机磷组分含量状况、土壤无机磷组分在土壤剖面中的含量分布以及施用磷肥对土壤无机磷组分含量的影响,结果表明:安徽省土壤无机磷含量高低排序为菜园土〉潮土〉水稻土砂姜黑土〉黄褐土〉黄棕壤〉红壤〉紫色土;土壤无机磷含量的地域分布特征明显,皖北地区土壤无机磷含量明显高于皖南地区。石灰性土壤无机磷组分以Ca—P为主,占土壤无机磷总量的60%左右,其次为O-P,而Fe—P和Al~P含量较少;酸性土壤无机磷组分以O-P为主,占土壤无机磷总量的50%左右,其次为Fe—P和Al—P,Ca—P相对含量小于10%。菜园土无机磷积累特别明显,特别是积累了较多的Ca2—P和Ca8-P。水稻土无机磷组成变化较大,其含量主要取决于水稻土的成土母质。在菜园土的土壤剖面中,上部土层磷素积累明显,菜园土0~20cm土层中无机磷含量与60~80cm土层的比值为4.12,其他类型土壤表土层也有无机磷积累现象。施用磷肥可以明显提高土壤无机磷含量,在作物生长前期,施用的磷主要转化为生物有效性较高的Ca2-,Ca8-P,Al-P和Fe—P,在作物生长后期,O—P和Ca10—P才出现积累。  相似文献   

8.
研究了高寒半干旱区8年肥料定位试验中,磷肥和有机肥在莜麦上的产量效应、土壤磷素的平衡、土壤Olsen-P及各形态无机磷的变化。结果表明,单施磷肥(N0P1)莜麦增产30.8%、单施氮肥(N1P0)增产109.4%、氮肥和磷肥配合(N1P1)施用莜麦增产314.0%;NP间表现出显著正交互作用,NP(N1和P1)交互作用增产86.9%;施用22.5和45.0.t/hm2有机肥分别比N0P0处理增产115.1%和220.1%;施用有机肥基础上增施磷肥无明显增产效应。不同施肥处理土壤Olsen-P和各形态无机磷的增减取决于土壤磷素的积累与消耗量,7年不施磷肥土壤Olsen-P降低3.3mg/kg。施用磷肥和有机肥土壤各形态磷库均有不同程度的积累;土壤磷素积累以无机磷为主,其中Ca2-P和Ca8-P的积累量分别占土壤无机磷变化总量的19.3%和25.4%,Al-P和Fe-P分别占23.8%和14.8%,O-P和Ca10-P共占13.0%。依据土壤磷素收支平衡状况计算出维持土壤磷素平衡的P2O5用量为45.0.kg/hm2。根据肥料效应函数计算出有机肥用量为0、22.5.t/hm2时,P2O5的最高产量用量分别为98.4.kg/hm2和87.4.kg/hm2。  相似文献   

9.
通过田间试验,研究不同磷肥对滴灌棉田土壤有效磷及棉花产量和磷肥利用效率的影响。试验选取5种滴灌用磷肥:磷酸一铵(MAP)、聚磷酸铵(APP)以及大量元素水溶肥固体型(SF)、悬液型(LSF)、清液型(LCF),并以不施磷肥为对照(CK),共6个处理。测定土壤有效磷含量以及棉花生长、磷素吸收和产量。结果表明:在一个灌溉施肥周期内,施用清液型水溶肥(LCF)和聚磷酸铵(APP)较其它处理显著增加了土壤有效磷含量;在棉花各生育期,聚磷酸铵(APP)0~20 cm土层土壤有效磷含量较其它处理显著增加,清液型水溶肥(LCF)20~40 cm土层土壤有效磷含量最高,在盛铃期时较聚磷酸铵(APP)显著增加了21.41%;聚磷酸铵(APP)较磷酸一铵(MAP)显著促进了吐絮期棉花茎、叶的干物质及磷素积累量,而清液型水溶肥(LCF)干物质和磷素吸收在棉铃的分配比例最高,分别为64.89%、69.28%;清液型水溶肥(LCF)产量最高,聚磷酸铵(APP)次之,分别较磷酸一铵(MAP)提高了8.97%、2.87%;施用清液型水溶肥(LCF)较其它处理显著提高了棉花的磷肥偏生产力和磷肥农学效率,而聚磷酸铵(APP)的磷肥表观利用率最高。综上,施用聚磷酸铵(APP)和清液型水溶肥(LCF)能使土壤有效磷含量保持在较高水平,但清液型水溶肥有更强的磷素迁移能力。两种肥料(聚磷酸铵、清液型水溶肥)均能促进棉花干物质积累和磷素吸收,但聚磷酸铵的磷肥表观利用率最高,而清液型水溶肥则是增加了磷肥偏生产力和磷肥农学效率,增产效果最为显著。  相似文献   

10.
增值磷肥对潮土无机磷形态及其变化的影响   总被引:2,自引:0,他引:2  
在实验室条件下制备了海藻酸磷肥、腐植酸磷肥和氨基酸磷肥3种增值磷肥,利用室内土壤培养试验研究增值磷肥对潮土无机磷组分及其变化的影响。结果表明, 1)培养180 d后,普通磷肥(磷酸一铵,下同)和增值磷肥均显著提高了土壤速效磷含量,并降低了土壤pH; 施用增值磷肥提高土壤速效磷的幅度为34.6~41.92 mg/kg,高于普通磷肥; 施用增值磷肥降低土壤pH的幅度为0.23~0.36个单位,高于普通磷肥。2) 与普通磷肥相比,增值磷肥明显降低土壤对磷的固定,腐植酸、海藻酸和谷氨酸增值磷肥处理的固定率分别比普通磷肥降低7.32%、7.13%和11.99%。3)培养180 d后,与普通磷肥处理相比,增值磷肥均提高土壤Ca2-P、 Ca8-P 和 Al-P含量,减缓Al-P 向 Fe-P 的转化。  相似文献   

11.
The objective was to increase understanding about how P fertilizer form and application strategy affect P mobility and use efficiency in a drip‐irrigated calcareous soil. The study used two P forms (granular or liquid P) and two application methods (single or repeated application). Phosphorus uptake by roots was simulated by using diffusive gradients in thin films (DGT). Six fractions of inorganic P were obtained using the Jiang‐Gu sequential fractionation scheme. Mobility of P was greater when the fertilizer was applied in liquid rather than granular form. Depending on the fertilizer application rate, Olsen P concentrations 13.5–43 mm from the application point were larger by 22–96% in the liquid P treatment than in the granular P treatment. Liquid P increased DGT‐absorbed P by 29% and Ca2‐P by 17% compared with granular P averagely. The P uptake and PUE were averagely larger by 32 and 121%, respectively, in the liquid P treatment than in the granular P treatment. In conclusion, liquid P fertilization reduces P fixation and increases P diffusion, availability, and bioavailability in calcareous soil. Phosphorus mobility is greater when the fertilizer is applied in a single rather than repeated application.  相似文献   

12.
连续施磷条件下渗育性水稻土无机磷土层分布及移动特征   总被引:1,自引:1,他引:1  
通过3年田间肥料定位试验,采用顾益初、蒋柏藩的石灰性土壤无机磷分级方法,研究了太湖地区砂壤质渗育性水稻土不同无机磷形态在015.cm、1530.cm和3045.cm土层的分布及移动特征。结果表明,太湖地区砂壤质渗育性水稻土中的无机磷以Ca-P为主,其中Ca10-P含量最高。无论施肥与否,各土层中不同形态无机磷的含量都是Ca10-PO-P、Fe-PAl-P、Ca2-P、Ca8-P。3年定位施磷后,随施磷量增大表层(015.cm)土壤中总磷、Olsen磷、无机磷和无机磷各组分含量显著增加,而1530.cm和3045.cm土层中各无机磷组分的增加相对较小。土壤中总磷、无机磷和Olsen磷在土壤剖面中向下移动性随着土层的加深而减弱。其移动性呈Olsen磷无机磷总磷。植物有效无机磷源(Ca2-P、Ca8-P、Al-P)的下移比植物无效或缓效无机磷源(Ca10-P、Fe-P、O-P)的下移更明显。Olsen磷与土壤各层中的Ca2-P、Ca8-P、Al-P的相关性要比Fe-P、O-P和Ca10-P更大。  相似文献   

13.
Organic inputs are believed to be able to increase soil phosphorus (P) availability. Natural fallow and pig slurry amendments are the two important organic inputs for agricultural soils. The purposes of the study are to investigate P accumulation and to compare the differences of P fractionation patterns as affected by natural fallow and pig slurry drip irrigation in a coastal saline soil. The study showed that P accumulation occurred mainly in upper soil profiles and that natural fallow or pig slurry drip irrigation alone would not significantly influence total P distribution in soil profiles. However, soil P fractionation demonstrated that, from bottom to top, bioavailable P content and percentage increased whereas residual P percentage declined. The percentage of extractable inorganic P was almost twice as much as that of extractable organic P. In comparison with natural fallow conditions, under pig slurry drip-irrigation conditions, the transformation efficiency of superphosphate fertilizer HCl Pi into residual P was lower whereas the transformation efficiency of superphosphate fertilizer HCl Pi into bioavailable P was higher. The higher bioavailable P percentage and lower average Corg/P ratio in a long-term pig slurry drip-irrigation plot than those in other plots indicated that long-term pig slurry drip-irrigation was more efficient in improving soil P availability than natural fallow and short-term pig slurry drip irrigation.  相似文献   

14.
以山西省晋城市采煤塌陷区复垦土壤为研究对象,连续3年定位施肥研究施用有机肥(M)、无机肥(NPK)、有机肥+无机肥(NPK+M)对土壤理化性状、土壤磷分级的影响。结果表明:试验结束后,不同施肥处理土壤的pH、容重、全氮、全磷含量差异均不显著;单施有机肥处理的有机质含量显著高于单施化肥处理;有机肥+无机肥处理土壤速效磷含量高于其余处理,但处理间差异不显著。有机肥+无机肥处理能够明显提高土壤无机磷组分Ca_8-P含量;不同施肥处理均显著提高了Fe-P,处理间差异不显著;各处理的O-P、Ca_(10)-P增幅不明显;对照处理的不同无机磷组分含量总体保持下降趋势,其中Ca_8-P、Fe-P降幅较为明显。有机肥处理对活性、中活性组分,有机肥+无机肥处理对活性、中稳性有机磷效果明显,无机肥对有机磷组分效果不显著。相关性分析表明,Ca_2-P、Ca_8-P、Al-P、Fe-P、中活性、中稳性有机磷与速效磷均呈显著正相关性,Ca_8-P、中活性有机磷与速效磷极显著相关。  相似文献   

15.
A greenhouse pot experiment was carried out to investigate the effects of different P‐fertilizer application forms (triple superphosphate [TSP], compost + TSP, TSP‐enriched compost) on the growth of ryegrass and the soil microbial biomass. The fertilizers were applied at equivalent doses for all nutrients to a neutral Luvisol in comparison with an acidic Ferralsol. Fertilizer application led to significantly increased contents of microbial biomass C, N, and P. Furthermore, yields of shoot C and root C, and concentrations of P, Ca, Mg, K, Fe, and Mn in shoots and roots were significantly increased. These increases always followed the order TSP < compost + TSP < TSP‐enriched compost. Sole TSP application led only to maximum concentrations of N and S. In the Ferralsol, TSP had only minimal positive effect on the P concentration of the grass shoots. The positive effect of TSP‐enriched compost, i.e., incubating TSP together with compost for 24 h, did not differ between the neutral Luvisol and the acidic Ferralsol, i.e., the effect is independent of the soil type. Consequently, soluble inorganic P fertilizer should generally be mixed into an organic fertilizer before application to soil.  相似文献   

16.
This study investigated phosphorus (P) dynamics and kinetics in calcareous soil under inorganic, organic, and integrated (inorganic+organic) fertilizer systems during two growing seasons of maize in two soil depths (0–0.15 and 0.15–0.30 m). A field experiment was conducted with 150, 300, and 400 kg ha?1 triple superphosphate (TSP), 7.5 and 15.0 ton ha?1 (on dry matter basis) farmyard manure (FYM), and integrated systems. In order to analyze Olsen P, soil samples were collected in 30-day-intervals after planting. The results showed that at the end of the two growing seasons of maize, the lowest magnitudes of Olsen P0–0.15 m were 6.0, 6.8, 7.4, and 7.6 mg kg?1 for the control, 7.5 FYM, 15 FYM, and 150 TSP, respectively. The highest magnitudes of Olsen P0–0.15 m were 12.4, 11.5, 11.4, and 11.1 mg kg?1 for 300 TSP+15 FYM, 400 TSP+7.5 FYM, 400 TSP+15 FYM, and 300 TSP+7.5 FYM, respectively. The same trends were observed for Olsen P0.15–0.30 m. Heterogeneous diffusion model demonstrated that Elovich equation could best describe the experimental data (mean; R2 = 0.98, SE = 0.29). The highest P supply rates (PSR) were 4.73, 3.91, and 3.86 mg kg?1day?1 (days after application) for 400 TSP, 400 TSP+15 FYM, and 300 TSP, respectively. The models of P supply capacity of soil could estimate P supply of soil under different fertilizer systems (R2 = 0.84–0.95). The present study improved the understanding of the capacity and rate of P supply by considering P uptake by grain maize. Fertilizer recommendations depend on the accessibility of fertilizer types suggested to help choose the best fertilizer systems.  相似文献   

17.
长期施肥对石灰性潮土无机磷形态的影响   总被引:14,自引:3,他引:14  
在河北省辛集市马兰农场的肥料长期定位试验点上 ,进行了石灰性土壤在无机磷耗竭和积累状况下 ,无机磷形态的转化及其在土壤剖面中的分步规律和施肥的影响。结果表明 ,在土壤磷处于耗竭的情况下 ,植物主要吸收利用了土壤的Ca8-P、Al-P、Fe-P和Ca2-P ,只有在极度缺磷的情况下 ,植物才利用土壤中的Ca10-P ,而O-P是土壤中极稳定的无机磷形态 ,植物一般不能利用。长期单施无机磷肥 ,土壤无机磷含量有所提高 ,积累的无机磷约 60%转化成Ca10-P和O-P。有机肥与化肥配合施用 ,积累的无机磷约有占积累无机磷的 2/3转化成Ca2-P和Ca8-P ,而且各形态无机磷的含量在土壤表层和下层均有所提高 ,一般随有机肥用量的增加 ,下层土壤无机磷的增加幅度也大 ,且影响的深度也较深。但在本试验条件下 ,施肥深度的影响不会超过50cm。  相似文献   

18.
It is desirable to know the distribution of phosphorus (P) fractions in soil so that plants may use P efficiently. Here we report the dynamics of inorganic and organic P in P-deficient black and rice soil cropped by soybean, white lupin, and maize supplied with nitrogen (N) inputs by N fixation and urea fertilizer. Inorganic P fractions of the three cropped soils could be ranked as O-P (organic phosphorus) > Al-P (aluminum phosphorus) > Fe-P (iron phosphorus) > Ca10-P (calcium-10 phosphorus) > Ca8-P (calcium-8 phosphorus) > Ca2-P (calcium-2 phosphorus), irrespective of soil type. The potential of various inorganic P fractions to plant nutrition differed between soybean and white lupin. The percentage of total P present as inorganic P was affected by crop, soil type, and N source. In black soil, the change of organic P fraction induced by N fixation was larger than by urea application. The moderately labile organic P (MLOP) concentration was not affected significantly by soil type and crop species, and it was probably the main P source to the inorganic P fraction because the correlation between the two pools was high (r = 0.945; P < 0.05). Crop species differed in their uptake of inorganic and organic P from soil. Though P fraction concentrations varied between black soil and rice soil, their response to crop species and N source was similar. The amounts of P removed from soil were affected by N source. The right choice of crop species and the application a suitable N source may increase crop yield and P uptake by plant in P-deficient soils.  相似文献   

19.

Effect of poultry manure (PM) and four inorganic phosphorus (P) fertilizers sources, i.e., diammonium phosphate (DAP), single super phosphate (SSP), nitrophos (NP) and triple super phosphate (TSP) on crop production and P utilization efficiency (PUE) of maize was studied. Both inorganic P fertilizers and PM applied alone or combined in 50:50 proportions at equivalent rate of 90 kg P2O5 ha?1. Results indicated that inorganic P sources with PM significantly increased plant height, leaf area and chlorophyll content. Average values showed that combined application of inorganic P with PM increased grain yield by 19 and 41% over inorganic P and PM alone, respectively. Similarly, increase in P-uptake due to the combined application of inorganic P + PM was 17% compared to sole inorganic P. Phosphorus utilization efficiency of inorganic P was increased with PM and the highest PUE was recorded in DAP + PM. Generally, combination of DAP + PM proved superior over the remaining P fertilizers.  相似文献   

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