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1.
The interaction of Pb-Cd can be observed not only in the uptake process of elements by plants and in their influence on the growth,but also in rhizosphere.The changes in extractable Cd and Pb concentrations in the rhizosphere soil of rice plants ,root exudates from wheat and wheat plant and their complexing capacity,with Pa and Cd were investigated under different Pb and Cd treatments.Results showed that the concentration of extractable Cd in the rhizosphere of rice in red soil was markedly increased by Pb-Cd interaction,It increased by 56% in the treatment with Pb and Cd added against that in the treatment with only Cd added in soil . The considerable differences in both composition and amount of root exudate from wheat and rice were found among different treatments.Pb and Cd might be complexed by root exudates ,The concentrations of free Pb and Cd in the solution were increased markedly by adding root exudate from wheat and decreased by that from rice due to Pd-Cd interaction.The distribution patterns of Pb and Cd in roots were affected by Pb-Cd interaction,which accelerated transport of Pb into internal tissue and retarded accumulation of Cd in external tissue.  相似文献   

2.
海河流域合理生态用水比例的确定   总被引:9,自引:0,他引:9  
Winter wheat-maize rotations are dominant cropping systems on the North China Plain, where recently the use of organic manure with grain crops has almost disappeared. This could reduce soil fertility and crop productivity in the long run. A 20-year field experiment was conducted to 1) assess the effect of inorganic and organic nutrient sources on yield and yield trends of both winter wheat and maize, 2) monitor the changes in soil organic matter content under continuous wheat-maize cropping with different soil fertility management schemes, and 3) identify reasons for yield trends observed in Xuzhou City, Jiangsu Province, over a 20-year period. There were eight treatments applied to both wheat and maize seasons: a control treatment (C); three inorganic fertilizers, that is, nitrogen (N), nitrogen and phosphorus (NP), and nitrogen, phosphorus and potassium (NPK); and addition of farmyard manure (FYM) to these four treatments, that is, M, MN, MNP, and MNPK. At the end of the experiment the MN, MNP, and MNPK treatments had the highest yields, about 7 t wheat ha^-1 and 7.5 t maize ha^-1, with each about 1 t ha^-1 more than the NPK treatments. Over 20 years with FYM soil organic matter increased by 80% compared to only 10% with NPK, which explained yield increases. However, from an environmental and agronomic perspective, manure application was not a superior strategy to NPK fertilizers. If manure was to be applied, though, it would be best applied to the wheat crop, which showed a better response than maize.  相似文献   

3.
Agronomic practices affect soil phosphorus(P) availability, P uptake by plants, and subsequently the efficiency of P use. A field experiment was carried out to investigate the effects of various agronomic practices(straw incorporation, paddy water management, nitrogen(N) fertilizer dose, manure application,and biochar addition) on soil P availability(e.g., soil total P(STP), soil available P(SAP), soil microbial biomass P(SMBP), and rice P uptake as well as P use efficiency(PUE)) over four cropping seasons in a rice-rice cropping system, in subtropical central China. Compared to the non-straw treatment(control,using full dose of chemical N fertilizer), straw incorporation increased SAP and SMBP by 9.3%–18.5% and 15.5%–35.4%, respectively;substituting half the chemical N fertilizer dose with pig manure and the biochar application increased STP, SAP, and SMBP by 10.5%–48.3%, 30.2%–236.0%, and 19.8%–72.4%,respectively, mainly owing to increased soil P and organic carbon inputs;adding a half dose of N and no N input(reduced N treatments) increased STP and SAP by 2.6%–7.5% and 19.8%–33.7%, respectively, due to decreased soil P outputs. Thus, soil P availability was greatly affected by soil P input and use. The continuous flooding water regime without straw addition significantly decreased SMBP by 11.4% compared to corresponding treatments under a mid-season drainage water regime. Total P uptake by rice grains and straws at the harvest stage increased under straw incorporation and under pig manure application, but decreased under the reduced N treatments and under biochar application at a rate of 48 t ha-1, compared to the control. Rice P uptake was significantly positively correlated with rice biomass, and both were positively correlated with N fertilizer application rates, SAP, SMBP, and STP. Phosphorus use efficiency generally increased under straw incorporation but decreased under the reduced N treatments and under the manure application(with excessive P input), compared to the control. These results showed that straw incorporation can be used to increase soil P availability and PUE while decreasing the use of chemical P fertilizers. When substituting chemical fertilizers with pig manure, excess P inputs should be avoided in order to reduce P accumulation in the soil as well as the environmental risks from non-point source pollution.  相似文献   

4.
水稻根际氮素状况及其利用   总被引:2,自引:0,他引:2  
A greenhouse pot experiment was conducted with hybrid rice(Oryza Sativa L.) in order to study N Status and utilization in the rhizosphere of rice,The experiment was composed of three treatments:without N,15NH4-N and 15NO3-N .Plant roots were separated from the soil by a nylon cloth,and 1 mm increments of soil,moving laterally away from the roots,were taken and analyzed for various N froms.The labelled N in the plants ranged from 67\51%to 69.24% of the total amount of N absorbed by the rice seedlings with the labelled fertilizer N treatments.This shows that the N in the Plants came mainly from the fertilizers.However,the N absorbed by the rice seedlings accounted for less than 35% of the total amount of the N depletion in the soil near the rice roots,indicating an important N loss in the rhizosphere of rice.The soil redox potential(all treatments)and the concentration of the labelled NO3-N(the labelled NH4-N treatment only) decreased as the distance from the rice roots increased in the rhizosphere of rice.In contrast,the concentration of the labelled NH4-N increased as the distance uincreased in the same soil zone.These results suggested that nifrification occurred in the soil around the rice roots.Therefore,the reason for the N loss in the rhizosphere of rice might be the NO3 movement into the reductive non-rhizosphere soil(submerged) where denitrification can take place.  相似文献   

5.
长期施肥对华北平原一种潮土有机氮组成的影响   总被引:8,自引:0,他引:8  
In order to illustrate the change of nitrogen (N) supply capacity after long-term application of manure and chemical fertilizer, as well as to properly manage soil fertility through fertilizer application under the soil-climatic conditions of the North China Plain, organic N forms were quantified in the topsoil with different manure and chemical fertilizer treatments in a 15-year fertilizer experiment in a Chinese calcareous alluvial soil. Soil total N (TN) and various organic N forms were significantly influenced by long-term application of chemical fertilizer and manure. TN, total hydrolysable N, acid-lnsoluble N, amino acid N and ammonium N in the soil increased significantly (P 〈 0.05) with increasing manure and fertilizer N rates, but were not influenced by increasing P rates. Also, application of manure or N fertilizer or P fertilizer did not significantly influence either the quantity of amino sugar N or its proportion of TN. Application of manure significantly increased (P 〈 0.05) hydrolysable unknown N, but adding N or P did not. In addition, application of manure or N fertilizer or P fertilizer did not significantly influence the proportions of different soil organic N forms.  相似文献   

6.
A long-term experiment set up in 1980 compared the effects of applying manures and chemical fertilizers on a paddy soil in the Taihu Lake region,China.Of the fourteen randomly distributed treatments consisting of different combinations of organic manure,inorganic nitrogen (N),phosphorus (P),and potassium (K),and rice straw,eight were selected for the present study in 2007.Application of organic manure plus straw significantly increased soil organic carbon (SOC) content of the topsoil (0-10 cm) compared to that of chemical fertilizers alone.The content of SOC was relatively stable in the 10-30 cm layer in the chemical fertilizer treatments and in the 20-40 cm layer in the manure treatments.The stable carbon isotope ratio (δ 13 C) ranged from 24‰ to 28‰ and increased gradually with depth.The content of SOC was significantly (P < 0.05) negatively correlated with δ 13 C.In the 0-20 cm layer,the δ 13 C value significantly decreased in the treatments of manure alone (M),manure and chemical N and P fertilizers (MNP),manure and chemical N,P,and K fertilizers (MNPK),manure,rice straw,and chemical N fertilizer (MRN),and chemical N fertilizer and rice straw (CNR),as compared with the no-fertilizer control.In the 30-50 cm layer,however,the ratio significantly increased in all the treatments except Treatment CNR.Mineralization of organic C peaked in the first 2-4 d of incubation and gradually leveled off thereafter over the first 3 weeks,being faster in the manure treatments than the chemical fertilizer treatments.The average rate of mineralization varied from 55.36 to 75.46 mL CO 2 kg-1 d-1 and that of stable mineralization from 10 to 20 mL CO 2 kg-1 d-1.In eight weeks of incubation,cumulative mineralization was always higher in the manure treatments than the chemical fertilizer treatments,being the highest in Treatment MRN.Combined humus in the soil was mainly (over 50%) composed of tightly combined fraction.The loosely combined humus and its ratio of humic acid (HA) to fulvic acid (FA) significantly increased with long-term application of organic manure and chemical fertilizers.It could be concluded that the cycle of organic C in the paddy soil ecosystem studied was stable over the long-term application of fertilizers and continued cultivation.  相似文献   

7.
中国南方红壤上作物产量和土壤性质对长期施肥的响应   总被引:23,自引:0,他引:23  
A 15-year fertilization experiment with different applications of inorganic N, P and K fertilizers and farmyard manure (M)was conducted to study the yield and soil responses to long-term fertilization at Qiyang, Hunan Province, China. Average grain yields of wheat and corn (1 672 and 5 111 kg ha-1, respectively)for the treatment NPKM were significantly higher than those (405 and 310 kg ha-1)of the unfertilized control and single inorganic fertilizer treatments. Compared with the corresponding initial values of the experiment, all treatments showed a yield decline of 9 to 111 kg ha-1 year-1 in wheat and 35 to 260 kg ha-1 year-1 in corn, respectively, and a significant pH decline of 0.07 to 0.12 pH year-1, except for the treatments PK and NPKM. After long-term fertilization, the soil organic C, soil available P, exchangeable Ca2+ and Mg2+ and available Cu2+ and Zn2+ contents were higher in the treatment NPKM than in the treatments applied with inorganic fertilizer only. Compared to the treatment NPK, the treatment NPKM, where manure partially replaced inorganic N, had a positive impact on arresting the decline of soil pH. This improved grain yields of wheat and corn, suggesting that application of NPK fertilizer in combination with farmyard manure is important to maintain soil fertility and buffering capacity in red soil.  相似文献   

8.
Winter wheat-maize rotations are dominant cropping systems on the North China Plain, where recently the use of organic manure with grain crops has almost disappeared. This could reduce soil fertility and crop productivity in the long run. A 20-year field experiment was conducted to 1) assess the effect of inorganic and organic nutrient sources on yield and yield trends of both winter wheat and maize, 2) monitor the changes in soil organic matter content under continuous wheat-maize cropping with different soil fertility management schemes, and 3) identify reasons for yield trends observed in Xuzhou City, Jiangsu Province, over a 20-year period. There were eight treatments applied to both wheat and maize seasons: a control treatment (C); three inorganic fertilizers, that is, nitrogen (N), nitrogen and phosphorus (NP), and nitrogen, phosphorus and potassium (NPK); and addition of farmyard manure (FYM) to these four treatments, that is, M, MN, MNP, and MNPK. At the end of the experiment the MN, MNP, and MNPK treatments had the highest yields, about 7 t wheat ha-1 and 7.5 t maize ha-1, with each about 1 t ha-1 more than the NPK treatments. Over 20 years with FYM soil organic matter increased by 80% compared to only 10% with NPK, which explained yield increases. However, from an environmental and agronomic perspective, manure application was not a superior strategy to NPK fertilizers. If manure was to be applied, though, it would be best applied to the wheat crop, which showed a better response than maize.  相似文献   

9.
A 12-year field experiment was conducted to investigate the effect of different tillage methods and fertil-ization systems on microbial biomass C,N and P of a gray fluvo-aguic soil in rice-based cropping system .Five fertilization treatments were designed under conventional tillae(CT) or on tillage(NT) system:no fertilizer(CK) ; chemical fertilizer only(CF) ; combining chemical fertilizer with pig manure(PM); combining chemical fertilizer with crop straw (CS) and fallow (F). The results showed that biomass C,N and P were enriched in the surface layer of no-tilled soil,whereas they distributed relatively evenly in the tilled soil,which might result from enrichment of crop resdue,organic manure and mineral fertilzer,and surficial developent of root systems under NT.Under the cultivation system NT had slightly greater biomass C,N and P at 0-5 cm depth ,significantly less biomass C,N and P at 5-15 cm depth ,less microbial biomass C,N and equivalent biomass P at 15-30 cm depth as compared to CT,indicating hat tillage was beneficial for the multiplication of organims in the plowed layer of soil.Under the fallow system,biomass C,N and P in the surface layer were significantly greater for NT than CT while their differences between the two tillage methods were neligible in the deeper layers.In the surface layer,biomass C,N and P in the soils amended with oranic manure combined with mineral fertilizers were significantly greater than those of the treatments only with mineral fertilizers and the control.Soils without fertilzer had the least biomass nutrient contents among the five fertilization treatments.Obviously,the long-term application of organic manure could maintain the higher activity of microorganisms in soils.The amounts of biomass C,N and P in the fallowed soils varied with the tillage methods;they were much greater under NT than under CT,especially in the surface layer,suggesting that the frequent plowing could decrease the content of organic matter in the surface layer of the fallowed soil.  相似文献   

10.
不同施肥管理对红壤性水稻土有机碳、氮形态的影响   总被引:4,自引:0,他引:4  
A long-term experiment beginning in 1981 in Jinxian County of Jiangxi Province, subtropical China, was conducted in a paddy field under a double rice cropping system with four different fertilization regimes, including 1) no fertilizer as control (CK), 2) balanced chemical N, P, and K fertilizers (NPK), 3) organic manure using milk vetch and pig manure in the early and late rice growing season, respectively (OM), and 4) balanced chemical fertilizers combined with organic manure (NPKM). Samples (0-17 cm) of the paddy field soil, which was derived from Quaternary red clay, were collected after the late rice harvest in November 2003 for determination of total organic carbon (TOC) and total nitrogen (TN) and fractions of organic C and N. Results showed that TOC and TN in the NPKM and OM treatments were significantly higher than those in other two treatments (CK and NPK). Application of organic manure with or without chemical fertilizers significantly increased the contents of all fractions of organic C and N, whereas chemical fertilizer application only increased the contents of occluded particulate organic C (oPOC) and amino acid N. In addition, application of organic manure significantly enhanced the proportions of free particulate organic carbon (fPOC) and oPOC in total C, and those of amino sugar N and amino acid N (P < 0.01) in total N. In contrast, chemical fertilizer application only increased the proportions of oPOC and amino acid N (P < 0.05). There were no significant differences in either contents or proportions of soil organic C and organic N fractions between the NPKM and OM treatments. These indicated that organic manure application with or without chemical fertilizers played the most significant role in enhancing soil organic C and N quantity and quality in the paddy field studied.  相似文献   

11.
采用田间小区试验研究了不同的断根和施肥措施对I-107杨树人工林根际养分、微生物数量及酶活性的影响。结果表明:相同处理的杨树林地根际土壤pH均低于非根际土壤,而有机质、速效氮、速效磷、速效钾、有效铜和有效锌的含量均高于非根际土壤;与其它处理相比,断根施肥处理的根际土和非根际土壤速效养分含量最高,差异达显著水平;与对照相比,断根施肥处理显著提高了林地土壤的脲酶、转化酶、过氧化氢酶、多酚氧化酶和过氧化物酶活性,而施肥未断根处理少量增加了此5种土壤酶活性,断根未施肥处理则降低了土壤酶的活性。各处理林地土壤微生物数量大小次序为:断根施肥>施肥未断根>断根未施肥>对照。由此可得出,施肥和断根措施相结合可有效改善根系土壤环境,提高林地土壤肥力。  相似文献   

12.
以云南省烟草农业科学研究院研和试验基地13年长期定位试验为平台,以化肥配施有机肥(CFM)、单施化肥(FM)和不施肥(CK,对照)3种处理土壤为研究材料,利用干筛法分离土壤团聚体,研究长期培肥对烤烟-小麦轮作红壤团聚体、有机质、氮含量、酶活性的影响及其相关性。结果表明:长期化肥配施有机肥有利于大团聚体的形成,2~1mm团聚体土壤的分配率显著高于单施化肥和对照;使耕层土壤有机质、各形态氮(全氮、碱解氮、硝态氮和铵态氮)及酶活性大幅度改善,并且,除硝态氮以外,各级团聚体土壤有机质及各形态氮含量变化趋势为CFM>CF>CK;化肥配施有机肥各级团聚体土壤蛋白酶、脲酶、蔗糖酶、脱氢酶活性明显高于单施化肥和对照,其中脲酶、蔗糖酶活性与土壤有机质和4种形态氮呈显著正相关,蛋白酶和脱氢酶与上述营养呈负相关,但不显著。化肥配施有机肥有利于增加土壤大团聚体的分配率,提高土壤有机质、全氮及碱解氮等的含量及酶活性,对烤烟、小麦生长意义重大。  相似文献   

13.
邓欧平  李翰  熊雷  邓良基  周伟  贾凡凡 《土壤》2018,50(1):86-92
本研究于2012—2014年在成都平原稻麦轮作区开展田间试验,分析秸秆、猪粪施用对小麦各生育期内根际及非根际酶活性的动态变化影响,为种养废弃物的合理施用提供科学依据。试验共设置不施肥对照、纯化肥、秸秆全量还田+纯化肥、秸秆全量还田+低量猪粪替代化肥、秸秆全量还田+高量猪粪替代化肥等5个处理。结果表明,同一处理下的根际土壤过氧化氢酶和蔗糖酶活性均显著强于非根际土壤(P0.05);猪粪还田处理能提高土壤的过氧化氢酶活性,秸秆和猪粪还田处理能提高土壤蔗糖酶的活性;从小麦的整个生育期来看,其根际及非根际土壤过氧化氢酶活性均呈减弱趋势;而根际土壤蔗糖酶活性在小麦生育期内存在较大波动,非根际蔗糖酶活性呈"单峰"变化。  相似文献   

14.
不同施肥处理对黄泥土微生物生物量碳氮和酶活性的影响   总被引:19,自引:4,他引:15  
路磊  李忠佩  车玉萍 《土壤》2006,38(3):309-314
通过室内培育实验,研究了不同施肥处理对黄泥土微生物生物量C、N和脲酶、酸性磷酸酶、蔗糖酶活性的影响。培养过程中,单施化肥处理土壤微生物生物量C、N均呈下降趋势,施用有机肥处理的土壤微生物量C前期升高至一定水平后或保持稳定、或呈下降趋势,而微生物生物量N总体均呈下降趋势;不同施肥处理的脲酶活性呈前期上升后期下降趋势,而酸性磷酸酶和蔗糖酶则单施化肥处理呈上升趋势、配施有机肥处理呈下降趋势。与对照处理相比,单施化肥处理显著降低土壤微生物生物量C、N,高量施用化肥处理还显著降低土壤脲酶活性,但对酸性磷酸酶和蔗糖酶活性的影响并不明显。秸秆施用可显著提高土壤微生物生物量C、N和酶活性,特别是高量施用秸秆的效果更明显。施用猪粪由于同时带入了大量的活性养分,对土壤微生物生物量C、 N和酶活性的影响尚难评价。在高度集约农业利用下,继续保持较高的化肥施用量并不利于土壤生物质量的维护和提高,而秸秆直接还田才是保持土壤健康状态的有效措施。  相似文献   

15.
为比较鸡粪有机肥与化肥以不同比例配施对杨树苗根际土壤环境的作用效果,通过盆栽试验,研究了N100(尿素提供100%的氮)、 M10N90(鸡粪和尿素分别提供10%和90%的氮)、 M30N70(鸡粪和尿素分别提供30%和70%的氮)和M50N50(鸡粪和尿素各提供50%的氮)等处理对一年生杨树苗根际土壤酶活性、 微生物量碳(SMBC)和微生物量氮(SMBN)的影响。结果表明, 同N100处理相比,M30N70处理的杨树苗根际土壤脲酶、 碱性磷酸酶、 过氧化氢酶和蔗糖酶活性分别提高14.41%~26.49%、 13.87%~27.93%、 12.07%~27.08%和29.17%~46.43%; 根际SMBC、 SMBN含量分别提高63.00%~76.62%、 40.01%~90.38%。在杨树苗的年生长过程中,根际土壤脲酶、 碱性磷酸酶、 过氧化氢酶和蔗糖酶活性均在施肥后120 d 最高; 而根际SMBC和SMBN含量分别在施肥后90 d和30 d达到最大值。随着杨树苗的生长发育,SMBN含量逐渐降低,而在落叶期有一定的回升。与M30N70处理相比,M10N90和M50N50处理对杨树苗根际土壤酶和微生物量碳、 氮的影响较小。综合分析认为,鸡粪有机肥与化肥以3∶7比例配施对杨树苗根际区域生态环境的改善效果最佳。  相似文献   

16.
长期施肥对红壤旱地土壤活性有机碳和酶活性的影响   总被引:18,自引:3,他引:15  
张继光  秦江涛  要文倩  周睿  张斌 《土壤》2010,42(3):364-371
以江西进贤长期肥料定位试验为平台,研究了红壤旱地不同施肥措施对土壤微生物生物量、活性有机C、C库管理指数以及土壤酶活性的影响。研究结果表明:与不施肥和单施化肥土壤相比,施有机肥处理土壤的pH、CEC、有机C、全N、全P、无机N、速效P、速效K及土壤微生物生物量均显著增加,土壤活性有机C和C库管理指数也较试前土壤和其他处理土壤明显提高,此外,土壤的转化酶、脱氢酶、脲酶和酸性磷酸酶活性也较其他处理显著增加。土壤微生物生物量、活性有机C以及4种土壤酶活性之间的相关关系显著,且它们均与土壤有机C、全N、全P、无机N、速效P等土壤养分呈显著正相关。因此,红壤旱地通过长期施用有机肥或与无机肥配施,不仅能显著提高土壤有机质的数量和质量,而且能增加土壤微生物生物量和酶活性,从而显著提高土壤肥力和土壤持续生产力。  相似文献   

17.
有机无机肥配施提高旱地麦田土壤养分有效性及酶活性   总被引:22,自引:5,他引:17  
【目的】有机无机肥配施可显著提高土壤微生物活性,改善土壤养分供应状况。深入理解不同氮肥用量配施有机肥下土壤的生物化学性状,为充分发挥肥料效益,实现冬小麦高产稳产提供科学施肥依据。【方法】以冬小麦为供试作物,在黄土高原南部半湿润易旱区连续三年进行了田间定位试验。采用裂区试验,设置5个氮肥用量 (N 0、75、150、225、300 kg/hm2),配施或不施有机肥 (30 t/hm2)。在冬小麦拔节期、抽穗期、灌浆期、成熟期,取0—20 cm土层样品,采用常规方法测定土壤养分和酶活性。在收获期,调查了冬小麦籽粒产量。【结果】1) 冬小麦产量以施氮量N 150 kg/hm2配施有机肥处理最高,且有机无机肥配施与单施化肥处理相比能够在减少19.1%的氮肥用量条件下,保证冬小麦产量稳产高产,此外在天气不理想的状况下,冬小麦的净收益也能保持在较高水平。2)在冬小麦的整个生育期,有机无机肥配施处理可显著提高0—20 cm土层土壤有机质、全氮、有效磷、速效钾、硝态氮含量以及土壤蔗糖酶、碱性磷酸酶和脲酶活性,与单施化肥处理相比分别增加18.2%、27.4%、149.3%、31.4%、27.6%、4.0%、4.7%、1.5%,但对过氧化氢酶活性无明显促进作用,且除了脲酶以施氮量N 300 kg/hm2配施有机肥的活性最高,其余指标均以施氮量N 150 kg/hm2配施有机肥处理效果最佳。3) 施氮量、有机肥、冬小麦生育期显著影响土壤蔗糖酶、碱性磷酸酶、过氧化氢酶和脲酶活性,施氮量和有机肥的交互效应显著影响碱性磷酸酶活性,施氮量和冬小麦生育期的交互效应显著影响土壤蔗糖酶、碱性磷酸酶和过氧化氢酶活性,有机肥和冬小麦生育期的交互效应显著影响土壤碱性磷酸酶和过氧化氢酶活性,施氮量、有机肥和冬小麦生育期三者的交互效应显著影响土壤蔗糖酶活性。4) 相关分析表明,土壤碱性磷酸酶与有机质间、脲酶与速效钾之间均未达显著相关水平,土壤蔗糖酶、碱性磷酸酶、过氧化氢酶和脲酶与有机质、全氮、有效磷、速效钾均呈显著或极显著正相关。【结论】土壤养分、酶活性和冬小麦产量之间密切相关,在施用有机肥30 t/hm2的基础上配施氮肥N 150 kg/hm2,有利于增强黄土高原南部半湿润易旱区冬小麦土壤生态系统的可持续性。  相似文献   

18.
羊粪有机肥与化肥配施对烤烟生长及土壤肥力特性的影响   总被引:1,自引:0,他引:1  
为探讨羊粪有机肥与化肥配施对烤烟(Nicotiana tabacum L.)生长和土壤肥力特性的影响,以烤烟品种中烟101为试验材料,设置不施加肥料为对照(CK),研究了等量施肥条件下羊粪有机肥与化肥不同配施比例(T0:100%无机肥N;T20:20%羊粪有机肥N+80%无机肥N;T40:40%羊粪有机肥N+60%无机肥N;T60:60%羊粪有机肥N+40%无机肥N;T80:80%羊粪有机肥N+20%无机肥N;T100:100%羊粪有机肥N)对烟株农艺性状、根系形态参数、叶片光合特性、土壤养分含量及土壤酶活性的影响。结果表明,T0和T20处理在烟株移栽后30 d土壤速效养分含量较高,能更好地促进移栽后0~30 d烟株的生长,但在烟株移栽后60 d土壤速效养分含量明显降低,烟株生长势减弱,且土壤中有机质含量和土壤蔗糖酶活性较低;T80和T100处理土壤有机质含量较高,但在烟株移栽后30 d时土壤蛋白酶和脲酶活性弱,土壤速效养分含量低,不利于移栽后0~30 d烟株的生长;T40和T60处理在烟株移栽后30 d土壤速效养分的供应略低于T0处理,但在移栽后60 d能够显著提高土壤蔗糖酶、蛋白酶和脲酶活性,增加土壤速效养分的供应,既能保障烟株移栽后0~30 d的生长势,也有利于烟株移栽后30~60 d根系发育和地上部分的生长。与T0处理相比,T40和T60处理在烟株移栽后60 d的最大叶面积提高了11.9%和10.7%,地上部干重提高了11.9%和9.6%,根干重提高了12.1%和26.8%,净光合速率提高了17.6%和16.2%。综合来看,配施40%和60%羊粪有机肥N更有利于满足烟叶生长和维持烟区土壤肥力,该研究为洛阳烟区合理利用羊粪有机肥提供了理论依据。  相似文献   

19.
长期不同施肥对黄泥田土壤酶活性和微生物的影响   总被引:7,自引:1,他引:6  
以农业部耕地保育福建观测实验站的长期肥料试验为平台,研究了长期不同施肥对黄泥田土壤酶活性和微生物的影响。结果表明:与不施肥(CK)相比,单施NPK(NPK)、NPK配施牛粪(NPKM)及NPK配施秸秆(NPKS)的土壤酶活性均有不同程度的提高,其中NPKM可显著提高转化酶活性,NPKS可显著提高脲酶活性。施肥均不同程度地提高了土壤细菌、真菌及放线菌的数量,尤其是放线菌数量,提高幅度均达到显著性水平;NPKS可显著提高土壤细菌数量,NPKM可显著提高土壤真菌数量。施肥均会对真菌群落产生重要影响;单施化肥对土壤细菌群落的影响不大,增施有机物料会对细菌群落产生明显影响;施用牛粪会对放线菌优势群落产生影响。以上结果表明,有机无机配施更有利于提高土壤酶活性和土壤微生物数量,提升土壤生物肥力。  相似文献   

20.
【目的】 河西绿洲灌溉农业区是我国主要的商品粮生产及玉米制种基地,结合当地耕作制度进行土壤有效培肥是提高农业生产效益和可持续发展的基础。本研究以河西灌漠土长期定位试验为依托,探讨了长期施用一种或者多种有机肥以及有机无机肥配合对土壤养分、土壤酶活性及产量的影响,为筛选出适于当地农业可持续发展的施肥模式提供理论依据。 【方法】 试验采用随机区组排列,除对照外,在施磷肥 (P2O5) 150 kg/hm2 的基础上,再设 12 个处理:单施用农家肥 120 t/hm2 (M);单施绿肥 45 t/hm2 (G);单施秸秆 10.5 t/hm2 (S);单施氮肥 375 kg/hm2 (N);农家肥 60 t/hm2 + 绿肥 22.5 t/hm2 (1/2MG);农家肥 60 t/hm2 + 秸秆 5.25 t/hm2 (1/2MS);农家肥 60 t/hm2 + 氮肥 187.5 kg/hm2 (1/2MN);绿肥 22.5 t/hm2 + 氮肥 187.5 kg/hm2 (1/2GN);秸秆 60 t/hm2 + 氮肥 187.5 kg/hm2 (1/2SN);农家肥 40 t/hm2 + 绿肥 15 t/hm2 + 氮肥 124.5 kg/hm2 (1/3MGN);农家肥 40 t/hm2 + 秸秆 3495 kg/hm2 + 氮肥 124.5 kg/hm2 (1/3MSN);农家肥 30 t/hm2 + 秸秆 2625 kg/hm2 + 绿肥 11.25 t/hm2 + 氮肥 94.5 kg/hm2 (1/4MGSN)。调查了耕层土壤有机质和速效养分含量变化以及几种主要土壤酶活力,采用主成分分析、聚类分析、经济效益分析综合比较了不同施肥方式对土壤质量与经济收益的影响。 【结果】 长期不施肥、单施氮肥(N)、氮肥配施绿肥或者秸秆均会造成土壤钾素匮缺,较 1988 年初测土土壤速效钾含量分别下降了 16.59%、39.37%、25.04%、23.31%;M、G、S 三种有机肥单施或与氮配施均能提高土壤碱解氮、土壤有效磷、土壤有效钾、土壤有机质(SOM)含量,不同施肥方式下,其含量大小总体表现为高量有机肥 > 减量有机肥 + 减量 N > N > CK;M、G、S、N 单施或 1/2MN、1/2GN、1/2SN 处理均能提高蔗糖酶、磷酸酶、脲酶、过氧化氢酶活性,以 G、1/2GN 处理对提高土壤蔗糖酶、脲酶的活性的效果最显著,M、G、MN、GN 处理对提高碱性磷酸酶活性的效果最显著;主成分得分进行聚类分析,不同处理培肥土壤质量效果由高到低分成四类,分别为一类高量有机肥 M、G、1/2MG > 二种有机肥与氮肥减量配施 1/2MN、1/3MSN、1/3MGN、1/2GN、1/2MS、1/4MSGN > 三类氮肥、秸秆、秸秆与氮肥 N、1/2SN、S > 四类不施肥(CK);各施肥方式均能提高作物产量,与不施肥(CK)相比,增产幅度为 12.21%~235.4%,肥料贡献率在 10.89%~70.18% 之间,单施肥增产总趋势为 N > G > M > S,减量配施肥增产总趋势为 1/2GN > 1/2MN>1/2MS,施肥方式以有机肥配施 N 对产量贡献最大;经济效益分析表明施 N 或有机肥与 N 配施对于提高净收益作用较大。 【结论】 通过主成分分析与聚类分析、经济效益与产量综合比较,农家肥、绿肥和秸秆长期单施成本高,产量和经济效益低,维持土壤养分和产量需要的用量大。因此,提倡适量有机肥与氮肥配施,达到提高作物产量,增加经济效益,保证土壤肥力可持续发展。   相似文献   

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