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1.
通过田间试验,研究了施用以菜粕堆肥、猪粪堆肥和中药渣堆肥制成的3种有机无机复混肥对辣椒产量、土壤矿质态氮和土壤微生物量碳、氮以及微生物多样性的影响。结果表明:1)各施肥处理辣椒果实产量为2451.1~3301.5kg/hm2,均显著高于对照(CK,1700.8 kg/hm2);3种原料堆制的有机无机复混肥的辣椒果实产量为2851.3~3301.5kg/hm2,显著高于单施化肥CF,增产率为16.3%~34.7%。2)与CF和CK处理比较,3种原料堆制的有机无机复混肥处理明显提高了土壤矿质态氮含量,改善了土壤供氮能力,增加了土壤微生物量C、N含量。3)对各处理土壤DNA条带采用邻接法分析(Eighbor Joining)表明,5个处理土壤样品共分为3大族群,CF与CK为一种族群,菜粕堆制的有机无机复混肥(RCC)为另一种族群,猪粪堆制的(PMC)和中药渣堆制的有机无机复混肥(CMC)又属另一种族群。说明施入外源有机物质(菜粕、猪粪与中药渣)可能改变土壤的细菌群落结构,而施入化肥对土壤的细菌群落结构影响较小。  相似文献   

2.
通过田间试验,研究了施用以菜粕堆肥、猪粪堆肥和中药渣堆肥的3种有机无机复混肥对辣椒产量、土壤矿质态氮和土壤微生物量碳、氮以及微生物多样性的影响。结果表明:1)各施肥处理辣椒果实产量为2451.1-3301.5 kg/hm^2,均显著高于对照(CK,1700.8 kg/hm^2);3种原料堆肥的有机无机复混肥的辣椒果实产量为2851.3-3301.5kg/hm^2,显著高于单施化肥CF,增产率为16.3%-34.7%。2)与CF和CK处理比较,3种原料堆肥的有机无机复混肥处理明显提高了土壤矿质态氮含量,改善了土壤供氮能力,增加了土壤微生物量C、N含量。3)对各处理土壤DNA条带采用邻接法分析(Neighbor joining)表明,5个处理土壤样品共分为3大族群,CF与CK为一种族群,菜粕堆肥的有机无机复混肥(RCC)为另一种族群,猪粪堆肥的(PMC)和中药渣堆肥的有机无机复混肥(CMC)又属另一种族群。说明施入外源有机物质(菜粕、猪粪与中药渣)可能改变土壤的细菌群落结构,而施入化肥对土壤的细菌群落结构影响较小。  相似文献   

3.
通过田间试验,研究了采用猪粪堆肥、中药渣堆肥和鸡粪堆肥为原料制成的有机无机复合肥与无机复合肥等氮量施入对油菜产量、氮素利用率、土壤供氮特征以及土壤微生物多样性的影响。结果表明:各施肥处理油菜籽产量均显著高于对照的油菜籽产量。与化肥处理比较,三种堆肥原料的有机无机复合肥的油菜籽产量显著高于化肥处理,较化肥增产12.7%~33.2%。各有机无机复合肥处理均能增加油菜单株有效角果数。三种有机无机复合肥处理均能显著促进油菜对氮素的吸收,从而提高了氮素利用率。与化肥处理和不施肥处理比较,三种堆肥原料的有机无机复合肥处理能够明显提高土壤有效态氮的含量,调节土壤氮素的释放速度。采用邻接法分析各处理土壤DNA条带表明:5个处理土壤样品的细菌群落共分为三大族群,化肥处理与对照处理为一种族群,中药渣处理为一种族群,猪粪处理和鸡粪处理属一种族群。说明施入外源有机物质(猪粪、鸡粪与中药渣)可能改变土壤的细菌群落结构,而施入化肥对土壤的细菌群落结构影响较小。  相似文献   

4.
采用15N示踪技术,选用水稻土和灰潮土在宜兴进行小麦盆栽试验,研究了稻草、猪粪及其堆肥与化肥配施对作物生长及氮素吸收的影响。结果表明,在水稻土和灰潮土上,不同有机物及其堆肥与化肥配施分别比单施化肥增产4.46%~24.82%和1.01%~20.53%,稻草堆肥和猪粪堆肥配施化肥处理籽粒产量分别高于稻草和猪粪直接与化肥配施处理。稻草和猪粪堆肥后更利于作物吸收氮素,增加植物体内15N累积。两种土壤上15N回收率表现为相同配比的堆肥处理未堆肥处理单施化肥处理。随着小麦生育期的推进,土壤微生物量氮和矿质态氮含量均呈下降趋势,稻草和猪粪处理的微生量氮含量始终高于稻草堆肥和猪粪堆肥处理。有机无机肥配施处理土壤矿质态氮在小麦生育前期低于单施化肥,成熟期则高于单施化肥。整个生育期中,稻草堆肥和猪粪堆肥处理土壤矿质态氮含量分别高于稻草和猪粪处理。因此,有机物堆肥后与化肥配施更有利于提高产量,促进作物对氮素的吸收利用。  相似文献   

5.
有机无机肥配施对酸性菜地土壤硝化作用的影响   总被引:5,自引:0,他引:5  
通过室内培养和田间试验, 研究了有机无机肥配施对酸性菜地土硝化作用的影响。培养试验条件为60%土壤最大持水量和25 ℃。 结果表明,土壤硝化作用模式为指数方程,延滞期10天。与纯化肥处理(NPK)相比,鲜猪粪配施无机肥(FPM+NPK)和猪粪堆肥配施无机肥(CPM+NPK)均能降低土壤硝化势和氨氧化潜势,猪粪堆肥配施无机肥还能增加土壤微生物量碳、 氮。鲜猪粪配施无机肥和猪粪堆肥配施无机肥处理在硝化培养和田间试验期间N2O释放量均没有差异,但硝化培养期间鲜猪粪配施无机肥的N2O释放量显著低于纯化肥处理,田间试验期间猪粪堆肥配施无机肥的N2O释放量显著低于纯化肥处理。培养试验结束后的土壤pH值与土壤硝化势间,以及硝化培养期间N2O累积释放量与土壤硝化势间均存在显著正相关关系。本研究表明, 有机无机肥配施显著影响土壤硝化作用以及硝化培养期间和田间N2O释放。  相似文献   

6.
在温室盆栽条件下,采用Biolog微平板技术,研究了玉米施用等养分量的无机肥、有机无机复混肥、生物复混肥后土壤微生物群落功能多样性及土壤酶活性的动态变化。结果表明,生物复混肥处理的微生物群落平均颜色变化率(AWCD)、微生物群落Shannon指数(H)、丰富度指数(S)和Shannon均匀度指数(E)均为最高;微生物群落主成分分析表明,不同施肥处理土壤微生物群落碳源利用特征有一定差异,PC1将生物复混肥与其他处理明显区分,生物复混肥处理分布在PC1的正方向,其他处理分布在PC1的负方向;起分异作用的主要碳源有糖类、羧酸类和氨基酸类;土壤蔗糖酶、脲酶活性均以生物复混肥处理最高,分别为72.74 mg glucose·g-1·(24 h)-1和1.15 mg NH3-N·g-1·(3 h)-1。研究表明,生物复混肥的施用比等养分量的有机无机复混肥处理能显著提高土壤微生物群落碳源利用率、微生物群落的丰富度和功能多样性,增强土壤蔗糖酶和脲酶活性。  相似文献   

7.
在高肥力土壤条件下,研究了施氮量对土壤无机氮分布和微生物量氮含量及小麦产量的影响。结果表明,小麦生长期间,施氮处理0100.cm土层硝态氮积累量显著大于不施氮处理;当施氮量大于150.kg/hm2时,随施氮量增加,0100.cm土层硝态氮积累量显著增加;随小麦生育进程推进,施氮处理上层土壤硝态氮下移趋势明显,至小麦成熟时,施氮1952~85.kg/hm2处理60100.cm土层硝态氮含量显著大于其它处理。小麦生长期间,0100.cm土层铵态氮积累量较为稳定,施氮处理间亦无显著差异。与不施氮肥相比,施氮提高小麦生长期间040.cm土层土壤微生物量氮含量;当施氮量小于240.kg/hm2时,随施氮量增加,土壤微生物量氮含量增加。小麦的氮肥利用率随施氮量增加而降低;施氮1051~95.kg/hm2,收获时小麦植株吸氮量、生物产量、子粒产量和子粒蛋白质含量提高;而施氮量大于240.kg/hm2时,小麦生育后期的氮素积累量降低,收获时植株吸氮量、生物产量和子粒蛋白质含量降低。说明本试验条件下,施氮1051~50.kg/hm2可满足当季小麦氮素吸收利用,获得较高的子粒产量和蛋白质含量。继续增加施氮量,土壤微生物量氮含量增加,但土壤中残留大量硝态氮,易淋溶损失。  相似文献   

8.
以保麦9号为试材,在氮磷钾用量一致的基础上,研究了有机无机氮配施比例对土壤有机质和养分含量、冬小麦产量和氮素利用率的影响。结果表明:施用无机氮和有机氮均能提高土壤有机质和养分含量,与对照相比,单施无机氮耕层土壤有机质增加1.7%,有机无机氮配施增加7.8%~11.2%,单施有机氮增加23.6%;土壤有效磷和速效钾变化趋势与有机质基本一致。施用无机氮和有机氮均可提高冬小麦的产量、蛋白质含量和氮肥利用率,以35%M和50%M处理最佳,小麦产量比对照增加2 292和2 419 kg/hm2,比单施无机氮增加656和783kg/hm2。相对于单施无机氮处理较高的小麦氮肥利用率(38.6%),35%M和50%M处理的氮素损失少,氮肥利用率高达47.9%和53.0%,高于单施化肥处理。说明在等氮量水平下,以35%和50%有机氮替代无机氮不但提高土壤有机质、养分含量、作物产量和氮肥利用率,还可减少氮素损失,可获得较高的经济和环境效益。  相似文献   

9.
有机肥料氮替代部分无机氮对水稻产量的影响及替代率研究   总被引:12,自引:6,他引:12  
通过田间试验,研究了不同氮用量下有机肥料氮替代部分无机氮对水稻产量、氮肥利用率和土壤矿质态氮的影响,试图探索出有机肥料氮替代无机氮的最适替代率,并对有机肥与化肥配施的经济效益进行评价。结果表明:1)有机肥与化肥配施处理(8381~9810 kg/hm2)能获得与单施化肥处理(8381~10124 kg/hm2)更高或持平的产量;2)与单施化肥相比,氮用量在N 240 kg/hm2内,有机肥料氮替代无机肥料氮的最适替代率为10%~20%(相当于施用1500~3000 kg/hm2商品有机肥),此时水稻产量、氮肥利用率和经济效益都达到最佳水平;3)与单施化肥相比,氮用量在N 240 kg/hm2以内并且有机肥料氮占氮总量的10%~20%时可以获得较为平稳的氮素供应过程,改善了土壤供氮能力。上述结果可为研制有机无机复合肥提供理论基础。  相似文献   

10.
在温室盆栽条件下,采用Biolog微平板法和氯仿熏蒸浸提法,研究了玉米施用等养分量的无机肥、有机无机复混肥和生物复混肥后土壤微生物群落功能多样性及土壤微生物量的变化。结果表明:生物复混肥处理的土壤微生物平均颜色变化率(AWCD)、微生物群落Shannon指数(H)和微生物群落丰富度指数(S)均最高;施用生物复混肥可明显提高土壤微生物对碳源的利用率,尤其是多酚化合物类和糖类;不同处理土壤微生物碳源利用特征有一定差异,生物复混肥在第1主成分上的得分值为正值,其他各处理在第1主成分上的得分值基本上为负值,起分异作用的主要碳源是糖类和羧酸类。在玉米生长期间各处理土壤微生物量大致呈先升高后逐渐平稳的趋势,且土壤微生物量碳、氮、磷的含量均以生物复混肥处理最高,最高值分别为333.21mg.kg 1、53.02 mg.kg 1和22.20 mg.kg 1。研究表明,生物复混肥的施用比等养分量的有机无机复混肥处理能显著提高土壤微生物群落碳源利用率、微生物群落丰富度和功能多样性,显著增加土壤微生物量碳、氮、磷的含量,有利于维持良好的土壤微生态环境。  相似文献   

11.

Purpose

The effects of commercial compost fertilizer application on trace gas emissions are not well understood due to a lack of field experiments. The objective of this study was to evaluate the emissions of methane (CH4) and nitrous oxide (N2O) along with grain yield from a rice paddy as affected by different organic–inorganic mixed fertilizer (OIMF) treatments.

Materials and methods

A field experiment was initiated in 2006 with chemical compound fertilizer (CF) and three OIMF amendments including pig manure compost (PMC), Chinese medicine residue compost (CMC), and rapeseed cake compost (RCC), from a rice paddy in southeast China. The emissions of CH4 and N2O were simultaneously measured using the static opaque chamber method over the entire rice growing season in 2011. Soil biotic parameters were measured in soil collected after the rice was harvested in 2011.

Results and discussion

Relative to the control, the OIMF treatments significantly increased CH4 emissions by 56–99 %, mainly due to exogenous organic substrate input, whereas no difference was observed in the CF treatment. The N2O emissions were stimulated substantially by an average of 40 % due to nitrogen fertilization compared with the control. Consecutive OIMF application tended to increase the grain yield, making it marginally higher than that of the CF treatment (7 %, P?=?0.06). Compared with the control, the CF treatment slightly decreased the global warming potential and greenhouse gas (GHG) intensity, while they were remarkably increased in the OIMF treatments. Over the 5-year period of 2006–2011, the annual soil carbon sequestration rate was estimated to be 1.19 t C ha?1 year?1 for the control and 1.73–1.98 t C ha?1 year?1 for the fertilized treatments.

Conclusions

Our results suggest that despite the beneficial effects of increasing both grain yield and soil organic matter, OIMF application such as PMC, CMC, and RCC may be responsible for increased global warming due mainly to the stimulated CH4 emissions. This effect should be thus taken into account when balancing agricultural production and GHG mitigation.  相似文献   

12.
包膜复合肥对夏玉米产量、氮肥利用率与土壤速效氮的影响   总被引:15,自引:9,他引:15  
以郑单958为材料,比较研究了复合肥(CF)与包膜复合肥(CCF)对华北平原夏玉米产量、氮肥利用率及土壤速效氮与土壤氮素表观盈亏的影响。结果表明,1)玉米产量随施氮量增大而增大,施N.180.kg/hm2时,CCF处理高于CF处理,施N.90.kg/hm2时表现相反;2)与CF处理比较,CCF处理施N.180.kg/hm2时,氮肥利用率高5.3个百分点,施N.90.kg/hm2时低2.4个百分点;3)土壤速效氮含量一般随施氮量增大而提高,各时期表土层CCF处理较CF处理高,中、下土层表现相反。大喇叭口期之前,CF处理中、下土层土壤速效氮含量高于上土层(020.cm或040cm),而CCF180处理060.cm土层高于60120.cm土层;4)不施氮,各生育阶段均出现土壤氮素表观亏缺,且吐丝后亏缺量占总亏缺量近80%;土壤氮素表观亏缺量随施氮量增大而降低,两种肥料表现一致;同等施氮量下CCF处理亏缺量较CF处理低。包膜复合肥氮素释放较平稳,对土壤速效氮向下运移的控制较好,有利于减少氮素潜在的淋洗损失。综合考虑产量、氮肥利用与氮素损失等因素,包膜复合肥用量N.180.kg/hm2是吴桥试区夏玉米季较为理想的选择。  相似文献   

13.
We investigated whether the long‐term application of compost from agricultural waste improved soil physical structure, fertility and soil organic matter (SOM) storage. In 2006, we began a long‐term field experiment based on a rice–wheat rotation cropping system, having a control without fertilizer (NF) and three treatments: chemical fertilizers (CF), pig manure compost (PMC) and a prilled mixture of PMC and inorganic fertilizers (OICF). Following the harvest of wheat in 2010, the mean‐weight diameter (MWD) of water‐stable aggregates and the concentration of C and N in bulk soil (0–20 cm; <2 mm fraction) were significantly greater (P < 0.05) in PMC and NF plots than in CF or OICF plots. Pig manure compost significantly increased the proportion of >5‐mm aggregates, whereas CF significantly increased the proportion of 0.45‐ to 1‐mm aggregates. The C and N contents of all density fractions were greater in PMC than in other treatments with levels decreasing in the following order: free particulate organic matter (fPOM) >occluded particulate organic matter (oPOM) > mineral‐combined SOM (mineral–SOM). Solid‐state 13C CPMAS NMR spectra showed that alkyl C/O‐alkyl C ratios and aromatic component levels of SOM were smaller in PMC and OICF plots than in CF plots, suggesting that SOM in PMC and OICF plots was less degraded than that in CF plots. Nevertheless, yields of wheat in PMC and NF plots were smaller than those in CF and OICF plots, indicating that conditions for producing large grain yields did not maintain soil fertility.  相似文献   

14.
Fungal communities may have different response to fertilization under different conditions. Therefore, it is necessary to reveal the effects of fertilizations on fungal communities considering temporal heterogeneity at different crop stages. To address this, soil samples were collected across eight typical plant growth stages of a wheat-rice rotation system under four fertilization regimes: no nitrogen fertilizer (NNF), chemical fertilizer (CF), organic-inorganic mixed fertilizer (OIMF), and organic fertilizer (OF). Soil temperature and moisture that co-vary with plant growth stages were the strongest predictors of fungal community compositions; meanwhile, fertilization regimes also played important roles. Shannon index and the relative abundance of Ascomycota were consistently increased when compared OF treatment with CF and OIMF treatments, while CF treatment had a higher relative abundance of Zygomycota when compared with NNF and OF treatments. For the functional guilds, application of urea-nitrogen fertilizers (CF and OIMF treatments) significantly decreased the relative abundance of saprotrophs and symbiotrophs, while soil treated with OF had less relative abundance of pathotrophs when compared to inorganic fertilizers. Our study provided a detailed picture of how fungal community composition responded to fertilization regimes across different plant growth stages.  相似文献   

15.
硝化抑制剂影响小麦产量、N2O与NH3排放的研究   总被引:5,自引:1,他引:4  
孙海军  闵炬  施卫明  祝介贵 《土壤》2017,49(5):876-881
通过田间小区试验研究不同施氮水平下,施用硝化抑制剂CP对小麦产量、氮素利用率、氧化亚氮(N_2O)排放与氨(NH_3)挥发的综合影响规律。结果表明:在施氮水平为140 kg/hm2与180 kg/hm2时,施用CP促使小麦产量分别显著增加17.8%和15.4%,在同一施氮水平下,施用CP促进小麦氮素利用率提高11.3%~25.2%。施用硝化抑制剂CP可以降低麦季(特别是基肥与穗肥施用时期)土壤N_2O的排放速率,并显著减少39.3%~53.7%的累积N_2O排放量。但是在两个施氮水平下,施用CP导致麦季NH_3挥发量增加1.46~1.75倍,而且此效应主要发生于基肥与穗肥观测期。本研究说明:在麦季施用硝化抑制剂CP可以提高氮素利用率,从而提高小麦产量,并且能减少N_2O排放,但同时会导致一定程度的NH_3挥发增加,需加以控制。  相似文献   

16.
  【目的】  化肥及畜禽粪便的不合理施用不仅影响作物增产,还严重威胁土壤健康和环境安全。探究不同发酵方式猪粪有机肥及有机肥替代化肥的比例对夏玉米氮素吸收及土壤碳、氮含量的影响,为规模化养猪场粪便快速处理,及制定其与化肥的适宜配比提供理论依据。  【方法】  以‘先玉335’为供试材料,在中国农业大学丰宁动物试验基地进行田间试验。设置5个处理:不施肥 (CK),100%化肥氮 (CF),100%自然堆肥猪粪氮 (PM),100%好氧发酵猪粪氮 (PC),50%好氧发酵猪粪氮 + 50%化肥氮 (FM)。分析猪粪不同发酵方式及有机氮替代比例对夏玉米氮素吸收及土壤碳氮的影响。  【结果】  在等氮条件下,与CF处理相比,FM处理产量、穗粒数、千粒重均以FM处理最高,其中FM处理显著增产13.2%,PC、PM处理与CF处理差异均不显著。FM处理玉米氮素积累量最高,两年平均为304.6 kg/hm2,较CF处理氮素累积量显著提高15.5%;PC、PM处理与CF处理氮素积累量差异不显著。与CF 处理相比,FM处理的氮素当季回收率、氮素农学利用率和偏生产力两年平均分别显著提高85.9%、59.5%和13.2% (P < 0.05),PC、PM处理与CF 处理之间无显著差异。在玉米拔节期和抽穗期,FM处理0—40 cm土壤无机氮含量均最高,与 CF 无显著差异;在成熟期,FM处理土壤无机氮含量较CF处理显著增加41.8%,而PC和PM处理与CF处理无显著差异。此外,施用有机肥可不同程度地增加土壤有机碳和全氮含量,与CF处理相比,PC和FM处理使有机碳含量分别显著提高13.3%和9.8%;FM处理土壤全氮含量显著提高33.4%。  【结论】  在等氮条件下与单施化肥相比,50%好氧发酵猪粪氮 + 50%化肥氮配施不仅显著提高了夏玉米产量和氮素累积吸收量,还提升了土壤全氮和有机碳含量以及0—40 cm土层土壤无机氮含量。单独施用自然堆肥、好氧发酵猪粪及化肥在产量和氮素积累方面没有显著差异,但可增加土壤全氮和有机碳含量,有利于土壤培肥,而施用好氧发酵猪粪的效果又优于施用自然堆肥。  相似文献   

17.
Experiments were started in May 1998 at two sites to measure various crop responses to a mixed municipal solid waste-biosolids cocompost (named Nutri Plus) and examine the fate of certain metals associated with Nutri Plus compost. There were six treatments: Check, 50, 100, and 200 T compost/ha, NPKS (75 kg nitrogen (N) /ha, 20 kg phosphorus (P)/ha, 45 kg potassium (K) and 18 kg sulphur (S)/ha), PK (20 kg P, 45 kg K/ha), and three crops: canola (Brassica rapa cv. ‘Hysyn 110’), wheat (Triticum aestivum L. cv. ‘Roblin’) and barley (Hordeum vulgare L. cv. ‘Lacombe’). Each treatment was replicated four times and was in a complete randomized block design. In the compost treatments, 20 kg P and 45 kg K were applied due to low concentration of these two nutrients in the compost. Soil and plant samples were analyzed for nutrient content such as N, P and K. In addition, plant samples and soil samples after the compost application were also analyzed for elemental content of As, B, Cr, Co, Cu, Zn Se, Mo, Cd, Hg and Pb. The research results show that the compost slightly increased heavy metal concentrations in the soil but did not cause any phytoxicity to crops. Yield from 100 and 200 T/ha application was higher with the compost than with NPKS treatment. However, the yield of the 50 T/ha application was similar to that of NPKS treatment. Comparing the two sites, the compost apparently was more beneficial at Site 1 than at Site 2 in the year of application. This is likely due to the lower indigenous soil fertility and poor soil physical properties at Site 1. The N content in cereal grains was similar among the compost treatments but lower than the Check and NPKS treatments due to the diluting effect of higher yield. The oil content in canola seed was similar among all treatments. The results suggest that Nutri Plus compost applications generated positive yield responses in all three crops. Crop yield increased as the application rate increased. Heavy metal loading was not an immediate problem with the compost application, although it will limit total compost application over time to the same soil  相似文献   

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