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1.
Soil organic matter (SOM) is an important index of soil quality because of its relationship with crop yield. The application of organic matter to soil is a significant method for increasing SOM. Different organic materials have varying effects in increasing SOM. This study investigates the effects of combining different sources of organic matter (i.e., compost, leguminous green manure, and peat) with a chemical nitrogen (N) fertilizer on the growth and N accumulation in corn and rice plants. This study examines seven treatments, including a no-fertilization check and a conventional chemical fertilizer treatment. Shoots of corn and rice were sampled at the tasseling (panicle initiation for rice) and maturity stages. The biomass yield was measured and the total N was analyzed. At the maturity stage, the soil samples were collected to determine the chemical properties. The results showed that a small percentage of the N in the compost and peat, after their application, was available to the crop during the growth season; the production of biomass and N absorption among rice and corn plants was minimal compared to that treated with chemical N fertilizer. The application of compost and peat resulted in SOM accumulation, particularly with peat. However, the application of compost combined with chemical fertilizer not only produced sufficient nutrients for crop growth but also resulted in an accumulation of SOM, which is vital for enhancing the soil quality. Most of the N in green manure (GM) was mineralized shortly after application, causing excessive growth of rice and corn plants during the early stage, but reducing their reproductive growth and grain yield.  相似文献   

2.
Organic farming systems receive organic amendments to maintain soil fertility and supply nutrients for plant growth. This study investigated the effect of organic fertilizers (no amendment as control, compost, and manure), and their interaction with cover crops (millet, buckwheat, and black turtle bean) on soil enzyme activities, N transformation rates, and functional gene abundances under an organic production system. Organic N fertilizers had a stronger effect than cover crop type on soil function and functional gene abundances. Soil enzyme activities were increased by both compost and manure, but there were few differences between these treatments. Nitrification potential, nitrite oxidation potential, and denitrification potential were significantly higher in manure-treated than in control and compost-treated soils, indicating application of manure had a higher N loss potential than compost application in this organic farming system. Organic N fertilizers significantly increased the abundance of some genes involved in N mineralization, ammonification, and nitrification (sub, ureC, bacterial amoA and nxrB). The activity of ammonia-oxidizing bacteria and archaea were both increased by organic N fertilizers, and their activities were higher in manure-treated than in compost-treated soils. Overall, the abundance of functional genes was significantly correlated with their corresponding enzyme activity. However, functional gene abundance was less important than soil chemical and microbiological properties in explaining the variation in the corresponding enzyme activity.  相似文献   

3.
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   

4.
The uniformity, low cost and ease of application associated with inorganic fertilizers have diminished the use of organic nutrient sources. Concern for food safety, the environment and the need to dispose of animal and municipal wastes have focused attention on organic sources of N such as animal-derived amendments, green manures, and crop rotations. Managing organic N sources to provide sufficient N for crop growth requires knowledge of C and N decomposition over several years, particularly where manure and compost are applied. We report a comparison of compost and chemical fertilizer, use of a corn-corn-soybean-wheat rotation compared to continuous corn and the use of cover crops. Nitrogen (150 d) and C incubations (317 d) were conducted to determine the effect of cropping system and nutrient management on: N mineralization potential (NMP), the mineralizable organic N pool (No), the mean residence time (MRT) of No, C mineralization (Cmin), and soil organic carbon (SOC) pool sizes and fluxes. Compost applications over 6 y increased the resistant pool of C by 30% and the slow pool of C by 10%. The compost treatment contained 14% greater soil organic C than the fertilizer management. Nitrogen was limiting on all compost treatments with the exception of first year corn following wheat fallow and clover cover crop. The clover cover crop and wheat-fallow increased inorganic N in both nutrient managements. We recommend that growers adjust their N fertilizer recommendation to reflect the quantity and timing of N mineralized from organic N sources and the N immobilization that can be associated with compost or other residue applications. Proper management of nutrients from compost, cover crops and rotations can maintain soil fertility and increase C sequestration.  相似文献   

5.
以吉林省农业科学院黑土有机培肥定位试验基地为平台,研究了不同种类有机肥(堆腐肥、鸡粪、牛粪和猪粪)施用对土壤及不同粒级团聚体中有机碳和腐殖质组成的影响。结果表明:与不施肥(CK)和单施化肥(NPK)相比,有机肥配施化肥显著(P0.05)增加了土壤有机碳、胡敏酸碳(HAC)和胡敏素碳(HUC)含量;同时,有机肥配施化肥也增加了不同粒级团聚体中有机碳和腐殖质碳含量,其中施用堆腐肥显著增加了各粒级团聚体中有机碳、HAC和HUC含量。不同种类有机肥相比,施用堆腐肥处理的土壤有机碳、HAC和HUC含量均高于其他有机肥处理,并与牛粪处理之间差异显著;施用堆腐肥和牛粪后,0.25mm粒级团聚体有机碳含量高于其他有机肥处理,且2~0.25mm粒级团聚体有机碳含量显著高于鸡粪处理;从不同粒级团聚体中腐殖质组分的分布来看,施用堆腐肥后,2~0.25mm粒级团聚体中HAC和HUC含量显著高于猪粪处理,而0.25~0.053,0.053mm粒级团聚体中HAC含量显著低于鸡粪处理。上述结果说明,有机肥配施化肥提高了土壤团聚体中有机碳和腐殖质碳含量,但不同有机肥的效应不同。  相似文献   

6.
不同有机肥与化肥配施对氮素利用率和土壤肥力的影响   总被引:15,自引:7,他引:8  
【目的】不同类型畜禽粪便有机肥在成分和性质上存在明显差异,本文研究了华北地区主要有机肥与化肥以不同比例配施后,对作物氮素吸收利用及土壤养分的影响,以期为本地区有机肥的科学利用提供理论依据和数据支撑。【方法】在华北平原冬小麦–夏玉米种植区进行田间试验。以推荐养分施用量 (每季作物N 225 kg/hm2) 为基础,设置了1个常规单施化肥处理 (CF),12个鸡粪、猪粪和牛粪氮分别与化肥氮配比处理 (有机肥氮素占比25%、50%、75%、100%),化肥及3种有机肥的加倍单施处理,同时设1个不施肥处理为对照,共18个处理。分析了作物的氮素吸收量、氮素利用效率,测定了0—20、20—40 cm土层土壤氮、磷、钾含量。【结果】常规施肥量下,单施鸡粪、猪粪、牛粪处理的氮素收获指数 (NHI) 均与化肥处理相当,平均为79.06%;单施牛粪处理的氮素生理利用率 (NPE) 为64.42 kg/kg,显著高于化肥处理;而单施鸡粪、猪粪处理的NPE与化肥处理相当,平均为55.14 kg/kg。与常规施肥量相比,加倍施用鸡粪、猪粪和化肥处理的显著降低NHI值和NPE值,而加倍牛粪处理的NHI与NPE值没有降低。牛粪、鸡粪、猪粪与化肥配施的处理间NHI与NPE值均未表现出显著性差异,且与单施化肥的处理相当。常规施氮量下,单施猪粪、鸡粪处理的氮素偏生产力 (PFP) 和回收率 (NRE) 接近,均值为分别39.67 kg/kg和41.85%,达到了单施化肥处理的水平,而牛粪处理的氮素PFP以及NRE仅为29.08 kg/kg和15.6%,显著低于化肥、鸡粪和猪粪处理。与常规施氮量相比,加倍施用牛粪、鸡粪、猪粪和化肥处理的氮素的PFP值平均降低了49.1%,氮肥NRE值平均降低了23.2%。牛粪、鸡粪、猪粪与化肥各配施比例处理的氮素PFP和NRE值均达到了单施化肥的水平。与单施化肥相比,单施有机肥以及有机无机配施没有明显提高土壤全氮含量,但显著提高有效磷和速效钾含量,单施鸡粪、猪粪处理土壤表层有效磷含量分别是单施化肥处理的5.82和7.06倍。【结论】推荐施肥量下,鸡粪或猪粪单独施用或配施少量化肥氮,牛粪配施75%左右的化肥氮可实现与化肥相当的氮素利用效率,同时提升土壤肥力。在实际生产中应根据有机肥特性调节有机肥与化肥配施比例,实现有机肥的科学利用。  相似文献   

7.
通过长期肥料定位试验,对不同施肥处理下潮土全氮和碱解氮含量演变特征及其与氮素投入水平的关系进行研究。结果表明,不施氮肥处理,土壤全氮和碱解氮含量基本保持平衡或者缓慢增加;长期施用化学氮肥处理,土壤全氮和碱解氮含量均有所增加;施用有机肥和秸秆还田处理,土壤全氮和碱解氮含量均显著提高。单施化学氮肥处理每投入氮素1 kg/hm2,土壤全氮含量增加0.017 mg/kg;而氮磷钾化肥配施有机肥和氮磷钾化肥并秸秆还田处理每投入氮素1 kg/hm2,土壤全氮含量分别增加0.049和0.035 mg/kg。施氮磷钾处理每投入氮素1 kg/hm2,土壤碱解氮含量增加0.001 mg/kg;而化肥配施有机肥或玉米秸秆处理每投入氮素1 kg/hm2,土壤碱解氮含量均增加0.004和0.004 mg/kg。总的来说,施用化学氮肥、有机肥配施化肥及秸秆还田处理增加氮素投入量均可以提高土壤全氮及碱解氮含量,且有机肥配施化肥及秸秆还田处理优于单施化肥。综上所述,增施有机肥及秸秆还田对于提升土壤肥力及实现农业可持续发展具有深远意义。  相似文献   

8.
采用田间定位试验,研究了冬闲期种植绿肥和稻草全量还田对江汉平原单季稻田土壤理化性质和水稻产量的影响。试验设置稻草不还田水稻不施肥(CK)、稻草不还田单施化肥(NPK)、稻草原位焚烧还田+化肥(RSB+NPK)、稻草全量还田+化肥(RSM+NPK)、稻草不还田单独种植绿肥+化肥(GM+NPK)以及稻草全量还田+种植绿肥+化肥(RSM+GM+NPK),共6个处理。结果表明,与不还田的CK及NPK处理相比,RSM+NPK、GM+NPK和RSM+GM+NPK处理模式均有利于改善土壤物理性状和提高耕层土壤养分及有机质含量,其中多以RSM+GM+NPK处理增幅最大。RSB+NPK处理较CK处理显著提高土壤pH值、土壤有效磷和速效钾含量,但对土壤有机质、全氮和碱解氮含量影响不大。GM+NPK处理与RSM+GM+NPK处理稻谷产量近似,分别较NPK处理显著增加6.9%~11.7%和6.0%~13.4%,3年平均增加9.1%和8.7%,而RSM+NPK和RSB+NPK处理的稻谷产量3年里与NPK处理无显著差异。综合考虑,在江汉平原单季稻作条件下,以冬闲期稻草条带覆盖还田与种植绿肥配合还田为宜,可以改善土壤理化性质,显著提高水稻产量。  相似文献   

9.
《Journal of plant nutrition》2013,36(12):2343-2364
Abstract

A two‐year study (1997–1999) was conducted on a sandy clay loam (Typic Paleudult) at the experimental farm of the Universiti Putra to determine the effects of application of crop residues on changes of some soil properties in a maize (Zea mays L.)–groundnut (Arachis hypogaea) crop rotation system. Five crops of a rotation of sweet corn–groundnut–sweet corn–groundnut–sweet corn were sown with three treatments: recommended inorganic fertilizer [nitrogen (N), phosphorus (P), and potassium (K)] with crop residue (T1), recommended inorganic fertilizer without crop residues (T2) or one‐half of the recommended inorganic fertilizer with crop residues combined with 10 t ha?1 of chicken manure (T3). Soil organic carbon (OC), soil water content and soil bulk density were not significantly changed. Application of crop residues for two years increased cation exchange capacity (CEC) whereas supplementing crop residues with CM had significantly increased soil pH of the topsoil. Phosphorous in manure treatment had moved down the soil profile, which might cause eutriphication of under ground water, particularly during the rainy season. Based on this work, incorporation of crop residues could be a beneficial practice for improving the fertility of acid soils.  相似文献   

10.
不同动物排泄物氮的作物利用及对N2O排放的贡献   总被引:4,自引:1,他引:3  
李晓 《土壤》2008,40(4):548-553
本文用同一种土壤,在不同水分管理模式下,种植两种作物,以不施 N 作为对照研究了人粪、猪粪、奶牛粪和鸡粪作肥料与尿素等 N 量施用,对小米和水稻籽粒产量、N 素利用率的影响以及对N20排放量的贡献.尿素与4种粪肥对小米和水稻产量、N素利用率和N20排放的贡献并不相同.水稻产量以施用尿素最高,施用鸡粪产量效应最低,与不施N处理接近,但旱作小米以施用人粪最高,其次为尿素和鸡粪处理.水稻和小米对N素的回收率均以尿索为最高,其次为人粪、鸡粪和牛粪,猪粪最低.尿素和4种粪肥处理,在小米播种和水稻移栽后的第2天均出现了N20的排放高峰.由于两种作物水分管理不同,N20排放高峰持续时间不同,水稻长于小米.在水稻烤田前后的干湿交替过程中,不同肥料处理均出现了N20的第2次排放高峰,除牛粪和猪粪处理外,N20 峰值的持续时间长达10天左右.N20排放总量在旱作小米生长季以人粪处理最高,尿素,鸡粪和猪粪处理接近,牛粪处理最低.水稻生长季N20排放量以尿素处理为最高,依次为人粪、鸡粪处理和猪粪处理,牛粪处理最低,与不施N处理接近.  相似文献   

11.
砂姜黑土长期定位培肥技术研究   总被引:6,自引:1,他引:6  
根据20年定位试验资料,阐述了有机肥与化肥配施、单施有机肥、单施化肥及不施肥等五种施肥方式对作物产量和土壤肥力的影响。两季作物的总产量以有机肥与化肥配施处理最高,较单施有机肥和单施化肥分别增产18.4%~36.1%和7.4%~23.4%。有机肥与化肥配合,能显著增加土壤有机质、全氮、全磷、有效氮、磷的含量。每kg氮素增产粮食数也以等量的有机肥与化肥配施的处理最多。有机肥加化肥是砂姜黑土培肥改良较理想的施肥方式,但同时必须重视钾肥的施用。  相似文献   

12.
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   

13.
长期施肥对农田土壤氮素关键转化过程的影响   总被引:32,自引:0,他引:32  
王敬  程谊  蔡祖聪  张金波 《土壤学报》2016,53(2):292-304
当前,如何合理施肥、提高作物产量、维持土壤肥力、并兼顾生态环境效应是农业研究的主要挑战之一。本文综述了长期施肥对农田土壤氮素关键转化过程的影响,主要从土壤氮转化过程的初级转化速率角度综述肥料(有机肥和化学氮肥)对土壤氮素关键转化过程的影响。土壤氮素矿化-同化循环是自然界氮循环过程中两个至关重要的环节,是决定土壤供氮能力的重要因素。总体而言,长期施用氮肥,尤其是有机肥能显著提高初级矿化-同化周转速率;长期施肥可以刺激自养硝化作用,且有机肥的刺激作用更明显;施用化学氮肥和有机肥均能提高反硝化速率,且有机肥的刺激作用高于化学氮肥。有机肥一直被提倡和实践用来改善土壤肥力和提高土壤固碳能力,无论是单施有机肥还是有机-无机配施,均能有效地减轻硝酸盐污染,改善土壤肥力并提高作物产量。但是有机肥的施用并不是多多益善,有机肥过多施用也会增加氮损失的风险。因此,本文综述了长期施肥对农田土壤氮素关键转化过程初级转化速率的影响,讨论了各个氮转化过程之间的联系,以期增强人们对长期施肥措施影响农田土壤氮素循环的理解,并为合理施用氮肥、提高氮肥利用率、减少与氮相关的环境污染提供理论依据。  相似文献   

14.
  【目的】  研究植烟土壤中与养分循环相关的真菌群落结构和功能类群对不同有机肥施用的响应,为指导烤烟合理施肥、减缓连作障碍和土传病害提供科学依据。  【方法】  选择烤烟品种‘云烟87’为供试作物,以当地农业废弃物为原料堆制有机肥,设置6个处理:单施化肥 (CK)、鸡粪有机肥 (T1)、芝麻饼肥 (T2)、菜籽饼肥 (T3)、牛粪 (T4)、稻草 (T5),所有处理氮磷钾总量和比例用化肥调整为一致。随机区组田间试验,每个处理3次重复。采用高通量测序结合FUNGuild分析方法,测定分析烟草不同生长阶段各处理的土壤真菌群落结构、多样性、组成及群落功能。  【结果】  结合UPGMA聚类分析和主坐标分析 (PCoA) 发现,相比T2和T3处理,T5、T4和T1处理在烟草旺长期对土壤真菌群落结构的影响较大;成熟期T2与T3处理对土壤真菌群落结构的影响逐渐增大,且超过T4和T5处理。相比CK,T2、T3及T5处理中腐生营养型真菌比例分别显著提高了262.0%、64.0%和198.0%。其中T5处理土壤中腐生营养型真菌所占比例超过病理营养型真菌,成为其主要优势菌群;T1、T2及T4处理的土壤共生营养型真菌分别显著增加了80.0%、320.0%和85.71%。T1、T2和T4处理分别提高了土壤中植物病原菌Monographella (408.98%)、Microidium (93.63%)、Gibberella (559.22%) 的相对丰度。  【结论】  相比单施化肥处理,有机肥会导致土壤真菌群落结构发生变化,且不同有机肥的影响程度和时期均不同,其主要是增加了土壤腐生营养型真菌的比例,更有利于土壤生态系统的稳定和健康。5种供试有机肥处理中,稻草配施化肥最有利于降低长期烟稻轮作的土传病害风险,提高土壤肥力,鸡粪和菜籽饼次之;芝麻饼和牛粪在提高腐生营养型和共生营养型真菌比例的同时,也会增加烟稻轮作体系中水稻赤霉病及烟草根腐病风险。  相似文献   

15.
施肥结构对冷浸田土壤肥力及水稻生长的影响   总被引:3,自引:0,他引:3  
冷浸田因长期受冷泉水浸渍,土体封闭,难以通气与氧化,土壤溶液Eh下降,有效养分低,水稻产量低。本研究通过田间小区试验和动态取样与室内测定,探求了单质化肥、稳定性肥、复合肥配施生鸡粪和熟鸡粪等施肥方式对冷浸田土壤肥力及水稻生长的影响。结果表明:与单质化肥处理比较,复合肥与熟鸡粪配施处理土壤松结态腐殖质占重组腐殖质的比例提高10.8%,紧结态腐殖质占重组腐殖质的比例降低15.5%,土壤有机质和活性有机质含量分别提高8.9%和4.0%,土壤阳离子交换量提高10.2%,早稻土壤细菌数和微生物活性分别提高390.0%和13.0%;同时土壤磷酸铝盐和磷酸钙盐含量分别提高40.0%和28.0%,且磷酸铝盐和磷酸钙盐占无机磷总量的比例提高,闭蓄态磷占无机磷总量的比例降低,促使土壤中难溶性磷向易溶性磷转化,提高土壤有效磷含量;最终早稻磷、钾吸收量分别提高14.0%和127.0%,早、晚稻产量分别增加11.0%和8.0%。由此得出,有机无机平衡施肥是适合于冷浸田土壤培肥、水稻增产的施肥方式。  相似文献   

16.
The aim of this investigation was to prepare and evaluate organic manures (vermicompost, compost and FYM) and mineral fertilizers on crop productivity and changes in soil organic carbon (SOC) and fertility under a four-year-old maize-wheat cropping system. The results demonstrated that yields and nutrient uptake by crops increased significantly in plots receiving manures and mineral fertilizers either alone or in combination than unfertilized control. Application of manures and fertilizers also enhanced SOC, mineral N, Olsen-P and ammonium acetate-extractable K (NH4OAc-K) after both the crops. Surface soil maintained greater build-up in SOC, mineral N, Olsen-P and NH4OAc-K than sub-surface soil. Plots amended with manures at 5 t ha?1 and 50% recommended dose of fertilizer (RDF) had pronounced impact on improving SOC and fertility after both the crops indicating that integrated use of manures and mineral fertilizers could be followed to improve and maintain soil fertility, increase crop productivity under intensive cropping system.  相似文献   

17.
To improve nutrition intake of humans, it is recommended that fruits and vegetables constitute a major portion of diets. An improvement in the mineral nutrient contents of fruits and vegetables is needed to offset apparent declines in the elements in these foods. This research addressed the enrichment of cabbage (Brassica oleracea var. capitata L.) through the selection of nutrient-rich cultivars and soil fertility practices. Conventional fertilizers, organic fertilizers, and compost were evaluated with modern F1 hybrids in field experiments. Crop production was greater with the chemical or organic fertilizers than with the compost. Mineral nutrient composition varied among cultivars but not with fertility practices, suggesting that cultivar selection could lead to production of nutrient-rich cabbage. Neither the mass of heads or days to maturation of crops affected nutrient composition.  相似文献   

18.
在广州市蔬菜集约化种植区连续进行了6茬菜心试验,探讨有机肥施用模式[施无机肥(CK)、无机肥配施国产生物有机肥(BM)、无机肥配施腐殖酸(HA)、无机肥配合淋施复合芽孢杆菌剂(BSP)、无机肥配施腐殖酸并淋施复合芽孢杆菌剂(HA+BSP)、无机肥配施水沤腐熟鸡粪并淋施复合芽孢杆菌剂(CM+BSP)、无机肥配施复合芽孢杆菌剂堆沤腐熟鸡粪(BSPCM)]对蔬菜产量、土壤化学性质及微生物的影响。结果表明,不同茬别菜心产量差别较大。连续6茬试验中,CM+BSP处理菜心产量均为最高且显著高于CK处理,BSPCM处理菜心产量仅次于CM+BSP处理。BM、CM+BSP、BSPCM处理能提高土壤pH,降低连作土壤的酸化风险。随着种植茬数的增加,CM+BSP处理土壤细菌、真菌和微生物总数持续增加,显著高于原始土壤和其他施肥处理,BSPCM处理次之。CK处理土壤中细菌、真菌及微生物总量均比原始土壤下降。在连作菜地蔬菜生产中,在施用无机肥基础上配施适量水沤腐熟鸡粪,并在蔬菜生长过程中淋施复合芽孢杆菌剂,不但可提高蔬菜产量,而且具有培肥、活化和改良土壤生物质量的作用,有利于减轻蔬菜连作障碍,实现集约化蔬菜种植的可持续发展。  相似文献   

19.
The effects of different types of organic fertilizers on the chemical and enzymatic properties of an Oxisol were studied after being fertilized for four consecutive years (26 crops) in a greenhouse under intensive cultivation of vegetables. Seven treatments, consisting of five types of organic fertilizer treatments, one "sequential application" (SA) treatment, and a chemical fertilizer treated plot were compared. The organic fertilizers used were dairy cattle dung compost (DCDC), hog dung compost (HDC), chicken dung compost (CDC), pea residue compost (PRC) and soybean meal (SBM). After 4 years of cultivation, the soils were analyzed for their chemical properties and enzymatic activities. The microbial carbon (C) and nitrogen (N), basal respiration and nitrification rate were also measured. The results showed that the SBM significantly lowered the soil pH, and that the HDC and DCDC raised the soil pH. The SBM and CDC resulted in the lowest soil electrical conductivity. The SBM had no significant effect on soil organic C and total N contents when compared with the CF plot. However, the DCDC resulted in the highest contents of soil organic C and total N. The organic fertilizers applied did not significantly affect the soil available copper, zinc, cadmium, lead and nickel. The effects of the different organic fertilizers on soil enzymatic activities depended on the types of organic fertilizers applied. The SBM and CDC often resulted in a lower microbial C (or N) and respiration rate, while in contrast DCDC and PRC resulted in high measurements. Most of the measured soil enzymatic activities in the SBM treatment, except for acid phosphatase, were the lowest. Differing contents of different heavy metals in the organic fertilizers resulted in different Mehlich III extractable heavy metal contents in the soils. From the point of view of the soil chemical and enzymatic properties, SBM is not an appropriate organic fertilizer for continuous application to an Oxisol.  相似文献   

20.
不同有机肥对黄泥田土壤培肥效果及土壤酶活性的影响   总被引:36,自引:5,他引:31  
【目的】低产黄泥田在南方稻区广泛分布,其障碍因素是土壤熟化度低,施用有机肥料是改良黄泥田的重要措施。本文通过田间试验研究化肥和不同有机肥对低产黄泥田的培肥效果以及土壤碳、土壤氮、土壤磷转化的相关酶活性的变化规律,为低产黄泥田培肥改良提供理论依据和技术支撑。【方法】试验地位于湖北省京山县,种植模式为双季稻,田间试验中设6个处理, 分别为 (1)不施肥(CK),(2)单施化肥(NPK),(3)化肥+绿肥(NPKG),(4)化肥+猪粪(NPKM),(5)化肥+秸秆(NPKS),(6)化肥+秸秆+腐熟菌剂(NPKSD),化肥用量相同,配施有机肥处理施用的有机碳量相当。水稻收获后取耕层土壤样品,测定不同处理土壤养分和土壤酶活性指标,了解土壤养分和土壤酶活性的变化特征;采用典型相关分析方法,分析土壤养分和土壤酶两组变量之间的相关关系,研究不同有机肥对低产黄泥田的培肥效果。【结果】有机肥能够提高土壤碱解氮、速效磷、速效钾含量,明显提高早稻和晚稻的产量。有机肥对土壤酶活性有很大影响,配施有机肥不同程度地提高了-葡萄糖苷酶、 -葡萄糖苷酶、 -纤维二糖苷酶、 -木糖苷酶活性;过氧化物酶和脲酶没有明显差异;磷酸酶、乙酰氨基葡萄糖苷酶、酚氧化酶活性有所降低。土壤酶活性是评价施肥对土壤肥力影响的重要生物指标,土壤养分和土壤酶活性典型相关分析结果显示,二者显著相关,可以用于评估黄泥田土壤肥力变化的酶主要有-葡萄糖苷酶、 -木糖苷酶、 -葡萄糖苷酶、 -纤维二糖苷酶。典型变量排序结果表明,有机肥的培肥效果秸秆>猪粪>绿肥。【结论】低产黄泥田增施有机肥可以显著提高水稻产量和土壤速效养分含量,施用不同有机肥9种土壤酶活性响应不同,其中-葡萄糖苷酶、-木糖苷酶、-葡萄糖苷酶、-纤维二糖苷酶活性可以用于表征低产黄泥田的肥力变化,不同有机肥的培肥效果为秸秆>猪粪>绿肥。  相似文献   

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