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1.
Strategies to encourage better use of nitrogen in animal manures   总被引:4,自引:0,他引:4  
Abstract. Research conducted in the MAFF Nitrate Programme has been used to formulate new and improved guidelines on the efficient use of manure nitrogen (N). In order to reduce nitrate leaching losses, manures containing large amounts of available N (i.e. slurries and poultry manures) should not be applied to free-draining soils in the period from autumn to early winter. Also, for efficient nutrient utilization manure application rates should be consistent with agronomic requirements (up to 250 kg total N ha−1 yr−1). Existing farm machinery was shown to be capable of applying manures evenly to grassland and arable stubbles, but required an accurate estimate of application rate and the careful matching of spreading widths. To provide growers with detailed guidance on the fertilizer N replacement value of manures the computer-based decision support system MANNER (MANure Nitrogen Evaluation Routine) has been developed. The much improved understanding of manure N losses and availability has been summarized in a series of 'Managing Livestock Manures' booklets, the MAFF Fertilizer Recommendation booklet and the Codes of Good Agricultural Practice.  相似文献   

2.
MANNER‐NPK (MANure Nutrient Evaluation Routine) is a decision support tool for quantifying manure (and other organic material) crop available nutrient supply. The user‐friendly design of an earlier version of MANNER was retained, but in response to user and stakeholder feedback, additional functionality was included to underpin new and revised nitrogen (N) transformation/loss modules (covering ammonia volatilization, nitrate leaching and nitrous oxide/di‐nitrogen emissions, and organic N mineralization) and also to estimate manure phosphorus (as P2O5), potassium (as K2O), sulphur (as SO3) and magnesium (as MgO) supply. Notably, MANNER‐NPK provides N availability estimates for following crops through the mineralization of organic N. Validation of the crop available N supply estimates was undertaken by comparing predicted values with data from more than 200 field experimental measurements. For cattle, pig and poultry manures, there was good agreement (< 0.001) between predicted and measured fertilizer N replacement values, indicating that MANNER‐NPK provides robust estimates of manure crop available N supply and N losses to the wider environment.  相似文献   

3.
Abstract. Measures to reduce ammonia (NH3) emissions by incorporating livestock manures into the soil may increase the potential for nitrate (NO3) leaching. The Manure Evaluation Routine (MANNER) model estimates the amount of N available to crops following livestock manure applications after calculating losses due to NH3 volatilization and NO3 leaching. The main objective of this study was to use the MANNER model to quantify the impact on NO3 leaching of introducing measures to reduce NH3 emissions, following application of livestock manures. The data produced were also used to make preliminary estimates of the likely effect of selected NH3 abatement techniques on the potential for nitrous oxide (N2O) emissions. At typical UK rates of application, the potential for increased NO3 leaching following either injection of slurry or rapid incorporation of solid manures was greatest for broiler/turkey manure (22–58 kg N ha–1) and least for straw‐based cattle manure (6–10 kg N ha–1). The results suggest that in order to avoid substantially increasing the potential for NO3 leaching as a consequence of NH3 abatement, livestock manures should not be applied by low NH3 emission techniques prior to autumn‐sown crops in the UK. Instead, low‐emission applications should be made from October onwards to grassland and where possible, late autumn‐sown combinable crops or to arable land which will be planted in the spring. However, in several areas of England and Wales there is currently insufficient land planted to spring crops on which to incorporate the livestock manures produced in those areas.  相似文献   

4.
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   

5.
Abstract. This paper reviews information from the literature and case studies to investigate whether productivity in organic systems is restricted by the supply of available N during the major phases of crop growth. Organic systems have the potential to supply adequate amounts of available N to meet crop demand through the incorporation of leys, N rich cash crop residues and uncomposted manures. However, this is seldom achieved because leys are only incorporated once every few years and organically produced crop residues and manures tend to have low N contents and slow mineralization rates. N availability could be improved by delaying ley incorporation until spring, applying uncomposted manures at the start of spring growth, transferring some manure applications from the ley phase to arable crops, preventing cover crops from reaching a wide C:N ratio and better matching crop type with the dynamics of N availability.  相似文献   

6.
不同种类有机肥碳、 氮矿化特性研究   总被引:14,自引:2,他引:12  
本文采用室内培养法研究了陕西关中地区日光温室栽培生产中9个不同有机肥的碳、氮矿化特性。结果表明:不同有机肥碳、氮的矿化量和矿化率(矿化量占总有机碳或氮的比例)的动态变化存在明显差异,其中碳矿化率在22.24%~87.16%之间,变异系数达90.30 %;氮矿化率在29.07%~84.87%之间,变异系数达67.37 %;不同类型有机肥相比,鸡粪平均的碳、氮矿化累积量及矿化率显著高于猪粪和牛粪;猪粪与牛粪平均的碳、氮矿化累积量及矿化率无显著差异。同一种类有机肥,培养期间其碳、氮矿化累积量及矿化率也存在明显差异。供试有机肥碳、氮的矿化量与有机肥全氮含量均呈线性关系,表明有机肥氮含量是影响矿化量的主导因子。  相似文献   

7.
京郊畜禽粪肥资源现状及其替代化肥潜力分析   总被引:11,自引:5,他引:11  
随着都市型规模化养殖业快速发展,畜禽粪尿废物大量排放因缺乏足够面积土地消纳所带来的环境压力很大,而粪尿中的氮磷钾养分与化肥一样对作物同等重要,如何合理利用这些废物资源决定了都市化农业的可持续发展。该文针对京郊养殖业和农用地面积现状,结合调研、收集畜禽养分排泄系数和农田养分需求等参数,估算京郊固液粪便养分资源现状及其替代化肥的潜力。结果表明:京郊畜禽固液粪便中N、P、K养分量分别为58.7×103、21.3×103、29.8×103 t,其中固体粪便N、P、K养分分别为43.1×103、20.3×103和19.7×103 t,京郊畜禽固液粪便可分别满足农田N、P、K养分需求量的99.3%、185.2%、62.7%。大部分区县粪肥中P养分产生量超过作物P需求量,粮田秸秆还田可带入的N、P、K养分分别为11.0×103、1.6×103和15.0×103 t,情景分析表明在秸秆还田条件下,按照磷素平衡原则估算本地区所能消纳的粪肥所带入N、P和K养分数量分别为18.3×103、9.9×103和10.3×103 t,同时需要补充N、K化肥分别为29.8×103和22.2×103 t,其余粪肥则需经过堆肥化处理并输往外地。经过堆肥处理,固体粪肥可提供的N、P、K养分分别下降了23%、11%和12%,外输固体粪肥堆肥可进一步减少农田氮磷负荷以及可能的环境风险。  相似文献   

8.
Animal slurry can be separated into solid and liquid manure fractions to facilitate the transport of nutrients from livestock farms. In Denmark, untreated slurry is normally applied in spring whereas the solid fraction may be applied in autumn, causing increased risk of nitrate and phosphorus (P) leaching. We studied the leaching of nitrate and P in lysimeters with winter wheat crops (Triticum aestivum L.) after autumn incorporation versus spring surface application of solid manure fractions, and we compared also spring applications of mineral N fertilizer and pig slurry. Leaching was compared on a loamy sand and a sandy loam soil. The leaching experiment lasted for 2 yr, and the whole experiment was replicated twice. Nitrate leaching was generally low (19–34 kg N/ha) after spring applications of mineral fertilizer and manures. Nitrate leaching increased significantly after autumn application of the solid manures, and the extra nitrate leached was equivalent to 23–35% of total manure N and corresponded to the ammonium content of the manures. After spring application of solid manures and pig slurry, only a slight rise in N leaching was observed during the following autumn/winter (<5% of total manure N). Total P leaching was 40–165 g P/ha/yr, and the application of solid manure in autumn did not increase P leaching. The nitrogen fertilizer replacement value of solid manure N was similar after autumn and spring application (17–32% of total N). We conclude that from an environmental perspective, solid manure fractions should not be applied to winter wheat on sandy and sandy loam soils under humid North European conditions.  相似文献   

9.
Abstract. The MAFF Nitrate Programme has provided policy makers and the agricultural industry with a much improved understanding of soil nitrogen cycling, and the cost-effectiveness of a range of nitrate reduction strategies. This understanding has been disseminated as improved economically-based advice on fertilizer N inputs to arable and grass crops, and information on the N value of livestock manures as affected by timing and method of application. In addition, strategies for reducing nitrate losses have been developed, including the use of over-winter cover crops, the management of cultivations and crop residues, and the conversion of arable land to low-input grassland.
A wide variety of information dissemination methods have been used, including face-to-face discussions, demonstrations, articles in the farming press, booklets aimed at farmers, technical information for advisers and consultants, recommendation reference books and computer-based fertilizer recommendation systems.  相似文献   

10.
Abstract. Field experiments were carried out to evaluate the relative efficacy of organic manures in improving the productivity and pest tolerance of rice growing in a lateritic soil. The effects of three commercial manures: processed city waste (PCW), vermicompost (VC) and oil cake pellets (OCP), were assessed in comparison to farmyard manure (FYM) and inorganic fertilizer all at the same total N applied. Of the organic manures tested, FYM produced the maximum straw and grain yields. Differences in yield among the organic manure treatments were mainly attributed to variation in the amounts of available N, P, K and micronutrients. Effect of manures on soil physical condition was not studied. The uptake of N, P and K by rice plants with FYM was significantly greater than all other commercial manures and inorganic fertilizer. The tolerance of rice plants to attack by pathogens and pests, measured in terms of grain yield was highest in the treatment with FYM. Among the commercial manures PCW showed the greatest promise and emerged as a potential alternative to FYM.  相似文献   

11.
Abstract

The rate and timing of manure application when used as nitrogen (N) fertilizer depend on N‐releasing capacity (mineralization) of manures. A soil incubation study was undertaken to establish relative potential rates of mineralization of three organic manures to estimate the value of manure as N fertilizer. Surface soil samples of 0–15 cm were collected and amended with cattle manure (CM), sheep manure (SM), and poultry manure (PM) at a rate equivalent to 200 mg N kg?1 soil. Soil without any amendment was used as a check (control). Nitrogen‐release potential of organic manures was determined by measuring changes in total mineral N [ammonium‐N+nitrate‐N (NH4 +–N+NO3 ?–N)], NH4 +–N, and accumulation of NO3 ?–N periodically over 120 days. Results indicated that the control soil (without any amendment) released a maximum of 33 mg N kg?1soil at day 90, a fourfold increase (significant) over initial concentration, indicating that soil had substantial potential for mineralization. Soil with CM, SM, and PM released a maximum of 50, 40, and 52 mg N kg?1 soil, respectively. Addition of organic manures (i.e., CM, SM, and PM) increased net N released by 42, 25, and 43% over the control (average). No significant differences were observed among manures. Net mineralization of organic N was observed for all manures, and the net rates varied between 0.01 and 0.74 mg N kg?1 soil day?1. Net N released, as percent of organic N added, was 9, 10, and 8% for CM, SM, and PM. Four phases of mineralization were observed; initial rapid release phase in 10–20 days followed by slow phase in 30–40 days, a maximum mineralization in 55–90 days, and finally a declined phase in 120 days. Accumulation of NO3 ?–N was 13.2, 10.6, and 14.6 mg kg?1 soil relative to 7.4 mg NO3 ?–N kg?1 in the control soil, indicating that manures accumulated NO3 ?–N almost double than the control. The proportion of total mineral N to NO3 ?–N revealed that a total of 44–61% of mineral N is converted into NO3 ?–N, indicating that nitrifiers were unable to completely oxidize the available NH4 +. The net rates of mineralization were highest during the initial 10–20 days, showing that application of manures 1–2 months before sowing generally practiced in the field may cause a substantial loss of mineralized N. The rates of mineralization and nitrification in the present study indicated that release of inorganic N from the organic pool of manures was very low; therefore, manures have a low N fertilizer effect in our conditions.  相似文献   

12.
考虑种养平衡的黄淮海小麦-玉米模式下畜禽承载量估算   总被引:1,自引:1,他引:0  
黄淮海地区作为中国种植业与养殖业优势区,随着国家对农作物秸秆和畜禽粪便所带来农村环境问题的日益重视,研究该区域"以种定养"、实现种养业废弃物资源化利用、践行绿色发展理念显得尤为重要。以区域种植业实际生产情况为基础,确定典型种植模式下可施用畜禽粪便类有机肥量,经推导计算后确定区域畜禽养殖种类与数量。该文选取河北、河南和山东为黄淮海地区典型代表,在保障粮食产量和满足农田环境风险评估的基础上,研究小麦-玉米生产模式中,畜禽粪便类有机肥每年可施用量,经推导得到高温好氧堆肥处理前的畜禽粪污资源量,进而计算得到每年可承载的不同种类畜禽养殖量。这样既可满足种植业生产的肥料需求,也能缓解养殖业粪污带来的环境压力。研究结果表明:黄淮海地区小麦-玉米生产模式中,每公顷农田每年可利用6头奶牛或18头肉牛或47~51头生猪或731~789只蛋鸡或8 062~8 705只肉鸡粪便N量。在实际生产中,土壤肥力和土壤微生物等多因素影响有机肥可施用量,不同种类畜禽的农田承载量还需进一步优化。该研究为促进黄淮海地区种养结合提供一定的理论基础。  相似文献   

13.
To ensure high yield and quality in organic vegetable production, crops often require additional fertilizer applied during the season. Due to the risk of contamination of edible plant products from slurry, plant‐based fertilizers may be used as an alternative. The purpose of our work was to develop mobile green manures with specific high nutrient concentrations (e.g., nitrogen [N], sulfur [S], and phosphorus [P]) that are released quickly after soil incorporation and that are easy to handle during storage and application. To distinguish from traditional green manures that are grown to improve soil fertility, the term “mobile green manures” is used for green‐manure crops that are harvested in one field and then moved as a whole and used as fertilizer in other fields. To further investigate mobile‐green‐manure crops for use as efficient fertilizers, pot and field experiments were conducted with cauliflower (Brassica oleracea botrytis) and kale (Brassica oleracea sabellica) supplied with organic matter consisting of a wide range of plant species with varying nutrient concentrations. Further, field experiments were conducted with leek (Allium porrum) and celery (Apium graveolens dulce) supplied with increasing amounts of organic matter consisting of fresh, ensiled, or dried green manures. Results show that garden sorrel (Rumex acetosa), dyer's woad (Isatis tinctoria), and fodder radish (Raphanus sativus) harvested with a high leaf‐to‐stem ratio resulted in high P concentration, and cruciferous crops in high S concentration. Dyer's woad, salad burnet (Sanguisorba minor), and stinging nettle (Urtica dioica) showed high boron (B) concentration, whereas species such as dandelion (Taraxacum officinale), chicory (Cichorium intybus), and garden sorrel showed high potassium (K) concentration. Green manures with high P and S concentrations increased the nutrient uptake and yield of pot‐grown cauliflower and kale. Field experiments showed that the production of cauliflower and kale decreased when the carbon‐to‐nitrogen (C : N) ratio of applied green manure increased. In kale, for example, application of 160 kg N ha–1 in early harvested lucerne (Medicago sativa) with a C : N ratio of 10 resulted in the highest kale production whereas application of an equal amount of N in late harvested lucerne with a C : N ratio of 20 produced 34% less. Differences in vegetable production were not due to the amount of N applied, but to the N availability. Field experiments with fresh, ensiled, or dry green manure applied to leek and celery showed that the C : N ratio has to be low to get a fast response. Further, these field experiments demonstrate the importance of green manures, which can be stored and are easy to handle during transport, crop application, and soil incorporation. It is concluded that it is possible to produce green manures with high concentrations of S, P, K, and B, and low C : N ratios and that these properties have a great impact on the value of the green manure for vegetable production.  相似文献   

14.
泛种养结合视角下北京市养殖业土地承载力评估   总被引:3,自引:2,他引:1  
种养结合是中国未来农业绿色发展的重要方向。其中,对畜禽粪污的土地承载力的准确估算是关键。针对北京市畜禽粪污消纳的土地没有充分利用及其氮磷需求取值不够准确的问题,该研究根据畜禽养殖数据计算了2018年北京畜禽养殖粪污产生量和氮磷养分资源量,以粮地、菜地、园地、部分林地、草地及未利用土地6种地类作为畜禽粪污的消纳场所,利用统计年鉴和ArcGIS估算了6种类型的土地资源量,根据文献综合分析了各地类单位面积的氮磷养分需求量,进而计算了北京市域内畜禽养殖业的土地承载力。结果表明:2018年北京市畜禽养殖总量为453万头猪当量,畜禽粪污产生总量为380.1万t,氮磷养分资源量分别为2.61万及0.53万t。在有机肥全部替代化肥的情况下,仅以耕地(粮地、菜地)作为畜禽粪污的消纳场所,则全市种植业土地能够承载的最大养殖量为675万头猪当量;若以6种土地类型作为畜禽粪污的消纳场所,则为1 089万头猪当量,是仅以耕地作为消纳场所的1.61倍。若有机肥50%替代化肥,仅以耕地为畜禽粪污消纳场所,土地承载力为337.6万头猪当量,则2018年的养殖规模已经超过耕地承载力。若以6种土地作为消纳场所,其土地承载力为544.5万头猪当量,与现养殖规模相比还有20.1%的养殖潜力。因此,在环境保护的前提下促进养殖业的发展,一是要扩大有机肥对化肥的替代比例,二是要将更多的可作为畜禽粪污消纳的土地类型加以充分利用。  相似文献   

15.
Abstract. Emissions of N2O were measured after application of NH4NO3 fertilizer and incorporation of winter wheat and rye green manures in two field experiments in southeast England. Incorporation of green manure alone resulted in temporary immobilization of soil N, small N2O emissions and also low availability of N for the following crop. Emissions were increased after application of inorganic fertilizer, and were further increased from integrated management treatments whereby green manure residues were incorporated after fertilizer application. The highest emission was from the incorporated winter wheat green manure plus fertilizer treatment, with 1.5 kg N2O-N ha−1 (0.6% of N applied) being emitted over the first 55 days after incorporation. This high emission was attributed to the supply of C in the residues providing the energy for denitrification in the presence of large amounts of mineral N and the creation of anaerobic microsites during microbial respiration.  相似文献   

16.
有机肥氮素矿化及影响因素研究进展   总被引:7,自引:1,他引:7  
本文综述了有机肥氮素矿化和影响因素的研究进展。有机肥氮素矿化的研究方法主要有室内培养法和田间原位培养法。非淋洗通气培养法和原状土柱培养法虽不破坏土壤结构,但可能低估有机氮的矿化潜力;间歇淋洗通气培养法可模拟植物吸收不断移除矿质氮,适合大批样品的快速测定,但可能高估有机氮的矿化潜力。田间原位培养法包括聚乙烯袋培养法、顶盖埋管培养法和离子交换树脂法。聚乙烯袋培养法目前使用最广泛,但具有不透水、破坏土壤结构、矿质氮损失等缺点,顶盖埋管培养法虽可透水且不易被损坏,但可引起矿化氮流失。离子交换树脂芯法在不破坏土壤原状的条件下进行培养,虽费时、费力,但对土壤温度、湿度、通气状况反应灵敏,并可消除矿质氮累积的影响。影响有机肥氮素矿化的因素主要包括有机肥特性、温度、水分、土壤质地、施肥等因素。关于畜禽粪便的种类、熟化程度、C/N比、碳氮化合物组成等影响有机肥的矿化量和矿化动力学特征的研究较多。用有效积温来表示有机肥的矿化与温度之间的关系更为合理。目前,关于水分的影响,主要集中在干湿交替对有机氮矿化的影响;关于土壤质地的影响,主要集中在研究粘粒含量与有机质矿化的关系;关于施肥的影响,则重点研究氮肥、钾肥对有机氮矿化和粘土矿物固定氮的影响。今后,研究重点应放在有机肥矿化与有机氮组分关系、与植物有效性关系、有机肥替代化肥当量和替代率以及室内研究结果如何应用到田间指导合理施肥。  相似文献   

17.
采用盆栽试验研究海盐渍化土上蚕粪与无机氮肥(碳铵和尿素)的施用对土壤生物量态氮和土壤供氮特征的影响,指出(1)施肥均能明显地提高土壤生物量态碳和生物量态氮的含量,蚕粪与无机氮肥配合施用比化肥单施或蚕粪单施更能增加土壤生物量态氮含量。(2)土壤生物量态氮是土壤氮素转化的重要环节,也是土壤有效氮的重组成部分;(3)土壤生物量态氮的消长与壤的供氮特征关系极为密切,只要前期有强烈的微生物固持无机氮肥过程,  相似文献   

18.
针对盲目施用沼肥可能带来的土壤环境问题,该研究采用5年8茬的设施番茄-甜椒田间轮作试验,研究不同沼肥和化肥配比对蔬菜产量、设施土壤氮磷养分及重金属累积的影响.结果表明:在等氮钾养分投入下,沼肥和化肥以不同比例配施的各处理没有影响蔬菜产量;氮素盈余和0~180cm土层土壤全氮含量随沼肥施用比例增加没有显著差异;磷素盈余随沼肥施用比例增加显著增加,完全沼肥处理0~30cm土层土壤Olsen-P及CaCl2-P含量分别达到151和8.0mg/kg,高于其他2个处理,且明显超出环境阈值.与完全沼肥处理相比,减量沼肥施用(3/5沼肥处理)明显降低了土壤氮素淋洗风险和磷素累积.与不施肥处理相比,施用沼肥后30~60、60~90、150~180cm土层土壤全Hg含量均低于不施肥处理;除30~60cm土层使用沼肥处理土壤中全As含量显著高于不施肥处理,其他土层各处理间均没有显著差异,而完全沼肥处理全Cr、全Cd、全Pb含量有所下降,且全Pb含量下降最为显著,但均没有出现重金属污染风险.沼肥替代化肥施用可有效实现废弃物中的养分资源循环利用,但增加菜田土壤磷素累积和淋失风险,本研究为设施菜田合理施用沼肥提供技术支持,为实现沼肥资源的循环利用和化肥替代模式提供理论参考.  相似文献   

19.
Effectively utilizing composts requires that their nitrogen (N) and phosphorus (P) contents be used as fertilizer, but how this is best accomplished is not fully understood. The authors' objective was to quantify N and P availability of a calcareous clay loam soil receiving composts derived from four contrasting beef cattle feedlot feedstocks applied at 50, 150, and 450 mg total P kg?1 and supplemented twice with fertilizer N for a 42-week greenhouse plant bioassay. Three composted manures from beef cattle fed distinct diets and a composted mix of slaughterhouse and construction waste were applied. Inorganically fertilized and non-amended soils were included as controls. Canola (Brassica napus L.) and pea (Pisum sativum L.) were grown in pots containing 1.5 kg air-dried soil for six alternating 7-week cycles. Soils amended with composted manure from beef cattle fed typical finishing diets had the lowest apparent N recovery (31%) and the greatest soil nitrate after 42 weeks (25 mg N kg?1). Phosphorus availability was greater with composted manure from beef cattle fed distillers' dried grains than composted manure from beef cattle fed typical finishing diets and a composted mixture of slaughterhouse and construction waste. Apparent P recovery (66%) was greatest from composted manure of beef cattle fed corn (Zea mays L.) distillers' dried grains applied at 50 mg total P kg?1. Composted manure from beef cattle fed distillers' dried grains had greater P availability than conventional composted beef cattle feedlot manure. Overall, performance of the composted mixture of slaughterhouse and construction waste was similar to the composted beef cattle manures.  相似文献   

20.
【目的】探讨本地区主要类型有机肥与化肥配施对作物产量及农田氮肥气态损失的影响,为不同类型有机肥的科学施用提供理论依据。【方法】2014年10月—2015年9月在山东省中国农业科学院禹城试验基地进行了冬小麦–夏玉米田间小区试验,供试小麦品种为‘济麦22’,玉米品种为‘郑单958’。在常规施氮量 (N 225 kg/季) 基础上,设化肥 (CF)、鸡粪 (CHM)、猪粪 (PM) 和牛粪 (CM) 单施以及化肥分别与3种有机肥配施处理 (化肥氮分别占25%、50%、75%),13个处理;加倍施氮量下,有机肥和化肥单施 (DCF、DCHM、CPM、DCM) 4个处理;1个不施肥处理 (CK),共计18个处理。测定了小麦和玉米产量、N2O排放通量和NH3挥发通量。【结果】常规施氮量 (N 225 kg/hm2) 下,单施鸡粪或猪粪的小麦、玉米产量与化肥相当,单施牛粪比化肥处理减产。分别与CF、CHM、PM、CM相比,DCF、DCHM、DPM处理无增产效果,DCM处理玉米表现为增产。猪粪和鸡粪与化肥各配施比例处理的小麦、玉米产量间无显著差异,且均与单施化肥处理相当;牛粪与化肥配施处理的小麦产量随化肥配施比例的提高而提高,玉米产量各配施比例处理间无显著差异。CF处理周年NH3挥发量为39.63 kg/hm2,是单施有机肥处理的37~53倍;单施化肥处理的NH3排放系数接近9%左右,单施有机肥处理的NH3排放系数只有0.2%左右。有机肥与化肥配施的处理周年NH3挥发总量随化肥配施比例增加而明显增加,当化肥配施比例达到75%时,周年NH3挥发总量与单施化肥处理相当。CF处理的周年N2O排放总量为2.85 kg/hm2,高于单施有机肥处理,三种有机肥N2O周年排放量由大到小依次为猪粪 (2.51 kg/hm2)>鸡粪 (1.91 kg/hm2)>牛粪 (1.85 kg/hm2) 处理;加倍施用化肥和有机肥的N2O排放量平均为常规施氮量的1.5倍以上。有机肥与化肥配施的处理周年N2O排放总量随化肥配施比例增加而明显增加,当化肥配施比例达到50%时,周年N2O排放总量达到或超过了单施化肥处理。CF处理N2O排放系数为0.4%左右,有机肥处理N2O排放系数为0.3%左右。有机肥处理的NH3挥发和N2O排放主要发生在小麦季,化肥处理主要发生在玉米季。加倍施肥均会明显增加NH3挥发总量和N2O排放总量,但不影响二者的排放系数。【结论】不同粪肥与化肥配施对作物产量、田间N2O排放和NH3挥发的影响有明显差异。推荐施肥量下,鸡粪或猪粪不配施或配施少量化肥 (< 50%) ,牛粪配施75%左右的化肥可实现与化肥相当的作物产量,同时减少农田氮肥气态损失。  相似文献   

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