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1.
有机农业在土壤固碳和生物多样性中的作用研究进展   总被引:3,自引:1,他引:2  
土壤固碳在制约全球气候变暖上具有重要作用,也越来越受到人们的关注。此文综述了国内外有机农业在土壤固碳和生物多样性作用方面的研究进展。与常规农田比,有机农业管理措施(施用有机肥、免耕等保护性耕作方式、秸秆还田以及轮作等)具有促进土壤团聚、提高微生物活性和增加土壤有机质等功效,能够增加土壤中的碳贮量,增加农田生物多样性,对极端气候具有更强的适应性。中国有机农业在土壤固碳上具有更大的潜力,应该加强开展有机农业固碳效果的监测和定量评价,为碳减排补贴和全球碳汇贸易提供理论基础。  相似文献   

2.
为解决‘红地球’葡萄在南方沿海地区设施栽培中存在的着色差、风味淡及设施葡萄园土壤板结、酸化、盐渍化等问题,通过在冬季基肥中增施不同的有机肥,研究其对土壤理化性质、营养状况、植株生长及果实品质的影响。施用碳基生物肥、生物菌肥和菜饼肥均可以明显提高土壤有机质、有效磷和速效钾含量,效果以碳基生物肥最佳,有机质、有效磷和速效钾分别较对照显著提高43.77%、35.45%和57.9%;菜饼肥对土壤微量元素的增加效果最好,交换性钙和镁含量分别较对照显著提高40.58%和13.74%;施用有机肥可以不同程度上降低容重、增加孔隙度、降低土壤含盐量、提高pH,效果以施用菜饼肥最佳。施用有机肥可以增加叶面积,提高枝条木质化程度,施用菜饼肥的叶面积和枝蔓木质化程度分别提高了21.62%和14.31%;施用腐熟菜饼肥的果实综合品质最高,单果重、TSS、固酸比分别提高26.46%、2°Brix和34.20%,经济效益以腐熟菜饼肥和碳基生物肥为最好,每公顷效益分别增加至58794和39456元。施用不同有机肥能不同程度地提高土壤有机质、营养元素含量,降低土壤含盐量、降低容重、增加孔隙度、提高土壤酸碱度,进而促进枝蔓生长、提高品质和效益,综合效果以施用腐熟菜饼肥最佳。  相似文献   

3.
有机肥料对铅污染土壤铅形态及生物有效性影响研究   总被引:7,自引:2,他引:5  
为了探索不同的有机肥料对降低重金属污染土壤Pb毒性的原理和效果;运用重金属污染土壤盆栽添加3种有机肥料的试验方法,分析盆栽土壤中重金属Pb的5种形态;除有机肥料牛粪对Pb的铁锰氧化结合态无显著影响、对Pb的残渣态有显著影响外,有机肥料牛粪对Pb的离子交换态、碳酸盐结合态、有机硫化物结合态有极显著影响,有机肥料猪粪、鸡粪对重金属Pb的5种形态有极显著影响。适量有机肥可降低重金属Pb离子交换态量、碳酸盐结合态和生物活性,增加铁锰氧化物结合态、有机硫化物结合态和残渣态。3种有机肥对降低重金属污染土壤Pb毒性的效果为鸡粪>牛粪>猪粪。有机肥料显著改变了污染土壤中Pb的形态,降低了Pb的生物活性,有机肥料是重金属污染土壤有效的改良剂。  相似文献   

4.
<正>"用全球8%的耕地,生产了全球21%的粮食,但同时化肥消耗量占全球35%。肥越用越多,地越种越馋,这是我国粮食‘十一连增’背后的尴尬现实。农业部表示,将在全国范围内实施化肥使用量零增长行动,力争到2020年主要农作物化肥使用量实现零增长"。随着化肥使用依存度的不断提高,过量施肥、盲目施肥、有机肥资源利用率低、施肥结构不平衡等问题日趋显著,不仅浪费资源,也造成耕地板结、土壤酸化、水体  相似文献   

5.
为了探究生物有机肥和复合微生物菌剂联用对土壤理化性质、草莓营养生长和果实品质的影响,以草莓‘红颊’为试验材料,设置普通有机肥底肥(T0);普通有机肥底肥+菌剂追肥(T1);生物有机肥底肥(T2);生物有机肥底肥+菌剂追肥(T3);灭活生物有机肥底肥+灭活菌剂追肥(T4)跟踪调查不同处理下的土壤理化性质、草莓营养生长、果实产量及品质。结果显示:生物有机肥底肥和菌剂追施可以明显改善土壤酸化,提高土壤有机质及速效养分,并降低土壤电导率。该措施对草莓的营养生长和果实品质同样也有显著积极作用。通过对比现蕾期到成熟期的变化率,T3处理的草莓株高、株幅以及叶绿素较T0处理分别依次增加了2.53%、3.62%和18.99%。此外比对T3与T0的植株质量表明,T3的地上部分生物质和干物质量分别提高了20.05%、5.09%,而地下部分生物质和干物质量提高了2.69%、5.05%。此外,T3处理增加各代果实单果重和挂果数,草莓产量达(30.10±3.87)t/hm2。其对果实品质改善也有显著的积极作用,各代果实的可溶性固形物提高2.08%~5.32%,可滴定酸降低了5.15%~18.76%,维生素C提高了5.67%~10.22%。综上所述,添加生物有机肥作为底肥,并辅以菌剂追施,可提高土壤肥力,并对草莓生长、产量和果实品质有显著的积极影响,本研究为设施草莓栽培提供技术依据和理论支撑。  相似文献   

6.
机采茶园有机替代技术对土壤肥力和茶叶产量品质的影响   总被引:2,自引:0,他引:2  
[目的]研究不同有机替代施肥技术对机采茶园土壤肥力、茶叶产量构成因素及茶叶品质的影响。[方法]试验包括6个处理:1.不施肥对照(CK);2.常规施肥对照(CF);3.有机肥替代25%氮(T1);4.有机肥替代25%氮+配方肥(T2);5.有机肥替代25%氮+酸化改良剂(T3);6.有机肥替代25%氮+生物质炭(T4),每组处理三次重复,随机排列。[结果]结果表明:不同有机替代施肥技术均能阻控茶园土壤酸化,显著提高土壤有机质含量,增加土壤有效养分,其中以有机肥替代25%氮+生物质炭对土壤综合养分提升效果最佳。在机采茶园增产提质方面,不同有机替代技术均显著提升茶叶产量和品质,以有机肥替代25%氮+生物质炭茶叶产量最高,达746.28 Kg.hm-2。茶叶成分上,水浸出物、茶多酚和氨基酸的含量表现为T4>T3>T2>T1>CF>CK,其中T4处理茶多酚和氨基酸含量比CK处理分别增加27.0%,31.3%。[结论]综合分析得出:有机肥替代25%氮+生物质炭为适用于机采茶园的较好有机替代施肥模式。  相似文献   

7.
河南省设施蔬菜连作障碍现状调查与分析   总被引:6,自引:1,他引:5  
为进一步了解河南省设施蔬菜连作障碍的发生和防治情况,调查了河南省17个地市93个乡(镇)的96个合作社(园区、村)。结果表明,河南省设施蔬菜茬口安排及蔬菜种类呈现多样化,设施蔬菜连作年限大都在5a以上,最长连作年限达30a。设施蔬菜连作3a以上即开始表现连作障碍现象,而且连作障碍棚室的比例及严重程度随连作年限的延长而增加。设施蔬菜土传病害发生最为严重,其中大棚根结线虫病发病率达84.6%,日光温室达56.9%。除土传病害外,土壤养分失衡和土壤次生盐渍化也普遍发生,土壤自毒作用、板结、酸化等发生相对较轻。总结了河南省各地设施蔬菜连作障碍防治的主要措施,并分析了调查中发现的几个重要问题,提出了河南省设施蔬菜连作障碍防控的几点建议。  相似文献   

8.
杭州市郊旱地土壤有机质现状及改良措施   总被引:1,自引:0,他引:1  
为了解杭州市郊旱地土壤有机质现状,从而提出因地制宜的改良措施,采用野外调查和室内分析的方法,对杭州市郊旱地各土类、各区域土壤有机质含量及分布特征进行了分析。结果表明:杭州市郊旱地土壤有机质在7.59~52.87g/kg之间,平均为26.61g/kg,属中等水平(20~30g/kg);且处于高量有机质水平所占的比例随地力等级升高而增加;不同土类及区域间的耕层土壤有机质含量存在明显差异,各土类耕层有机质平均含量由高到低分别为粗骨土类>红壤>石灰土>水稻土>潮土>滨海盐土,各区域耕层有机质平均含量由高到低分别为水网平原>低丘>河谷平原>滨海平原;43.64%的土壤有机质含量<20g/kg的旱地宜采取秸秆还田、增施有机肥、推广测土配方施肥、改善灌排设施等措施进行改良。  相似文献   

9.
近年来,随着工业化进程的加速和城镇化步伐的加快,我市可耕土地面积越来越少,复种指数较高,劳动力大量外出务工。因为肥效高、动力投入少等特点,化肥在农业生产中连年大量使用。但同时也加速了土壤酸化板结,理化性质恶化,造成了农业生产面源污染,使生产出来的农产品产量和品质都有一定程度下降。尤其是优质农产品的比例不高,从而导致商品率降低,极大地制约了毕节市农业产业化发展。而有机肥施用是发展绿色农业和有机农业的重要环节之一,解决有机肥利用上存在的问题对我市农业生产有重要的意义。  相似文献   

10.
有机肥对土壤微生物群落特征影响的研究进展   总被引:1,自引:0,他引:1  
土壤微生物是评价土壤健康的关键指标,农业生产中,施肥提高土壤肥力和粮食产量的同时也深刻地改变着土壤微生物的生存环境。在农业生产发展和推广有机肥的基本政策下,研究有机肥料对土壤微生物的影响有利于全面、客观评价有机肥对土壤健康的意义。中国自20世纪70、80年代,布局了一批长期定位施肥试验,基于这些研究结果,对土壤微生物研究发展变化趋势及环境影响因素进行研究,阐述了有机肥在提高土壤微生物生物量和构建群落结构方面的积极效应,探讨了有机培肥对土壤微生物群落功能多样性的影响。总的来说,有机肥改变土壤微生物群落多样性和碳源利用特征,提高土壤细菌真菌比,增加古菌、固氮微生物和氨氧化微生物等功能微生物菌群丰度,抑制土壤病原菌的活性,从而起到提高土壤碳氮代谢活性和维护土壤健康的作用。有机肥构建土壤微生物群落结构的途径主要是引起土壤pH、养分含量、团聚结构、酶的活性等理化性质的改变,以及自身携带的外源微生物、抗生素、重金属等对土壤微生物群落特征的影响。施用有机肥时应综合考虑土壤条件、作物类型和肥料种类等因素。今后,可以通过新的生物技术深入挖掘微生物功能特性及作用机制,同时开发安全高效的新型微生物肥料,充分发挥微生物在农业绿色发展中的作用。此外,还要重视土壤健康微生物指标的开发和验证,深入开展土壤健康评价体系研究。  相似文献   

11.
不同微生物有机肥对草莓生长影响研究   总被引:4,自引:0,他引:4  
该论文主要研究了5种不同微生物有机肥对草莓生长和果实品质的影响。将不同的微生物有机肥以1.2kg/m2施入到试验田之后翻地插苗,定期记录草莓生长的株高、分枝数、叶面积、果重等指标,并检测了后期成熟果实的维生素C、糖分、磷、钾含量。试验结果表明供试的微生物有机肥能提高草莓的产量,改善草莓的果实品质。  相似文献   

12.
The environmental impact of crop production is mainly related to fossil fuels consumption and to fertilisers application. Emissions arising from the spreading of organic and mineral fertilisers are important contributors for impact categories such as eutrophication and acidification. The choice of the fertilisers and of the spreading techniques as well as the crop residues management can deeply affect the environmental impact related to crop cultivation.In this study, seven scenarios describing fertilising schemes characterised by different organic and mineral fertilisers and by different mechanisation were compared. The aim is to evaluate, using the Life Cycle Assessment (LCA) method, how the environmental performances of grain maize production were affected by these different fertilisers schemes. The study was carried out considering a cradle to farm gate perspective and 1 t grain maize was selected as functional unit. Inventory data were collected on a farm located in Po Valley (Northern Italy) during year 2013 and were processed using the composite method recommended by the International Reference Life Cycle Data System (ILCD). The compared scenarios involved organic and mineral fertiliser distribution and were: pig slurry incorporation after >3 days after spreading (BS), fast pig slurry incorporation within 2 h from spreading (AS1), direct soil injection of pig slurry (AS2), pig slurry incorporation (after >3 days) with straw collection (AS3), digestate spreading instead of pig slurry (after >3 days) (AS4), only mineral fertilisers (i.e. urea and superphosphate) distribution (AS5) and only mineral fertilisers (i.e. calcium ammonium nitrate and superphosphate) distribution (AS6).The results were not univocal, since climate and soil conditions as well as physical and chemical fertiliser characteristics differently affected the environmental load, especially for particulate matter formation, terrestrial acidification and terrestrial eutrophication impact categories. AS1 and AS2 showed the most beneficial results for these impact categories (between ↙67% and ↙73% respect to worst scenario). AS6, on the opposite, showed the highest environmental impact for those impact categories mainly affected by energy and fossil fuel consumption (climate change, ozone depletion, human toxicity with carcinogenic effect, particulate matter, freshwater eutrophication, freshwater ecotoxicity and mineral, fossil and renewable resources depletion), categories on which AS3 and AS4 were the best solutions. AS3 was the most impacting for terrestrial acidification and eutrophicationA sensitivity analysis was carried out varying grain maize yield (mostly affected: marine eutrophication) and ammonia volatilisation losses due to organic fertilisers (mainly affected: terrestrial acidification and eutrophication).The achieved results can be useful for the development of ⬓spreading rules⬽ that drive the application of organic fertilisers in agricultural areas where there is an intense livestock activity.  相似文献   

13.
不同有机肥对设施土壤全盐累积与pH值变化的影响   总被引:9,自引:2,他引:7  
为了给有机肥在设施土壤中合理使用提供参考,采用田间小区试验,研究了鸡粪、猪粪、商品有机肥在不同季节对设施土壤盐分累积及pH值变化的影响。结果表明,设施土壤施用有机肥,土壤盐分含量也出现了不同程度的累积,但随着使用量的增大,累积量逐渐降低。与化肥处理相比,施用鸡粪土壤盐分累积量可降低9.22%~21.13%;猪粪可降低9.40%~27.59%;商品有机肥与化肥相比,降盐效果不明显,而且低量处理盐分累积量超过了化肥处理。季节不同,有机肥对土壤盐分影响大小也不同,鸡粪相同处理土壤含盐量夏季比冬季高出19.10%~64.18%;猪粪处理盐分含量也高出10.54%~59.92%,商品有机肥季节差异不大。设施土壤施用化肥降低了土壤pH值,施用鸡粪、猪粪能提高土壤pH值,避免土壤酸化,商品有机肥效果不明显。3种有机肥中鸡粪、猪粪对延缓土壤盐分累积速度,避免土壤酸化作用明显,可适当多施;商品有机肥效果欠佳,要视含盐量的高低,慎重施用。  相似文献   

14.
有机肥施用对土壤肥力影响的研究进展   总被引:21,自引:4,他引:17  
在耕地面积日益紧缩的今天,施肥是提高作物单位面积产量的重要措施。虽然化肥在粮食增产方面发挥了巨大的作用,但同时也会对土壤产生负面影响,诸如养分失调、酸化加剧等,而有机肥在提高土壤养分的同时还能改善土壤理化性质,平衡养分,培肥土壤。因此,笔者综述了有机肥在平衡土壤养分、改善土壤理化性质、增加微生物群落多样性、提高土壤酶活性方面的作用,总结了有机肥在提高土壤肥力方面最新的研究方法及进展。期望为生产中合理、高效使用有机肥,为最大限度的发挥有机肥改善土壤环境的作用提供依据。最终达到提高作物产量和品质的目的,实现农业的可持续发展。  相似文献   

15.
Plant breeding is a powerful tool for improving nitrogen (N) uptake efficiency and thus reducing the environmental impact relating to crop production. This study evaluated the environmental impact of current barley production systems in two Swedish agricultural areas (South and East) compared with scenarios with improved N uptake efficiency at two levels, in which the fraction of mineral N available for daily crop uptake was increased by 50 and 100%. Life cycle assessment (LCA) methodology was used to quantify energy use, global warming potential (GWP) and acidification and eutrophication potentials along the production chain for spring barley with differing N uptake efficiency, but similar N application rate. The functional unit, to which all energy use and emissions were related, was 1 Mg barley grain. Energy use, GWP and acidification proved to be higher for the East production system, mainly due to lower yield, while eutrophication was higher for South. The two impacts most affected by improved N uptake efficiency were eutrophication and GWP, with GWP decreasing due to a combination of higher yield, soil carbon sequestration and lower indirect emissions of N2O due to lower N leaching. Accounting for land savings due to increased yield, reducing the pressure to transform land elsewhere, would further lower the carbon footprint. Potential eutrophication per Mg grain was reduced by 15% in the production system with the highest N uptake efficiency in southern Sweden. Crops with improved N uptake efficiency can thus be an important complementary measure for reducing N losses to water, provided that the N application rate does not increase. However, incentives for farmers to maintain or even lower the N application rate might be required. Using simulation modelling is a promising approach for assessment of expected effects of improved crop varieties when no long-term experimental data are available. However, advanced crop models are required to better reflect the effect of plant breeding on e.g. expected yield. Future model development should involve expertise in plant breeding, plant physiology and dynamic crop and soil modelling.  相似文献   

16.
为了探讨施肥水平和肥料配比方式对木薯土壤养分、酶活性以及木薯生长的影响,采用大田试验,以木薯新品种华南7号为试验品种,设置不同的施肥水平和肥料配比方式,比较分析木薯园土壤养分、酶活性大小及木薯生长性状。结果表明:施肥会促进土壤酸化,降低土壤pH值,施肥量越多,土壤酸化越严重。有机肥和复合肥混施加重土壤酸化程度,增加土壤有机质含量最高;D处理(有机肥350kg/亩)土壤碱解氮、有效磷和速效钾含量最高,其中有效磷和速效钾都显著高于A处理(不施肥CK);施肥会整体增加土壤脲酶、酸性磷酸酶和过氧化氢酶活性,其中D处理在提高土壤酶活性上起到最显著的作用;E肥(有机肥150 kg/亩+复合肥33 kg/亩混施)对植物生长的促进作用比单施有机肥明显。因此,选择将有机肥与复合肥合理配施,既能保持地力,又能促进木薯生长以进一步达到高产。  相似文献   

17.
Summary Life Cycle Assessment (LCA) was used to assess the environmental impacts of field production of fibre hemp and seven other crops in France. The production of 1 ha of hemp yielded a eutrophication potential of 20.5 kg PO4-equivalents, a global warming potential of 2330 kg CO2-equivalents, an acidification potential of 9.8 kg SO2-equivalents, a terrestrial ecotoxicity potential of 2.3 kg 1,4-dichlorobenzene-equivalents, an energy use of 11.4 GJ, and a land use of 1.02 ha.year. A comparison of hemp (low impacts), wheat (intermediate impacts) and sugar beet (high impacts) revealed that the crops were similar for the relative contributions of emitted substances and resources used to impacts, and for the relative contribution of processes to impacts. A reduction of the impacts of hemp production should focus on eutrophication, and consider the reduction of climate change, acidification and energy use as secondary objectives. Given this objective, the overall environmental effect of the substitution of mineral fertiliser by pig slurry is negative. The introduction of reduced tillage is of interest, as it decreases energy use, acidification and climate change. Measures leading to a reduction in NO3 leaching are highly interesting, as they strongly decrease eutrophication. Implications for hemp breeding are discussed.  相似文献   

18.
生物腐植酸对土壤碳组分的影响   总被引:2,自引:0,他引:2  
土壤碳含量是评价土壤质量的重要指标,对土壤物理、化学以及生物学性质都有重要的影响。增加土壤碳的含量不但有助于农业生产的可持续发展,而且对整个地球生态系统的物质循环也有着至关重要的作用。笔者研究了从有机废弃物发酵产物中提取的生物腐植酸对土壤碳组分的影响。结果表明:腐植酸、有机肥均能在一定程度上显著增加土壤总有机碳的含量,其中腐植酸+化肥处理能在较长的时间内(10~40天)保持土壤有机碳含量,其土壤有机碳碳含量增加了1.6%~10.5%。不同施肥处理土壤水溶性有机碳含量存在差异,与对照相比,腐植酸+化肥处理土壤水溶性碳含量增加了2.7%~20.1%。施肥处理能保持土壤微生物生物量碳含量,腐植酸添加量为400 mg/kg时施肥处理土壤微生物生物量碳含量显著高于对照处理。  相似文献   

19.
为减少化肥的过量施用导致的蔬菜品质下降、肥料利用率降低等问题,探讨宿城温室茄子合理的有机肥替代氮肥比例和有机肥种类,研究有机肥替代部分氮肥对温室茄子产量、品质和土壤理化性质的影响。结果表明,有机肥替代40%氮肥优于有机肥替代30%氮肥,较常规施肥产量增加了5.17%,氮肥利用率提高了10.49%。有机肥替代40%氮肥,与常规施肥相比,可溶性糖含量增加9.09%,Vc含量增加12.31%,硝酸盐含量减少7.09%,土壤有机质含量增加17.06%,土壤pH降低2.92%。表明减施氮肥、增施有机肥是提高温室茄子产量、改善品质、土壤肥力的有效途径,百可农有机肥适宜提升土壤肥力,沃绿宝有机肥适宜提升茄子品质。  相似文献   

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