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41.
猕猴桃溃疡病是一种毁灭性细菌病害,该病发展迅速,防治难度大,严重制约了猕猴桃产业的发展。为找到一种有效防治该病的方法,针对化学防治易产生抗药性、污染环境、杀伤天敌等特点,从猕猴桃根际土壤中分离共获得25株芽孢杆菌,采用点菌法筛选出4株对猕猴桃溃疡病菌(Pseudomonas syringae pv.actinidiae)具有拮抗效果的菌株(抑菌圈直径达到5 mm以上),其中B2拮抗作用最强。根据菌落(体)形态特征、生理生化鉴定以及16S r DNA序列分析,初步鉴定B2为蜡样芽孢杆菌(Bacillus cereus)。将B2的发酵原液稀释成1×109cfu/m L的发酵液,并在此基础上依次配制50、100、500、1000、2000倍的稀释液,用于盆栽试验。盆栽试验采用喷雾法,30天后的防治效果分别达到了90.45%、86.52%、80.90%、67.98%、47.19%、15.73%,60天后尽管病斑有少量增加,旧病斑有所增大,但与对照相比,病斑增长速度明显减缓。大田试验结果证明,该菌具有较好的生防潜力,喷雾法选择B2发酵液的50倍稀释液,涂抹法选择B2发酵液的100倍稀释液,可有效降低猕猴桃溃疡病的危害。 相似文献
42.
低温和近中温猪粪液厌氧处理的装置比较研究 总被引:4,自引:0,他引:4
作了UBF、UASB和厌氧上折流反应器处理猪粪过筛液运行性能的实验室比较。结果表明:它们的运行指标基本一致。综合比较,UBF略优于UASB,UASB略优于上折流反应器。在发酵温度10℃段,负荷1.9~2.3gCOD/(L·d),装置产气率平均0.32~0.51L/(L·d),COD平均去除率82.2%~91.0%;15℃段,负荷2.5~2.6gCOD/(L·d),装置产气率0.57~0.59L/(L·d);25℃段,负荷5.5~5.7gCOD/(L·d),装置产气率1.93~2.01L/(L·d)。 相似文献
43.
Use of poor-quality groundwater has become inevitable for irrigation to compensate rapidly increasing water demands in many arid and semiarid regions. Salinity and sodicity are the principal soil and water quality concerns in such areas. Many saline–sodic and sodic soils have saline or saline–sodic subsurface drainage waters. Amelioration of these soils needs a source of calcium (Ca2+) that can replace the excess exchangeable sodium (Na+). Most of these soils, however, contain calcite (CaCO3) of extremely low solubility. The native calcite does not supply adequate levels of Ca2+ for soil amelioration as do other chemical amendments. Phytoremediation may help ameliorate such soils through cultivation of certain crops tolerant to ambient soil salinity and sodicity. This amelioration strategy works through plant root action to help dissolve CaCO3 to supply adequate Ca2+ without the application of an amendment. During a 3-year field experiment conducted under irrigated conditions, we evaluated phytoremediation against soil application of gypsum and farm manure, and water treatment with sulphuric acid on a calcareous saline–sodic soil (pHs=8.0–8.4, ECe=24–32 dS m−1, SAR=57–78, CaCO3=45–50 g kg−1 for the top 0.15 m depth; Calcic Haplosalids). A saline–sodic water (EC=2.9–3.4 dS m−1, SAR=12.0–19.4, RSC=4.6–10.0 mmolc l−1, SARadj=15.6–18.4) was used to irrigate the rice (Oryza sativa L.) and wheat (Triticum aestivum L.) crops grown in rotation. Active desalinisation and desodication processes were observed in all the treatments. After the final wheat crop, the 1.2 m soil profile ECe was 7±0.5 dS m−1 and SAR was 15±2 with non-significant treatment differences, indicating comparable soil amelioration effect of phytoremediation with other treatments. Better crop yields were obtained from the manure-treated plots, owing to its annual addition to the soil that possibly improved soil fertility. Phytoremediation needed minimum capital input because no initial investment was made to purchase the amendments. 相似文献
44.
奶牛养殖场粪污处理沼气工程技术与模式 总被引:9,自引:3,他引:9
本文综述了国内外奶牛养殖场沼气工程技术应用现状,分析了奶牛粪沼气发酵潜力和三种主要沼气发酵工艺的技术特点. 相似文献
45.
稻草、玉米芯调理牛粪堆肥成型育苗基质试验 总被引:7,自引:0,他引:7
以稻草和玉米芯为调理料,分别与主体原料牛粪按质量比1∶4混合堆沤腐熟后获得牛粪稻草基质和牛粪玉米芯基质,以这2种基质为原料进行压缩成型试验,探讨了土壤添加量、原料含水率、成型压力以及成型温度等操作因素对基质块成型品质的影响及作用规律。结果表明:牛粪稻草和牛粪玉米芯2种基质块的抗跌碎能力基本持平,其中牛粪稻草基质块的容重较大,吸水性和保水能力更强;添加土壤对2种基质块的抗破碎能力均有一定的提高,但不添加土壤2基质块也具有良好的抗破碎能力,能满足育苗过程对其机械强度的要求;适宜的原料含水率、成型压力和成型温度范围为10%~15%、10~15 k N和80~120℃。 相似文献
46.
47.
Reclaimed soils in mining area usually display low fertility and present Cd stress. The amendment of modified biochar effectively fixes Cd in soils,enhances soil fertility, and reduces Cd stress in soil microorganisms. However, the effect of thiourea-modified biochar(TBC) on microbial adaptability to Cd stress in mining reclamation soils is still unclear. The present work studied the Cd immobilization and microbial community changes in a mining reclamation soil displaying extreme Cd contaminatio... 相似文献
48.
堆沤肥是中国畜禽粪便处理利用的最主要方式。为探究不同堆沤肥方式对温室气体和氨气排放规律和温室效应,在北京市密云区开展了为期71d的堆沤肥试验,以牛粪和玉米秸秆为原料,分析了静态堆沤 (T1)、堆沤+翻抛 (T2)、堆沤+覆膜 (T3)、翻抛+覆膜 (T4)等4种方式对堆沤肥过程中腐熟度、温室气体和氨气等指标的影响。结果表明,4个处理的种子发芽指数分别达到131.33%、134.49%、108.76%和136.24%,均满足堆肥产品的腐熟度要求(≥70%)。翻抛有利于CO2、N2O和NH3的排放,而覆膜抑制了N2O的生成,T2处理的增温潜势最高,T3处理的增温潜势最低,较对照组T1处理减排20.14%。因此,T3处理在能够保证堆肥产品的腐熟度要求的前提下,还可有效减少增温潜势。该研究可为中小养殖场户堆沤肥的工艺优化实践提供技术指导。 相似文献
49.
为明确规模化奶牛养殖场粪水发酵处理后还田对苜蓿生长和土壤的影响,试验设置了追肥(苜蓿专用配方肥N∶P2O5∶K2O为4∶13∶40)225 kg/hm2、追肥112.5 kg/hm2+粪水360 m3/hm2和只追施粪水360 m3/hm23个处理。结果表明,追肥112.5 kg/hm2+粪水360 m3/hm2处理下,2019、2020年全年苜蓿干草产量分别达到15 506.5和15 548.0 kg/hm2,显著高于其他处理。追肥112.5 kg/hm2+粪水360 m3/hm2和只追施粪水360 m3/hm2两个处理显著提高了土壤有机质含量和土壤pH,而含盐量则降低。追施粪水360 m 相似文献
50.
Bacteria in desert soil have unique phylogeny and important ecological functions, and theirresponses to changes in precipitation need further attention. However, relevant studies have mainlyfocused on the surface soil, and studies on the responses of bacteria at different soil depths to variationsin precipitation are rare. Thus, we used 16S rDNA high-throughput sequencing to investigate the changesin soil bacterial distribution along a mean annual precipitation gradient (50–150 mm) in the Alxa Desert,China, and compared the variation characteristics in the surface soil layer (0–10 cm) and subsurface soillayer (10–20 cm). Results showed that soil bacterial communities significantly changed along theprecipitation gradient in both soil layers. However, the subsurface soil layer could support bacterialcommunities with higher diversity and closer internal relationships but more internal competition than thesurface soil layer. Additionally, compared with the surface soil layer, variations in diversity andco-occurrence patterns in the subsurface soil layer were more in line with the changes in the mean annualprecipitation, while bacterial community structure was less variable in the subsurface soil layer. Comparedwith the mean annual precipitation, soil moisture had little influence on the structure and diversity of soilbacterial community but had a high correlation with intercommunity connectivity. Therefore, soilmoisture might play a complex role in mediating environmental conditions and soil bacterial communitycharacteristics. Due to the different responses of surface and subsurface soil bacteria to the changes inprecipitation, it is necessary to distinguish different soil layers when predicting the trends in desert soilbacterial conditions associated with precipitation, and prediction of subsurface soil bacteria may be moreaccurate. 相似文献