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241.
家畜沤肥浸渍液对青椒枯萎病的防治及作用机理   总被引:6,自引:0,他引:6  
研究表明家畜沤肥浸渍液对青枯萎病具有显著防治效果,其中猪粪沤肥浸液在温室盆栽的防治效果为88.5%,马粪、牛粪沤肥浸渍液在温室盆栽的防治效果分别为56.6%和65.5%,作用机理研究结果表明,①三种沤肥浸渍液对青椒枯萎病菌的厚坦孢子、小孢子都具有强烈的溶菌作用。②沤肥微生物中具有对青椒枯萎病菌有强烈的拮抗作用的细菌。③沤肥浸渍液处理青椒后,β-1,3-葡聚糖酶,多酚氧化酶,苯丙氨酸转氨酶活性分别增高12.0%、367.0%和20.0%。④沤肥浸渍液处理青椒后,其植株高度、叶片厚度和叶脉直径均比对照有所增高。显示防病机理既有拮抗作用,又有诱导抗性作用。表5参12  相似文献   
242.
堆肥制作中微生物侵染秸秆的环境扫描电镜(ESEM)观察   总被引:1,自引:0,他引:1  
为了探索堆肥制作中木质纤维素类物质的生物降解过程,在堆肥进程中取不同分解阶段的秸秆样品,利用环境扫描电镜(ESEM)观察微生物的分布情况,并从机械作用的角度探讨了微生物在秸秆分解过程中的作用。结果表明,堆肥制作前新鲜秸秆表面未发现微生物分布,堆肥制作前期微生物开始附着在秸秆表面,随着堆肥进程,秸秆表面微生物密度有所增加,秸秆分解时产生的裂缝中发现也有微生物分布。堆肥制作中,参与秸秆分解的微生物以群落形式分布,从个体形态来看,这些微生物主要由球菌和丝状菌组成,但不同形态微生物个体大小差异较大。分析认为大型丝状菌通过秸秆分解产生的裂缝侵入秸秆内部时所产生的机械作用可促进秸秆的崩解。  相似文献   
243.
Spent mushroom compost (SMC) is a co-product of edible mushroom which contains abundant nutrients including organics, nitrogen (N) and phosphorous (P). This study is related to the release potential of nitrogen, phosphate and organic matter from SMC amended soil in column-based experiments. Results showed that due to SMC application, NH4+–N and NO3–N concentrations in leachate decreased by 92.5% and 76.3%, respectively, while EC and CODCr concentrations increased by 84.2% and 481.9%, respectively, as compared to chemical fertilizers. Moreover, a minor loss of TNcum (65%) and TPcum (almost equal value) exhibited good nutrient retention capacity. Leaching test results demonstrated that the mixed application of SMC and chemical fertilizers could alleviate excessive CODCr level in SMC leachate. The release process of nutrients in SMC amended soil could be described by first/first order mixed model, indicating that nutrients leached from SMC follow a two-stage pattern.  相似文献   
244.
为了解畜禽粪便和桃树枝工业化堆肥中微生物群落的变化,本研究以猪粪、桃树枝和腐熟有机肥为堆肥原料进行堆肥,通过测定理化指标和利用高通量测序技术,分析了堆肥中理化参数的变化和堆肥微生物群落结构变化.理化参数结果表明,堆体于第2 d快速进入高温期,整个高温期持续30 d;堆肥过程中有机质含量呈波动性变化,但总体下降;堆肥结束时TN含量为20. 58 g·kg~(-1),与堆肥初期相比损失了5. 90%.α多样性分析表明,不同好氧堆肥时期具有不同的微生物群落多样性.在细菌门水平上,厚壁菌门(Firmicutes)和放线菌门(Actinobacteria)在整个堆肥过程中占主导地位,其相对丰度所占比例分别为79. 31%~95. 09%和2. 98%~19. 70%;此外,在堆肥初期,厚壁菌门(Firmicutes)和放线菌门(Actinobacteria)相对丰度分别为87. 36%和9. 66%,在堆肥末期,两者的相对丰度分别为79. 38%和19. 70%;在细菌属水平上,随着堆肥的进行,优势类群从Clostridium_sensu_stricto_1、Terrisporobacter和Bacillus演变为norank_f_Bacillaceae、Bacillus、Oceanbacillus和Pseudogracilibacillus;在真菌门水平上,Ascomycota始终为优势门类;在真菌属水平上,norank_c_Sordariomycetes的比例逐渐增加,在堆肥末期成为优势类群.冗余分析结果显示,环境因子对细菌和真菌群落结构影响相关性排序均为pH铵态氮温度 TOC TN,其中pH对微生物群落组成影响最大. norank_c_Sordariomycetes、norank_o_Sordariales和norank_c_Agaricomycetes可能与铵态氮的挥发有关.  相似文献   
245.
以玉米为供试作物,研究施入生活垃圾堆肥对土壤和玉米各器官重金属分布规律及对土壤养分的影响。结果表明:连续3年施肥,土壤速效养分的含量明显增加;土壤重金属呈现累积,但含量远远低于二级土壤标准(GB 15618—1995);植株中重金属含量表现为根部〉茎秆〉叶片〉籽粒,Cd在植株根部富集,但未大量向其他部位转移,玉米植株地上部分重金属含量明显低于饲料卫生标准(GB 13078—2001)。由此推断,在短期内(3年),年施入60 000 kg·hm^-2的垃圾堆肥能提高土壤肥力,且暂时不会引起土壤重金属污染,也不影响玉米植株的饲用;使用多年后应及时监测,以保证安全性。  相似文献   
246.
为明确自行筛选开发的高效降解菌对鸡粪发酵的影响,分析研究了其堆肥的主要腐熟指标。结果表明,加入高效降解菌剂的堆肥处理方法温度相对较高,脱水快,pH值适宜,C/N调整较好,种子发芽指数高,堆肥后营养养分含量高,且大肠菌群数量少,堆肥效果较好。  相似文献   
247.
木质素降解酶在不同堆肥基质中的吸附传输特性研究   总被引:1,自引:0,他引:1  
为了深入探究木质素降解酶在不同堆肥基质中的吸附传输特性,通过批量实验对比了土壤、菜叶、稻草和米糠对木质素降解酶的吸附性能,并进行了动力学分析和等温吸附模型拟合,同时通过柱淋洗实验考察了木质素降解酶在4种堆肥基质中的迁移传输特性.结果表明,堆肥基质对木质素降解酶的吸附与基质种类有关,土壤、菜叶、稻草和米糠对木素过氧化物酶(LiP)和锰过氧化物酶(MnP)的吸附量分别为1.22、 1.27、 1.13、 1.22 U·g-1和5.09、 4.88、 4.43、 3.95 U·g-1.比较LiP和MnP吸附的动力学模型,准二级动力学方程为表征木质素降解酶吸附的最佳模型,其R2值为0.9732~0.9997, Elovich方程拟合较差,准一级动力学方程拟合最差;Langmuir模型对等温吸附数据进行拟合效果最好,而实验数据不适合用Freundlich方程表征.土壤、菜叶、稻草和米糠对LiP和MnP饱和吸附容量分别为1.23、1.30、1.17、1.14 U·g-1和5.70、 5.19、 4.73、 4.14 U·g-1.LiP和MnP在稻草和米糠基质中传输效果较好,可传输到最深层10 mL处,而在土壤和菜叶基质中则被滞留在浅层.  相似文献   
248.
The effect of compost-amendment and moisture status on the persistence of azoxystrobin [methyl (E)-2-{2-(6-(2-cyanophenoxy) pyrimidin-4-yloxy) phenyl}-3-methoxyacrylate], a strobilurin fungicide, in two rice-growing soils was studied. Azoxystrobin is more sorbed in the silt loam (K f – 4.66) soil than the sandy loam (K f – 2.98) soil. Compost-amendment at 5 % levels further enhanced the azoxystrobin sorption and the respective K f values in silt loam and sandy loam soils were 8.48 and 7.6. Azoxystrobin was more persistent in the sandy loam soil than the silt loam soil. The half–life values of azoxystrobin in nonflooded and flooded silt loam soil were 54.7 and 46.3 days, respectively. The corresponding half–life values in the sandy loam soils were 64 and 62.7 days, respectively. Compost application enhanced persistence of azoxystrobin in the silt loam soil under both moisture regimes and half-life values in non–flooded and flooded soils were 115.7 and 52.8 days, respectively. However, compost enhanced azoxystrobin degradation in the sandy loam soil and half-life values were 59 (nonflooded) and 54.7 days (flooded). The study indicates that compost amendment enhanced azoxystrobin sorption in the soils. Azoxystrobin is more persistent in non-flooded soils than the flooded soils. Compost applications to soils had mixed effect on the azoxystrobin degradation.  相似文献   
249.
The study was undertaken to determine the impact of high-metal composts on the activities of four soil enzymes. High concentrations of metal salts (Cr, Cu, Ni or a Co-Mo-Pb combination) were added to feedstocks during the thermophilic stage of composting. These four metal-enriched composts and an unamended control compost were then mixed with soil collected from long-term agriculture plots under organic management or conventional management. The compost-soil mixtures were prepared at two rates (1:1 or 1:3 compost:soil, v/v) and incubated at 20°C for three weeks. These 20 combinations plus the five composts and the two soils were added to pots and incubated for three weeks. Following incubation, soil enzyme activities (acid phosphatase, arysulfatase, dehydrogenase, phosphodiesterase) were measured using traditional assay procedures. Compared to the control, none of the high-metal composts inhibited soil enzyme activity. Notably, the Cu compost treatment produced significantly higher activity of all four enzymes in the soil compared to the control. Previous soil management influenced the activity of three enzymes, arysulfatase and dehydrogenase had greater activity in the organic soil while phosphatase activity was greater in the conventional soil. Increasing the proportion of compost in the pot had a positive effect on phosphodiesterase activity only. In conclusion, the high-metal compost treatments either enhanced or caused no adverse effects on soil enzyme activity.  相似文献   
250.
Abstract

A greenhouse experiment was conducted under simulated field conditions using large‐capacity plastic pots, filled each one with 25 kg of air‐dried calcareous soil. Besides the control, four treatments were prepared by applying separately two rates (20 and 80 Mg ha‐1) of municipal solid waste (MSW) compost, and co‐composted municipal solid waste and sewage sludge (MSW‐SS). Lettuce was planted and harvested 2.5 months later. The application of composted urban wastes tended to increase Cu concentration in lettuce with respect to the control, but it was only significant when the higher rate of MSW compost was applied. The control showed values of Zn concentration in plant within a deficient range. In general, composted urban wastes treatments had increased Zn concentration values, which were within the sufficiency range. Both treatments with MSW compost increased Cu and Zn uptake in comparison with MSW‐SS co‐compost treatments. At the postharvest, all composted urban wastes treatments increased significantly DTPA‐extractable Cu content in soil with respect to the control; it was also significant the increase in AAAc‐EDTA‐extractable Cu in soil produced by the addition of the higher rate of MSW compost. The application of composted urban wastes increased significantly DTPA‐extractable and AAAc‐EDTA‐extractable Zn contents in soil versus the control, except for the lower rate of MSW‐SS co‐compost. The values of DTPA‐extractable/total ratio for Cu and Zn were under 10%, except for the treatment applying the higher rate of MSW compost which promoted higher values. The values of AAAc‐EDTA‐extractable/total ratio for Cu were above 10% in all treatments including the control. This tendency was also observed in AAAc‐EDTA‐extractable/total ratio for Zn when applying both rates of MSW compost or the higher rate of MSW‐SS co‐compost.  相似文献   
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