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101.
猪粪中典型类固醇雌激素的固相萃取/GC-MS检测   总被引:2,自引:2,他引:0  
以猪粪中常见且具有较大潜在危害的E1(雌酮),17α-E2(17α-雌二醇),17β-E2(17β-雌二醇)和E3(雌三醇)为研究对象,建立了猪粪中这4种典型类固醇雌激素的GC-MS(气相色谱-质谱)分析检测方法.着重优化了样品的前处理方法,包括对超声提取剂、超声提取时间、固相萃取淋洗剂、衍生化温度和时间的优化选择.结果表明:在优化的试验条件下,猪粪中的典型雌激素E1,17α-E2,17β-E2和E3检出限分别为8.0,2.5,5.1和3.3 μg/kg,平均加标回收率在92.3%~137.4%之间.   相似文献   
102.
鸡粪腐解过程中不同溶性腐殖质结合铜的变化   总被引:2,自引:1,他引:2  
以鸡粪为材料,添加不同比例的铜锌进行腐解试验,研究了腐解过程中不同溶性腐殖质结合态铜(水溶性、氢氧化钠溶性、氢氧化钠-焦磷酸钠混合液溶性)浓度的动态变化、受锌含量的影响及其与有效铜的关系.结果表明,粪肥原样H2O-Cu(水溶性腐殖质结合态铜)占其全铜量的10.97%,在腐解过程中先上升后下降;随着粪肥中添加铜量的增加(1:1、2:1、3:1处理),H2O-Cu占其全铜的比例相应减少了(平均分别占其全铜的比例的7.10%、5.18%和3.74%);H2O-Cu随着腐解时间延长呈增加趋势;在腐解的后期(45、60d),粪肥中锌含量的增加会降低H2O-Cu含量.腐解初期粪肥原样NaOH浸提腐殖质-铜(NaOH-Cu)占其全铜量的70.87%,随腐解进行其比例大幅度下降;NaOH-Cu占其全铜的比例随着加入铜的增大而有所下降,分别为55.59%、46.04%和38.08%,且随着腐解时间延长呈下降趋势;粪肥中锌含量的增加对NaOH-Cu含量变化影响较小.粪肥原样中NaOH-Na4P2O7提取腐殖质结合态铜(NaOH-Na4P2O7-Cu)占其全铜量的24.29%,随腐解过程呈增加趋势,NaOH-Na4P2O7-Cu量随着加入铜量的增加而增加,占其全铜比例的15%~25%;粪肥中锌含量增加对NaOH-Na4P2O7-Cu有促进作用.粪肥添加铜锌后,3种浸提剂提取的可溶性腐殖质结合态铜有55%~80%分配在NaOH的溶液中,10%~30%分配在NaOH-Na4P2O7碱性混合液中,0~10%在水溶液中;随加入铜含量和锌含量的增加,NaOH-Na4P2O7-Cu平均分配比(占3种町浸提性腐殖质-Cu的比例)增加,NaOH-Cu和H2O-Cu的分配比减少.相关性分析结果表明:H2O-Cu、NaOH-Cu和NaOH-Na4P2O7-Cu之间显著正相关,它们与有效铜之间呈显著正相关关系(p<0.01).  相似文献   
103.
This study involves the assessment of the potential impacts of greenhouse gas climate change and changing ambient carbon dioxide (CO2) levels on crop yields in Quebec, Canada. The methodology involves coupling the transient diagnostics of two Atmosphere-Ocean General Circulation Models, namely the Canadian CGCM1 and the British HadCM3, to the Decision Support System for Agrotechnology Transfer (DSSAT) 3.5 crop models to simulate current (1961–1990) and future (2040–2069) crop yields and changes. This is done for four different crop species, namely spring wheat, maize, soybean, and potato, and for seven agricultural regions of Southern Quebec. The results of this study focus on the main causative factors influencing crop yields, namely the direct CO2 fertilization effect, the influence of the increase in growing season temperature, including optimal thermal conditions and acceleration in crop maturation, soil moisture availability, as influenced by precipitation and evapotranspiration, and nitrogen uptake by crops. Our results show that crop yield changes may vary according to climate scenario, crop species, and agricultural region. Consistent with other similar research, it would seem that these multiple causative factors very often seem to cancel each other out and dilute the impacts of climate change on crop yields.  相似文献   
104.
Every year 90 million tonnes of housed livestock manures are produced in the UK. This is a valuable reservoir of global phosphorus (P) and a point in the cycle where it is vulnerable to being lost from the terrestrial system. Improved manure management for the effective reuse of phosphorus is vital to simultaneously tackle a major source of water pollution and reduce our dependence on imported fertilisers. This paper quantifies, for the first time, the spatial and temporal challenges of recycling the required amount of manure P from areas of livestock production to areas of crop production in eight regions of England. The analysis shows that England has a P deficit and therefore the capacity to fully utilise the manure P on arable land, but that uneven spatial distribution of livestock poses a significant challenge to closing the P loop in agriculture. Two of the eight regions were shown to have surplus manure P, with the remaining six regions having P deficits, indicating that an annual export of 4.7 thousand tonnes P (2.8 million tonnes manure) must take place from the west to the east of the country each year to balance P supply and demand. Moreover, housed manure production peaks between October and February, requiring an excess of 23.0 thousand tonnes P (15 million tonnes manure) to be stored until it can be used for crop fertilisation from March onwards. The results demonstrate the scale of the challenge in managing manure P in an agricultural system that has separated livestock production from crop production, a pattern that is echoed throughout the developed world. To overcome the spatial and temporal challenges, a logistical system is recommended that will balance the nutrient potential (nitrogen and P content and availability) and pollution potential (eutrophication, greenhouse gas emissions, particulates and nitrous oxide from transport) for cost-effective and environmentally compatible redistribution of manure P from areas of surplus to areas of deficit, when required.  相似文献   
105.
Predicting N mineralization from organic manures like farmyard manure (FYM) is more difficult than from fresh organic materials like crop residues, as the manures vary greatly in composition. A laboratory incubation experiment was carried out for 98 days at 30 °C under aerobic conditions to study the effects on N dynamics of Gliricidia (Gliricidia sepium, Jacquin) and FYM application to soil at 5 and 10 g kg−1. Application of Gliricidia induced N mineralization from the start of incubation period, with the amount of N mineralized increasing with rate of application. In contrast, application of FYM resulted in immobilization of mineral N in soil, irrespective of the rate of application. The initial net immobilization from FYM was limited by availability of N in the soil for the higher rate of application.We used the APSIM SoilN module to simulate these contrasting patterns of mineralization of N from Gliricidia and from FYM. The prediction of N mineralized from Gliricidia was better than FYM. The default model parameters specify that the fresh organic matter pools (FPOOL1, FPOOL2 and FPOOL3) have the same C:N ratio and this assumption was ineffective in predicting N mineralized from FYM. The predictive ability of the model improved when this default assumption was modified based on the size of the individual pools (FPOOL1, FPOOL2 and FPOOL3), and the pool's C:N ratios. The modelling efficiency, a measure of goodness of fit between the simulated and observed data, improved markedly for the modified model. The discrepancy between the modelled and observed data was a tendency for the model to underestimate the rate of re-mineralization at the lower rate of application of FYM in the later part of incubation. Unfortunately the appropriate modification to the size and C:N ratios of the FPOOLs could not be determined on the basis of chemical analysis alone. Thus, a true predictive application of the model to a new FYM material is not yet possible.  相似文献   
106.
In this paper we describe and test a sub-model that integrates the cycling of carbon (C), nitrogen (N) and phosphorus (P) in the Soil Water Assessment Tool (SWAT) watershed model. The core of the sub-model is a multi-layer, one-pool soil organic carbon (SC) algorithm, in which the decomposition rate of SC and input rate to SC (through decomposition and humification of residues) depend on the current size of SC. The organic N and P fluxes are coupled to that of C and depend on the available mineral N and P, and the C:N and N:P ratios of the decomposing pools. Tillage explicitly affects the soil organic matter turnover rate through tool-specific coefficients. Unlike most models, the turnover of soil organic matter does not follow first order kinetics. Each soil layer has a specific maximum capacity to accumulate C or C saturation (Sx) that depends on texture and controls the turnover rate. It is shown in an analytical solution that Sx is a parameter with major influence in the model C dynamics. Testing with a 65-yr data set from the dryland wheat growing region in Oregon shows that the model adequately simulates the SC dynamics in the topsoil (top 0.3 m) for three different treatments. Three key model parameters, the optimal decomposition and humification rates and a factor controlling the effect of soil moisture and temperature on the decomposition rate, showed low uncertainty as determined by generalized likelihood uncertainty estimation. Nonetheless, the parameter set that provided accurate simulations in the topsoil tended to overestimate SC in the subsoil, suggesting that a mechanism that expresses at depth might not be represented in the current sub-model structure. The explicit integration of C, N, and P fluxes allows for a more cohesive simulation of nutrient cycling in the SWAT model. The sub-model has to be tested in forestland and rangeland in addition to agricultural land, and in diverse soils with extreme properties such high or low pH, an organic horizon, or volcanic soils.  相似文献   
107.
长期不同施肥方式对江南稻田系统生产力与抗逆性的影响   总被引:1,自引:0,他引:1  
依据29 a的田间施肥小区试验和4 a的养分耗竭盆栽试验,比较分析了不同施肥方式对江南丘陵稻田生产力及抗逆性的综合影响。结果表明,有机无机肥配施(NPK+OM处理)方式下,双季稻各季和周年生产力最高,其周年平均生物量和籽粒产量比化肥氮磷钾配施(NPK处理)高24.5%和20.2%。与单施氮肥相比,化肥氮磷钾配施显著提高了双季稻的氮素利用效率,而适量增施有机氮能够进一步提高氮素利用效率。化肥单施方式(N和NPK处理)下水稻周年籽粒产量呈递减趋势,下降幅度分别为43.7和1.8 kg.hm-2.a-1,而有机无机肥配施方式下水稻周年籽粒产量呈递增趋势,上升幅度为6.9 kg.hm-2.a-1。平衡施肥方式(NPK和NPK+OM处理)下,水稻各季及周年籽粒产量的年际变异较小,可持续性产量指数和系统生产力稳定性较高。养分耗竭试验4 a后,各处理水稻各季及周年生物量和籽粒产量高低基本表现为NPK+OM>NPK>N,试验期内周年籽粒平均产量以有机无机肥配施处理最高,说明有机无机肥配施的稻田土壤耐瘠能力高于其他施肥处理。可见,有机无机肥配施不仅能使稻田系统持续保持较高的生产力,而且能够提升系统的抗逆性,有利于江南丘陵稻田系...  相似文献   
108.
水稻光合碳在植株-土壤系统中分配与稳定对施磷的响应   总被引:4,自引:1,他引:3  
为探究稻田土壤光合碳的输入及分配对施磷的响应特征,本研究选用籼性常规水稻品种(中早39),在两个施磷(0 mg·kg-1和80 mg·kg-1;分别记为P0和P80)条件下进行盆栽试验,同时采用13CO2连续标记技术量化光合碳在水稻-土壤系统中的分配.结果表明,施磷显著增加光合碳在水稻地上部的分配,降低其在根际土的分配(P<0.05);施磷使拔节期水稻的光合碳含量增加了70%,根系干重降低了31%.与不施磷相比,施磷显著提高了水稻地上部全碳含量0.31 g·pot-1P<0.05),显著降低了水稻根冠比;施磷使进入非根际土壤微生物量的光合碳(13C-MBC)显著增加了0.03 mg·kg-1,但降低其在根际土壤的分配;光合碳在非根际土壤颗粒态有机碳(POC)和矿物结合态有机碳(MOC)的分配对施磷的响应不显著,但在根际土壤施磷处理显著降低了其在POC中的含量.因此,施磷增加了光合碳在水稻-土壤系统的分配,但降低了光合碳在土壤中的积累.本研究探讨施磷对水稻光合碳在水稻-土壤系统的分配及其稳定的影响,为缺磷土壤的合理施用磷肥及其对土壤有机碳积累的影响提供理论基础和数据支撑;对理解稻田土壤光合碳的传输与分配特征及其固碳潜力具有重要意义.  相似文献   
109.
牛粪堆肥系统环境因子对抗性基因的影响   总被引:3,自引:2,他引:1  
彭晶  王科  谷月  王爱杰 《环境科学》2019,40(3):1439-1445
本研究利用实时定量PCR技术检测牛粪60 d好氧堆肥过程中典型四环素类抗性基因(tet Q、tet W、tet M、tet G、tet A和tet X)和大环内酯类抗性基因(erm35、erm36、erm B、erm F、erm T和erm X)的数量变化规律,系统研究了温度、含水率、挥发性有机质(VS)含量、碳氮比(C/N)、pH值、氧化还原电位(ORP)等堆肥系统环境因子和细菌数量(TCB)对这两类典型抗生素抗性基因的影响.结果表明,堆肥升温阶段牛粪中tet Q、tet W、tet G和tet X数量分别增加1. 7、0. 3、84. 8和4. 5倍,而tet M丰度降低了83. 1%;堆肥腐熟阶段牛粪中tet G和tet X数量分别增加23. 8和11. 5倍,而tet W、tet Q和tet M数量均降低90%.整个牛粪堆肥过程中erm35、erm36、erm B、erm F、erm T和erm X丰度分别增加2. 1、430. 4、0. 6、11. 5、2. 1和49. 1倍. RDA分析表明,牛粪堆肥过程中对四环素与大环内酯类抗性基因数量影响较大的3个环境因子分别为:ORP(54. 8%)、温度(34%)和VS(11. 3%),其中ORP与erm X和erm B、温度与tet Q和erm F以及VS与tet W数量均呈明显地正相关.  相似文献   
110.
长期施肥下水稻根际和非根际土壤微生物碳源利用特征   总被引:4,自引:3,他引:1  
以红壤丘陵区典型稻田长期定位施肥试验土壤为研究对象,选取不施肥(CK)、化肥(NPK)、秸秆还田+化肥(NPKS)、30%有机肥+化肥(LOM)和60%有机肥+化肥(HOM)这5种处理,研究长期不同施肥条件下水稻根际和非根际土壤微生物碳源利用特征.基于~(18)O-H_2O示踪的结果表明,土壤微生物量碳(MBC)和微生物生长速率(CGrowth)均以HOM处理最高,CK处理最低.根际土中,土壤微生物基础呼吸速率以HOM最高,CK和NPK最低;微生物碳源利用效率(CUE)以NPK最高,LOM和HOM最低.非根际土中,不同施肥处理的基础呼吸速率和CUE均无显著差异. MicroResp~(TM)结果显示,非根际土中微生物对外源碳源代谢能力高于根际土.施用有机物料(秸秆或有机肥)均能提高微生物对羧酸类、氨基酸、碳水化合物的代谢速率,且土壤微生物利用羧酸类碳源的活性最高,其次为氨基酸类和碳水化合物类碳源,对复杂化合物的代谢速率较低. RDA分析表明,微生物对不同碳源代谢情况的聚类总体以根际土与非根际土分开,CK与施肥处理分开,且NPK与NPKS相对聚集,LOM与HOM相对聚集,NPK、NPKS与LOM、HOM分开,即不同施肥处理显著改变土壤微生物对外源碳源代谢特征.结果表明,施肥未改变微生物CUE和基础呼吸速率,但有外源碳源输入(如根系分泌物)的情况下,施用有机物料增加基础呼吸、降低CUE.  相似文献   
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