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1.
养殖废弃物堆肥中抗生素和抗性基因的降解研究   总被引:2,自引:1,他引:1  
抗生素的滥用及排放会造成细菌产生耐药性以及抗生素抗性基因(Antibiotic resistance genes, ARGs)的传播和扩散。畜禽粪便是导致环境中抗生素污染的主要来源之一。本文综述了四环素类、大环内酯类、喹诺酮类、β-内酰胺类、磺胺类和氨基糖苷类等在水土环境中广泛存在的抗生素及其环境残留水平和对动植物、微生物的影响,分析了当前利用堆肥技术降解畜禽粪便中抗生素和ARGs效果及机制的研究情况。总结得出,猪粪中抗生素残留量最高,其中四环素类残留量为1390~354 000 mg·kg^-1,磺胺类170.6~89 000 mg·kg^-1,氟喹诺酮类411.3~1 516.2 mg·kg^-1,硝基呋喃类85.1~158.1 mg·kg^-1,大环内酯类1.4~4.8 mg·kg^-1。堆肥对大部分抗生素具有好的降解效果,其中四环素类抗生素降解率为62.7%~99%,磺胺类为0~99.99%,对大环内酯类几乎可以完全降解,但是,堆肥无法降解喹诺酮类抗生素。养殖废弃物堆肥过程中,ARGs的降解情况同样因抗生素种类和堆肥方式而不同。已有的研究表明,除大环内酯类ARGs外,堆肥对其他ARGs均具有有效的降解效果,降解率为50.03%~100%。堆肥初期的优势菌门是厚壁菌门、放线菌门、变形菌门和拟杆菌门;堆肥结束后放线菌门成为最优势菌门。初始抗生素的浓度不影响堆肥结束时微生物的群落组成。温度和pH是影响抗生素降解的最主要因素,而ARGs的降解效果主要受温度影响。  相似文献   
2.
谷子秸秆剪切力与其饲料营养特性变化规律及相互关系   总被引:1,自引:1,他引:0  
为探究谷子秸秆力学性质与其饲料特性的变化规律及相互关系,选用谷物完熟期的谷子秸秆,将其分为5段(近根部、中下部、中部、中上部、上部)并每隔7 d进行秸秆节间、茎节力学性质(剪切、压缩)和饲料特性(形态指标、营养成分)测定。试验结果表明:谷物完熟后,随着时间的推进,秸秆节间、茎节剪切力、抗压强度、干物质含量、纤维素含量、半纤维素含量和木质素含量总体上呈增大趋势,而秸秆含水率、当量直径、横截面积、线性密度和粗蛋白含量总体上呈减小趋势。谷子秸秆单位直径剪切力与含水率和线性密度呈负相关关系(R2≥0.903),与其干物质、纤维素、半纤维素和木质素含量呈正相关关系(R2≥0.845),与其粗蛋白含量无显著相关关系(P>0.05)。采收期内,谷子秸秆基部起秸秆剪切力至顶部逐渐增大,且剪切力与当量直径、横截面积呈正相关关系(R2≥0.916)。试验表明谷子秸秆饲料特性指标验证试验值与预测值相对误差不大于6.48%,预测模型合理。测量秸秆剪切力可用于预测其形态指标参数和营养成分含量,进而一定程度地反映秸秆饲用价值和反刍动物择食趋向。采收期内,谷子中部及以上秸秆单位直径剪切力显著小于其近根部(P<0.05),更适合饲用;且谷物完熟后,及时采收可避免秸秆饲用价值降低。该研究可为高效利用谷子秸秆资源提供参考。  相似文献   
3.
As the impact of green space shrinkage in urban centers becomes obvious, local and regional authorities must adopt environmental planning policies that can help create new green areas to ensure a good quality of life for citizens, along with the rehabilitation of the natural environment. One approach is the promotion of green infrastructure on buildings, including multi-dwelling apartment buildings. In order to effectively promote green infrastructure on buildings, it is essential to comprehend public attitudes toward green infrastructure, so that suitable and effective strategies can be implemented by policy makers. In this study, eight hundred respondents were asked to provide their views on green infrastructure on buildings, on construction that should take place on blocks of apartments in order to accommodate green infrastructure and on the related benefits that may arise from creating green spaces on buildings. A structured questionnaire and stratified sampling were used for the interviews, which were conducted with apartment owners in two regional units of Athens. The results showed that most citizens are willing to proceed with the installation of a green roof, trellis or vertical garden, in order to improve the aesthetics and functionality of the building they live in. Most of the respondents are not familiar with the energy savings that may occur from the installation of a green roof, vertical trellis or garden and wish for a subsidy from the state in order to implement green building solutions. To conclude, the participants in our study are not environmentally aware, since they are not interested in energy conservation but only about the aesthetics of their building; furthermore, they expect to receive financial support from the state in order to make any changes to their home.  相似文献   
4.
Great understanding of the genotypic difference in diurnal stomatal conductance (gs) pattern and the key determinants of the pattern is important for saving water by adopting cultivars appropriately. Fifteen wheat genotypes were studied under different soil conditions and various meteorological conditions with pot cultivation in rain shelter for two years. Genotype and air humidity were found to be key determinants of diurnal gs pattern. All genotypes under low relative humidity (LRH) and most genotypes under high relative humidity (HRH) displayed a gradual decline pattern from morning through the afternoon. Under moderate relative humidity (MRH), all genotypes present a single-peak curve pattern, but they differed in peak time, which may lead to unreliable gs comparison between genotypes and get ostensible contrasting materials. The stomatal conductance was significantly different among genotypes under LRH and the increased gs magnitude is also significantly different when it was compared between LRH and HRH. The present results provide new thinking for selecting and adopting appropriate cultivars with specific stomata traits for the area with various meteorological conditions.  相似文献   
5.
肉鸭粪便排放特征的季节性变化   总被引:2,自引:0,他引:2  
本研究旨在探讨肉鸭粪便的特性,并对其不同季节的污染物排放特征进行评价,为肉鸭养殖场废弃物处理和资源化利用提供依据。分4个季节进行了北京Z型肉鸭饲养试验(饲养期37 d),记录采食量、产粪量,并定期测定饲料和粪便中水分和有机质含量及总氮(TN)、P、Cu、Zn含量。结果表明:肉鸭粪便中Zn含量秋季最高, TN、P、Cu含量均为冬季最高;冬季粪便中TN含量极显著高于夏、秋两季(P0.01); P、Cu含量在冬季均极显著高于其余季节(P0.01);粪便中Cu、Zn含量均为春季最低。肉鸭粪便平均含水率为84.61%,夏季最高,春季最低;平均有机质含量为83.38%,表现为冬春秋夏。春夏秋冬四季的粪便产生量分别为338.3g?d~(-1)?只~(-1)、275.9 g?d~(-1)?只~(-1)、317.6 g?d~(-1)?只~(-1)和327.0 g?d~(-1)?只~(-1),夏季最低。TN、P、Cu、Zn的排泄系数分别为2.13 g?d~(-1)?只~(-1)、2.48g?d~(-1)?只~(-1)、2.56 mg?d~(-1)?只~(-1)、21.10 mg?d~(-1)?只~(-1);春冬两季的TN日排泄量显著高于夏秋两季; P的日排泄量表现为冬季极显著高于其余3个季节;夏季Cu的日排泄量与春季差异不显著,极显著低于秋、冬两季(P0.01)。TN在秋季排泄占比最低,春季最高;而P排泄占比为秋季最高,春季最低。肉鸭在饲养期TN、P、Cu、Zn的排泄量与对应元素的摄入量具有极显著的正相关关系(P0.01)。研究表明:季节因素能对肉鸭粪便中含水率、有机质、TN、P、Cu和Zn含量产生显著影响,同时各季节各元素的排泄量与相应元素的摄入量显著相关。  相似文献   
6.
负压供水下盆栽大豆叶片的光合生理研究   总被引:1,自引:0,他引:1  
试验采用一种自制装置,在负压灌溉原理的基础上,通过设置一系列供水吸力梯度,结合盆栽方式对大豆叶片叶绿素含量、光合及荧光参数的变化进行了研究.结果表明:供水吸力增加,土壤重量含水量下降,大豆叶片叶绿素a(Chl a)、叶绿素b(Chl b)含量降低,类胡萝卜素(Car)含量增加; 吸力处理在50~70 hPa时光合参数均保持在较高的水平,气孔限制是光合速率(P n)下降的主要原因,120、140 hPa处理时非气孔限制起主要作用;随着光强(PAR)的增加,电子传递速率(ETR)增加,实际光量子产量(Yield)与光化学淬灭(qP)下降,非光化学淬灭(qN)上升,4个处理中50 hPa吸力下的大豆叶片活性较高.  相似文献   
7.
The potato (Solanum tuberosum L.) is widely planted in the Middle Anatolian Region, especially in the Nigde-Nevsehir district where 25% of the total potato growing area is located and produces 44% of the total yield. In recent years, the farmers in the Nigde-Nevsehir district have been applying high amounts of nitrogen (N) fertilizers (sometimes more than 900 kg N ha−1) and frequent irrigation at high rates in order to get a much higher yield. This situation results in increased irrigation and fertilization costs as well as polluted ground water resources and soil. Thus, it is critical to know the water and nitrogen requirements of the crop, as well as how to improve irrigation efficiency. Field experiments were conducted in the Nigde-Nevsehir (arid) region on a Fluvents (Entisols) soil to determine water and nitrogen requirements of potato crops under sprinkler and trickle irrigation methods. Irrigation treatments were based on Class A pan evaporation and nitrogen levels were formed with different nitrogen concentrations.The highest yield, averaging 47,505 kg ha−1, was measured in sprinkler-irrigated plots at the 60 g m−3 nitrogen concentration level in the irrigation treatment with limited irrigation (480 mm). Statistically higher tuber yields were obtained at the 45 and 60 g m−3 nitrogen concentration levels in irrigation treatments with full and limited irrigation. Maximum yields were obtained with about 17% less water in the sprinkler method as compared to the trickle method (not statistically significant). On the loam and sandy loam soils, tuber yields were reduced by deficit irrigation corresponding to 70% and 74% of evapotranspiration in sprinkler and trickle irrigations, respectively. Water use of the potato crop ranged from 490 to 760 mm for sprinkler-irrigated plots and 565–830 mm for trickle-irrigated treatments. The highest water use efficiency (WUE) levels of 7.37 and 4.79 kg m−3 were obtained in sprinkle and trickle irrigated plots, respectively. There were inverse effects of irrigation and nitrogen levels on the WUE of the potato crops. Significant linear relationships were found between tuber yield and water use for both irrigation methods. Yield response factors were calculated at 1.05 for sprinkler methods and 0.68 for trickle methods. There were statistically significant linear and polynomial relationships between tuber yield and nitrogen amounts used in trickle and sprinkler-irrigated treatments, respectively. In sprinkler-irrigated treatments, the maximum tuber yield was obtained with 199 kg N ha−1. The tuber cumulative nitrogen use efficiency (NUEcu) and incremental nitrogen use efficiency (NUEin) were affected quite differently by water, nitrogen levels and years. NUEcu varied from 16 to 472 g kg−1 and NUEin varied from 75 to 1035 g kg−1 depending on the irrigation method. In both years, the NH4-N concentrations were lower than NO3-N, and thus the removed nitrogen and nitrogen losses were found to be 19–87 kg ha−1 for sprinkler methods and 25–89 kg ha−1 for trickle methods. Nitrogen losses in sprinkler methods reached 76%, which were higher than losses in trickle methods.  相似文献   
8.
The effect of irrigation frequency on soil water distribution, potato root distribution, potato tuber yield and water use efficiency was studied in 2001 and 2002 field experiments. Treatments consisted of six different drip irrigation frequencies: N1 (once every day), N2 (once every 2 days), N3 (once every 3 days), N4 (once every 4 days), N6 (once every 6 days) and N8 (once every 8 days), with total drip irrigation water equal for the different frequencies. The results indicated that drip irrigation frequency did affect soil water distribution, depending on potato growing stage, soil depth and distance from the emitter. Under treatment N1, soil matric potential (ψm) Variations at depths of 70 and 90 cm showed a larger wetted soil range than was initially expected. Potato root growth was also affected by drip irrigation frequency to some extent: the higher the frequency, the higher was the root length density (RLD) in 0–60 cm soil layer and the lower was the root length density (RWD) in 0–10 cm soil layer. On the other hand, potato roots were not limited in wetted soil volume even when the crop was irrigated at the highest frequency. High frequency irrigation enhanced potato tuber growth and water use efficiency (WUE). Reducing irrigation frequency from N1 to N8 resulted in significant yield reductions by 33.4 and 29.1% in 2001 and 2002, respectively. For total ET, little difference was found among the different irrigation frequency treatments.  相似文献   
9.
Increasing K+ adsorption can be an effective alternative in building an available K pool in soils to optimize crop recovery and minimize losses into the environment. We hypothesized that long-term fertilization might change K+ adsorption because of changes in the chemical and mineralogical properties of a rice (Oryza sativa L.). The aims of this study were (i) to determine clay minerals in paddy soil clay size fractions using X-ray diffraction methods and a numerical diagram-decomposition method; (ii) to measure K+ adsorption isotherms before and after H2O2 oxidation of organic matter, and (iii) to investigate whether K+ adsorption is correlated with changes in soil chemical and mineral properties. The 30-yr long-term fertilization treatments caused little change in soil organic C (SOC) but a large variation in soil mineral composition. The whole-clay fraction (<5 μm) corresponded more to the fertilization treatment than the fine-clay fraction (<1 μm) in terms of percentage of illite peak area. The total percentage of vermiculite-chlorite peak area was significantly negatively correlated with the total percentage of illite peak area in the <5 μm soil particles (R=-0.946, P<0.0006). Different fertilization treatments gave significantly different results in K+ adsorption. The SOC oxidation test showed positive effects of SOC on K+ adsorption at lower K+ concentration (?120 mg L?1) and negative effects at higher K+ concentration (240 mg L?1). The K+ adsorption by soil clay minerals after SOC oxidization accounted for 60–158% of that by unoxidized soils, suggesting a more important role of soil minerals than SOC on K+ adsorption. The K+ adsorption potential was significantly correlated to the amount of poorly crystallized illite present (R=0.879, P=0.012). The availability of adsorbed K+ for plant growth needs further study.  相似文献   
10.
农牧交错带地区发展保护性耕作的意义与前景   总被引:6,自引:0,他引:6  
在系统总结保护性耕作技术的内涵、技术内容和类型的基础上,阐述了保护性耕作保土、保水、提高土地生产力、增加农业效益的重要作用,并根据北方农牧交错带的实际情况,从气候、土壤、农作物和社会因素四个方面对技术的可行性进行了科学的分析,认为保护性耕作技术在农牧交错带地区应用前景广阔,但社会经济因素将是制约保护性耕作技术应用的重要因子。加强配套技术的研究、增加资金的投入以及加快农民观念的转变是农牧交错带地区深入开展保护性耕作技术推广与应用需要重点解决的问题。  相似文献   
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