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91.
不同外源氮对石灰性土壤硝化作用的影响及其动力学分析   总被引:1,自引:0,他引:1  
为了揭示外源氮源对石灰性土壤硝化作用的影响机理,以钙积半干润均腐土(Cal-Ustic Isohumasols)为材料,采用室内培养方法研究了不同添加量和不同氮源对土壤硝化作用的影响,并建立了对应的硝化模型。结果表明,NH4+-N消耗速率和NO3--N增加速率呈S曲线变化,NH4+-N消耗速率高于NO3--N增加速率。氮素添加量与NH4+-N消耗速率和NO3--N增加速率呈正相关,硝化菌外的因子对NH4+-N和NO3--N的吸收与NH4+-N添加量呈正相关;不同氮素添加量对硝化作用影响程度不同,当氮素添加量为N 75 mg /kg,干土时,硝化作用较彻底。SO42-可加快硝化作用速率,同时也可改变其他因子对NH4+-N和NO3--N的利用。  相似文献   
92.
Agroforestry trees are now well known to play a central role in the build up of nutrients pools and their transformations similar to that of forest ecosystem, however, information on the potential of homegarden trees accumulating and releasing nitrogen (mineralization) is lacking. The present study reports seasonal variations in pool sizes of mineral N (NH4+-N and NO3-N), and net N-mineralization rate in relation to rainfall and temperature under coconut (Cocos nucifera L.), clove (Eugenia caryophyllata Thunb) and nutmeg (Myristica fragrans Houtt. Nees) trees in a coconut-spice trees plantation for two annual cycles in the equatorial humid climate of South Andaman Island of India. Concentration of NH4+-N was the highest during wet season (May–October) and the lowest during post-wet season (November–January) under all the tree species. On the contrary, concentration of NO3-N was the lowest in the wet season and the highest during the post-wet season. However, concentrations of the mineral N were the highest under the nutmeg and the lowest under the coconut trees. Like the pool sizes, mean annual mineralization was the highest under the nutmeg (561 mg kg−1 yr−1) and the lowest under the coconut trees (393 mg kg−1 yr−1). Rate of mineralization was the highest during the post-wet season and the lowest during the dry season (February–April) under all the tree species. High rainfall during the wet season, however, reduced the rate of nitrification under all the tree species. The mean annual mineralization was logarithmically related with rainfall amount and mean monthly temperature.  相似文献   
93.
王美珍 《水产学报》2005,29(5):682-687
研究了杭州湾南岸慈溪滩涂贝类养殖区的微生物在水平、垂直及季节变化的分布规律。结果表明:3个采样区的异养细菌的数量变动在1.62×103~6.62×105cfu.g-1之间,平均值为4.28×104cfu.g-1,细菌数量在春季和夏季的数量偏低,10月份异养细菌的数量开始上升,并于11月份达到最高,表层高于底层;其中以革兰氏阳性菌比例最高,为主要的优势种,具有陆源性特点。各站位反硝化细菌、氨化细菌和硫酸还原菌的检出率均为100%,都维持在一个较高的水平,整体上数量具有表层高于底层的特点,3种微生物在数量上的季节演替与异养细菌具有类似的结果,均为10-11月达到最大。  相似文献   
94.
The effects of crop plants and farmyard or poultry manure applications on temporal variations in nitrification rates were measured in a field experiment. In order to elucidate factors which may have been governing such rates, an augmented nitrification assay was applied. The basis of the assay was to measure nitrification rates under circumstances where substrate, i.e. ammonium-ion, and water and spatial constraints had been removed. Nitrification rates showed marked temporal variation, of over one order of magnitude, throughout the growing season. Nitrification rates were also similarly increased when substrate and spatial constraints were removed, but distinct temporal variations still persisted. The pattern of such variations varied according to assay conditions in the augmented nitrification assay. Barley plants had a statistically significant effect on nitrification rates, positive early in the growing season and negative at the end. Manures stimulated nitrification, with poultry manure having a greater effect than farmyard manure, and there was evidence for a relationship between heterotrophic and autotrophic activity. Factors other than ammonium-ion concentration and water or spatial restrictions must also regulate nitrification rates in mineral soils; these could include population size or interactions. Received: 7 January 1996  相似文献   
95.
研究旨在分析土壤中可培养细菌菌株的氮代谢特征,并进一步探讨微生物在土壤氮素转化中的可能作用机制。以2株分离自苹果园土壤的细菌菌株SY5-4和SY11-10为试材,采用传统培养方法结合分子检测技术,分别测定菌株生长特性及其氮素转化能力。研究结果表明,异养条件下,菌株SY5-4和SY11-10的世代时间分别为243.5 min和202.7 min。菌株生长过程中,培养液中铵态氮浓度始终维持在较高水平,铵态氮、亚硝态氮和硝态氮浓度均表现出先升后降的趋势。硝化(amo A和hao)和反硝化(nos Z、nor B、nir K和nap)基因检测结果表明,菌株SY11-10具有多种氮素转化潜能。综上,供试菌株培养过程中,培养液中氮素发生变化,并在菌体中检测到不同氮转化基因,表明菌株参与多种氮代谢途径。  相似文献   
96.
Abstract

Tests were conducted to determine the effects of leptophos, phorate, terbufos, and WL 24073 {0‐ [2‐chloro‐1‐(2,5‐dichloro‐phenyl) vinyl] 0‐methylethylphosphonothioate} on microbial populations and activities in a sandy loam. A stimulatory effect on bacterial numbers was observed with some insecticide treatments in the early stages of incubation. WL 24073 increased the nitrification of the incorporated (NH4)2SO4‐N. Phorate stimulated soil microbial respiration.  相似文献   
97.
The experiment was conducted with three biofloc treatments and one control in triplicate in 500 L capacity indoor tanks. Biofloc tanks, filled with 350 L of water, were fed with sugarcane molasses (BFTS), tapioca flour (BFTT), wheat flour (BFTW) and clean water as control without biofloc and allowed to stand for 30 days. The postlarvae of Litopenaeus vannamei (Boone, 1931) with an Average body weight of 0.15 ± 0.02 g were stocked at the rate of 130 PL m?2 and cultured for a period of 60 days fed with pelleted feed at the rate of 1.5% of biomass. The total suspended solids (TSS) level was maintained at around 500 mg L?1 in BFT tanks. The addition of carbohydrate significantly reduced the total ammonia‐N (TAN), nitrite‐N and nitrate‐N in water and it significantly increased the total heterotrophic bacteria (THB) population in the biofloc treatments. There was a significant difference in the final average body weight (8.49 ± 0.09 g) in the wheat flour treatment (BFTW) than those treatment and control group of the shrimp. Survival of the shrimps was not affected by the treatments and ranged between 82.02% and 90.3%. The proximate and chemical composition of biofloc and proximate composition of the shrimp was significantly different between the biofloc treatments and control. Tintinids, ciliates, copepods, cyanobacteria and nematodes were identified in all the biofloc treatments, nematodes being the most dominant group of organisms in the biofloc. It could be concluded that the use of wheat flour (BFTW) effectively enhanced the biofloc production and contributed towards better water quality which resulted in higher production of shrimp.  相似文献   
98.
Digestates vary in composition and studies regarding their impact on C and N dynamics in soils are scarce. The objective was to analyse the C and N dynamics of digestates originating from various substrates applied to a sandy Cambisol and a silty Anthrosol. In three laboratory experiments (4–6 weeks), the effects of digestate properties, N rate and water content were tested. Averaged over both soils, 21% of the C supplied was emitted as CO2. Potential NH3 emissions during the first week ranged between 6% and 12% of NH4+ present in the digestates. The emission factors in the sandy Cambisol were on average 1.2 and 2 times higher for CO2 and potential NH3, respectively, compared to the silty Anthrosol. Similarly, net nitrogen mineralization in the sandy Cambisol was approximately twice the N mineralized in the silty Anthrosol. Net nitrification was not influenced by soil texture or different digestates, but increased with increasing application rates and had highest values at 75% of water holding capacity. Our results indicate that the type of substrate input for anaerobic digestion influences the properties of the digestate and therefore the dynamics of C and N. However, soil texture can affect these dynamics markedly.  相似文献   
99.
The amounts of N2O released in periods of alternate freezing and thawing depend on site and freezing conditions, and contribute considerably to the annual N2O emissions. However, quantitative information on the N2O emission level of forest soils in freeze‐thaw cycles is scarce, especially with regard to the direct and indirect effect of tree species and the duration of freezing. Our objectives were (i) to quantify the CO2 and N2O emissions of three soils under beech which differed in their texture, C and N contents, and humus types in freeze‐thaw cycles, and (ii) to study the effects of the tree species (beech (Fagus sylvatica L.) and spruce (Picea abies (L.) Karst.)) for silty soils from two adjacent sites and the duration of freezing (three and eleven days) on the emissions. Soils were adjusted to a matric potential of –0.5 kPa, and emissions were measured in 3‐hr intervals for 33 days. CO2 emissions of all soils were similar in the two freeze‐thaw cycles, and followed the temperature course. In contrast, the N2O emissions during thawing differed considerably. Large N2O emissions were found on the loamy soil under beech (Loam‐beech) with a maximum N2O emission of 1200 μg N m–2 h–1 and a cumulative emission of 0.15 g N m–2 in the two thawing periods. However, the sandy soil under beech (Sand‐beech) emitted only 1 mg N2O‐N m–2 in the two thawing periods probably because of a low water‐filled pore space of 44 %. The N2O emissions of the silty soil under beech (Silt‐beech) were small (9 mg N m–2 in the two thawing periods) with a maximum emission of 150 μg N m–2 h–1 while insignificant N2O emissions were found on the silty soil under spruce (0.2 mg N m–2 in the two thawing periods). The cumulative N2O emissions of the short freeze‐thaw cycles were 17 % (Sand‐beech) or 22 % (Loam‐beech, Silt‐beech) less than those of the long freeze‐thaw cycles, but the differences between the emissions of the two periods were not significant (P ≤ 0.05). The results of the study show that the amounts of N2O emitted in freeze‐thaw cycles vary markedly among different forest soils and that the tree species influence the N2O thawing emissions in forests considerably due to direct and indirect impacts on soil physical and chemical properties, soil structure, and properties of the humus layer.  相似文献   
100.
不同根系分泌物对土壤N2O排放及同位素特征值的影响   总被引:1,自引:0,他引:1  
【目的】探究植物根系分泌的主要组分(有机酸、氨基酸、糖类)对土壤N2O排放及其微生物过程的影响,为选择适宜的植物进而控制土壤N2O排放提供支撑。【方法】通过室内试验分别添加草酸、丝氨酸、葡萄糖于土壤中模拟根系的3种主要分泌物,每种分泌物设置两个浓度水平:低浓度(150 μg C·d -1)和高浓度(300 μg C·d -1),另设置添加蒸馏水的对照组,共7个处理。将土壤置于120 mL玻璃瓶中进行培养,24 h内采集气体样品7次,每次培养2 h,获取N2O排放速率、日累积排放量和同位素特征值(δ 15N bulk、δ 18O和SP(site preference,SP=δ 15N α-δ 15N β))。【结果】添加3种根系分泌物组分后,土壤N2O排放速率均逐渐升高,且均高于对照。高浓度处理组N2O累积排放量为:葡萄糖((3.2±1.3)mg·kg -1·d -1)处理>丝氨酸((2.6±0.5)mg·kg -1·d -1)处理>草酸((1.4±0.2)mg·kg -1·d -1)处理,低浓度处理组为:草酸((2.7±1.3)mg·kg -1·d -1)处理>丝氨酸((1.8±0.4)mg·kg -1·d -1)处理>葡萄糖((1.6±0.8)mg·kg -1·d -1)处理;添加根系分泌物的不同处理间土壤N2O的δ 18O值无明显差异,并稳定在24.1‰—25.6‰,且均显著高于对照((20.1±1.5)‰);土壤N2O的δ 15N bulk值与添加根系分泌物的种类有关,其中草酸处理组为(-20.06±2.22)‰、丝氨酸处理组为(-22.33±1.10)‰、葡萄糖处理组为(-13.86±1.11)‰、对照组为(-23.14±3.72)‰。各处理土壤N2O的SP值的变化范围为13.13‰—15.03‰,根系分泌物浓度越高,SP值越低。综合分析不同处理4个指标(N2O排放速率、N2O的δ 15N bulk、δ 18O和SP值)的不同时刻的检测值与日均值的校正系数,添加根系分泌物后第16小时各处理4个指标的校正系数最接近于1。【结论】在NH+ 4-300 mg N·kg -1的土壤环境下根系分泌物促进N2O的排放,且在培养期间(24 h)土壤N2O排放速率逐渐升高。高浓度处理组葡萄糖对土壤N2O排放速率促进效果最强,低浓度处理组草酸对土壤N2O排放速率促进效果最强。与对照组相比,根系分泌物的添加使N2O的δ 18O值显著升高;与对照组相比,葡萄糖的添加使δ 15N bulk值显著升高。根系分泌物浓度越高,反硝化作用对N2O的贡献越大。  相似文献   
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