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1.
热带亚热带酸性土壤硝化作用与氮淋溶特征   总被引:3,自引:0,他引:3  
通过室内好气培养和土柱模拟淋洗培养试验,研究了氨基氮肥加入对热带亚热带4种不同性质和利用方式酸性土壤硝化、氮及盐基离子淋溶、土壤及淋出液酸化的影响。4种土壤分别为采自花岗岩发育的海南林地砖红壤(HR)、玄武岩发育的云南林地砖红壤(YR)、第四纪红黏土发育的江西旱地红壤(RU)和第四纪下蜀黄土发育的江苏旱地黄棕壤(YU)。结果表明:4种土壤硝化作用大小表现为YU>RU>YR>HR。HR主要以可溶性有机氮(DON)和NH4+-N形态淋失,YU土壤的氮淋溶形态以NO3-N为主,YR和RU土壤的氮淋溶形态NO3-N、NH4+-N和DON兼而有之。盐基离子总淋失量与NO3-N淋失量显著正相关,但各盐基离子淋失由于离子本性和土壤性质差异并不完全一致。Ca2+在缓冲外源NH4+-N硝化致酸和平衡...  相似文献   

2.
3.
试验通过测量草酸浸出液光学密度来鉴别灰化土及灰壤的方法.在格鲁吉亚西部被调查的亚热带土壤范围内没诊断出灰化度,所以相应于这些土壤原方法完全适用.  相似文献   

4.
硫代硫酸铵对土壤硝化作用的影响   总被引:18,自引:0,他引:18       下载免费PDF全文
陶运平  W.A.Adams 《土壤学报》1997,34(4):467-474
本研究通过室内土壤培养试验,研究了石油化工副产品硫代硫酸铵(ATS)对土壤硝化作用的影响。研究结果表明,ATS对土壤硝化作用有着明显的抑制作用。当ATS用量达250μg/g土时,培养14天后抑制率仍可达82%;STS在效地抑制了由铵经生物氧化作用生成硝态氮的反应,这种反应是由硫代 硫酸根及其氧化产物共同作用产生的。  相似文献   

5.
我国亚热带湿润区土壤系统分类参比   总被引:3,自引:2,他引:3  
丁瑞兴  刘友兆  孙玉华 《土壤》1999,31(2):97-103,109
本文研究了我国亚热带的富铁山,淋溶土和雏形土共8个剖面的土壤系统分类高级单元的归属。参比供试土壤在《中国土壤系统分类》与《中国土壤分类系统》、美国《土壤系统分类》和FAO-Unesco《世界土壤图图例》中的分类位置和依据。  相似文献   

6.
熏蒸处理对土壤微生物及硝化作用的影响   总被引:3,自引:0,他引:3  
在田间条件下用溴甲烷(68.1g/m2)、威百亩(7.5mL/m2)进行土壤熏蒸,调查两种药剂对土壤微生物及硝化作用的影响。结果表明:两种熏蒸剂对土壤放线菌无抑制作用,对细菌总量影响较小,但亚硝酸细菌受到强烈抑制,土壤的硝化作用受到明显影响;同时,土壤中真菌的数量及种类变化显著。熏蒸后9周,处理区土壤中的微生物基本恢复正常。  相似文献   

7.
有机无机肥配施对酸性菜地土壤硝化作用的影响   总被引:5,自引:0,他引:5  
通过室内培养和田间试验, 研究了有机无机肥配施对酸性菜地土硝化作用的影响。培养试验条件为60%土壤最大持水量和25 ℃。 结果表明,土壤硝化作用模式为指数方程,延滞期10天。与纯化肥处理(NPK)相比,鲜猪粪配施无机肥(FPM+NPK)和猪粪堆肥配施无机肥(CPM+NPK)均能降低土壤硝化势和氨氧化潜势,猪粪堆肥配施无机肥还能增加土壤微生物量碳、 氮。鲜猪粪配施无机肥和猪粪堆肥配施无机肥处理在硝化培养和田间试验期间N2O释放量均没有差异,但硝化培养期间鲜猪粪配施无机肥的N2O释放量显著低于纯化肥处理,田间试验期间猪粪堆肥配施无机肥的N2O释放量显著低于纯化肥处理。培养试验结束后的土壤pH值与土壤硝化势间,以及硝化培养期间N2O累积释放量与土壤硝化势间均存在显著正相关关系。本研究表明, 有机无机肥配施显著影响土壤硝化作用以及硝化培养期间和田间N2O释放。  相似文献   

8.
化感物质对土壤硝化作用的影响   总被引:12,自引:1,他引:12  
试验研究了3种化感物质-苯甲酸、对羟基苯甲酸和阿魏酸在3种浓度(0.5mmoL、2.5mmoL和5.0mmol)、不同pH、不同土壤含水量等环境因子作用下对土壤硝化作用的影响,在第1d、4d、7d、10d、14d取样与对照比较,测定其对土壤中NH4^ -N转化为NO3^--N过程中的影响。结果表明,阿魏酸和苯甲酸对硝化作用的抑制率略高于对羟基苯甲酸,且阿魏酸随浓度升高而抑制作用加强。研究所采用的2种不同pH的土壤未表现出明显的差异;不同土壤含水量对转化为NO3^--N的总量影响较大,不加水的土壤样品NO3^--N的转化量很少,且随时间的推移其总量无多大为变化,而饱和含水量的样品NO3^--N的转化量随时间的推迟其总量一直上升,说明水分对土壤中NO3^--N的转化起着非常重要的作用。  相似文献   

9.
不同利用年限茶园土壤矿化、硝化作用特性   总被引:6,自引:0,他引:6  
薛冬  姚槐应  黄昌勇 《土壤学报》2007,44(2):373-378
茶叶(Camellia sinensis)是重要的经济作物,茶树具有耐酸耐铝毒等特性,适合在热带亚热带的酸性土壤种植。由于茶园的施肥管理,茶树凋落物归还土壤以及根系分泌物等原因,茶园土壤随着植茶年龄的增加,土壤理化性质会发生一系列变化。如土壤pH值下降,钙、镁等盐基离子和微量元素相对缺乏,而铝、氟和多酚类物质逐渐在茶园土壤中富集,形成了非常独特的茶园土壤生态系统。  相似文献   

10.
湿地土壤的硝化-反硝化作用及影响因素   总被引:8,自引:0,他引:8  
硝化-反硝化作用与土壤的供氮能力及氮气态损失密切相关,其对于湿地氮循环的生态意义重大。综述了湿地土壤硝化-反硝化作用的研究方法、影响因素及模型表征的研究动态。当前湿地土壤硝化-反硝化作用的研究主要集中在净硝化/反硝化能力方面,而模型研究仅停留在一般概念模型和动力学模型的表征上。影响湿地土壤硝化-反硝化作用的因素主要包括温度条件、水分条件、土壤理化性质及生物区系等。鉴于当前湿地土壤硝化-反硝化作用研究内容的不均衡性和不深入性,其在今后研究中应亟需加强的领域包括:(1)硝化-反硝化作用驱动机制;(2)概念模型与应用模型表征;(3)全球变暖、降水改变及碳、氮输入等对硝化-反硝化作用的影响;(4)人类活动对硝化-反硝化作用的影响。  相似文献   

11.
三种硝化抑制剂在石灰性土壤中的应用效果比较   总被引:8,自引:1,他引:8  
刘涛  梁永超  褚贵新  马丹  刘倩  王健 《土壤》2011,43(5):758-762
在人工气候室内采用25℃黑暗培养法研究双氰胺(DCD)、3,4-二甲基吡唑磷酸(DMPP)及2-氯-6-三氯甲基吡啶(Nitrapyrin)在石灰性土壤中的硝化抑制效果。结果表明:施用DCD、DMPP、Nitrapyrin的土壤NH4+-N含量较单施硫酸铵的土壤(对照)分别提高228.45~244.85 mg/kg(砂土)、209.75~254.79 mg/kg(黏土),NO3--N含量较对照分别降低93.85%~94.99%(砂土)、91.82%~95.38%(黏土)。表观硝化率随培养进程增加缓慢,培养期间只增加了1.28%~2.09%(砂土)、2.72%~8.40%(黏土),而对照增加了86.00%(砂土)、80.89%(黏土)。3种硝化抑制剂均显著抑制了石灰性土壤中硫酸铵水解铵硝化作用的进行,并且在砂土中的硝化抑制率高于黏土,硝化抑制效果最好的为DMPP处理,0.54%Nitrapyrin处理次之但用量最小,0.27%Nitrapyrin和10.8%DCD处理抑制效果相对较弱。  相似文献   

12.
The effects of simulated nitrogen (N)deposition on soil exchangeable cations were studied in three forest types of subtropical China. Four N treatments with three replications were designed for the monsoon evergreen broadleaf forest (mature forest):control (0 kg N ha-1 year-1), low N (50 kg N ha-1 year-1), medium N (100 kg N ha-1 year-1)and high N (150 kg N ha-1 year-1), and only three treatments (i.e., control, low N, medium N)were established for the pine and mixed forests. Nitrogen had been applied continuously for 26 months before the measurement. The mature forest responded more rapidly and intensively to N additions than the pine and mixed forests, and exhibited some significant negative symptoms, e.g., soil acidification, Al mobilization and leaching of base cations from soil. The pine and mixed forests responded slowly to N additions and exhibited no significant response of soil cations. Response of soil exchangeable cations to N deposition varied in the forests of subtropical China, depending on soil N status and land-use history.  相似文献   

13.
Summary Recent developments in biotechnology industries produce increasing amounts of byproducts with potential uses in agriculture. The present research focused on the nitrification of NH inf4 sup+ -N in biotechnology byproducts added to soils, and on the effects of 29 naturally occurring organic acids (19 aliphatic and 10 aromatic) on nitrification in soils. A 10-g soil sample was incubated for 10 days at 30°C with 2.0 mg NH inf4 sup+ -N in a byproduct or with 10 or 50 mol organic acid and 2.0 mg reagent-grade NH inf4 sup+ -N. In condensed molasses-fermentation solubles, produced during the microbial fermentation of sugar derived from corn (Zea mays L.) and molasses derived from beets (Beta sp.), in the production of lysine as a supplement in animal food, the nitrification of NH inf4 sup+ -N was similar to that of byproduct or reagent-grade (NH4)2SO4. Nitrite accumulated when either of these materials was added to a calcareous Canisteo soil. The NH inf4 sup+ -N in slops (produced during microbial fermentation processes occurring in the production of citric acid) was not nitrified in soils. Some organic acids inhibited, whereas others activated, nitrification in soils. Formic, acetic, and fumaric acids enhanced the production of NO inf2 sup- -N in a calcareous Canisteo soil, whereas all other aliphatic and aromatic acids studied decreased the accumulation of NO inf2 sup- -N. It is concluded that the addition or production of organic acids in soils affects the microbial dynamics, leading to significant changes in rates of nitrification and possibly in other N-transformation processes in soils.  相似文献   

14.
硝化作用驱动下红壤渗漏液的酸化   总被引:4,自引:0,他引:4  
钱琛  蔡祖聪 《土壤学报》2010,47(1):77-83
土壤渗漏液pH对于亚热带酸性土壤的物质迁移和溶液中物质形态具有重要影响。为了研究亚热带酸性土壤硝化作用释放H+与渗漏液pH的关系,以具有不同硝化强度的3个红壤样本为供试材料,分别加入铵态氮0、150和300 mg kg-1,进行112 d的室内土柱模拟淋溶实验。结果表明:酸性土壤的渗漏液并不一定呈酸性。土壤渗漏液pH取决于硝化作用产生H+的速率与土壤酸缓冲能力的综合作用。当硝化作用使渗漏液中NO3-浓度升高至一定程度时,渗漏液pH突然下降,这一临界NO3-浓度与土壤盐基饱和度及加入土壤的铵态氮量呈线性正相关(p0.05)。所以,硝化作用最强的旱地土壤,由于其盐基饱和度达81%,渗漏液始终保持中性;而硝化作用不强、盐基饱和度为21%的灌丛土壤,其渗漏液pH可降至4.0以下。  相似文献   

15.
Land-use and management practices can affect soil nitrification. However, nitrifying microorganisms responsible for specific nitrification process under different land-use soils remains unknown. Thus, we investigated the relative contribution of bacteria and fungi to specific soil nitrification in different land-use soils (coniferous forest, upland fields planted with corn and rice paddy) in humid subtropical region in China. 15N dilution technique in combination with selective biomass inhibitors and C2H2 inhibition method were used to estimate the relative contribution of bacteria and fungi to heterotrophic nitrification and autotrophic nitrification in the different land-use soils in humid subtropical region. The results showed that autotrophic nitrification was the predominant nitrification process in the two agricultural soils (upland and paddy), while the nitrate production was mainly from heterotrophic nitrification in the acid forest soil. In the upland soils, streptomycin reduced autotrophic nitrification by 94%, whereas cycloheximide had no effect on autotrophic nitrification, indicating that autotrophic nitrification was mainly driven by bacteria. However, the opposite was true in another agricultural soil (paddy), indicating that fungi contributed to the oxidation of NH4+ to NO3?. In the acid forest soil, cycloheximide, but not streptomycin, inhibited heterotrophic nitrification, demonstrating that fungi controlled the heterotrophic nitrification. The conversion of forest to agricultural soils resulted in a shift from fungi-dominated heterotrophic nitrification to bacteria- or fungi-dominated autotrophic nitrification. Our results suggest that land-use and management practices, such as the application of N fertilizer and lime, the long-term waterflooding during rice growth, straw return after harvest, and cultivation could markedly influence the relative contribution of bacteria and fungi to specific soil nitrification processes.  相似文献   

16.
In this study, a 15N tracing incubation experiment and an in situ monitoring study were combined to investigate the effects of different N fertilizer regimes on the mechanisms of soil N dynamics from a long-term repeated N application experiment. The field study was initiated in 2003 under a wheat-maize rotation system in the subtropical rain-fed purple soil region of China. The experiment included six fertilization treatments applied on an equivalent N basis (280 kg N ha−1), except for the residue only treatment which received 112 kg N ha−1: (1) UC, unfertilized control; (2) NPK, mineral fertilizer NPK; (3) OM, pig manure; (4) OM-NPK, pig manure (40% of applied N) with mineral NPK (60% of applied N); (5) RSD, crop straw; (6) RSD-NPK, crop straw (40% of applied N) with mineral NPK (60% of applied N). The results showed that long-term repeated applications of mineral or organic N fertilizer significantly stimulated soil gross N mineralization rates, which was associated with enhanced soil C and N contents following the application of N fertilizer. The crop N offtake and yield were positively correlated with gross mineralization. Gross autotrophic nitrification rates were enhanced by approximately 2.5-fold in the NPK, OM, OM-NPK, and RSD-NPK treatments, and to a lesser extent by RSD application, compared to the UC. A significant positive relationship between gross nitrification rates and cumulative N loss via interflow and runoff indicated that the mechanisms responsible for increasing N loss following long-term applications of N fertilizer were governed by the nitrification dynamics. Organic fertilizers stimulated gross ammonium (NH4+) immobilization rates and caused a strong competition with nitrifiers for NH4+, thus preventing a build-up of nitrate (NO3). Overall, in this study, we found that partial or complete substitution of NPK fertilizers with organic fertilizers can reduce N losses and maintain high crop production, except for the treatment involving application of RSD alone. Therefore, based on the N transformation dynamics observed in this study, organic fertilizers in combination with mineral fertilizer applications (i.e. OM, OM-NPK, and RSD-NPK treatments) are recommended for crop production in the subtropical rain-fed purple soils in China.  相似文献   

17.
Nitrification and nitrifying potential of tropical and subtropical soils   总被引:3,自引:0,他引:3  
Summary Nitrification was measured in five different soils (slate alluvial soil, sandstone shale alluvial soil, sandstone shale and slate alluvial soil, red soil, and Taiwan clay). In these soils different lag periods were recorded before the onset of nitrification. Nitrifying activity was highest in sandstone shale alluvial soil and the lowest in acidic red soil. A part from those in the red soil, the numbers of nitrifying bacteria detected were all higher than numbers reported in temperate soils. However, there were no clear relationships between the numbers of nitrifying bacteria and the rate of nitrification in these soils. When soil cores were incubated for 3 weeks, no NO inf2 sup- or NO inf3 sup- was defected in the slate alluvial soil. This was ascribed to denitrification.  相似文献   

18.
Abstract

It is generally recognized that the nitrification activity in acid soils is very low. Indeed, nitrification in mineral soils has been found to be negligible at pH values below 5.0 (Dancer et al. 1973; Nyborg and Hoyt 1978). However, it was reported that autotrophic nitrification occurred in some tea soils at pH levels far below 5.0 (Walker and Wickramasinghe 1979; Hayatsu and Kosuge 1993). An acidophilic ammonia-oxidizing bacterium has been recently isolated from strongly acidic tea soils in Japan (Hayatsu 1993). On the other hand, fertilization has-been considered to be an important factor influencing nitrification in agricultural soils. For example, several studies have shown that the addition of ammoniacal fertilizer to soils can lead to the increase of the populations of Nitrosomonas (McLaren 1971; Ardakani et al. 1974). Liming of acidic soils also tends to stimulate the nitrification activity (Dancer et al. 1973; Nyborg and Hoyt 1978). Although nitrification has been studied in a wide variety of agricultural soils, there is little information available on nitrification in tea soils. The effect of fertilization on nitrification in tea soils is poorly documented.  相似文献   

19.
 Nitrification inhibition of soil and applied fertilizer N is desirable as the accumulation of nitrates in soils in excess of plant needs leads to enhanced N losses and reduced fertilizer N-use efficiency. In a growth chamber experiment, we studied the effects of two commercial nitrification inhibitors (NIs), 4-amino 1,2,4-triazole (ATC) and dicyandiamide (DCD), and a commonly available and economical material, encapsulated calcium carbide (CaC2) (ECC) on the nitrification of soil and applied NH4 +-N in a semiarid subtropical Tolewal sandy loam soil under upland [60% water-filled pore space (WFPS)] and flooded conditions (120% WFPS). Nitrification of the applied 100 mg NH4 +-N kg–1 soil under upland conditions was retarded most effectively (93%) by ECC for up to 10 days of incubation, whereas for longer periods, ATC was more effective. After 20 days, only 16% of applied NH4 +-N was nitrified with ATC as compared to 37% with DCD and 98% with ECC. Under flooded soil conditions, nitrates resulting from nitrification quickly disappeared due to denitrification, resulting in a tremendous loss of fertilizer N (up to 70% of N applied without a NI). Based on four indicators of inhibitor effectiveness, namely, concentration of NH4 +-N and NO3 -N, percent nitrification inhibition, ratio of NH4 +-N/NO3 -N, and total mineral N, ECC showed the highest relative efficiency throughout the 20-day incubation under flooded soil conditions. At the end of the 20-day incubation, 96%, 58% and 38% of applied NH4 +-N was still present in the soil where ECC, ATC and DCD were used, respectively. Consequently, nitrification inhibition of applied fertilizer N in both arable crops and flooded rice systems could tremendously minimize N losses and help enhance fertilizer N-use efficiency. These results suggest that for reducing the nitrification rate and resultant N losses in flooded soil systems (e.g. rice lowlands), ECC is more effective than costly commercial NIs. Received: 25 May 2000  相似文献   

20.
为明确长期施肥和秸秆还田对稻田土壤生态系统氮素循环过程的影响,探索维持稻田土壤长期供氮潜力的途径,利用始于1990年的湖南红壤水稻土长期定位试验,研究了长期施肥和秸秆还田对水稻土剖面氮素迁移分布和C/N的影响,比较了不同温度下土壤氮素矿化曲线变化和不同施肥方式氮素矿化动态差异,分析了氮素累积矿化量与有效积温的关系。结果表明,长期施肥或秸秆可以促进红壤水稻土氮素的积累,其主要影响020cm土层,而化肥和秸秆配合施用作用更明显;长期施NPK化肥使土壤C/N降低,而秸秆还田使土壤C/N明显升高。在两种温度下的土壤矿质氮含量和累积矿化量曲线比较相似,10℃下土壤矿化速率达到稳定所需的时间要比30℃下长;30℃下不同施肥处理之间的矿化过程存在显著差异,而10℃下的差异较小,其在56d内矿化出来的矿质氮是10℃下的近两倍。化肥NP(仅施化肥NP)及NP+C(施化肥NP+秸秆还田)处理均有较高氮素矿化量,秸秆还田对土壤氮素矿化的促进作用比仅施化肥明显。在30℃下,土壤积累矿化量与有效积温的关系较好地符合有效积温方程式(EATM)(p0.01)。仅施化肥处理和对照方程中的K值相差不大,而秸秆还田与化肥配施处理方程的K值则有增大趋势,NPK+C(施化肥NPK+秸秆还田)处理的矿化潜力较大,且养分供应能力较强;秸秆配施化肥处理方程中n值的绝对值有减小趋势。随着培养时间延长,秸秆还田配施化肥处理土壤的累积矿化量保持在一个较稳定范围。  相似文献   

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