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1.
选取黄河三角洲芦苇湿地、柽柳湿地、盐地碱蓬湿地和光滩这4种典型自然湿地及农垦地棉花田作为研究对象,阐明不同植被类型自然湿地土壤营养元素分布特征和生态化学计量学特征,并进行农垦地同自然湿地的对比研究.结果表明,自然湿地内土壤总有机碳(TOC)和总氮(TN)含量总体表现为:芦苇湿地、柽柳湿地>盐地碱蓬湿地>光滩,TOC和TN含量同土壤电导率值(EC)和pH值呈显著负相关(P<0.05);棉花田TOC、 TN和全磷(TP)含量显著高于自然湿地(P<0.05),其中硝态氮(NO-3-N)含量为自然湿地的9.4~11.4倍,但棉花田碳、氮和磷含量同EC值和pH值无显著相关性(P>0.05).相关分析表明,自然湿地土壤碳氮比(C/N)主要受控于TN含量(P<0.05),棉花田土壤C/N显著低于自然湿地(P<0.05).自然湿地及棉花田土壤碳磷比(C/P)和氮磷比(N/P)均值较低,且与土壤TOC和TN含量变化趋势一致.对比分析发现,整体上棉花田土壤营养元素含量、 C/N、 C/P和N/P差异显著(P<0.0...  相似文献   

2.
Increasing evidences have shown that dissolved organic components are responsible for the significant C and N exports from terrestrial ecosystems to the surrounding aquatic ecosystems and very sensitive to CO2 enrichment. However, there is still a lack of direct evidence about CO2-led effects on these components at the ecosystem scale, especially in wetlands. We, therefore, simultaneously investigated the contents of dissolved organic carbon (DOC) and dissolved nitrogen (DN) in the surface water and soil layer in a paddy field under FACE facility in Eastern China. Elevated CO2 significantly increased the contents of DOC and DN in the surface water by 18.0% and 14.3% on average. Elevated CO2 also increased DOC content in the soil, but decreased DN content. The contents of DOC and DN in the soil–water interface of 0–1 cm soil layer were on average 22.4% and 47.5% higher than in the 5–15 cm soil layer. Besides, significant higher DOC and DN contents existed in the soil porewater than in the surface water. Due to multiple drainage regime and rainstorm-induced runoffs in rice cropping regions, CO2-led DOC and DN increments in the surface water may increase C and N exports from paddies to the surrounding aquatic ecosystems under future climate patterns.  相似文献   

3.
An experiments were carried out with treatments differing in nitrogen supply (0, 5 and 15 g N/m2) and CO2 levels (350 and 700 μmol/mol) using OTC (open top chamber) equipment to investigate the biomass of Calamagrostis angustifolia and soil active carbon contents after two years. The results showed that elevated CO2 concentration increased the biomass of C. angustifolia and the magnitude of response varied with each growth period. Elevated CO2 concentration has increased aboveground biomass by 16.7% and 17.6% during the jointing and heading periods and only 3.5% and 9.4% during dough and maturity periods. The increases in belowground biomass due to CO2 elevation was 26.5%, 34.0% and 28.7% during the heading, dough and maturity periods, respectively. The responses of biomass to enhanced CO2 concentrations are differed in N levels. Both the increase of aboveground biomass and belowground biomass were greater under high level of N supply (15 g N/m2). Elevated CO2 concentration also increased the allocation of biomass and carbon in root. Under elevated CO2 concentration, the average values of active carbon tended to increase. The increases of soil active soil contents followed the sequence of microbial biomass carbon (10.6%) > dissolved organic carbon (7.5%) > labile oxidable carbon (6.6%) > carbohydrate carbon (4.1%). Stepwise regressions indicated there were significant correlations between the soil active carbon contents and plant biomass. Particularly, microbial biomass carbon, labile oxidable carbon and carbohydrate carbon were found to be correlated with belowground biomass, while dissolved organic carbon has correlation with aboveground biomass. Therefore, increased biomass was regarded as the main driving force for the increase in soil active organic carbon under elevated CO2 concentration.  相似文献   

4.
为了增强对全球变化背景下湿地生态系统碳氮循环的整体认识,采用稻田FACE(Free Air CO2Enrichment)试验(位于江苏省江都市,始于2004年)方法,研究了2006年位于江都市的稻田水体中总有机碳、总氮、可溶性有机碳、可溶性氮的动态变化.结果表明:大气CO2浓度升高显著提高了稻田水体中以上各指标含量(p<0.01),其中各有机碳的增幅均大于相应的氮.与对照相比,FACE田块水体中总有机碳、总氮、可溶性有机碳和可溶性氮分别平均提高了31.2%、25.9%、28.3%和25.6%.不同生育时期各指标含量存在显著差异(p<0.01).上述结果还表明,大气CO2浓度增高不仅会通过富营养化稻田水体来影响水稻安全生产,而且还会提高其中可溶性碳氮含量,进而可能通过田间排水尤其是水稻生长前期暴雨导致的洪涝来增加稻田碳氮向周边水域的输送,从而影响到稻田生态系统的碳氮循环和土壤生产力.  相似文献   

5.
The aim of this experiment was to determine the impacts of climate change on soil profile concentrations and diffusion effluxes of methane in a rice–wheat annual rotation ecosystem in Southeastern China. We initiated a field experiment with four treatments: ambient conditions (CKs), CO2 concentration elevated to ~ 500 μmol/mol (FACE), temperature elevated by ca. 2°C (T) and combined elevation of CO2 concentration and temperature (FACE + T). A multilevel sampling probe was designed to collect the soil gas at four different depths, namely, 7 cm, 15 cm, 30 cm and 50 cm. Methane concentrations were higher during the rice season and decreased with depth, while lower during the wheat season and increased with depth. Compared to CK, mean methane concentration was increased by 42%, 57% and 71% under the FACE, FACE + T and T treatments, respectively, at the 7 cm depth during the rice season (p < 0.05). Mean methane diffusion effluxes to the 7 cm depth were positive in the rice season and negative in the wheat season, resulting in the paddy field being a source and weak sink, respectively. Moreover, mean methane diffusion effluxes in the rice season were 0.94, 1.19 and 1.42 mg C/(m2·hr) in the FACE, FACE + T and T treatments, respectively, being clearly higher than that in the CK. The results indicated that elevated atmospheric CO2 concentration and temperature could significantly increase soil profile methane concentrations and their effluxes from a rice–wheat field annual rotation ecosystem (p < 0.05).  相似文献   

6.
泉州湾海岸湿地沉积物C、N的空间变化   总被引:7,自引:2,他引:5  
王爱军  陈坚  李东义  卓志强 《环境科学》2007,28(10):2361-2368
在泉州湾不同类型海岸湿地采集了6根短柱状样,利用激光粒度仪分析了沉积物的粒度并计算了中值粒径,利用元素分析仪分析了沉积物中的总有机碳(TOC)、总无机碳(TIC)和总氮(TN)含量.结果显示,泉州湾海岸湿地的沉积物以粉砂和粘土质粉砂为主,中值粒径介于9.2~18.5 μm之间;水头光滩湿地沉积物TIC含量约为0.137%,高于附近互花米草湿地的含量(0.014%~0.038%),TIC主要集中在粗颗粒部分.沉积物TOC、TN含量分别介于0.939%~2.057%和0.163%~0.260%之间,互花米草对C、N具有很强的富集能力,红树林对C、N的富集能力很弱;周边的排污活动使水头地区的TOC含量明显高于洛阳江河口地区.沉积物TOC、TN含量与中值粒径之间的相关性很弱,TOC与TN之间具有显著的正相关关系,互花米草湿地TN含量与C/N、互花米草湿地和光滩湿地的TOC与C/N均表现为显著的正相关,这些初步说明泉州湾海岸湿地沉积物的TOC主要来源于周边污染物的排放及植被自身生产.  相似文献   

7.
刘远  王光利  李恋卿  潘根兴 《环境科学》2017,38(3):1245-1252
硝化和反硝化微生物参与土壤氮循环转化过程,大气CO_2浓度和温度升高可能会影响它们的群落结构和活性.本试验依托稻-麦轮作农田系统气候变化平台研究大气CO_2浓度单独升高(CE)、升温(WA)以及两者同时升高(CW)对麦田土壤硝化和反硝化微生物基因丰度、群落结构和活性的影响.结果表明,在小麦分蘖期,大气CO_2浓度和温度升高对氨氧化细菌(AOB)和反硝化细菌丰度没有影响,而在抽穗和成熟期,CO_2浓度单独升高显著提高了氨氧化古菌(AOA)和反硝化细菌丰度,升温处理对其没有显著影响.通过对T-RFLP数据分析发现,大气CO_2浓度和温度升高对土壤AOA、AOB和反硝化细菌群落结构没有显著影响,但是在一定程度上改变了AOA和反硝化细菌多样性.另外,CO_2浓度单独升高处理显著提高了成熟期的土壤硝化速率,不同气候变化处理对反硝化速率没有显著影响.研究表明大气CO_2浓度和温度升高对不同生育期的微生物群落影响存在差异,而且功能微生物对不同气候变化因子处理的响应也各不相同.  相似文献   

8.
Understanding the effects of warming on greenhouse gas(GHG, such as N_2O, CH_4 and CO_2 )feedbacks to climate change represents the major environmental issue. However, little information is available on how warming effects on GHG fluxes in farmland of North China Plain(NCP). An infrared warming simulation experiment was used to assess the responses of N_2O, CH_4 and CO_2 to warming in wheat season of 2012–2014 from conventional tillage(CT) and no-tillage(NT) systems. The results showed that warming increased cumulative N_2O emission by 7.7% in CT but decreased it by 9.7% in NT fields(p 0.05). Cumulative CH_4 uptake and CO_2 emission were increased by 28.7%–51.7% and 6.3%–15.9% in both two tillage systems,respectively(p 0.05). The stepwise regressions relationship between GHG fluxes and soil temperature and soil moisture indicated that the supply soil moisture due to irrigation and precipitation would enhance the positive warming effects on GHG fluxes in two wheat seasons.However, in 2013, the long-term drought stress due to infrared warming and less precipitation decreased N_2O and CO_2 emission in warmed treatments. In contrast, warming during this time increased CH_4 emission from deep soil depth. Across two years wheat seasons, warming significantly decreased by 30.3% and 63.9% sustained-flux global warming potential(SGWP) of N_2O and CH_4 expressed as CO_2 equivalent in CT and NT fields, respectively. However, increase in soil CO_2 emission indicated that future warming projection might provide positive feedback between soil C release and global warming in NCP.  相似文献   

9.
CO2倍增条件下不同生育期水稻碳氮磷含量及其计量比特征   总被引:1,自引:0,他引:1  
生态化学计量比的变化特征在一定程度上可反映植物对环境条件变化适应的本质.本研究利用CO_2连续标记系统模拟大气CO_2体积分数升高(800×10-6)条件,探讨水稻各器官C、N、P含量及其计量比变化的特征.结果表明,CO_2倍增促进水稻各器官生长,并增加了根冠比.在植株生长过程中CO_2倍增可一定程度上降低不同生育期内秸秆全氮(TN)含量,同时使得水稻根系、秸秆和籽粒的C/N比值增大,降低N和提高P的利用效率.多重比较和韦恩图分析表明CO_2体积分数仅对水稻秸秆TN有着显著影响,对水稻养分含量及其计量比特征的变异解释率均为-1. 0%,即几乎不受CO_2倍增影响.在大气CO_2体积分数升高条件下,水稻各器官C、N、P含量及其计量比具有良好的计量学内稳性特征,同时在不同生育期内其计量比变化特征与"生长速率理论"相符.在农田管理措施中,可适当施加氮肥来缓解CO_2体积分数升高带来的养分平衡压力.  相似文献   

10.
程萌  马俊杰  刘丹  薛璐  吴宁  胡芊 《环境科学学报》2021,41(6):2390-2401
为研究CO2地质封存过程中CO2泄漏对水稻及稻田土壤的风险影响,利用CO2模拟泄漏平台,研究了不同CO2泄漏速率下水稻生长、稻田土壤性质与土壤细菌组成及多样性的变化特征.结果表明:随着CO2泄漏速率的增加,稻田土壤pH显著降低,电导率显著增加,水稻生长受到明显抑制;稻田土壤细菌的丰富度指数和多样性指数均有增加,均匀度指数有所降低.CO2泄漏显著改变了稻田土壤细菌组成,稻田土壤的优势菌门中变形菌门、拟杆菌门与绿弯菌门的相对丰度总体降低,而酸杆菌门与放线菌门的相对丰度总体升高;稻田土壤优势菌属中RB41、MND1、厌氧粘菌属及鞘脂单胞菌属的丰度总体升高,而硝化螺旋菌属的丰度总体降低;稀有细菌中CO2泄漏下全部出现的有粘胶球形菌门、柔膜菌门及双头菌属、硫杆菌属,CO2泄漏后全部消亡的为假单胞菌属.建议将变形菌门的减少和酸杆菌门的增加,以及RB41、MND1及厌氧粘菌属的增加作为稻田土壤CO2泄漏监测的推荐指标.  相似文献   

11.
Hybrid rice (Oryza sativa L.) cultivars play an important role in rice production due to its heterosis, resistance to environmental stress and high yield potential. However, no attention has been given to its yield responses to rising atmospheric CO2 concentration ([CO2]). To address this need, we conducted a Free Air CO2 Enrichment (FACE) experiment at Yangzhou, Jiangsu, China, in 2004–2006. A two-line inter-subspecific hybrid rice variety Liangyoupeijiu, recently bred in China, was grown at ambient or elevated (c. 570 μmol mol?1) [CO2] under two levels of nitrogen (N) application (12.5 and 25 g N m?2). Elevated [CO2] slightly accelerated phenological development (1–2 days), and substantially enhanced grain yield (+30%). The magnitude of yield response to [CO2] was independent of N fertilization, but greatly varied among years. On average, elevated [CO2] increased panicle number per unit land area by 8%, due to an increase in maximum tiller number under FACE, while productive tiller ratio remained unaffected. Spikelet number per panicle showed an average increase of 10% due to elevated [CO2], which was also supported by increased plant height and dry weight per stem. Meanwhile, Elevated [CO2] caused a significant enhancement in both filled spikelet percentage (+5%) and individual grain mass (+4%). Compared with previous rice FACE studies, this hybrid cultivar appears to profit much more from elevated [CO2] than inbred japonica cultivars (c. +13%), not only due to its stronger sink generation, but also enhanced capacity to utilize the carbon sources in a high [CO2] environment. As sufficient intraspecific variation in yield response exists under field conditions, there is a pressing need to identify genotypes which would produce maximum grain yield under projected future [CO2] levels.  相似文献   

12.
基于时空替代的研究方法,对贵州草海湿地土壤有机碳和氧化还原酶活性分布进行了研究,分析了土壤总有机碳(TOC)和可溶性有机碳(DOC)与土壤酶活性、环境因子之间的关系.结果表明,不同退化梯度湿地土壤中有机碳存在较大的差异,沿着退化梯度表层土壤TOC、DOC含量和脱氢酶(DHA)活性逐渐降低(p0.05),而多酚酶(PPO)活性逐渐升高(p0.05);在垂直剖面上,原生湿地(CH1)和轻度退化湿地(CH_2)土壤TOC先增加后减少,而沼泽化湿地(CH3)和草甸湿地(CH_4)土壤TOC无明显的分层和富聚现象;相关性分析表明,TOC、DOC与PPO显著负相关(p0.01),而PPO与土壤含水率(WHC)、总氮(TN)和硝酸盐(NO-3-N)含量等显著负相关(p0.01),与pH显著正相关(p0.01).以上结果表明,土壤有机碳和酶活性的变化是对湿地退化的响应,湿地退化碳库的损失与PPO活性增加有关,而WHC、TN、NO-3-N和pH是影响PPO活性分布的重要因子.  相似文献   

13.
外源碳和氮输入对降水变化下土壤呼吸的短期影响   总被引:1,自引:1,他引:0  
利用野外原位小区控制试验,模拟研究了降水变化下草地生态系统土壤呼吸对外源碳和氮输入的响应.在2014年,以内蒙古锡林河流域温带典型草原为研究对象,测定了增加降水处理(CK)、增加降水配施氮肥处理[CN,2.5 g·(m2·a)-1]、增加降水配施碳源处理[CG,24 g·(m2·a)-1]和增加降水配施氮肥和碳源处理[CNG,2.5 g·(m2·a)-1+24 g·(m2·a)-1]下土壤呼吸的变化,并分析了土壤呼吸与土壤温度、土壤水分、土壤可溶性有机碳(DOC)、土壤微生物量碳(MBC)之间的关系.结果表明,在自然降水较多的第一次增加降水(FWE)阶段,CG处理和CNG处理168 h土壤CO2累积通量显著增加,而CN处理168 h土壤CO2累积通量无显著变化,并且CG处理和CNG处理土壤MBC含量显著高于CK处理和CN处理,同时,该阶段平均CO2释放速率与土壤MBC含量正相关(P<0.05).与FWE阶段相比,无自然降水的第二次增加降水(SWE)阶段各处理168 h土壤CO2累积释放量显著降低,并且各处理MBC含量也显著降低(P<0.05),仅有土壤DOC含量显著增加(P<0.05),CG处理和CN处理168 h土壤CO2累积通量显著降低(P<0.05).两个降水阶段土壤呼吸速率与土壤温度或土壤体积含水量均有显著的正相关性(P<0.05).因此,自然降水的分布对土壤水分的影响调控着外源氮和碳对半干旱草地生态系统土壤呼吸的作用效应.  相似文献   

14.
Impacts of nutrient management on C mineralization and greenhouse gas (GHGs) emission from soils have been of much concern in global change. Using laboratory incubation, the production of CH4 and CO2 were studied from both bulk samples and the particle size fractions (PSF) of topsoil from a paddy under a long-term different fertilization trial (including non (NF), chemical without (CF) and with manure (CFM) fertilization, respectively) in the Tai Lake Region, China. Four PSFs (2000–200, 200–20, 20–2, <2 μm) were separated from undisturbed samples collected after rice harvest by a low-energy ultrasonic dispersion procedure. Both the bulk samples and PSFs were incubated under submerged condition for 72 days. The concentration of CH4 and CO2 evolved during incubation were determined by gas chromatography. C mineralization rates ranged from 0.13 to 0.52 mg C g−1 C day−1, with different fertilizations and size of the PSFs, and were not correlated with C/N ratio. While CO2 production predominated over CH4 from C mineralization from both bulk samples and the size fractions, CH4 production played a predominant role in the total global warming potential (GWP) under all treatments. C mineralization of bulk soil was significantly higher under CF than under CFM and NF. CH4 production, however, was 3 times as under CFM and 27 times as under NF, indicating a tremendous effect of chemical fertilization alone on the total GWP. CO2 production from the PSFs differed from CH4 under a single treatment, which was notably from the coarse PSFs larger than 200 μm. Higher C mineralization and CH4 production with a higher metabolic quotient under CF implicated a vulnerability of soil functioning of GHGs mitigation in the paddy receiving chemical fertilizers only. Thus, rational organic amendments should be undertaken for mitigating the climate change.  相似文献   

15.
Soil CO_2efflux(SCE) is an important component of ecosystem CO_2 exchange and is largely temperature and moisture dependent, providing feedback between C cycling and the climate system. We used a precipitation manipulation experiment to examine the effects of precipitation treatment on SCE and its dependences on soil temperature and moisture in a semiarid grassland. Precipitation manipulation included ambient precipitation, decreased precipitation(- 43%), or increased precipitation(+ 17%). The SCE was measured from July2013 to December 2014, and CO_2 emission during the experimental period was assessed.The response curves of SCE to soil temperature and moisture were analyzed to determine whether the dependence of SCE on soil temperature or moisture varied with precipitation manipulation. The SCE significantly varied seasonally but was not affected by precipitation treatments regardless of season. Increasing precipitation resulted in an upward shift of SCE–temperature response curves and rightward shift of SCE–moisture response curves,while decreasing precipitation resulted in opposite shifts of such response curves. These shifts in the SCE response curves suggested that increasing precipitation strengthened the dependence of SCE on temperature or moisture, and decreasing precipitation weakened such dependences. Such shifts affected the predictions in soil CO_2 emissions for different precipitation treatments. When considering such shifts, decreasing or increasing precipitation resulted in 43 or 75% less change, respectively, in CO_2 emission compared with changes in emissions predicted without considering such shifts. Furthermore, the effects of shifts in SCE response curves on CO_2 emission prediction were greater during the growing than the non-growing season.  相似文献   

16.
氨氧化细菌(AOB)和氨氧化古菌(AOA)是驱动土壤氨氧化过程的"引擎".氨氧化过程在土壤氧化亚氮(N2O)和一氧化氮(NO)排放过程中扮演着重要角色.有机无机肥配施是实现化肥零增长和作物稳产增产的重要途径,但在有机无机肥配施下,菜地土壤AOB和AOA对氨氧化过程的相对贡献仍不清楚.本研究采用选择性抑制的方法(辛炔和乙炔)区分有机肥添加近3年后(2016年10月—2019年5月)AOB和AOA在氨氧化过程中对碱性菜地土壤N2O和NO产生的相对贡献.试验共设5种施肥处理:不施氮肥(CK)、单施尿素(N)、单施有机肥(M)、50%尿素+50%有机肥(M1N1)和80%尿素+20%有机肥(M1N4).结果表明,有机无机肥配施(M1N1和M1N4)可显著增加土壤电导率、有机碳和全氮含量.培养试验发现,与N处理相比,M和M1N1处理分别使N2O排放量增加100.7%和38.8%,NO排放量增加77.9%和42.8%,AOB基因丰度增加16.6%和10.2%,同时,AOB对N2O排放的相对贡献增加6.5%.相反,M1N4处理分别使N2O和NO排放量降低19.3%和4.8%,AOB基因丰度降低37.5%,同时,AOB对N2O及NO排放的相对贡献分别降低7.8%和7.4%.相关分析表明,土壤N2O和NO累积排放量与土壤AOB基因丰度呈显著正相关(p<0.05),与土壤AOA基因丰度无显著相关性.有机无机肥配施下AOB是氨氧化过程的主要驱动者,适当比例的有机无机肥配施(即M1N4)措施可在一定程度上减弱AOB对碱性菜地土壤N2O及NO排放的相对贡献.  相似文献   

17.
A simulated climate warming experiment was conducted to evaluate the combined effects of elevated temperature and CO_2 concentration on the bioaccumulation,translocation and subcellular distributions of Cd and Zn in wheat seedlings(Triticum aestivum L.cv.Xihan 1.) at Dingxi,Gansu Province,China.The objective was to find evidence that global climate change is affecting the bioaccumulation of Cd and Zn in T.aestivum L.cv.Xihan 1.The results showed that compared to control A,elevated temperature and CO_2 increased Cd bioaccumulation in the shoots by 1.4–2.5 times,and increased that in the roots by 1.2–1.5times,but decreased Zn levels in wheat shoots by 1.4–2.0 times,while decreased that in the roots by 1.6–1.9 times.Moreover,temperature and CO_2 concentration increase also led to increased Cd concentration,and decreased Zn concentration in subcellular compartments of wheat seedlings.The largest Cd concentration increase(174.4%) was observed in the cell wall and debris fractions of shoots after they were subjected to the highest CO_2 and temperature treatment(TC3).The largest Zn concentration decrease(53.1%) was observed in the soluble(F3) fractions of shoots after they were subjected to the medium CO_2 and temperature treatment(TC2).The temperature and CO_2 increase had no significant effect on the proportional distribution of Cd and Zn in the subcellular fractions.The root-to-shoot translocation of Cd increased with the increasing temperature and CO_2 concentration.However,the Zn distributions only fluctuated within a small range.  相似文献   

18.
不同肥料种类对稻田红壤碳氮淋失的影响   总被引:5,自引:3,他引:5  
土壤中碳、氮淋失降低土壤肥力,污染水体环境.为探究不同施肥种类对稻田红壤碳氮淋失影响,本试验依托中国科学院千烟洲生态站(114°53’E,26°48’N)1998年建立的红壤稻田长期定位控制试验,选用负压法采集土壤溶液,研究秸秆还田(ST)、有机肥(OM)、化肥(NPK)对土壤碳、氮淋失状况及时间动态的影响.结果表明:1稻田土壤中氮素淋失以铵态氮(NH+4-N)为主,施用NPK使土壤中NH+4-N(1.2 mg·L-1±0.1 mg·L-1)淋失最严重,施用OM使土壤中可溶解性有机碳(DOC)(27.3 mg·L-1±1.6 mg·L-1)淋失最严重,且土壤中DOC和NH+4-N均在水稻营养生长期淋失最严重(P<0.05);2施用OM与NPK可以增加稻田红壤中NH+4-N、DOC、总有机碳(SOC)和总氮(TN)含量,且施用NPK增加TN效果最显著,施用OM增加SOC最显著;3土壤渗漏液中DOC含量与稻田红壤中SOC含量呈显著正相关(P<0.01),土壤渗漏液中NH+4-N含量与稻田红壤中TN含量呈显著正相关(P<0.01).  相似文献   

19.
Compressed natural gas(CNG)is most appropriate an alternative of conventional fuel for automobiles.However,emissions of carbon-monoxide and methane from such vehicles adversely affect human health and environment.Consequently,to abate emissions from CNG vehicles,development of highly efficient and inexpensive catalysts is necessary.Thus,the present work attempts to scan the effects of precipitants(Na_2CO_3,KOH and urea)for nickel cobaltite(Ni Co_2O_4)catalysts prepared by co-precipitation from nitrate solutions and calcined in a lean CO-air mixture at 400°C.The catalysts were used for oxidation of a mixture of CO and CH_4(1:1).The catalysts were characterized by X-ray diffractometer,Brunauer–Emmett–Teller surface-area,X-ray photoelectron spectroscopy;temperature programmedreductionandScanningelectronmicroscopycoupledwith Energy-Dispersive X-Ray Spectroscopy.The Na_2CO_3was adjudged as the best precipitant for production of catalyst,which completely oxidized CO-CH_4mixture at the lowest temperature(T_(100)=350°C).Whereas,for catalyst prepared using urea,T_(100)=362°C.On the other hand the conversion of CO-CH_4mixture over the catalyst synthesized by KOH limited to 97%even beyond 400°C.Further,the effect of higher calcination temperatures of 500 and600°C was examined for the best catalyst.The total oxidation of the mixture was attained at higher temperatures of 375 and 410°C over catalysts calcined at 500 and 600°C respectively.Thus,the best precipitant established was Na_2CO_3and the optimum calcination temperature of 400°C was found to synthesize the Ni Co_2O_4catalyst for the best performance in CO-CH_4oxidation.  相似文献   

20.
太湖流域稻田湿地对低污染水中氮磷的净化效果   总被引:14,自引:0,他引:14       下载免费PDF全文
对太湖流域稻田湿地设置3种布水设计——地表漫流式、串形沟灌渗滤式和弓形沟灌渗滤式, 研究连续进水方式下3种布水设计的稻田湿地对低污染水中氮、磷的净化效果及其产量效应. 结果表明:①在水稻拔节期和灌浆期,稻田湿地对低污染水中TN和TP的去除率分别可达77%~93%和87%~96%,稻田排水中ρ(TN)均在2 mg/L以下. ②3种布水设计对TN的去除率表现为漫流式>弓形沟灌渗滤式>串形沟灌渗滤式;对TP的去除率则以弓形沟灌渗滤式最高,串形沟灌渗滤式最差,但二者间差异不显著. ③弓形沟灌渗滤处理由于沟渠占田面积比例相对比较适宜,水稻籽粒产量最高(8 520 kg/hm2),比传统的漫流型稻田湿地增产5.2%;而串形沟灌渗滤处理因其沟渠占田面积比例(约14%)较大,水稻籽粒产量最低. 研究结果证实,利用太湖流域广泛存在的稻田湿地来净化周围的低污染水方法可行且效果较好.   相似文献   

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