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411.
土壤微生物生物量碳(SMBC)反映了土壤有机碳(SOC)情况,其值大小代表了土壤肥力的高低,研究不同耕作方式SMBC的变化特征及其影响因素具有重要意义。试验于2001年在中国科学院栾城农业生态系统实验站开始,试验设置翻耕(CT)、旋耕(RT)、免耕(NT)三个处理。利用熏蒸提取-容量分析法研究了不同耕作处理2007~2008年冬小麦生育期的SMBC分布特征及影响因素。结果表明SMBC具有时空变化特征:在冬小麦生育期中,各SMBC处理均随着时间波动起伏,并在小麦返青期和扬花期达到峰值;空间分布上SMBC含量随土壤深度的增加而降低。不同耕作处理间差异显著,0~5 cm土层SMBC以NT最高,CT最低;5~10 cm土层RT与CT相当,NT最低;10~20 cm土层以CT最高,NT最低;20~30 cm各处理均较低,NT亦为最低。对不同处理SMBC层化率分析显示:NT具有明显的表层富集现象;RT处理0~10 cm SMBC分布均匀;CT处理0~20 cm SMBC分布均匀。对SMBC的影响因素分析表明:土壤有机碳是SMBC空间分布的主要影响因素,二者呈显著正相关。而土壤温度和土壤含水量是影响SMBC季节变化的主要外界因素。  相似文献   
412.
通过野外实验与室内分析,对三江平原生长季内毛果苔草(Carex lasiocapa)沼泽湿地生物量及0~20cm土壤不同有机碳组分进行观测,分析了不同水分条件下毛果苔草湿地土壤轻组有机碳(LFOC)与微生物量碳(MBC)的变化动态.结果表明,随水位增加毛果苔草群落地上生物量积累明显,与10~20cm积水条件相比,17~30cm水位状况下湿地土壤具有较高的轻组有机质含量与比例.生长季初期冻融过程提高了土壤轻组分(LF)有机碳含量与LFOC含量,之后随植物生长毛果苔草沼泽湿地土壤重组有机碳(HFOC)含量增长快于LFOC,说明毛果苔草沼泽湿地土壤具有较高的重组有机质持有能力.此外不同水位条件下毛果苔草沼泽湿地微生物活性受到土壤有机碳含量影响不同,低水位条件下微生物量碳与SOC呈显著正相关关系(R2=0.859),17~30cm水位条件下二者关系不显著,并且高水位毛果苔草沼泽湿地具有较低的MBC与微生物熵,表明该条件下土壤碳库具有较高的稳定性.  相似文献   
413.
中国生物质燃烧排放SO2、NOx量的估算   总被引:24,自引:0,他引:24       下载免费PDF全文
根据各地区生物质燃料消耗状况和SO2、NOx排放因子,估算了20世纪90年代中国生物质能源利用过程中的SO2、NOx排放量,并给出了分省区,分生物质燃料类型的排放清单,研究表明,中国生物质燃料消耗及其排放的SO2,NOx量分别从1991年的38.1万t和54.9万下降为1999年的33.2万t和45.3万t,在地区,燃料类型上分布不平衡;SO2和NOx排放量均较大的包括山东,江苏、河北,内蒙古,湖北等,其中,内蒙古SO2排放量最大而山东省NOx排放量最 ;秸杆是SO2和NOx排放的最主要来源,薪柴次之;牲畜粪便对SO2贡献率接近30%,而对NOx贡献率仅3%-4%。  相似文献   
414.
生物炭技术缓解我国温室效应潜力初步评估   总被引:9,自引:2,他引:9  
姜志翔  郑浩  李锋民  王震宇 《环境科学》2013,34(6):2486-2492
热解制备的生物炭在实现了将植物吸收的大气CO2封存在土壤中的同时,还将产生多重农业生产效应.在调查我国农林废弃物资源可利用潜力的基础上,利用生命周期评价(life cycle assessment,LCA)方法对热解生物炭技术在缓解温室效应方面的潜力进行了初步评估.研究表明,我国每年可供生物炭生产的农林生物质资源总量为6.04×108t;温室效应净潜力(以CO2e计,CO2e为CO2当量)为5.32×108t,相当于每t原料可封存0.88 t.在整个温室效应潜力中,贡献最大的是大气CO2以生物炭形式在土壤中的封存,约为73.94%,其次是副产物可更新能源生产所产生的温室效应潜力,占总潜力的23.85%.由此可见,以农林废弃生物质资源为原料热解制备生物炭的技术对于缓解我国严峻的温室气体排放压力具有巨大的潜力.  相似文献   
415.
为探讨沟垄集雨、秸秆覆盖和减量缓释肥集成技术对油菜土壤微生物群落结构的影响,在大田定位试验条件下,设置3种栽培方式(秸秆覆盖、沟垄集雨、传统平作)和4种施肥水平(习惯施肥、缓释肥减量20%、缓释肥减量40%、不施肥),比较分析2016~2017年(多雨年份)和2017~2018年(季节性干旱年份)这2种不同降水年型下油菜土壤微生物群落结构对集成技术的响应.结果表明,不同降雨条件下,秸秆覆盖+缓释肥减量20%(J80)与沟垄覆盖+缓释肥减量20%(M80)较习惯栽培(PC)更利于土壤微生物生长.在多雨年型和季节性干旱年型下,J80与M80能平均分别提高微生物量碳9.94%和10.32%;提高土壤微生物量氮2.38%和1.19%.多雨年型下,土壤微生物磷酸脂肪酸(PLFA)总量较干旱年型降低30.75%,覆盖能有效提高土壤PLFA质量摩尔浓度.多雨年型下土壤细菌、真菌PLFA质量摩尔浓度较干旱年型平均减少33.67%和53.21%;而放线菌PLFA增加13.04%.微生物群落对异常降水具有敏感响应.多雨气候会造成细菌/真菌升高;干旱气候则会增加直链饱和脂肪酸/直链单不饱和脂肪酸及直链单不饱和脂肪酸/环丙烷脂肪酸.通过秸秆覆盖与缓释肥的集成技术,能稳定异常降水下的土壤微环境,缓解水分和养分胁迫,为油菜稳产和可持续发展提供有效途径.  相似文献   
416.
The adsorption of some heavy metals onto the walls of harvested, washed, and dried non-living biomass cells of different Pseudomonas strains was studied at optimum experimental conditions using a simplified single component system. The Langmuir adsorption model was found to be a suitable approach to describe the system via multi-step processes. Isotherms measured at 30.0°C and pH 5.5 with [M]total?=?10–100 mM for tight, reversible Cr6+(aq), Ni2+(aq), Cu2+(aq) and Cd2+(aq) binding by the cell walls of the investigated biomass fit the Langmuir model and give the pH-independent stoichiometric site capacities ν i and equilibrium constants K i for metal binding at specific biomass sites i?=?A, B, C, and D. Tight binding sites A, B, and D of the non-living biomass are occupied by CrVI, sites A and C by NiII, sites A and D by CdII, and only site B by CuII. It is concluded that ν i is a stoichiometric parameter that is independent of the magnitude of K i for binding site i and that the studied heavy metals selectively and tightly bind at different biomass sites.  相似文献   
417.
It is well known that dilute sulfuric acid pretreatment of the lignicellulosisc biomass is an effective approach used for the production of the ethanol. However, there are less studies on the biogas production from the pretreated lignocellulosics and hardly data available on the codigestion of cattle manure with the pretreated lignocellulosisc material. The aim of this study was to evaluate biomethane production potential of codigestion of cattle manure with dilute acid pretreated lignocellulosic biomass. Sugarcane bagasse and rice husk was pretreated with dilute sulfuric acid or phosphoric acid at 121°C for 20 minutes and subsequently subjected to anaerobic digestion alone or codigested with cattle manure.

The results showed that codigestion of 1% phosphoric acid pretreated rice husk with cattle manure led to the highest methane production of 115 Nmlg?1VS while monodigestion of cattle manure and phosphoric acid pretreated rice husk produced 98 and 87 Nmlg?1VS, respectively. An inhibition was observed in anaerobic digestion of sulfuric acid pretreated rice husk and sugarcane bagasse during monodigestion and codigestion with cattle manure.

The study concludes that dilute phosphoric acid pretreated lignocellulosics like sugarcane bagasse and rice husk can be used as a cosubstrate with cattle manure in anaerobic digestion for enhanced methane production. Dilute sulfuric acid pretreatment, which is effective method for the bioethanol production, causes inhibition during anaerobic digestion of the pretreated lignocellulosics.  相似文献   
418.
Cambodia has 57% forest cover, the second highest in the Greater Mekong region, and a high deforestation rate (1.2%/year, 2005–2010). Community forestry (CF) has been proposed as a way to reduce deforestation and support livelihoods through local management of forests. CF is expanding rapidly in Cambodia. The National Forests Program aims to designate one million hectares of forest to CF by 2030. However, the effectiveness of CF in conservation is not clear due to a global lack of controlled comparisons, multiple meanings of CF, and the context‐specific nature of CF implementation. We assessed the effectiveness of CF by comparing 9 CF sites with paired controls in state production forest in the area of Prey Long forest, Cambodia. We assessed forest condition in 18–20 randomly placed variable‐radius plots and fixed‐area regeneration plots. We surveyed 10% of households in each of the 9 CF villages to determine the proportion that used forest products, as a measure of household dependence on the forest. CF sites had fewer signs of anthropogenic damage (cut stems, stumps, and burned trees), higher aboveground biomass, more regenerating stems, and reduced canopy openness than control areas. Abundance of economically valuable species, however, was higher in control sites. We used survey results and geographic parameters to model factors affecting CF outcomes. Interaction between management type, CF or control, and forest dependence indicated that CF was more effective in cases where the community relied on forest products for subsistence use and income. Efectividad de la Silvicultura Comunal en el Bosque Prey Long, Camboya  相似文献   
419.
ABSTRACT: Phytoplankton carbon-14 productivity at a depth of 50 percent of surface light and chlorophyll-α concentrations were measured every other month from November 1985 through September 1986 at 12 stations in the Charlotte Harbor estuarine system. Maximum productivity and chlorophyll-α concentrations occurred during summer or early autumn near the mouths of tidal rivers. Most of the variability in light-normalized productivity and chlorophyll-α could be attributed to two factors derived from Principal Component Analysis of ambient water-quality characteristics. One factor related to seasonal variability and the other to spatial variability. The seasonal factor incorporated the interaction of temperature and nutrients. The spatial factor incorporated the interaction of salinity, nutrients, and water color that resulted from the mixing of freshwater inflow and seawater. Although freshwater inflow increased the availability of nutrients in low salinity (less than 10‰) waters, the highly colored freshwater restricted light penetration and phytoplankton productivity. Maximum productivity and biomass occurred where color associated with the freshwater inflow had been diluted by seawater so that light and nutrients were both available. Concentrations of inorganic nitrogen were often at or below detection limit throughout most of the high salinity (greater than 20‰) waters of the estuary and was probably the most critical nutrient in limiting phytoplankton productivity.  相似文献   
420.
The effects of simulated acid rain with pH values of 6.63 (control, 4.5, 3.0, and 2.0 on saplings of Pinus massoniana and Cunninghamia lanceolate, were studied. The results showed that the pH of C.lanceolate, leaf sap and soil decreased as the acidity of rainfall increased. The acid rain with very low pH had significant effects on the photosynthetic rates per plant, but not on that of the per unit weight of dry leaves. The respiration rates of the two species were stimulated. Root and leaf boimass, but not stem biomass, were also reduced tremendously during a seven months period.  相似文献   
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