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1.
2020年9月22日,习近平主席在第七十五届联合国大会上郑重承诺,中国将提高自主贡献力度,采取更加有力的政策和措施,努力争取2060年前实现碳中和。电力部门是我国能源系统实现碳中和的关键,而生物质能源技术在电力部门的部署对于推动实现碳中和具有不可替代的重要意义。本文针对三类生物质能源的发电技术,包括生物质直燃/气化发电、生物质耦合发电、生物质与碳捕获封存技术联合发电,分析了技术的国内外发展现状,并从技术可行性、资源可行性、经济可行性和环境影响等方面评析了其在推动电力部门低碳转型过程中的可行性。同时,结合碳中和愿景下电力部门的减排要求及对相关技术潜力的最新研判,对生物质能源技术在我国电力部门的部署提出了相应的政策建议。  相似文献   
2.
利用新型开顶式气室(OTC)开展CO_2浓度升高和大气增温试验,分别为模拟增温2.0℃,模拟增温2.0℃且CO_2浓度增加到650μmol·mol-1,对照CO_2浓度约410μmol·mol-1,对马铃薯叶片、叶柄和茎等地上生物量、根和块茎等地下生物量积累过程及其特征参数的协同影响研究,分析气候变化对马铃薯产量形成和品质的影响,为半干旱区适应气候变化提供科学依据。结果表明,模拟增温2.0℃且CO_2浓度增加到650μmol·mol-1,马铃薯茎和地上部生物量积累显著比对照高35.8%—53.4%;生物量较单独增温处理显著增加24.4%—34.4%。马铃薯茎和地上部生物量最大积累速度出现时间推后,最大积累速度加快,生物量快速积累间隔日数较单独增温处理和对照均延长。大气增温加CO_2浓度升高复合处理试验中,马铃薯块茎鲜质量积累在块茎膨大中期略低于单独增温处理外,在其余积累时段均高于单独增温处理以及对照。马铃薯成熟期块茎在复合处理下,鲜质量显著高于单独增温处理24.1%;高于对照3.4%。马铃薯块茎鲜质量最大积累速度出现时间也推后,快速积累期间隔日数较单独增温处理延长,但与对照接近。增温与CO_2复合处理使马铃薯叶片净光合速率提高,水分利用效率提高,干物重积累增多,经济产量增加。  相似文献   
3.
为做好梵净山国家级自然保护区森林植被保护,摸清自然保护区森林植被资源家底,采用2016年第四次森林资源规划设计调查数据及变更至2019年的森林资源数据,计算和分析保护区内森林植被生物量、净生产量、碳储量。梵净山8种森林类型的总生物量为443.72×104t,总碳储量为219.80×104t,总生长量为29.75×104t·a?1,总凋落量为18.65×104t·a?1,总净生产量为48.40×104t·a?1,总生物量、总碳储量较大的是栎林,较小的是铁杉林,桦木林、阔叶混交林、马尾松林、软阔林、杉木林和硬阔林居中;平均碳密度为48.86 t·hm?2,依次为:桦木林>阔叶混交林>栎林>硬阔林>软阔林>马尾松林>杉木林>铁杉林;总生长量、年凋落量、净生产量较高的是栎林、硬阔林,较低的是马尾松林、阔叶混交林和铁杉林,3种森林类型合计比例不到10%;在龄组中的分配依次为:中龄林>近熟林>成熟林>幼龄林>过熟林。在不同海拔中,梵净山森林植被生物量、碳储量、生长量、凋落量和净生产量主要分布在海拔1201—1800 m,其分布比例分别为50.39%、50.38%、49.21%、50.08%和49.54%;在不同坡向中,梵净山森林植被生物量、碳储量、生长量、凋落量和净生产量主要分布在南坡和北坡,二者合计比例大于60%。  相似文献   
4.
Changes of protists, which were categorized into different functional groups primarily according to their feeding habits, in two full-scale municipal wastewater treatment systems experiencing sludge bulking were investigated over a period of 14 months. Protist biomass represented 3.7% to 5.2% of total biomass on average under normal sludge conditions, and the percentage increased significantly (p < 0.05) under sludge bulking conditions. The biomass of Chilodonella spp., capable of eating filamentous bacteria, tended to decrease in both systems when sludge bulking occurred, showing that the abnormal growth of filamentous bacteria did not lead to a biomass bloom of this group of protists. On the other hand, the bactivorous protists represented more than 96% of total protist biomass, and the biomass of this group, particularly the attached ciliates, increased significantly (p < 0.05) when sludge bulking occurred. The significant increase of the attached ciliates may have possibly facilitated the growth of filamentous bacteria through selectively preying on non-filamentous bacteria and further exacerbated sludge bulking. The redundancy analysis and correlation analysis results showed that the biomass changes of the attached ciliates were primarily related to the sludge volume index and to some extent related to five-day biochemical oxygen demand loading and hydraulic retention time.  相似文献   
5.
黄土丘陵区生物结皮对土壤物理属性的影响   总被引:6,自引:1,他引:5  
生物结皮在干旱、半干旱地区广泛发育。迄今,有关生物结皮发育过程中土壤物理属性的响应仍不明确。论文采用野外调查与室内分析相结合的方法,定量研究不同生物量生物结皮对土壤物理属性的影响。结果表明:①生物结皮的发育能够细化土壤,当生物结皮由初期藻结皮演替至60%~80%苔藓结皮时(5等级),生物结皮层粗砂粒含量降低了86%;②随着生物结皮生物量的增加,生物结皮层土壤容重和硬度较初期分别降低了15%和68%,田间持水量和孔隙度分别增加了36%和14%;生物结皮层粘结力是下层土壤的6~7倍;③生物结皮的发育对土壤物理属性的影响与生物量有关,当苔藓生物量达2.91±0.12 g/dm2时,其土壤物理属性基本稳定。研究结果为揭示生物结皮抗侵蚀机理提供了科学参考。  相似文献   
6.
A novel silica catalyst was synthesized by evaporation-induced self-assembly (EISA) method and tested for the catalytic selective hydrolysis of cellulose to glucose. This silica catalyst exhibited a higher catalytic activity than other oxides prepared by the same method, such as ZrO2, TiO2, and Al2O3. Using silica as a catalyst, cellulose was selectively hydrolyzed into glucose with a glucose yield as high as 50% under hydrothermal conditions without hydrogen gas. The silica catalyst was characterized by Brunauer-Emmett-Teller (BET), X-ray diffraction (XRD) and transmission electron microscopy (TEM). The results of temperature-programmed desorption of ammonia (NH3-TPD) and textural properties indicated that the synergistic effect between strong acidity and a suitable pore diameter of the silica catalyst may be responsible for its high activity. In addition, the catalyst was recyclable and showed excellent stability during the recycle catalytic runs.  相似文献   
7.
生物质发电是将废弃生物质变成可再生能源得以充分利用,这些工程将减少来自于生物质自然腐烂和无控燃烧产生的温室效应,这不仅节约了煤炭的同时也减少了二氧化碳的排放。本文中以某生物质项目发电为例,根据CDM方法学ACM0006计算了该项目的减排量。结果表明,该项目10年间共减少了二氧化碳排放量2,075,140 t,给我国带来了可观的经济效益和环境效益。  相似文献   
8.
Red soil may play an important role in nitrous oxide (N2O) emissions due to its recent land use change pattern. To predict the land use change effect on N2O emissions, we examined the relationship between soil N2O flux and environmental determinants in four different types of land uses in subtropical red soil. During two years of study (January 2005-January 2007), biweekly N2O fluxes were measured from 09:00 to 11:00 a.m. using static closed chamber method. Objectives were to estimate the seasonal and annual N2O flux differences from land use change and, reveal the controlling factors of soil N2O emission by studying the relationship of dissolved organic carbon (DOC), microbial biomass carbon (MBC), water filled pore space (WFPS) and soil temperature with soil N2O flux. Nitrous oxide fluxes were significantly higher in hot-humid season than in the cool-dry season. Significant differences in soil N2O fluxes were observed among four land uses; 2.9, 1.9 and 1.7 times increased N2O emissions were observed after conventional land use conversion from woodland to paddy, orchard and upland, respectively. The mean annual budgets of N2O emission were 0.71-2.21 kg N2O-N ha−1 year−1 from four land use types. The differences were partly attributed to increased fertilizer use in agriculture land uses. In all land uses, N2O fluxes were positively related to soil temperature and DOC accounting for 22-48% and 30-46% of the seasonal N2O flux variability, respectively. Nitrous oxide fluxes did significantly correlate with WFPS in orchard and upland only. Nitrous oxide fluxes responded positively to MBC in all land use types except orchard which had the lowest WFPS. We conclude that (1) land use conversion from woodland to agriculture land uses leads to increased soil N2O fluxes, partly due increased fertilizer use, and (2) irrespective of land use, soil N2O fluxes are under environmental controls, the main variables being soil temperature and DOC, both of which control the supply of nitrification and denitrification substrates.  相似文献   
9.
In Sub-Saharan Africa, conservation of available soil N during early crop growth, when N loss by leaching generally occurs, is important to improve crop productivity. In a dry tropical cropland in Tanzania, we assessed the potential role of soil microbes as a temporal N sink-source to conserve the available soil N until later crop growth, which generally requires substantial crop N uptake. We evaluated the effect of land management [i.e., no input, plant residue application before planting (P plot) with or without fertilizer application, fertilizer application alone, and non-cultivated plots] on the relationship between soil N pool [microbial biomass N (MBN) and inorganic N] and crop N uptake throughout the ∼120-d crop growth period in two consecutive years. In the P plot, MBN clearly increased (∼14.6-29.6 kg N ha−1) early in the crop growth period in both years because of immobilization of potentially leachable N, and it conserved a larger soil N pool (∼10.5-21.2 kg N ha−1) than in the control plot. Especially in one year in which N leaching was critical, increased MBN maintained a larger soil N pool in the P plot throughout the experimental period, and a delay of increased MB C:N ratio and a substantial decrease in MBN was observed, indicating better soil microbial N supply for crop N uptake during later crop growth. Therefore, plant residue application before planting should enhance the role of soil microbes as a temporal N sink-source, leading to the conservation of potentially leachable N until later phase of crop growth, especially in years in which N leaching is relatively severe. Although further studies are necessary, our results suggest that plant residue application before planting is a promising option to achieve better N synchronization.  相似文献   
10.
为了探讨春季藻类快速生长的机制,研究较低温度下氨氮对淡水浮游藻类生长及群落结构变化的影响,对南开大学新开湖水体藻类进行了室内生态模拟试验研究.在10℃、125μmol·m·s-1光强条件下,培养液中氨氮最终浓度设置为1.0、1.5、2.0、2.5、3.0mg·L-1和对照组(不添加氨氮),每隔1~2天加入氨氮至初始设定值,培养时间为26d.结果表明,浮游藻类在1.0mg·L-1组生长最好,最大生长密度为1.53×105cells·L-1,高于对照组;浮游藻类在高于2.0mg·L-1处理组中生长明显受到抑制,抑制作用随着氨氮浓度的增大而增大,其中3.0mg·L-1处理组的最大生物量仅为5.4×104cells·L-1.随着培养时间的进行硅藻逐渐取代绿藻而成为绝对优势藻,随着藻类的生长,粗刺四刺藻(Treubaria crassispina)在所有处理组中由优势种而逐渐消失,近缘针杆藻(Saffinis affinis)和新月藻(Closterium lunula)在培养后期逐渐成为优势种,但在不同氨氮浓度下表现出不同生长密度.除1.0mg·L-1处理组外,其它处理组中的物种多样性指数差异不显著(p>0.05).氨氮影响浮游藻类的生长,影响优势种的变化,并且对浮游藻类的群落结构变化有一定的影响.  相似文献   
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