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1.
城市土壤活性碳、氮分布特征及影响因素   总被引:2,自引:0,他引:2  
为揭示城市绿地土壤活性碳氮分布特征及影响因素,选取合肥市不同类型绿地(蜀山森林公园、公园绿地、道路绿地、学校绿地、居住区绿地、工厂绿地)土壤为研究对象,对其0 ~ 30 cm土壤微生物量碳(MBC)、微生物量氮(MBN)、溶解性有机碳(DOC)、溶解性有机氮(DON)等活性组分进行研究.结果表明,绿地类型对土壤活性碳氮含量影响显著(P<0.05),各活性碳氮含量随土层深度的增加而降低.城区内各人工绿地土壤活性碳氮含量均低于郊区蜀山森林公园绿地:MBC下降了46.81% ~ 64.39%,MBN下降了49.90% ~80.13%,DOC下降了28.95% ~45.52%,DON下降了5.67% ~48.90%,表明土地利用变化是导致绿地土壤活性碳氮变化的主要因素.相关分析表明,研究区域内MBC与MBN、DON正相关(P<0.01),MBN与DOC正相关(P<0.01),DOC与DON正相关(P<0.01).研究还发现,土壤pH与活性碳、氮间均呈负相关关系(P<0.01),表明适当降低城市土壤碱性污染物的侵入有利于土壤活性碳氮的积累.  相似文献   

2.
马尾松林采伐迹地火烧黑炭对土壤活性碳氮库的影响   总被引:2,自引:0,他引:2  
王玉哲  刘俊第  严强  方熊  易志刚  胡亚林  刘先 《生态学报》2018,38(20):7198-7207
黑炭是火烧过程中不完全燃烧的产物,在火烧迹地的分布具有异质性。为了解黑炭输入量对土壤活性碳氮库的影响,选取中亚热带33年生马尾松人工林采伐迹地为研究对象,对比炼山1年后移除(B0)、单倍(B1)和双倍黑炭输入(B2)处理和未火烧对照土壤可溶性有机碳氮含量(DOC和DON)、矿质氮、土壤微生物量碳氮含量(MBC和MBN)之间的差异。结果表明:炼山对土壤DOC和DON含量的影响因土层而异,在0—10 cm土层,火烧土壤DOC和DON含量与对照土壤没有显著差异,而在10—20 cm土壤要显著低于对照土壤(P0.05)。火烧土壤矿质氮、土壤MBC和MBN含量均低于对照土壤,但差异未达到显著性水平(P0.05)。火烧土壤含水率、pH、全碳和全氮、铵态氮、土壤MBN含量均与黑炭输入量成正比,特别是在10—20 cm土层,B2处理土壤铵态氮含量显著高于B0和B1处理(P0.05)。对于土壤MBN,黑炭输入处理(B1和B2)火烧土壤MBN含量与对照土壤没有显著差异,而去除黑炭处理(B0)火烧土壤MBN含量则显著低于对照土壤(P0.05)。结果说明黑炭输入对火烧土壤的微生物群落恢复和N素保持具有积极意义,因此亚热带人工林管理过程中应重视黑炭的利用。  相似文献   

3.
土壤微生物作为土壤养分的生物驱动因素,氮沉降会改变其活性和生物量,从而打破土壤养分循环动态平衡。氮沉降对热带、亚热带森林以及温带原始林生态系统土壤微生物量影响的研究较多,但对温带天然次生林影响的研究鲜有报道。于2016年5月(春)、7月(夏)和9月(秋)分别对长白山模拟10年氮沉降的控制试验样地——白桦山杨次生林进行了野外调查。控制试验分为3个氮添加处理,对照(CK 0 kg N hm~(-2)a~(-1))、低氮(LN 25 kg N hm~(-2)a~(-1))和高氮(HN 50 kg N hm~(-2)a~(-1)),按照土壤层(0—10 cm和10—20 cm)分别测试了不同处理的土壤微生物量碳(MBC)和氮(MBN)、土壤全碳(TC)、全氮(TN)和全磷(TP)、p H、土壤可溶性有机碳(DOC)和氮(DON)等指标。结果表明:1)土壤p H在氮沉降的作用下显著降低;上层土壤TC、TN在氮沉降下变化较小,下层土壤TC、TN的含量显著增加;氮沉降下春、夏两季土壤TP含量上升,LN处理在秋季对TP有抑制作用;氮沉降对DOC、DON的影响不显著。2)上层土壤MBC春季到秋季呈现递减的趋势,下层土壤呈现先升后降的趋势,HN对MBC有抑制作用,LN对下层土壤MBC有促进作用;土壤MBN由春季到秋季呈现递减的趋势,且上、下层土壤MBN差异显著;氮处理对春、秋两季MBN有促进作用,夏季有抑制作用;氮沉降使春、秋两季MBC/MBN降低,夏季土壤MBC/MBN升高。3)氮处理、季节变化和土层深度对MBC、MBN存在显著影响,其交互影响也显著。总之,长期氮沉降在生长季对土壤微生物量的影响具有季节性差异,且受到土层深度的影响。未来研究在重视年际变化的同时,也要注重时空动态对氮沉降作用表现出的差异性。  相似文献   

4.
菌渣化肥配施对稻田土壤微生物量碳氮和可溶性碳氮的影响   总被引:12,自引:0,他引:12  
石思博  王旭东  叶正钱  陈绩  龚臣  李婷  任泽涛 《生态学报》2018,38(23):8612-8620
菌渣作为一种养分丰富的有机物料还田,可减少化肥施用,同时保持土壤肥力;而土壤微生物量碳、氮和可溶性碳、氮是土壤活性碳氮库的重要组成部分,其含量和比例变化对土壤肥力均具有重要作用。因此,探讨不同比例菌渣化肥配施对土壤微生物量碳、氮及可溶性碳、氮的影响,评价菌渣在优化土壤肥力方面的生态作用具有重要意义。本研究在水稻田间定位试验条件下,设置3个化肥水平(C) 0%、50%、100%,菌渣相对用量(F) 0%、50%、100%,共9个处理,分析了各处理土壤微生物量碳(MBC)、氮(MBN)和可溶性碳(DOC)、氮(DON)的变化特征,及其占土壤有机碳(SOC)和全氮(TN)的比例与相关关系。结果表明:菌渣化肥配施后,微生物量碳和可溶性碳、氮均在C100F50最高,微生物量氮在C50F100最高,与不施肥处理相比,分别显著增加了49.40%、43.65%、83.52%、207.19%;MBC/SOC和DOC/SOC均随着菌渣化肥配施量的增加而减少,MBN/TN和DON/TN均在C100F50最高。相关分析表明,MBC、DOC与SOC,MBN与TN均呈极显著正相关,DON和TN呈显著正相关。总体来讲,菌渣化肥配施能够显著提高土壤微生物量碳、氮和可溶性碳、氮含量,但不是随着用量的增加一直呈增加趋势,高量菌渣或者化肥下会有降低趋势;菌渣化肥配施降低了土壤微生物量和可溶性碳氮比,因此适宜的菌渣化肥配施是提高土壤有机碳周转速度、微生物活性及其氮素供应能力和有效性的最佳选择。  相似文献   

5.
2010年9月-2011年10月,在山西省灵空山油松和辽东栎混交林样地采取随机区组设计,研究了地表凋落物和氮添加处理对土壤微生物生物量碳、氮和微生物活性的影响.凋落物处理包括:剔除凋落物(N)、叶凋落物加倍(L)、枝果凋落物加倍(B)和混合凋落物加倍(LB);氮添加量分别为0(N0)、5 g· m-2·a-1(N1)和10 g·m-2·a-1(N2).结果表明:剔除地表凋落物且无氮添加时,油松和辽东栎混交林地的土壤有机碳(SOC)含量显著降低,其他试验处理间对SOC的影响无显著差异.土壤微生物生物量碳(MBC)、氮(MBN)及其活性(MR)的变化范围依次为:262.42 ~ 873.16 mg·kg-1、73.55 ~ 173.85 mg·kg-1和2.38~3.68mg·kg-1·d-1.MBC、MBN和MR两两间呈极显著正相关.氮添加对MBC、MBN和MR均无显著影响;凋落物处理对MR影响显著,表现为混合凋落物加倍处理的MR最高,叶凋落物加倍处理次之,剔除凋落物处理最低,而对MBC和MBN无显著影响.凋落物和氮添加处理在整个试验过程中未表现出交互作用.短期的氮添加处理和森林地表凋落物变化对土壤微生物过程的影响有限.  相似文献   

6.
以福建长乐滨海沙地上3种人工林(尾巨桉、纹荚相思、木麻黄)土壤为研究对象,设置去除凋落物、去除根系和对照3种处理,观测1年后分析改变地上、地下有机质输入对沙地土壤碳氮储量、可溶性有机碳(DOC)氮(DON)和微生物量碳(MBC)氮(MBN)的影响。结果表明:不同树种人工林间土壤碳氮储量无显著差异;不同树种人工林间土壤活性碳氮组分差异显著,木麻黄土壤DOC含量显著高于纹荚相思,纹荚相思土壤DON显著高于木麻黄和尾巨桉,尾巨桉土壤MBN显著高于木麻黄和纹荚相思。改变地上地下有机质输入对滨海沙地土壤碳氮库有显著影响且这种影响随树种而异。去除凋落物后纹荚相思、木麻黄土壤碳储量分别下降38.0%、25.1%,氮储量分别下降12.9%、12.5%;去除凋落物后尾巨桉、纹荚相思、木麻黄土壤DOC分别下降37.5%、30.6%、52.9%,MBC分别下降31.0%、56.9%、29.7%,MBN分别下降50.7%、34.9%、42.2%;去除根系后尾巨桉、纹荚相思土壤MBC分别下降57.7%、15.4%。回归分析显示,滨海沙地土壤DOC、MBC与土壤碳储量呈显著正相关,土壤DOC和MBC分别能够解释土壤碳储量变化的47.7%和57.7%。研究表明:树种通过调控地上、地下输入影响可溶性有机碳氮和微生物量碳氮,进而影响土壤碳氮库。  相似文献   

7.
涂玉  尤业明  孙建新 《生态学杂志》2012,23(9):2325-2331
2010年9月-2011年10月,在山西省灵空山油松和辽东栎混交林样地采取随机区组设计,研究了地表凋落物和氮添加处理对土壤微生物生物量碳、氮和微生物活性的影响.凋落物处理包括: 剔除凋落物(N)、叶凋落物加倍(L)、枝果凋落物加倍(B)和混合凋落物加倍(LB);氮添加量分别为0(N0)、5 g·m-2·a-1(N1)和10 g·m-2·a-1(N2).结果表明: 剔除地表凋落物且无氮添加时,油松和辽东栎混交林地的土壤有机碳(SOC)含量显著降低,其他试验处理间对SOC的影响无显著差异.土壤微生物生物量碳(MBC)、氮(MBN)及其活性(MR)的变化范围依次为: 262.42~873.16 mg·kg-1、73.55~173.85 mg·kg-1和2.38~3.68mg·kg-1·d-1.MBC、MBN和MR两两间呈极显著正相关.氮添加对MBC、MBN和MR均无显著影响;凋落物处理对MR影响显著,表现为混合凋落物加倍处理的MR最高,叶凋落物加倍处理次之,剔除凋落物处理最低,而对MBC和MBN无显著影响.凋落物和氮添加处理在整个试验过程中未表现出交互作用.短期的氮添加处理和森林地表凋落物变化对土壤微生物过程的影响有限.  相似文献   

8.
为理解模拟氮沉降对华西雨屏区天然常绿阔叶林土壤微生物生物量碳(MBC)和氮(MBN)的影响,通过一年野外模拟氮(NH4NO3)沉降试验,氮沉降水平分别为对照(CK, 0 g N·m-2·a-1)、低氮沉降(L, 5 g N·m-2·a-1)、中氮沉降(M, 15 g N·m-2·a-1)和高氮沉降(H, 30 g N·m-2·a-1),研究了氮沉降对天然常绿阔叶林土壤MBC和MBN的影响.结果表明: 氮沉降显著降低了0~10 cm土层MBC和MBN,且随氮沉降量的增加,下降幅度增大;L和M处理对10~20 cm土层MBC和MBN无显著影响,H处理显著降低了10~20 cm土层土壤MBC和MBN;氮沉降对MBC和MBN的影响随土壤深度的增加而减弱.MBC和MBN具有明显的季节变化,在0~10和10~20 cm土层均表现为秋季最高,夏季最低.0~10和10~20 cm土层土壤微生物生物量C/N分别介于10.58~11.19和9.62~12.20,表明在华西雨屏区天然常绿阔叶林土壤微生物群落中真菌占据优势.  相似文献   

9.
扎龙湿地不同生境土壤微生物生物量碳氮的季节变化   总被引:11,自引:0,他引:11  
张静  马玲  丁新华  陈旭日  马伟 《生态学报》2014,34(13):3712-3719
为从土壤微生物生物量角度分析扎龙湿地不同生境的土壤肥力状况,对扎龙芦苇生境和草甸生境不同土层(0—10 cm、10—20 cm、20—30 cm)微生物生物量碳(MBC)、氮(MBN)季节变化进行监测,并分析了土壤微生物生物量碳氮与土壤环境因子的关系。结果表明:两种生境土壤MBC、MBN含量均表现出明显的垂直分布特征,即0—10 cm10—20 cm20—30 cm,且草甸生境显著大于芦苇生境。在整个生长季节内,两种生境土壤微生物量碳、氮均大致呈现出"W"型变化格局,其变化幅度均随着土层的加深而减小,且草甸生境的变化幅度显著大于芦苇生境。相关分析表明:芦苇生境土壤MBC与土壤含水率呈极显著正相关(P0.01),与土壤pH呈极显著负相关(P0.01),MBN与土壤含水率、有机碳、水解性氮呈极显著正相关(P0.01),与土壤pH呈极显著负相关(P0.01);草甸生境土壤MBC则均与土壤含水率、有机碳、有效磷、水解性氮呈极显著正相关(P0.01),与土壤pH值呈显著正相关(P0.05),MBN则均与土壤含水率、有效磷呈极显著正相关(P0.01),与有机碳呈显著正相关(P0.05)。  相似文献   

10.
林窗尺度对侧柏人工林土壤微生物生物量碳氮的短期影响   总被引:2,自引:0,他引:2  
为了明晰林窗尺度对侧柏人工林土壤微生物生物量碳氮的短期影响,以徐州市50年生侧柏人工林为研究对象,探讨了开设林窗2a后3种林窗尺度(半径分别为4m,S林窗;8m,M林窗;12m,L林窗)和位置(林窗内、林缘和林窗外部)对土壤微生物生物量碳氮(MBC,Microbial Biomass Carbon;MBN,Microbial Biomass Nitrogen)的影响。结果表明:(1)与对照样地相比,L林窗显著提高了春季(207.1mg/kg)和夏季(169.5mg/kg)林窗外部的土壤MBN含量;M林窗显著提高了春季林窗内部(2959.3mg/kg)和林缘(3008.8mg/kg)位置土壤MBC含量和林缘位置(207.7mg/kg)土壤MBN含量,且显著提高了夏季林窗内部(144.4mg/kg)土壤MBN含量;S林窗显著降低了春季林窗外部和林缘位置土壤MBC(分别为2159.2mg/kg和1955.1mg/kg)和MBN(分别为153.1mg/kg和131.3mg/kg)含量。(2)土壤MBC含量与土壤全碳和土壤可溶性有机碳(DOC)含量呈极显著(P0.01)正相关,与土壤温度呈极显著负相关(在3—27℃之间);土壤MBN含量与土壤含水量和DOC含量呈极显著正相关,与土壤全碳呈显著正相关;土壤MBC和MBN含量与凋落物量没有显著相关关系。本研究中,相对于S和L林窗,M林窗对土壤微生物生物量的提高作用较为明显,可促进侧柏人工林土壤碳氮循环过程,在徐州侧柏人工林中开设M林窗有利于提高土壤肥力和林木生长。  相似文献   

11.
Intercropping enhances soil carbon and nitrogen   总被引:14,自引:0,他引:14       下载免费PDF全文
Intercropping, the simultaneous cultivation of multiple crop species in a single field, increases aboveground productivity due to species complementarity. We hypothesized that intercrops may have greater belowground productivity than sole crops, and sequester more soil carbon over time due to greater input of root litter. Here, we demonstrate a divergence in soil organic carbon (C) and nitrogen (N) content over 7 years in a field experiment that compared rotational strip intercrop systems and ordinary crop rotations. Soil organic C content in the top 20 cm was 4% ± 1% greater in intercrops than in sole crops, indicating a difference in C sequestration rate between intercrop and sole crop systems of 184 ± 86 kg C ha?1 yr?1. Soil organic N content in the top 20 cm was 11% ± 1% greater in intercrops than in sole crops, indicating a difference in N sequestration rate between intercrop and sole crop systems of 45 ± 10 kg N ha?1 yr?1. Total root biomass in intercrops was on average 23% greater than the average root biomass in sole crops, providing a possible mechanism for the observed divergence in soil C sequestration between sole crop and intercrop systems. A lowering of the soil δ15N signature suggested that increased biological N fixation and/or reduced gaseous N losses contributed to the increases in soil N in intercrop rotations with faba bean. Increases in soil N in wheat/maize intercrop pointed to contributions from a broader suite of mechanisms for N retention, e.g., complementary N uptake strategies of the intercropped plant species. Our results indicate that soil C sequestration potential of strip intercropping is similar in magnitude to that of currently recommended management practises to conserve organic matter in soil. Intercropping can contribute to multiple agroecosystem services by increased yield, better soil quality and soil C sequestration.  相似文献   

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Effect of carbon source on compost nitrogen and carbon losses   总被引:32,自引:0,他引:32  
The effect of C source on N losses by volatilization during composting was measured using four bulking agents, each at three humidity levels and composted in duplicate under passive and active aeration. The bulking agents were pine shavings alone and corrected with soybean, chopped grass hay alone and corrected with urea, long (unchopped) wheat straw and chopped oat straw. The readily available C of each bulking agent was determined by analyzing for BOD5. In 105 l laboratory vessels, the bulking agents were mixed with liquid swine manure and tap water for a C/N of 20 and three humidity levels of 60%, 65% and 70%. While being aerated actively or passively, the mixtures were composted for 21 days. Their initial and final C and N contents were measured to conduct a mass balance analysis and calculate C and N losses. C and N losses were compared to bulking agent BOD5. N losses were compared to C losses. The humidity level and aeration regime had no effect on C and N losses but the N losses were correlated to C losses and only the C losses could be correlated to the BOD5 of the bulking agent. Thus, the N losses are related not only to the availability of C but also to the extent of composting. A relationship established between N and C losses indicated that 85% of the initial total N of the compost was available for microbial degradation and that 70% of the available C was lost as CO2 during the immobilization process.  相似文献   

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Chen  Chong-Juan  Liu  Xue-Yan  Wang  Xian-Wei  Hu  Chao-Chen  Xu  Shi-Qi  Mao  Rong  Bu  Zhao-Jun  Fang  Yun-Ting  Koba  Keisuke 《Plant and Soil》2021,467(1-2):345-357
Plant and Soil - Plant carbon (C), nitrogen (N), phosphorus (P) levels and their stoichiometry and N uptake strategies are important aspects influencing vegetation composition and C dynamics in...  相似文献   

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We have extended an earlier study, in which we characterized in detail the electrostatic potentials on the inner and outer surfaces of a group of carbon and BxNx model nanotubes, to include several additional ones with smaller diameters plus a new category, C2xBxNx. The statistical features of the surface potentials are presented and analyzed for a total of 19 tubes as well as fullerene and a small model graphene. The potentials on the surfaces of the carbon systems are relatively weak and rather bland; they are much stronger and more variable for the BxNx and C2xBxNx. A qualitative correlation with free energies of solvation indicates that the latter two categories should have considerably greater water solubilities. The inner surfaces are generally more positive than the corresponding outer ones, while both positive and negative potentials are strengthened by increasing curvature. The outsides of BxNx tubes have characteristic patterns of alternating positive and negative regions, while the insides are strongly positive. In the closed C2xBxNx systems, half of the C–C bonds are double-bond-like and have negative potentials above them; the adjacent rows of boron and nitrogens show the usual BxNx pattern. When the C2xBxNx tubes are open, with hydrogens at the ends, the surface potentials are dominated by the B+–H and N–H+ linkages.Figure Calculated electrostatic potential on the molecular surface of closed (6,0) B48N48; a is an outside view, while b shows the interior. Color ranges, in kcal mol–1: red, greater than 20; yellow, between 20 and 0; green, between 0 and –10; blue, between –10 and –20; purple, more negative than –20  相似文献   

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The efforts to explain the ‘missing sink’ for anthropogenic carbon dioxide (CO2) have included in recent years the role of nitrogen as an important constraint for biospheric carbon fluxes. We used the Nitrogen Carbon Interaction Model (NCIM) to investigate patterns of carbon and nitrogen storage in different compartments of the terrestrial biosphere as a consequence of a rising atmospheric CO2 concentration, in combination with varying levels of nitrogen availability. This model has separate but closely coupled carbon and nitrogen cycles with a focus on soil processes and soil–plant interactions, including an active compartment of soil microorganisms decomposing litter residues and competing with plants for available nitrogen. Biological nitrogen fixation is represented as a function of vegetation nitrogen demand. The model was validated against several global datasets of soil and vegetation carbon and nitrogen pools. Five model experiments were carried out for the modeling periods 1860–2002 and 2002–2100. In these experiments we varied the nitrogen availability using different combinations of biological nitrogen fixation, denitrification, leaching of soluble nitrogen compounds with constant or rising atmospheric CO2 concentrations. Oversupply with nitrogen, in an experiment with nitrogen fixation, but no nitrogen losses, together with constant atmospheric CO2, led to some carbon sequestration in organismic pools, which was nearly compensated by losses of C from soil organic carbon pools. Rising atmospheric CO2 always led to carbon sequestration in the biosphere. Considering an open nitrogen cycle including dynamic nitrogen fixation, and nitrogen losses from denitrification and leaching, the carbon sequestration in the biosphere is of a magnitude comparable to current observation based estimates of the ‘missing sink.’ A fertilization feedback between the carbon and nitrogen cycles occurred in this experiment, which was much stronger than the sum of separate influences of high nitrogen supply and rising atmospheric CO2. The demand‐driven biological nitrogen fixation was mainly responsible for this result. For the modeling period 2002–2100, NCIM predicts continued carbon sequestration in the low range of previously published estimates, combined with a plausible rate of CO2‐driven biological nitrogen fixation and substantial redistribution of nitrogen from soil to plant pools.  相似文献   

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施用控释氮肥对稻田土壤微生物生物量碳、氮的影响   总被引:9,自引:0,他引:9  
罗兰芳  聂军  郑圣先  廖育林  谢坚 《生态学报》2010,30(11):2925-2932
借助农业部望城红壤水稻土生态环境野外观测试验站的控释氮肥试验,研究了施用控释氮肥对水稻不同生育期间稻田土壤微生物生物量碳、氮动态变化的影响。试验共设5个处理:①CK,(不施氮肥);②Urea(施用尿素);③CRNF(施用与处理②等氮量的控释氮肥);④70%CRNF(施用控释氮肥,用氮量为处理②的70%);⑤50%CRNF+M(施用控释氮肥和猪粪,总氮量为处理②的70%,其中控释氮肥用量为处理②的50%,猪粪含氮量为处理②的20%)。结果表明,施肥后10 d,施氮处理土壤微生物生物量碳和氮均达最高,随生育进程推进逐渐下降,成熟期有一定的回升;施肥初期,施用等氮量的控释氮肥处理(CRNF)土壤微生物量碳、氮含量较尿素处理(Urea)分别增加5.4%和22.5%,而水稻生育中后期,控释氮肥处理(CRNF)土壤微生物量碳、氮含量较尿素处理(Urea)下降幅度大,该处理向地上部提供氮素营养较尿素处理高;施氮量较高的CRNF处理,土壤微生物生物量碳低于控释氮肥节氮处理(70%CRNF),但在大多数取样时期,土壤微生物量氮高于控释氮肥节氮处理(70%CRNF);控释氮肥配施有机肥的节氮处理较其他单施化肥处理显著增加土壤微生物生物量碳、氮含量。控释氮肥与有机肥配施,不仅能节约氮肥用量,而且能明显地提高土壤微生物生物量碳、氮的含量。  相似文献   

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