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1.
通过对华北平原小麦–玉米轮作农田生态系统18年田间施肥试验,研究了长期不同施肥处理对耕层(0—20 cm)土壤腐殖质及活性腐殖质组分碳和氮的影响。试验设化肥NPK不同组合(NPK、NP、NK、PK),全部施用有机肥(OM),一半有机肥+化肥NPK(1/2OMN)及不施肥(CK)共7个处理。结果表明,各施肥处理均能在不同程度上增加土壤腐殖质(胡敏酸、富里酸和胡敏素)及活性腐殖质(活性胡敏酸和活性富里酸)组分碳和氮含量,提高可浸提腐殖质(胡敏酸和富里酸)及活性腐殖质组分碳和氮分配比例;但施肥对土壤活性腐殖质组分碳和氮含量的增加率均分别高于腐殖质组分碳和氮。各处理土壤腐殖质及活性腐殖质组分碳和氮含量均为OM处理最高,且有机肥与化肥NPK配施高于单施化肥各处理;而化肥处理中NPK均衡施用效果最好。说明施用有机肥、有机肥与化肥NPK配施及化肥NPK均衡施用是增加土壤腐殖质及活性腐殖质组分碳和氮的关键;活性腐殖质组分碳和氮较腐殖质组分碳和氮对施肥措施的响应更灵敏。  相似文献   

2.
有机物料对白土土壤胡敏酸结构特征的影响   总被引:7,自引:0,他引:7  
【目的】研究有机物料施入对白土土壤的腐殖质含量组成和胡敏酸(HA)结构特征的影响,为明确不同腐殖质组分对土壤肥力的影响提供理论依据。【方法】供试土壤为江苏省溧阳市南渡镇"白土改良大田示范试验核心区"的南方中低产水稻土(白土)。试验设秸秆还田(ST)、施有机肥(OM)和对照(CK,不施有机物)3个处理,培肥3年。同时采集试验田周围相邻的江苏省耕地质量监测点(2007~2013年)的每年施化肥(LAF)和长期不施肥(NF)的两种处理土壤进行比对研究。分别测定土壤的基本理化性质及其腐殖质含量的组成,并提取土壤胡敏酸(HA)固体样品利用红外光谱和元素分析来进行结构表征。【结果】秸秆还田和施有机肥处理的有机碳、全氮含量明显高于对照;与对照相比,施有机物料土壤HA的E4/E6比值增加,且秸秆还田施有机肥对照。红外光谱显示,试验区域和耕地监测点的不同处理土壤HA均在1650 cm-1处(酰胺I带)和1550 cm-1处(1500~1580 cm-1酰胺II带伸缩振动)有特征吸收。施有机肥和秸秆还田处理土壤HA的2920/1720、2920/1650比值显著大于对照。在元素组成上,OM、ST处理的土壤腐殖质(HA)中C、H、N的含量比均高于CK,相对长期施化肥(LAF)和不施肥(NF)的土壤有明显提高,而氧元素的含量呈降低的趋势;OM和ST处理土壤HA的[H]/[C]和[O]/[C]原子数比均低于CK;与LAF和NF处理相比,试验区域各处理土壤腐殖质的[H]/[C]和[O]/[C]原子数比均有明显降低。【结论】有机物料施入土壤后可增加土壤有机碳含量,改善土壤理化性质,提高作物产量和品质,且施入土壤的有机物料可转化为新的腐殖质,降低土壤的腐殖化程度。土壤腐殖质(HA)的红外光谱分析说明,白土土壤HA具有明显的酰胺类化合物特征。有机物料施入后使得土壤脂族性增强,羧基量减少,芳香度降低;秸秆还田和施有机肥处理与对照相比,土壤HA的[H]/[C]和[O]/[C]比均有下降的趋势,且HA的氮素含量明显增加,这显示有机物料施入后白土土壤腐殖质发生"脱水"过程,同时也反映了白土土壤腐殖质形成的特征。  相似文献   

3.
在荆门市双季稻区研究了不同的土壤改良措施对土壤腐殖质组成及结合形态、土壤理化性质、双季稻产量的影响。结果表明:不同土壤改良措施均提高了土壤水溶性物质、胡敏酸、胡敏素含量、可提取腐殖物质总量,其中泥炭土、菇渣及生物有机肥处理增幅较大;不同土壤改良措施增加了土壤松结合态腐殖质、稳结合态腐殖质、紧结合态腐殖质含量及结合态腐殖质总含量,其中生物有机肥处理达到显著水平。各土壤改良措施均不同程度地增加了早、晚稻产量,平均比单施化肥处理的早稻增产6.6%、晚稻增产9.5%;同时提高了土壤有机质、全氮、碱解氮、有效磷、速效钾含量与阳离子交换量,降低了土壤容重。各改良措施中,生物有机肥处理的增产幅度较大,早、晚稻分别增产10.13%和17.50%,且对土壤理化性质的改良效果优于其它处理。  相似文献   

4.
红松人工林腐殖质组成及其结合形态研究   总被引:4,自引:0,他引:4       下载免费PDF全文
 运用野外调查与实验分析相结合的方法,对不同生长发育阶段红松人工林(林龄25、45、58、68 a)和红松混交林(林龄60a)根际与非根际土壤有机质含碳量、腐殖质组成与结合形态进行了研究。结果表明:不同年龄阶段红松人工纯林、红松混交林土壤有机质含碳量、腐殖质各组分含碳量随土层深度的加深而降低,并且根际土壤高于非根际土壤。就土壤腐殖质组成而言,除林龄58a红松人工林根际土壤和45a红松人工林非根际土壤外,其他林型土壤胡敏酸含碳量均高于富里酸含碳量;胡敏酸与富里酸比值(HA/FA)在1.00~2.45之间;土壤重组腐殖质、松结态腐殖质、稳结态腐殖质含碳量大小顺序为林龄58>68>25>45a;红松混交林除紧结态腐殖质外,其他腐殖质各组分含碳量均高于红松人工林。  相似文献   

5.
不同施肥处理对棕壤几个肥力指标的影响   总被引:7,自引:0,他引:7  
23年定位试验结果表明:土壤有机碳、全氮和碱解氮、生物氮量以:高量有机肥区>低量有机肥区>化肥区>对照。土壤C/N基本维持在11~16之间。单施化肥处理土壤微生物碳量降低,Kos值高于其它施化肥处理,有机无机肥配合施用,结合态腐殖质含量明显下降,松结态/重组腐殖质的比值和松/紧比值也有所降低。有机无机配施各处理土壤微生物碳量,以及土壤松结态、稳结态、紧结态腐殖质的含量显著升高,提高松结态/重组腐殖质和松/紧的比值;不同用量的施有机肥处理土壤微生物碳量与对照相比差异不显著,Kos值下降,其他指标均升高。  相似文献   

6.

Purpose

The application of bio-fertilizers is one of the management practices that can help to maintain or increase the content of organic matter (OM) and improve soil fertility in arable soils. While some results have been obtained in relation to the influence of bio-fertilizers on organic matter content, less in known about the fractional composition of humus.

Materials and methods

The aim of this study was to determine the effects of the bio-fertilizer UGmax on soil total organic carbon (TOC), dissolved organic carbon (DOC), and the fractional composition of organic matter (C of humic acids (CHAs), C of fulvic acids (CFAs), and C in humins) in the humus horizon of an arable field. Measurements were taken in 2005 before the application of UGmax and in 2008, 3 years after its application, which was done in 2005, 2006, and 2007. Forty soil samples were taken in 2005 (the control year without UGmax), while 20 samples were taken after UGmax treatment and 20 from the control in 2008. Samples were always collected after the plants were harvested.

Results and discussion

After the 3-year period of the experiment, the TOC content was 6.3 % higher in plots on which UGmax was applied in comparison to the control, while the DOC content was 0.19 percentage points lower after 3 years of bio-fertilizer use as compared to the initial year of the experiment. The contribution of DOC to TOC decreased significantly after the application of UGmax in comparison with the control. The content of CFAs and its contribution in the TOC pools in soil without UGmax was higher at the end of the experiment compared to the beginning, while there was an inverse relationship in the soil with the bio-fertilizer. In comparison with the control, organic matter in the soil treated with UGmax had a higher content of C of humic acids, C in humins, and higher CHAs/CFAs ratio.

Conclusions

We conclude that the use of a bio-fertilizer that increases the stable fractions of organic matter provides evidence of an increase in the soil OM stability. In turn, the contribution of the organic matter fractions that are more resistant to decomposition is crucial for increasing soil carbon sequestration.
  相似文献   

7.
以吉林省农业科学院黑土有机培肥定位试验基地为平台,研究了不同种类有机肥(堆腐肥、鸡粪、牛粪和猪粪)施用对土壤及不同粒级团聚体中有机碳和腐殖质组成的影响。结果表明:与不施肥(CK)和单施化肥(NPK)相比,有机肥配施化肥显著(P0.05)增加了土壤有机碳、胡敏酸碳(HAC)和胡敏素碳(HUC)含量;同时,有机肥配施化肥也增加了不同粒级团聚体中有机碳和腐殖质碳含量,其中施用堆腐肥显著增加了各粒级团聚体中有机碳、HAC和HUC含量。不同种类有机肥相比,施用堆腐肥处理的土壤有机碳、HAC和HUC含量均高于其他有机肥处理,并与牛粪处理之间差异显著;施用堆腐肥和牛粪后,0.25mm粒级团聚体有机碳含量高于其他有机肥处理,且2~0.25mm粒级团聚体有机碳含量显著高于鸡粪处理;从不同粒级团聚体中腐殖质组分的分布来看,施用堆腐肥后,2~0.25mm粒级团聚体中HAC和HUC含量显著高于猪粪处理,而0.25~0.053,0.053mm粒级团聚体中HAC含量显著低于鸡粪处理。上述结果说明,有机肥配施化肥提高了土壤团聚体中有机碳和腐殖质碳含量,但不同有机肥的效应不同。  相似文献   

8.
通过5年的定位试验,结果表明,长期有机无机肥配施或粮肥轮作、间种配施化肥均能提高黄壤土类黄泥土、红壤土类黄红泥土和潮土类潮泥土的有机质、腐殖质和活性腐殖质含量,其中胡敏酸、富里酸也相应增加,但以粮肥轮作、间种配施化肥的培肥效果最好。粮肥轮作、间种配施化肥还能提高土壤腐殖质的胡/富比值。各处理的影响不仅仅局限于土壤耕层,但以0~50cm土层的效果显著。  相似文献   

9.
长期定位施肥对土壤腐殖质含量的影响   总被引:1,自引:0,他引:1  
以潮土、旱地红壤和红壤性水稻土为研究对象 ,探讨了长期施肥对土壤腐殖质含量的影响。结果表明 ,长期施用 NPK化肥、有机肥或有机无机肥配施均能提高潮土、旱地红壤和红壤性水稻土耕层的有机质、腐殖质和活性腐殖质含量 ,其中胡敏酸、富里酸也相应地增加 ,但以有机无机肥配施的效果最好。施有机肥或有机无机肥配施还能提高土壤腐殖质的胡 /富比值。施肥对土壤有机质的影响不仅局限于土壤耕层 (0~ 2 0 m) ,而且影响耕层以下层次 ,但以 0~ 6 0 cm土层的效果显著 ,且以潮土的效果明显  相似文献   

10.
生物质炭是具有高度热稳定性和较强吸附特性的含碳物质,不同来源生物质炭的结构性质可能存在着很大的差异。为此对2种自制的不同来源生物质炭和1种商业黑炭进行了结构表征,并研究了添加生物质炭对土壤有效养分和腐殖质组成的影响。结果表明,不同来源的生物质炭在结构上有明显区别:秸秆生物质炭的芳构化程度和热稳定性最低,脂族性最强;商业黑炭缩合程度和热稳定性最高,脂族性最弱;松枝生物质炭介于二者之间。向土壤中添加秸秆生物质炭和松枝生物质炭培养45d后,土壤有机碳含量、胡敏酸和富里酸含量、有效养分含量都有不同程度的增加,同时胡敏酸的色调系数ΔlgK降低,对土壤有机碳的长期保存有积极意义。  相似文献   

11.
稻草不同途径还田对土壤结构及有机质特征的影响   总被引:1,自引:0,他引:1  
通过3年的田间定位试验,系统的研究了稻草不同途径还田对稻田土壤容重、孔隙度、团聚体、有机碳总量、腐殖质组成及腐殖质结合形态的影响。结果表明,与无肥(CK)及纯施化肥(NPK)对照相比,稻草直接深埋还田(NPK+S)及利用后的菌渣、牛粪、沼渣深埋还田(NPK+FD、NPK+CD、NPK+BD)均能一定程度的降低土壤容重、增加孔隙度、增加>0.25 mm水稳性团聚体的数量和提高土壤团聚体的稳定性,有利于形成和保持良好的土壤结构;同时能提高土壤腐殖质中胡敏酸含量和HA/FA比值,增加松结态腐殖质含量和提高松/紧腐殖质比值,能一定程度的改善土壤腐殖质的组成、性质及结合形态,提高腐殖质品质,不过这4个处理间的差异不明显。稻草焚烧还田(NPK+S′)在以上方面效果均不显著,且带来严重的大气污染,并不可取。  相似文献   

12.
The mineralization rate of the 14C-labeled organic matter (OM) in the humus-accumulative AE horizon of a soddy-podzolic soil was determined in a laboratory experiment. The labeling was performed in a field experiment when microamounts of 14C-labeled glucose, glycine, and uracil were added to tree waste in sacks embedded in the upper layer of the forest litter. Samples containing 14C were taken from the AE horizon (above which the sacks with the labeled material were placed) 7 and 20 months after the beginning of the experiment. The soil samples were wetted to a water content corresponding to ??80% of the total water capacity and placed in hermetic vessels containing vials with a periodically renewed alkali solution. The incubation was performed at room temperature for 3.5 months; the alkali solutions in the vials were replaced and titrated 12 times during this period. Mineralization curves were plotted from the amounts of carbon dioxide absorbed by a 0.3 N NaOH solution, which were calculated for each time interval; its 14C content was determined by the scintillation method. The experimental treatments also included the determination of the OM mineralization rate in material from the AE horizon pretreated with a heavy liquid or a heavy liquid and a 0.1 N NaOH solution. The differences between the mineralization rates of the labeled organic matter applied to the soil in the form of glucose, glycine, and uracil under the field conditions after the interaction for 7 and 20 months were revealed. The changes in the mineralization rate after the successive extraction of the labile organic matter with a heavy liquid and a 0.1 N NaOH solution were studied. It was shown that the transformation of the labeled low-molecular-weight organic compounds in the soil over 20 months included their strong inclusion into the humus composition, which was confirmed by the similar values of the mineralization constants of the native and 14C-labeled OM. In addition, the treatments with the heavy liquid or the heavy liquid and the NaOH solution had almost identical effects on the mineralization of the native and 14C-labeled OM. The mineralization constants of the native and 14C-labeled OM in the samples taken after 7 months of the field experiment differed significantly.  相似文献   

13.
不同施肥及秸秆还田对潮土有机质及其组分的影响   总被引:12,自引:1,他引:12  
吴其聪  张丛志  张佳宝  陈金林  信秀丽 《土壤》2015,47(6):1034-1039
基于长期田间定位试验样地,研究了裸地(CK1)、不施肥秸秆移除(CK2)、不施肥秸秆还田(CK3)、施无机肥秸秆移除(NPK)、有机无机肥混施秸秆移除(1/2NPK+1/2OM)、有机肥秸秆移除(OM)、无机肥秸秆还田(NPK+S)、有机肥秸秆还田(OM+S)8种处理对土壤有机质及其组分含量的影响。结果表明,CK1土壤有机质及有机质各组分含量最低,但有机质稳定性较CK2、CK3高。与CK2相比,施肥处理(NPK、1/2NPK+1/2OM、OM)、秸秆还田处理(CK3)以及秸秆与肥料混施处理(NPK+S、OM+S)均能不同程度地增加土壤有机质及其各组分的含量,提高土壤有机质稳定性。其中OM处理效果最为显著,有机质含量比CK2高155.1%;有机质各组分中可溶性有机质DOM、富里酸FA、胡敏酸HA、胡敏素HM比CK2分别高39.1%、133.7%、540.0%、152.5%;HA/FA值为0.43,比CK2高173.9%。在CK3的基础上施用肥料(NPK+S、OM+S),土壤有机质含量以及有机质稳定性均有所增加,并且有机肥(OM+S)效果好于无机肥(NPK+S)。可见秸秆还田及有机肥施用对潮土有机质及其各组分含量均有提升作用,促进有机质积累并提高其稳定性。  相似文献   

14.
为探究生物炭对土壤腐殖质组成和团聚体特征的影响,以东北黑土区植烟土壤为研究对象,设置了3个处理,2019-2020年连续施用低量生物炭5t/hm2(C1);高量生物炭25t/hm2(C2)和不施生物炭(CK),分析了不同用量生物炭对土壤腐殖质组分及水稳性团聚体分布的影响,并利用傅里叶红外光谱(FTIR)和13C核磁共振光谱(13C-NMR)对土壤胡敏酸化学结构进行表征。结果表明:C1和C2处理分别使富里酸减少了16.90%和40.85%,胡敏酸含量显著增加了14.86%和33.78%,胡敏酸在腐殖酸中所占比例(PQ值)也显著增加;FTIR和13C-NMR分析表明,C2处理的土壤胡敏酸的2920/1620值降低了11.82%,脂族C/芳香C比值降低了13.04%,表明高量生物炭使胡敏酸芳构化程度增强,脂肪结构比例降低;生物炭的添加促使土壤大团聚体(>0.25mm)比例增加,C2处理提升大团聚体的作用更显著。结合相关性分析发现,胡敏酸含量与2~0.25mm大团聚体含量显著正相关,胡敏酸分子的脂肪族官能团特征与>2mm粒级团聚体显著正相关。此外,C1和C2处理显著提高了烟叶产量。从而表明,生物炭能提升土壤腐殖质中胡敏酸含量和结构,有利于土壤大团聚体形成,提高土壤固碳潜力,对作物有一定的增产效果。  相似文献   

15.
高量秸秆不同深度还田对黑土有机质组成和酶活性的影响   总被引:15,自引:0,他引:15  
在田间耕作条件下黑土3个土层(0~20、20~40、40~60cm)添加4%和8%高量玉米秸秆于尼龙袋中原位培养近4年后,研究不同层次土壤秸秆转化与有机碳积累特征,以及腐殖质各组分和土壤酶活性的变化。结果表明,添加4%的秸秆量0~20、20~40和40~60cm土层有机碳分别增加31.8%、96.4%和171.1%,8%秸秆添加量分别增加了86.2%、193.5%和265.9%,增加秸秆还田深度有利于土壤有机碳的积累。0~20 cm土层在无秸秆还田情况下有机碳下降了29.3%,而20~40 cm土层仅下降了1.8%。土壤有机碳含量和酶活性均随秸秆添加量的增加而提高,腐殖质胡敏酸/富里酸(HA/FA)比值发生较大变化,改善了腐殖质品质。各处理腐殖酸碳(HS-C)和胡敏酸碳(HA-C)的大小为20~40 cm土层0~20 cm土层40~60 cm土层,而40~60 cm土层则更有利于富里酸碳(FA-C)的积累。土壤过氧化氢酶活性、脲酶和蔗糖酶活性分别与HA-C、FA-C含量呈极显著正相关、显著正相关。研究结果为深层秸秆还田促进土壤有机质的积累提供了理论依据。  相似文献   

16.
菌剂对鸡粪堆肥腐殖质含量品质的影响   总被引:4,自引:4,他引:4  
腐殖质是评价堆肥品质的重要因素,该文利用鸡粪和秸秆为原料进行高温好氧堆肥,设计接种菌剂和不接种菌剂(对照)2个处理,研究菌剂添加对堆肥腐殖质形态、含量、品质的影响。结果表明:与对照相比,接种菌剂可以加快有机物的降解,矿质化时间缩短14d,菌剂具有良好的保碳效果,总有机碳含量提高了16.1%,同时总腐殖酸、游离腐殖酸以及水溶态腐殖酸及胡敏酸的含量,分别提高了38.7%,45.7%、39.0%及54.9%。接种菌剂可以提高腐殖酸的活性,堆肥结束后,接种菌剂处理的游离腐殖酸和水溶性腐殖酸含量均增加,而对照处理的含量均降低;堆肥可以提高腐殖酸质量,堆肥结束后两个处理总腐殖酸含量均下降但是缩合度、腐殖化率、腐殖化指数及胡敏酸百分比均提高,特别是添加菌剂的处理腐殖化程度明显高于对照。说明了菌剂可以增加堆肥腐殖质含量,提高腐殖质缩合度、芳构化程度及活性。  相似文献   

17.
采用长期肥料定位试验,研究了施用有机肥和磷肥对土壤有机质、腐殖质含量与组成的影响。结果表明:与本试验布置时的基础土样相比,连续10年隔年施用有机肥、有机肥和磷肥配施使土壤有机质增加了8.4%~17.3%,单施磷肥土壤有机质下降了7.8%~10.7%,其差异均达显著水平;与P0M0相比,单施磷肥、有机肥、有机肥和磷肥配施处理的土壤中有机质分别增加了2.9%~6.2%、24.8%~29.8%、25.2%~35.1%;土壤腐植酸总量及胡敏酸含量与土壤有机质含量呈显著正相关关系;施用磷肥利于土壤富里酸的积累,并影响土壤胡富比。  相似文献   

18.
The effects of continuous application of cattle manure on the quantity and quality of soil organic matter (OM) were investigated in an Ando soil (Melanudand). Surface soil samples were periodically taken from NPK and NPK+ manure (80, 160, and 320 Mg ha-1 y-1) plots over a period of 20 y. Particulate (>53 µm) and mineral-associated <53 µm) OM fractions were separated from the soil samples by sieving after:mechanical dispersion. For the NPK treatment, both the organic C and total N concentrations of the whole soil continued to decrease, the reduction reaching about 10% after 20 y. Manure application at the rate of 80 Mg ha-1 y-1 did not lead to an increase in the amounts of organic C and total N in the whole soil. In contrast, both the organic C and total N concentrations increased by the application of 160 and 320 Mg ha-1 y-1 manure. Manure application at the rate of 320 Mg ha-1 y-1 increased the organic C concentration by 30% and total N concentration by 48% after 20 y. The decrease in the organic C and total N concentrations in soil with NPK fertilization was attributed to a decrease in the amount of mineralassociated OM. Manure application increased significantly the amount of particulate OM, while it did not affect the amount of mineral-associated OM. It also resulted in a decrease in the C/N ratio of soil OM, especially of the particulate OM. The analysis of humic acids showed that manure application induced a decrease in the degree of humification and an accumulation of high molecular weight components. The quantitative'and qualitative changes of OM in the Ando soil upon manure application were mainly due to the accumulation of manure-derived particulate OM.  相似文献   

19.
Stability of humus in the plow layer soil is considered to affect the quantity and quality of dissolved organic matter leached from the plow layer soil. Therefore, a model experiment was conducted to analyze the effect of soil reduction under submerged conditions on the stability of humus in the plow layer soil. The changes in the stability of humus in the plow layer soil during submerged incubations with and without rice straw application were evaluated based on the changes in the binding type of humus. Binding type of humus in the plow layer soil was analyzed by successive extractions of organic matter with water, 0.25 M Na2SO4, 0.1 M Na4P2O7 (pH 7.0), 0.1 M Na4P2O7 (pH 10.5), and 0.1 M Na4P2O7 (pH 10.5) with NaBH4. Amounts of Fe, Mn, and Mg in each fraction were also determined to estimate the relationships between humus and metals.

The successive extraction of humus indicated that the amount of organic carbon which was extractable with the (NaBH4 +0.1 M Na4P2O7) solution decreased while that of the 0.1 M Na4P2O7 (pH 7.0}-extractable organic carbon increased during submerged incubation with rice straw application. The origin of the increase in the amount of organic carbon in the Na4P2O7 (pH 7.0)-extractable fraction during submerged incubation was investigated further by another incubation experiment using 13C-glucose as a reducing agent. Atom- 13C% analysis showed that the contribution of organic carbon derived from compounds other than glucose to the increase in the contents of humic acids and fulvic acids in the Na4P2O7 (pH 7.0)-extractable fractions was ca. 80%. Therefore, it was concluded that the binding type of humus changed from (NaBH4 + Na4P2O7)-extractable to Na4P2O7 (pH 7.0)-extractable humus under reducing conditions. Since the amounts of organic carbon and Fe increased in the Na4P2O7 (pH 7.0)-extractable fraction and decreased in the (NaBH4 +0.1 M Na4P2O7)-extractable fraction simultaneously, iron reduction was presumably associated with the change in the binding type of humus in submerged paddy soil.  相似文献   

20.
连续九年施用有机肥料,紫色水稻土壤及<0.002mm的有机无机复合体中无定形铁,铝和铬合态铁,铝的含量呈不同程度的增加,铬合态铁和铝间具拮抗作用(r=0.7998n=7);土壤的有机质含量增加主要是由于轻组有机质含量增加,而有机无机复合度下降,土壤重组腐殖质的含量为0.25-0.01mm><0.002mm>1-0.25mm>0.01-0.002mm;有机无机复合度及重组腐殖质中松结态与紧结态的比值  相似文献   

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