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1.
Data from a 49-year-long organic–mineral fertilization field experiment with a potato–maize–maize–wheat–wheat crop rotation were used to analyse the impact of different fertilizer variations on yield ability, soil organic carbon content (SOC), N and C balances, as well as on some characteristic energy balance parameters. Among the treatments, the fertilization variant with 87 kg ha?1 year?1 N proved to be economically optimal (94% of the maximum). Approximately 40 years after initiation of the experiment, supposed steady-state SOC content has been reached, with a value of 0.81% in the upper soil layer of the unfertilized control plot. Farmyard manure (FYM) treatments resulted in 10% higher SOC content compared with equivalent NPK fertilizer doses. The best C balances were obtained with exclusive mineral fertilization variants (?3.8 and ?3.7 t ha?1 year?1, respectively). N uptake in the unfertilized control plot suggested an airborne N input of 48 kg ha?1 year?1. The optimum fertilizer variant (70 t ha?1 FYM-equivalent NPK) proved favourable with a view to energy. The energy gain by exclusive FYM treatments was lower than with sole NPK fertilization. Best energy intensity values were obtained with lower mineral fertilization and FYM variants. The order of energy conversion according to the different crops was maize, wheat and potato.  相似文献   

2.
The impact of fertilization on maize (Zea mays L.) yield and soil properties was investigated in a long‐term (> 18 y) experimental field in N China. A completely randomized block design with seven fertilizer treatments and four replications was used. The seven fertilizer treatments were (1) compost (COMP), (2) half compost plus half chemical fertilizer (COMP1/2), (3) balanced NPK fertilizer (NPK), (4–6) unbalanced chemical fertilizers without one of the major elements (NP, PK, and NK), and (7) an unamended control (CK). In addition to maize yield, soil chemical and biological properties were investigated. Compared to the balanced NPK treatment, maize yield from the COMP treatment was 7.9% higher, from the COMP1/2 was similar, but from the NP, PK, NK, and CK treatment were 12.4%, 59.9%, 78.6%, and 75.7% lower. Across the growing season, microbial biomass C and N contents, basal soil respiration, and fluorescein diacetate hydrolysis, dehydrogenase, urease, and invertase activities in the COMP and COMP1/2 treatments were 7%–203% higher than the NPK treatment. Values from all other treatments were up to 60% lower than the NPK treatment. Maize yield is closely related to the soil organic C (OC) and biological properties, and the OC is closely related to various biological properties, indicating that OC is a suitable indicator for soil quality. Our results suggest the most limiting nutrient for improving the yield or soil quality was P, followed by N and K, and balanced fertilization is important in maintaining high crop yield and soil quality. Additionally, increases in OC, N, and biological activities in COMP and COMP1/2 treatments imply that organic compost is superior to the chemical fertilizers tested.  相似文献   

3.
不同施肥措施对潮土有机碳平衡及固碳潜力的影响   总被引:11,自引:0,他引:11  
尹云锋  蔡祖聪 《土壤》2006,38(6):745-749
以中国科学院封丘农业生态实验站的长期定位施肥试验为研究平台,研究不同施肥措施对潮土有机C含量的影响,并利用Jenny模型对不同施肥措施下的潮土有机C动态进行模拟。结果表明,施肥措施明显改变了潮土有机C含量,并且有机肥处理的作用效果要明显优于化肥处理。不同施肥措施不仅改变了潮土有机C的平衡水平,也影响了有机C的分解速率,NPK、1/2OM和OM施肥处理的有机C平衡值分别为7.19、7.75和9.37g/kg,而分解速率分别为0.038、0.113和0.1451/a。在目前施肥模式不变的情况下,与试验初相比,达到平衡时CK处理的潮土将会损失C1478kg/hm2,而NPK、1/2OM和OM处理的潮土则会分别增加C7376、7790和12066kg/hm2。因此,可以认为施肥处理促进了潮土的C固定。  相似文献   

4.
  【目的】  小麦?大豆系统是黄淮海区域重要的禾豆复种系统,综合评价该系统的净碳排放对于我国农田固碳减排具有重要意义。借助30年的长期定位试验,综合评价不同施肥处理下小麦?大豆复种系统的产量和净碳排放,旨在为该系统丰产低碳排放的施肥制度创新提供理论依据。  【方法】  试验包括单施牛粪 (M)、氮磷钾平衡施肥 (NPK)、氮磷钾加牛粪 (NPKM)、氮磷加秸秆 (NPS)、氮磷钾加饼肥 (NPKC)、氮磷钾加牛粪及饼肥 (NPKMC) 以及不施肥对照 (CK),共7个处理。综合分析了各处理田间直接温室气体排放 (N2O和CH4)、农田投入导致的间接碳排放与土壤有机碳固定,估算了单施牛粪、单施化肥以及化肥与不同有机物料配施的净碳排放,同时将碳排放与作物产量和土壤有机质相结合,综合评价了不同施肥措施下的净温室效应。  【结果】  小麦?大豆复种系统中,小麦季施肥对大豆产量有显著后效,与单施NPK相比,NPKM、NPKC和NPKMC处理分别使大豆产量提高了31.0%、16.8%和24.0%,而M和NPS处理不利于大豆、小麦产量的提高。与NPK处理相比,M、NPKM、NPKMC处理的农田直接温室气体排放分别增加了49.4%、17.7%和12.4%,土壤有机碳年固定量分别显著提高了282.2%、137.3%和169.1%。M及NPKM处理的间接碳排放与NPK处理没有明显差异,而其他施肥处理的间接碳排放低于NPK处理。在各施肥处理中,由肥料投入导致的碳排放占总间接碳排放的比例最大,其次是灌溉用电和机械用柴油导致的碳排放。对净碳排放的估算结果表明,M处理的净碳排放为负值 (表现为碳汇),而其他处理下小麦–大豆复种系统均表现为碳源,NPK与有机物料配施的处理净碳排放显著低于NPK处理。此外,与NPK处理相比,NPK与有机物料配施使碳排放强度显著降低了36.5%~113.2%,使单位土壤有机质提升的温室气体排放 (δGHG/δSOM) 降低了69.4%~93.2%。  【结论】  黄淮海区域小麦?大豆复种系统中,氮磷钾配施有机肥 (牛粪或饼肥) 可在保证小麦和大豆产量的同时,降低小麦?大豆复种系统的净温室效应。  相似文献   

5.
不同培肥处理对土壤溶解性有机碳含量及特性的影响   总被引:21,自引:0,他引:21  
以黄土高原南部地区的长期肥料定位试验为研究对象,通过室内测定及培养试验研究了不施肥(CK)、撂荒(FA)、施氮磷钾肥(NPK)、氮磷钾配施有机肥(MNPK)和氮磷钾配施秸秆(SNPK)培肥处理土壤中溶解性有机碳(DOC)的含量、结构特性及其降解特性。结果表明,在0~20 cm耕层土壤中,不同培肥处理土壤中DOC的含量变化范围在4.65~8.94 mg kg-1之间,平均为6.42 mg kg-1,各培肥处理间差异明显,其大小顺序为MNPKSNPKNPKFACK。由DOC溶液的UV280吸收值和腐殖化指数(HIXem)可以得出,不同培肥处理土壤中溶解性有机物中结构相对复杂的芳香化合物所占的比例明显不同,其大小顺序为SNPKMNPKFANPKCK。经过7d的生物降解培养,不同培肥处理土壤DOC溶液的降解率变化范围在19.3%~48.5%之间,平均为28.6%,其大小顺序为CKFANPKSNPKMNPK。随着培养的进行,DOC溶液中结构较为复杂的溶解性有机物的比例上升。  相似文献   

6.
The influence of differing soil management practices on changes seen in soil organic carbon (SOC) content of loamy Haplic Luvisol was evaluated. The field experiment included two types of soil tillage: 1. conventional tillage (CT) and 2. reduced tillage (RT) and two treatments of fertilization: 1. crop residues with nitrogen, phosphorus, and potassium (NPK) fertilizers (PR+NPK) and 2. NPK fertilizers (NPK). The results of SOC fluctuated from 9.8 to 14.5 g kg?1 and the tillage systems employed and fertilization status did not have a statistically significant influence on SOC. The SOC content was higher in RT (12.4 ± 0.86 g kg?1) than in CT (12.2 ± 0.90 g kg?1). On average, there was a smaller higher value of SOC in PR+NPK (12.4 ± 1.02 g kg?1) than in NPK (12.3 ± 0.88 g kg?1). During a period of 18 years, reduced tillage and application of NPK fertilizers together with crop residues build up a SOC at an average speed of 7 and 16 mg kg?1 year?1, respectively, however conventional tillage and NPK fertilizer applications caused a SOC decline at an average speed of 104 and 40 mg kg?1 year?1, respectively.  相似文献   

7.
长期施肥棕壤团聚体分布及其碳氮含量变化   总被引:7,自引:0,他引:7  
【目的】探究玉米-玉米-大豆轮作体系不同施肥处理对土壤团聚体分布及其有机碳、全氮的影响,以期深入了解施肥对土壤培肥、改善土壤结构的机制。【方法】选取不施肥(CK),化肥(NPK),低量有机肥(M1),低量有机肥与化肥配施(M1NPK),高量有机肥(M2),高量有机肥与化肥配施(M2NPK)6个处理。采集棕壤37年长期定位试验微区不同施肥处理的0-20 cm和20-40 cm土样,分析其水稳性团聚体( 1 mm、1~0.5 mm、0.5~0.25 mm、0.25~0.053 mm及 0.053 mm)分布及其有机碳、全氮分配特征。【结果】棕壤长期施肥对团聚体分布及其碳氮的影响0-20 cm大于20-40 cm,随土层深度的增加,有机碳(SOC)、全氮(TN)含量减少。各处理团聚体及碳、氮在团聚体中的分配主要在黏粉粒中(40%以上)。与CK相比,NPK处理显著提高了黏粉粒的含量,降低大团聚体与微团聚体含量,显著增加黏粉粒储碳比例;M1、M2处理显著增加 1 mm团聚体数量及其SOC含量,显著增加 0.25 mm各粒级团聚体的储碳比例,且M2处理显著高于M1处理;M1NPK、M2NPK处理也显著增加 1 mm团聚体数量及其SOC含量,M1NPK与M2NPK处理在NPK处理的基础上依次增加0.5~0.25 mm(M1NPK)、1~0.5 mm及 1 mm团聚体的储碳比例,M2NPK处理 0.25 mm团聚体储碳比例最高,土壤团聚体全氮的变化趋势与有机碳类似。【结论】棕壤连续有机无机配合施用可显著增加土壤大团聚体数量、SOC、TN含量及其储碳、氮比例,是提高土壤质量、改善土壤结构的有效施肥措施。  相似文献   

8.
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   

9.
Ecological stoichiometry provides the possibility for linking microbial dynamics with soil carbon (C), nitrogen (N), and phosphorus (P) metabolisms in response to agricultural nutrient management. To determine the roles of fertilization and residue return with respect to ecological stoichiometry, we collected soil samples from a 30-year field experiment on residue return (maize straw) at rates of 0, 2.5, and 5.0 Mg ha-1 in combination with 8 fertilization treatments:no fertilizer (F0), N fertilizer, P fertilizer, potassium (K) fertilizer, N and P (NP) fertilizers, N and K (NK) fertilizers, P and K (PK) fertilizers, and N, P, and K (NPK) fertilizers. We measured soil organic C (SOC), total N and P, microbial biomass C, N, and P, water-soluble organic C and N, KMnO4-oxidizable C (KMnO4-C), and carbon management index (CMI). Compared with the control (F0 treatment without residue return), fertilization and residue return significantly increased the KMnO4-C content and CMI. Furthermore, compared with the control, residue return significantly increased the SOC content. Moreover, the NPK treatment with residue return at 5.0 Mg ha-1 significantly enhanced the C:N, C:P, and N:P ratios in the soil, whereas it significantly decreased the C:N and C:P ratios in soil microbial biomass. Therefore, NPK fertilizer application combined with residue return at 5.0 Mg ha-1 could enhance the SOC content through the stoichiometric plasticity of microorganisms. Residue return and fertilization increased the soil C pools by directly modifying the microbial stoichiometry of the biomass that was C limited.  相似文献   

10.
以河南封丘潮土养分平衡长期定位试验地为研究对象,于各季节分别采集耕作层土壤样品,比较不同施肥处理潮土芽胞杆菌数量及其占细菌总数的比例,并解析其与土壤养分之间的关系.结果发现,与不施肥对照相比,长期施肥尤其是施用有机肥和磷肥的处理土壤有机碳与速效氮、有效磷、速效钾等的含量趋于升高,除不施磷肥处理(NK)外其他施肥处理土壤有机碳含量在四季的增幅范围为0.91 ~7.00 g kg-1.长期不同施肥后土壤细菌与芽胞杆菌在数量上也发生了明显分异,且在各季均呈现稳定的梯度规律,即施肥处理(除NK外)显著高于不施肥处理、施有机肥处理显著高于施化肥处理、平衡施化肥处理高于缺素施肥处理,除NK外其他施肥处理与不施肥对照相比在四季的增幅范围力0.02~0.54 lg(CFU g-1).长期施化肥的处理芽胞杆菌占细菌数量的比例(即优势度)在冬、夏季高于春、秋季,而施有机肥的处理在不同季节保持相对恒定.相关性分析显示,芽胞杆菌数量与土壤有机碳和有效磷含量均呈极显著相关(p<0.01).长期施用有机肥更有利于提高土壤肥力、促进土壤微生物生长繁育,且芽胞杆菌的数量可敏感地反映土壤肥力.  相似文献   

11.
Wang  Ping  Wang  Jidong  Zhang  Hui  Dong  Yue  Zhang  Yongchun 《Journal of Soils and Sediments》2019,19(2):588-598
Purpose

The aim of this paper is to enlighten the role of highly reactive iron (Fe) minerals in soil organic carbon (SOC) preservation in soil aggregates.

Materials and methods

The effects of four long-term (37-year) fertilization regimes (NPK, chemical fertilization; NPKM, chemical fertilization + cattle manure; M, cattle manure; CK, non-fertilization control) on organic carbon (OC) stability, soil iron fractions in bulk soil, and soil aggregates were studied to characterize the capacity and mechanism of Fe minerals to preserve SOM in soil.

Results and discussion

Long-term fertilization significantly altered the Fe fractions in soil and soil aggregates. The two applications with manure (NPKM and M) increased the non-crystalline Fe content, while the chemical fertilizer (NPK) increased the crystalline Fe content. Besides, long-term fertilization with manure greatly increased the content of SOC and soil total nitrogen (STN). The non-crystalline Fe was positively correlated with the SOC content in both soil and soil aggregates. Meanwhile, the long-term fertilization treatments greatly changed the mass distribution and OC content of soil aggregates.

Conclusions

Long-term manure fertilization promoted the formation of non-crystalline Fe fractions, which bounds to SOC to form soil macro-aggregates. Thus, the formation of SOC-Fe association in soil and soil aggregates plays a crucial role in SOC preservation.

  相似文献   

12.
以江西红壤地区双季稻田肥料定位试验为依托,研究了不施肥(CK)、单施化肥(NPK)及3种不同比例有机无机肥配施(LM、MM、HM)对红壤性水稻土全土、颗粒有机质(POM)和矿物结合态有机质(MinOM)组分碳、氮含量及其化学结构的影响.结果表明:施肥处理全土、POM和MinOM组分中有机碳、全氮含量均显著高于CK处理(...  相似文献   

13.
施肥措施对复垦土壤团聚体碳氮含量和作物产量的影响   总被引:4,自引:1,他引:3  
研究复垦后不同施肥措施下有机碳(OC)和全氮(TN)在水稳性团聚体及粉黏粒组分中的分布特征,以期深入理解不同施肥措施下土壤有机碳的固持机制。以生土和连续6年不同施肥措施的复垦土壤为研究对象,采集0~20 cm耕层土壤样品,利用湿筛法进行土壤粒径分组,分析大粒径大团聚体(> 2 mm)、小粒径大团聚体(0.25~2 mm)、微团聚体(0.053~0.25 mm)和粉黏粒组分(< 0.053 mm)中OC和TN含量,判断各粒径团聚体及粉黏粒组分中有机碳储量的驱动因素,探究团聚体及粉黏粒组分中有机碳含量与作物产量之间的关系。试验设不施肥(CK)、施氮磷钾化肥(NPK)、单施有机肥(M)和有机无机肥配施(MNPK)4个处理。结果表明:1)整个试验周期(2008-2013年),同CK相比, NPK、M以及MNPK处理均显著提高了玉米籽粒产量,且以MNPK处理的效果最显著,分别提高了79.49%、116.07%和113.85%。  相似文献   

14.
以浙江省水网平原水稻主产区土壤为对象,通过定位试验,研究了连续13年的不同施肥处理对麦稻产量、土壤养分状况和物理性状的影响。结果表明,化肥配施有机肥可显著提高麦、稻产量; 不同施肥处理的长期定位试验土壤有机质含量和全氮均呈上升趋势,增幅依次为: 栏肥+NPK秸秆+NPKNPK秸秆栏肥CK处理; 土壤碱解氮和速效磷也呈增加趋势,以栏肥+NPK处理的增幅最为明显。土壤物理性状的分析表明,长期施肥均能明显增加土壤水稳性团粒含量和土壤孔隙度。经土壤养分平衡分析,栏肥+NPK、秸秆+NPK和NPK处理的氮和磷呈现盈余,秸秆和CK处理氮和磷亏缺; 栏肥+NPK和秸秆+NPK处理钾基本平衡,NPK、秸秆、栏肥和CK处理钾严重亏缺。长期定位试验进一步证明有机肥与氮、磷、钾化肥长期配合施用可实现当地农作物持续稳产,农田施肥管理要注意适当减少氮、磷投入,增加钾肥施用量,保持农田土壤养分平衡。  相似文献   

15.
An essential prerequisite for a sustainable soil use is to maintain a satisfactory soil organic‐matter (OM) level. This might be achieved by sound fertilization management, though impacts of fertilization on OM have been rarely investigated with the aid of physical fractionation techniques in semiarid regions. This study aimed at examining changes in organic C (OC) and N concentrations of physically separated soil OM pools after 26 y of fertilization at a site of the semiarid Loess Plateau in China. To separate sensitive OM pools, total macro‐OM (> 0.05 mm) was obtained from bulk soil by wet‐sieving and then separated into light macro‐OM (< 1.8 g cm–3) and heavy macro‐OM (> 1.8 g cm–3) subfractions; bulk soil was also differentiated into light OM (< 1.8 g cm–3) and mineral‐associated OM (> 1.8 g cm–3). Farmyard manure increased concentrations of total macro‐OC and N by 19% and 25%, and those of light fraction OC and N by 36% and 46%, compared to no manuring; both light OC and N concentrations but only total macro‐OC concentration responded positively to mineral fertilizations compared to no mineral fertilization. This demonstrated that the light‐fraction OM was more sensitive to organic or inorganic fertilization than the total macro‐OM. Mineral‐associated OC and N concentrations also increased by manuring or mineral fertilizations, indicating an increase of stable OM relative to no fertilization treatment, however, their shares on bulk soil OC and N decreased. Mineral fertilizations improved soil OM quality by decreasing C : N ratio in the light OM fraction whereas manuring led to a decline of the C : N ratio in the total macro‐OM fraction, with respect to nil treatment. Further fractionation of the total macro‐OM according to density clarified that across treatments about 3/4 of total macro‐OM was associated with minerals. Thus, by simultaneously applying particle‐size and density separation procedures, we clearly demonstrated that the macro‐OM differed from the light OM fraction not only in its chemical composition but also in associations with minerals. The proportion of the 0.5–0.25 mm water‐stable aggregates of soil was higher under organic or inorganic fertilizations than under no manure or no mineral fertilization, and increases in OC and N concentrations of water‐stable aggregates as affected by fertilization were greater for 1–0.5 and 0.5–0.25 mm classes than for the other classes. Results indicate that OM stocks in different soil pools can be increased and the loose aggregation of these strongly eroded loess soils can be improved by organic or inorganic fertilization.  相似文献   

16.
长期施肥对土黑碳积累的影响   总被引:1,自引:0,他引:1  
通过长期定位试验,探讨了20年不施肥(CK)、 单施化肥(NPK)、 秸秆和化肥配施(SNPK)、 常量有机肥和化肥配施(M1NPK)以及高量有机肥和化肥配施(M2NPK)5个施肥处理对土中黑碳含量及积累的影响。结果表明: 与CK处理相比,NKP处理对黑碳含量和积累没有明显影响; 有机肥和化肥配施(M1NPK、 M2NPK)对耕层(020 cm)土壤黑碳含量的影响较大,与CK处理相比,在土壤表层(05 cm),M1NPK、 M2NPK分别提高了黑碳含量的108%和134%, 510 cm土层中黑碳含量增幅最高,分别提高164%和176%,在整个土层,M1NPK、 M2NPK处理分别增加了1.51和1.55倍; 秸秆和化肥配施(SNPK)下表层黑碳含量也有所增加,但增加幅度相对施用有机肥来说明明显较小。施肥对黑碳含量的影响主要发生在土壤表层,深层土壤黑碳受施肥影响较小。  相似文献   

17.
长期不同施肥对塿土大团聚体中有机碳组分特征的影响   总被引:1,自引:0,他引:1  
【目的】研究长期施肥对土大团聚体中有机碳组分特征的影响,揭示不同施肥方式下土壤有机碳的固持机制,为合理施肥提供理论依据。【方法】采集土35年长期肥料定位试验不同施肥处理0—10 cm和10—20 cm土样,分析其大团聚体中各组分有机碳含量的变化。试验处理为:不施肥(CK)、单施化肥(NP)、单施有机肥(M)和有机肥配施化肥(MNP)。【结果】与CK相比,长期NP处理对大团聚体中粗颗粒有机碳(cPOC)、细颗粒有机碳(fPOC)、大团聚体中微团聚体内颗粒有机碳(iPOC)以及矿质结合态有机碳(MOC)组分的有机碳(OC)含量均无显著影响;而M处理以及MNP处理可显著提高两土层cPOC和iPOC组分的OC含量以及0—10 cm土层MOC组分的OC含量,其中,cPOC含量增幅分别为174%~338%和215%~245%,iPOC含量增幅分别为127%~241%和106%~130%,MOC含量增幅达28.9%~34.6%。MNP处理显著提高了0—10 cm土层fPOC组分的OC含量,增幅达482.1%。累积碳投入量与大团聚体中各组分的OC含量呈显著线性相关,尤其是iPOC含量,表明长期施肥过程中土有机碳在大团聚体中固存的差异主要受物理保护的颗粒有机碳组分的影响。【结论】关中地区土长期施化肥对大团聚体中各组分OC含量没有显著影响,而长期单施有机肥能进一步增加大团聚体中各组分OC含量,有机肥配施化肥能显著增加团聚体中各组分OC含量,特别是大团聚体中微团聚体内颗粒有机碳组分的含量,进而增加土的有机碳固持。因此,有机肥配施化肥是提高土有机碳含量的有效措施。  相似文献   

18.
利用中国农业科学院红壤实验站红壤稻田长期定位试验,研究了长期有机无机肥配施下双季稻增产潜力和土壤有机碳变化特征。31年的试验结果表明,1)施肥能促进水稻早晚稻稻谷和地上部产量增加,其中,有机肥配施均衡的NPK处理促进作用最大,NPKM处理下稻谷年均产量比NPM、 NKM、 PKM、 M和NPK分别高 5.8%、 10.9%、 16.2%、 15.9%和20.4%。2)施肥能促进水稻土有机碳含量增加,其中,有机肥配施均衡的NPK处理提升效果最为明显, NPKM处理下所测年度土壤有机碳平均含量比NPM、 NKM、 PKM、 M和NPK分别高出2.5%、 3.5%、 2.0%、 0.6%和 32.8%。3)随着试验的进行,单施有机肥对早、 晚稻稻谷和地上部产量的促进效果逐步优于单施化肥氮、 磷、 钾处理(NPK),对土壤有机碳的提升效果也明显优于单施化肥氮、 磷、 钾。红壤性稻田双季稻生产实践中,有机无机肥配施模式值得推荐,但需均衡配施化肥氮、 磷、 钾。  相似文献   

19.
刘强  梁鑫  董佩丽  李湘  史爱玲  王莉霞  徐德华 《土壤》2023,55(2):446-452
为探究不同施肥对黄土丘陵区农田土壤有机碳组分及碳库管理指数(CPMI) 的影响,以及提高旱区土壤碳“汇”能力提供理论依据,研究基于中科院安塞水土保持试验站长期定位试验,采用5种不同施肥设置[种植作物不施肥(CK)、氮磷肥配施(NP)、氮磷钾肥配施(NPK)、单施有机肥(M)和有机肥中配施氮磷肥(MNP)]对土壤有机碳组成及碳库管理指数(CPMI)的影响。结果表明:不同施肥处理能增加不同土层土壤有机碳及其组分含量,且土壤有机碳及其组分含量随土层深度增加而逐渐降低;施用有机肥处理(M和MNP)下0-20cm土壤有机碳及其组分含量高于化肥(NP和NPK)和CK处理,与CK处理为对照,M和MNP处理下有机碳含量分别增加133.59%、118.52%(P<0.05),易氧化有机碳含量分别增加51.73%、48.20%(P<0.05),可溶性有机碳含量分别增加61.54%、53.21%(P<0.05),土壤微生物碳含量分别增加68.34%、113.04%(P<0.05);除土壤微生物碳以外,20-40cm土壤有机碳及其组分含量均无显著差异;不同施肥处理显著提高0-20cm 土壤CPMI,M处理下CPMI在所有施肥处理中最高,20-40cm 土壤中M处理下CPMI在所有施肥处理中最大,但各施肥处理间差异不显著。总体来讲,施用有机肥可以提高旱区土壤水土保持能力和土壤肥力,增强土壤碳“汇”功能及其土壤有机碳的稳定性。  相似文献   

20.
以1989年建立的中国科学院封丘农田生态系统国家试验站的长期定位试验为平台,研究经18a连续不同施肥处理后玉米季土壤微生物生物量碳氮和微生物活度的动态变化及其与土壤有机碳之间的相互关系,并探讨施肥措施对土壤微生物及其活性的影响。施肥处理包括:(1)有机肥(OM);(2)1/2化肥和1/2有机肥(1/2OM+1/2NPK);(3)氮磷钾肥(NPK);(4)氮磷肥(NP);(5)磷钾肥(PK);(6)氮钾肥(NK);(7)不施肥,即对照(CK)7个处理。结果表明,微生物生物量碳氮和微生物活度在玉米生长期内均有明显的时间变异性,其中微生物生物量碳与微生物活度的动态变化比较一致,其间的极显著相关关系表明潮土微生物生物量碳的变化可以在很大程度上代表土壤微生物活度的变化。施肥制度显著影响微生物生物量碳氮和微生物活度的变化,总体趋势为OM1/2OM+1/2NPKNPKNPPKNKCK,表明OM有利于保持土壤的生物化学环境及促进土壤的生物学活性;与OM处理相比,化学肥料的长期施用有降低土壤微生物生物量和微生物活度的趋势,尤其是缺素处理的表现更为明显,其中以缺磷处理的表现最为严重。土壤微生物生物量碳氮、微生物活度与土壤有机碳变化均呈极显著正相关。  相似文献   

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