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1.
《农业科学学报》2023,22(7):2221-2232
Fertilization is an effective technique to improve soil fertility and increase crop yield. The long-term effects of different fertilizers on soil considerably vary. Over 38 consecutive years of different fertilization positioning experiments in a double cropping rice field of Qiyang Red Soil Experimental Station, seven different fertilization treatments including CK (no fertilization), NPK (nitrogen, phosphorus, and potassium fertilizer), M (cow manure), NPKM (nitrogen, phosphorus, and potassium with cow manure), NPM (nitrogen and phosphorus with cow manure), NKM (nitrogen and potassium with cow manure), and PKM (phosphorus and potassium with cow manure) were applied to study the effects on rice yield, soil fertility, and nutrient apparent balance in a paddy field. The results showed that the annual average yields of rice in NPKM, NPM, NKM, PKM, M, NPK and CK treatments ranged from 6 214 to 11 562 kg ha–1. Yields under long-term organic and inorganic treatments (NPKM, NPM, NKM and PKM) were 22.58, 15.35, 10.53 and 4.41%, respectively, greater than under the NPK treatment. Soil organic carbon (SOC), total nitrogen (TN), available nitrogen (AN) and available potassium (AK) concentration with long-term organic and inorganic treatment (NPKM, NPM, NKM and PKM) were significantly higher than in inorganic fertilizer (NPK) treatments. Soil total phosphorus (TP) and available phosphorus (AP) contentration with organic fertilizer combined with inorganic N and P fertilizer treatment (NPKM, NPM and PKM) were significantly higher than with inorganic fertilizer alone (NPK treatments). The average annual rice yield (11 562 kg ha–1), SOC (20.88 g kg–1), TN (2.30 g kg–1), TP (0.95 g kg–1), TK (22.50 g kg–1) and AP (38.94 mg kg–1) concentrations were the highest in the NPKM treatment. The soil AN concentration (152.40 mg kg–1) and AK contentration (151.00 mg kg–1) were the highest in the NKM treatment. N and P application led to a surplus of nitrogen and phosphorus in the soil, but NPKM treatment effectively reduced the surplus compared with other treatments. Soils under all treatments were deficient in potassium. Correlation analysis showed that SOC, TN, AN, TP, and AP contentration was significantly correlated with rice yield; the correlation coefficients were 0.428, 0.496, 0.518, 0.501, and 0.438, respectively. This study showed that the combined application of N, P, and K with cow manure had important effects on rice yield and soil fertility, but balanced application of N, P, and K with cow manure was required.  相似文献   

2.
【目的】研究灰漠土长期不同施肥管理措施下,农田土壤全磷、有效磷(Olsen-P)的变化关系及对磷素盈亏的响应,为科学施磷及土壤质量定向培育提供参考依据。【方法】以始于1989年的不同施肥措施的长期定位试验为研究对象,对土壤磷盈亏状况及土壤有效磷(Olsen-P)对土壤盈亏的响应关系、磷素活化系数(PAC)等进行分析。【结果】NP、PK、NPK、NPKS处理土壤PAC随施肥年限呈抛物线变化,并在第16年时达到峰值,NPKM、1.5NPKM处理PAC随施肥年限呈极显著线性正相关(P<0.01),年增加速率分别为0.23%和0.42%。CK、NK当季土壤表观磷盈亏呈现亏缺状态,当季土壤磷平均亏缺量分别为8.9、15.5 kg/hm2;NP、PK、NPK、NPKS当季土壤磷盈余值的平均值分别为35.4、38.9、32.3和25.4 kg/hm2,NPKM、1.5NPKM处理当季土壤磷盈余值分别为49.6、127.8 kg/hm2,年际盈余量随种植年限逐渐下降,施磷处理土壤有效磷增量与累计盈亏间存在显著相关性,每盈余100 ...  相似文献   

3.
长期施肥条件下潮土土壤磷素对磷盈亏的响应   总被引:14,自引:2,他引:12  
杨军  高伟  任顺荣 《中国农业科学》2015,48(23):4738-4747
【目的】土壤磷素状况是评价土壤养分的重要指标之一。探讨长期施肥条件下土壤有效磷、全磷对土壤磷素盈亏(平衡)的响应,为潮土区施肥管理和土壤培肥提供科学依据。【方法】分析了天津潮土33年(1979-2012)肥料长期定位试验中,不同施肥处理下土壤磷素盈亏与Olsen磷、全磷的变化特征。【结果】长期不施肥(CK)、单施氮肥(N)、氮钾配施(NK)及秸秆与氮肥配施(NS)处理,土壤中磷素常年处于亏缺状态。施磷处理(PK,NP,NPK)和有机肥与氮肥配施(NM),土壤中磷素均有盈余,PK处理盈余最多,但随试验年限延长(约20年后),NP,NPK和NM处理土壤中磷素盈余量呈下降趋势。土壤有效磷增加量随磷盈亏而变化,二者呈显著正相关(P<0.05)。施用无机磷肥或有机肥,均可使土壤中的磷素盈余,土壤中每盈余100 kg·hm-2磷,PK、NP、NPK、NM处理土壤中的Olsen磷分别增加3.59、1.19、1.75和2.40 mg·kg-1。长期不同施肥,土壤磷平衡与土壤全磷增量间呈正相关,但不同处理下差异较大。单施氮肥(N)和秸秆还田(NS)处理,可认为累积磷平衡对土壤全磷增量无影响。施用无机磷肥或有机肥,土壤中每盈余100 kg P·hm-2,PK、NP、NPK、NM处理土壤中全磷分别增加0.06、0.07、0.07和0.10 g·kg-1。【结论】土壤磷素盈亏状况与肥料配施类型密切相关,长期施用化学磷肥或有机肥,土壤有效磷、全磷增加量与土壤磷素盈亏呈显著直线正相关。有机肥与氮肥配施提升土壤全磷的速率大于施用化肥。  相似文献   

4.
长期施肥对黄壤性水稻土磷平衡及农学阈值的影响   总被引:10,自引:0,他引:10  
【目的】研究长期施肥条件下土壤有效磷(Olsen-P)的演变特征及土壤磷素的累积状况,分析土壤磷素累积与土壤有效磷的响应关系,明确Olsen-P的农学阈值及合理磷肥施用量,为西南黄壤地区科学施用磷肥提供理论依据。【方法】以贵州黄壤肥力与肥料长期定位试验为平台,选择试验中6个处理分别是不施肥(CK)、偏施氮钾肥(NK)、常量氮磷钾肥(NPK)、常量有机肥(M)、减1/2有机肥+减1/2氮磷钾肥(1/2 M +1/2 NPK)和常量有机肥+常量氮磷钾肥(MNPK)。分析西南黄壤性水稻土19年(1995-2013)土壤Olsen-P含量与植株吸磷量,研究土壤Olsen-P的变化规律及土壤累积磷盈亏状况,通过Mitscherlich方程模拟作物相对产量对土壤Olsen-P的响应关系,明确西南黄壤性水稻土的农学阈值,并分析Olsen-P与施肥量之间的关系。【结果】长期施用磷肥处理可显著提高土壤Olsen-P含量,各施磷处理Olsen-P年增长速率在0.72-2.47 mg·kg-1·a-1,其中MNPK处理Olsen-P增长速率最大,NPK处理最小,主要与施肥量的高低有关;有机肥配施化学磷肥比单施化学磷肥和单施有机肥更能有效地促进作物对磷素的吸收;不施磷处理土壤磷素一直处于亏缺状态,施磷处理土壤磷素盈余量为176-1 200 kg·hm-2,其中MNPK处理磷素盈余量最高;土壤累积磷盈余量与土壤Olsen-P增量呈显著线性相关,土壤中磷素每盈余100 kg·hm-2,NPK、M、1/2M+1/2NPK、MNPK处理Olsen-P含量分别提高4.0、2.0、3.2和2.0 mg·kg-1;土壤每年磷盈亏和Olsen-P含量与磷肥施用量呈极显著正相关关系,磷肥用量(纯P)17.4 kg·hm-2时土壤磷盈亏呈持平状态,西南黄壤性水稻土Olsen-P的农学阈值为15.8 mg·kg-1;对应的施肥量(纯P)为每年37.2 kg·hm-2·a-1。【结论】土壤有效磷随土壤磷素盈余而变化,同时与磷素投入量密切相关,当磷肥用量(纯P)为17.4 kg·hm-2·a-1土壤磷素呈持平状态。当磷肥用量(纯P)为37.2 kg·hm-2·a-1时,可获得较高作物产量,磷肥当季利用率高,且磷素在土壤中累积较少。当磷肥用量(纯P)大于37.2 kg·hm-2·a-1时,作物产量对磷肥用量无响应,大量磷素累积在土壤中,增加土壤磷素的流失风险。土壤中累积磷盈余量一定的情况下,西南黄壤性水稻土长期单施化学磷肥提升土壤Olsen-P的速率大于施用有机肥处理。  相似文献   

5.
长期不同施肥红壤磷素变化及其对产量的影响   总被引:7,自引:0,他引:7  
目的 定量长期不同施肥红壤磷素的演变特征,研究红壤磷素变化对生产力的影响,为红壤地区磷素管理提供理论依据。方法 利用持续26年的红壤旱地长期定位试验平台(1991—2016年),比较长期不施磷肥(CK、N、NK)、施用化学磷肥(PK、NP、NPK)、化肥配合秸秆还田(NPKS)和化肥配施有机肥及有机肥(1.5NPKM、NPKM、M)土壤Olsen-P和全磷含量变化,分析土壤磷素对磷盈亏量的响应,采用不同模型拟合作物产量对有效磷的响应曲线,计算土壤有效磷农学阈值。结果 长期施用磷肥显著提高了土壤全磷和有效磷含量,提升了土壤磷素活化系数(PAC)。化肥配施有机肥及有机肥处理(1.5NPKM、NPKM、M)的PAC高于化肥配合秸秆还田(NPKS)和施用化学磷肥(PK、NP、NPK)。红壤地区土壤全磷和有效磷变化量与土壤磷盈亏量呈正相关关系(P<0.01),土壤每累积盈余100 kg P·hm -2,土壤Olsen-P含量上升3.00—5.22 mg·kg -1,全磷上升0.02—0.06 g·kg -1。土壤每累积亏缺磷100 kg P·hm -2,不施磷肥处理(CK、N、NK)土壤Olsen-P分别下降1.85、0.40、1.76 mg·kg -1。化肥配施有机肥及有机肥处理(1.5NPKM、NPKM、M)的小麦和玉米产量显著高于化肥配合秸秆还田(NPKS)以及施用化学磷肥(PK、NP、NPK),显著高于不施磷肥(CK、NK、N)。化肥配施有机肥及有机肥处理(1.5NPKM、NPKM、M)的产量可持续指数也高于其他处理。3种模型(线性-线性模型、线性-平台模型和米切里西方程)均能较好地拟合作物产量与红壤有效磷含量的响应关系(P<0.01)。在红壤地区推荐使用拟合度较好的线性-线性模型,其计算出小麦和玉米的土壤Olsen-P农学阈值分别为13.5和23.4 mg·kg -1结论 在南方红壤地区,化肥配施有机肥更有利于磷素累积和提升磷素有效性。化肥配施有机肥作物产量显著高于其他处理,且稳产性好。线性-线性模型可用于计算红壤地区有效磷的农学阈值。生产上应该根据土壤有效磷含量及其农学阈值调整磷肥施用量。  相似文献   

6.
【目的】通过总结分析长期施肥处理下紫色土稻麦轮作土壤有效磷的变化特征,以及土壤磷素变化对作物产量的影响,为紫色土稻麦轮作磷素管理提供理论依据。【方法】依托国家肥力监测网紫色土肥力监测试验站27年的稻麦轮作定位试验,选取10种不同施肥处理:CK处理(只种作物不施肥);N、NP、NK、PK、NPK为不同氮(N)、磷(P)、钾(K)化肥配施处理;M、NPKS、NPKM、1.5NPK+M为有机肥(M)、秸秆还田(S)及其与化肥配施处理。试验数据涵盖1991—2018年,测定不同施肥处理下土壤有效磷含量和作物产量,计算100 kg籽粒磷素吸收量和磷肥利用率,分析土壤磷素变化对累积磷盈亏的响应,采用不同模型计算土壤磷素农学阈值。【结果】长期施用磷肥能够显著提高土壤有效磷含量,各施磷处理有效磷年均增量为0.80—2.32 mg·kg-1;而不施磷处理CK、N、NK和单施有机肥处理M的土壤有效磷含量则逐年下降至平稳状态。不施磷处理土壤磷素一直处于亏缺状态,施磷各处理27年后土壤累积磷盈余量为244.8—698.2 kg P·hm-2,其中1.5NPK+M处理累积磷盈余量最高;施磷处理土壤累积盈余量与土壤Olsen-P增量呈显著线性相关,土壤每盈余磷100 kg·hm-2,土壤有效磷含量提高4.27—6.5 mg·kg-1。磷肥施用能显著提升稻麦轮作系统作物产量和吸磷量,100 kg水稻籽粒需磷量为0.17—0.41 kg,100 kg小麦籽粒需磷量为0.25—0.57 kg;试验各处理的磷肥利用率为10.3%—39.7%;4种模型(线性-平台模型、双直线模型、BoxLucas模型和米切里西模型)均能较好地拟合作物产量与紫色土有效磷含量的响应关系,其中双直线模型的拟合度最好,其计算的水稻和小麦的土壤有效磷农学阈值分别为13.28和9.93 mg·kg-1。 【结论】在紫色土水稻-小麦轮作体系中,合理施用磷肥能显著提高作物吸磷量、产量以及土壤有效磷含量。推荐双直线模型用于计算紫色土稻麦轮作体系下土壤有效磷的农学阈值,生产上应根据土壤有效磷含量及其农学阈值调整磷肥施用量。  相似文献   

7.
【目的】分析长期不同施肥下土壤有效磷含量、全磷含量、土壤磷素盈亏和磷素活化效率(PAC)的动态变化,探讨不同施肥下水稻土磷素演变特征及与磷平衡的响应关系。【方法】基于1982年开始的红壤性水稻土长期不同施肥定位试验,试验包括不施肥(CK)、有机肥(牛粪,M)、氮磷钾肥(NPK)、氮磷钾肥+有机肥(NPKM)、氮磷肥+有机肥(NPM)、氮钾肥+有机肥(NKM)和磷钾肥+有机肥(PKM)共7个处理。【结果】经过30年不同施肥,土壤有效磷含量均呈上升趋势。M、NKM、NPK、NPM、NPKM和PKM处理土壤有效磷含量变化速率分别为0.18、0.20、0.83、1.35、1.46和1.62 mg·kg-1·a-1。M、NPK、PKM、NPM和NPKM处理土壤全磷增加速率分别约为4.3、15.4、16.0、18.3和22.9 mg·kg-1·a-1。所有施肥处理,土壤中磷素均有盈余,磷素盈余量与土壤有效磷增加量呈显著正相关关系(P<0.05),土壤中每盈余100 kg P·hm-2,M、NKM、NPM、NPKM、PKM和NPK6个处理的土壤有效磷含量分别增加0.4、0.7、1.9、2.1、2.2和3.2 mg·kg-1。在土壤中磷素盈余量接近的情况下,单施化肥(NPK)的PAC显著高于单施有机肥(M)处理(P<0.05)。【结论】化学磷肥和有机肥配施相比单施化肥或有机肥能够显著提高红壤性水稻土土壤有效磷、全磷含量和磷素活化效率。  相似文献   

8.
长期施肥下黑土重金属的演变特征   总被引:6,自引:0,他引:6  
【目的】探讨长期施肥下黑土重金属的演变特征,为该地区科学施肥和土壤环境保护提供理论依据。【方法】设计长期定位施肥试验:CK(对照,不施肥)、N(氮)、NP(氮磷)、NPK(氮磷钾)、NPKM(氮磷钾+有机肥)和1.5NPKM(1.5倍的NPKM),共6个处理。试验采集起始(1989年)和各施肥年限(1994、2000、2006、2010、2012年)的耕层(0-20 cm)土壤样品,测定Cu、Zn、Pb、Cd总量和有效态含量,并计算其活化度。【结果】长期施用化肥不影响黑土重金属总量、有效态含量。Pb不受施肥影响,Cu、Zn、Cd受粪肥影响,其总量和有效态都显著增加,Cu和Zn活化度增加,但Cd活化度显著降低(维持在8%-9%,明显低于化肥处理的35%)。长期施用有机肥,重金属演变呈现阶段性。1989-2000年缓慢增加,2000-2010年快速增加,2010年后稳定或缓慢下降。1.5NPKM 3个阶段Cd总量变化分别为0.03 mg·kg-1·a-1、0.07 mg·kg-1·a-1、-0.13 mg·kg-1·a-1;NPKM处理的Cu有效态变化分别为0.11 mg·kg-1·a-1、0.53 mg·kg-1·a-1、-1.25 mg·kg-1·a-1。重金属演变的阶段性是源于粪肥重金属含量的阶段性变化,即养殖方式的变化。金属活化度相关性分析表明:Cu与Olsen-P、Zn与SOM皆显著正相关,而Pb与pH显著负相关;Cd与Olsen-P和SOM显著负相关,与pH显著正相关,意味着Cd对土壤性质的响应更加复杂。【结论】长期施用化肥对重金属演变没有明显影响,长期施用有机肥显著改变了其演变特征,重金属演变呈现出先缓慢增加、然后快速增加、最后稳定或缓慢下降的阶段性变化,而且阶段性演变特征源于粪肥金属含量的阶段性变化。在农业生产中,既要适度增施有机肥又要关注其潜在风险,现有施肥量(30 t·hm-2)和玉米种植体系下,当地牛粪长期施用仍存在很大风险。  相似文献   

9.
The present study aims to understand the effects of long-term fertilization on soil organic carbon (SOC), black carbon (BC), enzyme activity, and the relationships among these parameters. Paddy field was continuously fertilized over 30 yr with nine different fertilizer treatments including N, P, K, NP, NK, NPK, 2NPK (two-fold NPK), NPK+manure (NPKM), and CK (no fertilization), N, 90 kg urea-N ha−1 yr−1; P, 45 kg triple superphosphate-P2O5 ha−1 yr−1; K, 75 kg potassium chloride-K2O ha−1 yr−1; and pig manure, 22 500 kg ha−1 yr−1. Soil samples were collected and determined for SOC, BC content, and enzyme activity. The results showed that the SOC in the NPKM treatment was significantly higher than those in the K, P, and CK treatments. The lowest SOC content was found in the CK treatment. SOC content was similar in the N, NP, NK, NPK, 2NPK, and NPKM treatments. There was no significant difference in BC content among different treatments. The BC-to-SOC ratios (BC/SOC) ranged from 0.50 to 0.63, suggesting that BC might originate from the same source. Regarding enzyme activity, NPK treatment had higher urease activity than NPKM treatment. The urease activity of NPKM treatment was significantly higher than that of 2NPK, NP, N, P, K, CK, and NPKM treatment which produced higher activities of acid phosphatase, catalase, and invertase than all other treatments. Our results indicated that long-term fertilization did not significantly affect BC content. Concurrent application of manure and mineral fertilizers increased SOC content and significantly enhanced soil enzyme activities. Correlation analysis showed that catalase activity was significantly associated with invertase activity, but SOC, BC, and enzyme activity levels were not significantly correlated with one another. No significant correlations were observed between BC and soil enzymes. It is unknown whether soil enzymes play a role in the decomposition of BC.  相似文献   

10.
The improvement of soil productivity depends on a rational input of water and nutrients, optimal field management, and the increase of basic soil productivity(BSP). In this study, BSP is defined as the productive capacity of a farmland soil with its own physical and chemical properties for a specific crop season under local field management. Based on 19-yr data of the long-term agronomic experiments(1989–2008) on a fluvo-aquic soil in Zhengzhou, Henan Province, China, the decision support system for agrotechnology transfer(DSSAT ver. 4.0) crop growth model was used to simulate yields by BSP of winter wheat(Triticum aestivium L.) and summer maize(Zea mays L.) to examine the relationship between BSP and soil organic carbon(SOC) under long-term fertilization. Five treatments were included:(1) no fertilization(control),(2) nitrogen, phosphorus and potassium fertilizers(NPK),(3) NPK plus manure(NPKM),(4) 1.5 times of NPKM(1.5NPKM), and(5) NPK plus straw(NPKS). After 19 yr of treatments, the SOC stock increased 16.7, 44.2, 69.9, and 25.2% under the NPK, NPKM, 1.5NPKM, and NPKS, respectively, compared to the initial value. Among various nutrient factors affecting contribution percentage of BSP to winter wheat and summer maize, SOC was a major affecting factor for BSP in the fluvo-aquic soil. There were significant positive correlations between SOC stock and yields by BSP of winter wheat and summer maize(P0.01), and yields by BSP of winter wheat and summer maize increased 154 and 132 kg ha~(–1) when SOC stock increased 1 t C ha~(–1). Thus, increased SOC accumulation is a crucial way for increasing BSP in fluvo-aquic soil. The manure or straw combined application with chemical fertilizers significantly enhanced BSP compared to the application of chemical fertilizers alone.  相似文献   

11.
《农业科学学报》2023,22(8):2509-2520
Phosphorus (P) is a finite natural resource and is increasingly considered to be a challenge for global sustainability. Agriculture in China plays a key role in global sustainable P management. Rhizosphere and soil-based P management are necessary for improving P-use efficiency and crop productivity in intensive agriculture in China. A previous study has shown that the future demand for phosphate fertilizer by China estimated by the LePA model (legacy phosphorus assessment model) can be greatly reduced by soil-based P management (the building-up and maintenance approach). The present study used the LePA model to predict the phosphate demand by China through combined rhizosphere and soil-based P management at county scale under four P fertilizer scenarios: (1) same P application rate as in 2012; (2) rate maintained same as 2012 in low-P counties or no P fertilizer applied in high-P counties until targeted soil Olsen-P (TPOlsen) level is reached, and then rate was the same as P-removed at harvest; (3) rate in each county decreased to 1–7 kg ha–1 yr–1 after TPOlsen is reached in low-P counties, then increased by 0.1–9 kg ha–1 yr–1 until equal to P-removal; (4) rate maintained same as 2012 in low-P counties until TPOlsen is reached and then equaled to P-removal, while the rate in high-P counties is decreased to 1–7 kg ha–1 yr–1 until TPOlsen is reached and then increased by 0.1–9 kg ha–1 yr–1 until equal to P-removal. Our predictions showed that the total demand for P fertilizer by whole China was 693 Mt P2O5 and according to scenario 4, P fertilizer could be reduced by 57.5% compared with farmer current practice, during the period 2013–2080. The model showed that rhizosphere P management led to a further 8.0% decrease in P fertilizer use compared with soil-based P management. The average soil Olsen-P level in China only needs to be maintained at 17 mg kg–1 to achieve high crop yields. Our results provide a firm basis for government to issue-relevant policies for sustainable P management in China.  相似文献   

12.
长期施肥条件下黑垆土有效磷对磷盈亏的响应   总被引:18,自引:3,他引:15  
【目的】阐明不同施肥条件下土壤有效磷与土壤磷素累积的响应关系,为黄土高原旱作农区科学施用磷肥提供依据。【方法】分析了黑垆土28年(1979—2007年)肥料长期定位试验中,不同施肥处理下土壤磷素盈亏与土壤有效磷的变化特征。【结果】长期施用化肥(NP)、单施有机肥(M)及化肥与有机配施(NPM),土壤有效磷含量随试验年限的延长呈极显著(P0.01)上升趋势,年均分别增加0.54、0.64和1.11mg·kg-1,而不施肥和单施氮肥处理土壤有效磷含量呈持平或下降趋势。土壤有效磷增加量随磷盈亏而变化,二者呈极显著(P0.01)正相关,施用化学磷肥、单施有机肥和有机无机肥配施,土壤中的磷素均有盈余,土壤中每盈余100kg·hm-2磷所能增加的土壤有效磷分别为3.85、0.29和0.53mg·kg-1。施用化学磷肥土壤有效磷的增加速率是施有机肥的11.6倍。【结论】土壤有效磷随土壤磷素盈余而变化与加入磷素形态密切相关,长期单施化学磷肥提升土壤有效磷的速率显著大于单施有机肥。  相似文献   

13.
Investigating the dynamics and distribution of soil phosphorus (P) fractions can provide a basis for enhancing P utilization by crops.  Four treatments from a 29-year long-term experiment in black soil with maize cropping were involved in this study: no fertilizer (CK), inorganic nitrogen and potassium (NK), inorganic nitrogen, phosphorus, and potassium (NPK), and NPK plus manure (NPKM).  We analyzed soil P fractions in different soil layers using a modified Hedley sequential method.  The long-term NPKM treatment significantly increased total P by 0.6–1.6 times in the different soil layers.  The Olsen-P concentration far exceeded the environmental threshold for soil Olsen-P (50.6 mg kg–1) in the NPKM treatment in the 0–60 cm soil profile.  Moreover, the concentrations and proportion of labile and partially labile inorganic P (Pi) fractions (i.e., NaHCO3-extracted Pi, NaOH-extracted Pi, and dilute HCl-extracted Pi) to the sum of all P fractions (Pt) in the 0–60 cm soil profile were higher in the NPKM treatment than in the NPK treatment, indicating that manure could promote the transformation of non-labile into more labile forms of P in soil, possibly by manure reducing P fixation by soil particles.  Soil organic matter, Mehlich-3 extractable iron (Fe), and organic-bound aluminum were increased by fertilization, and were the main factors influencing the differences in the P fractions in the 0–20 cm soil layer.  Soil mineral components, i.e., free Fe oxide and CaCO3, were the main factors influencing the P fractions in the subsoil.  The soil P transformation process varied with soil layer and fertilization.  Application of manure fertilizer can increase the labile (Olsen) P concentrations of the various soil layers, and thus should reduce the mineral P fertilizer requirement for crop growth and reduce potential environmental damage  相似文献   

14.
长期施肥紫色水稻土磷素累积与迁移特征   总被引:8,自引:1,他引:7  
【目的】探讨长期不同施肥对钙质紫色水稻土磷素累积与迁移的影响。【方法】以长期肥料定位试验不同施肥处理的土壤为研究对象,试验处理包括不施肥(CK)、氮肥(N)、氮磷肥(NP)、氮磷钾肥(NPK)、有机肥(M,鲜猪粪)、有机肥+氮肥(MN)、有机肥+氮磷肥(MNP)和有机肥+氮磷钾肥(MNPK)8种施肥方式,研究不同施肥处理条件下钙质紫色水稻土磷素平衡、累积和去向状况,以及不同施肥方式对耕层(0-20 cm)土壤全磷、有效磷演变规律及土壤剖面(0-100 cm)全磷、有效磷迁移特征。【结果】钙质紫色水稻土33年不施用磷肥(CK和N)作物籽粒和秸秆磷素携出总量为613.12 kg·hm-2,种苗、根茬、雨水及灌溉水带入土壤总磷量为106.61 kg·hm-2,长期不施用磷肥土壤磷素表现出亏缺状况,年亏缺量为15.35 kg·hm-2,且土壤磷含量随种植年限延续而下降,土壤全磷含量年均减少量为0.0011 g·kg-1、有效磷含量年均减少量为0.029 mg·kg-1;33年单施无机磷肥(NP和NPK)土壤磷素投入总量为1 880.03 kg·hm-2、作物携出磷量为1 275.40 kg·hm-2,有机肥处理(M和MN)土壤投入磷量为2 532.68 kg·hm-2、携出磷量为757.50 kg·hm-2;有机无机磷肥配施(MNP和MNPK)土壤投入和携出磷量分别为4 305.11和1 436.64 kg·hm-2;不同施肥处理土壤磷素投入量都明显高于作物携出量,导致单施无机磷肥、单施有机磷肥和有机无机磷肥配施处理土壤磷素年盈余量分别为18.32、53.79和86.92 kg·hm-2,年未知去向磷量分别为4.99、34.96和59.39 kg·hm-2,土壤全磷含量年增加量分别为0.015、0.0018和0.018 g·kg-1,有效磷含量年增加量分别为1.13、0.032和1.17 mg·kg-1。长期不施用磷肥钙质紫色水稻土全磷含量随土层深度增加而降低,土壤有效磷含量则相反;长期施用磷肥土壤全磷和有效磷含量在土壤剖面都呈现出上下层高、中间低的空间分布格局。施用无机磷肥土壤磷素可迁移至60-80 cm土层,施用有机磷肥或有机无机磷肥配施土壤磷素可迁移至100 cm以下;随着磷肥施用年限持续,土壤磷素迁移深度和迁移量将会更大,有机肥的施用促使磷素向土壤下层迁移。【结论】连续数年施用磷肥后,土壤磷含量达到一定水平时应考虑减少磷肥用量,减少因有机肥过量施用导致的磷素快速积累和淋失。  相似文献   

15.
长期增施有机肥/秸秆还田对土壤氮素淋失风险的影响   总被引:21,自引:2,他引:21  
【目的】研究长期增施有机肥/秸秆还田对作物产量及土壤氮素淋失风险的影响,旨在为华北平原冬小麦-夏玉米轮作区增强土壤肥力、提高作物产量及降低农业面源污染风险提供依据。【方法】以国家褐潮土肥力与肥料效益监测基地的长期肥料试验为平台,研究长达27年不同施肥处理对冬小麦-夏玉米产量、土壤肥力、氮素淋失风险和土壤氮素剖面分布的影响,试验共设置5个施肥处理,即:对照(CK);氮磷钾(NPK);氮磷钾+有机肥(NPKM);氮磷钾+过量有机肥(NPKM+);氮磷钾+秸秆还田(NPKS)。【结果】(1)在27年的不同施肥处理中,长期增施有机肥/秸秆还田均能使作物增产,改善土壤肥力。其中,增施有机肥处理尤为显著,与NPK相比,NPKM、NPKM+处理提高小麦和玉米产量分别为41%-50%和30%-32%;增加0-20 cm表层土壤有机碳(SOC)和全氮(TN)含量分别为62%-121%、107%-187%;但降低小麦、玉米氮肥偏生产力(PFPN)分别达22%-32%、27%-41%。而NPKS处理对作物增产及提升土壤肥力的作用低于增施有机肥处理,对小麦产量、玉米产量、SOC、TN含量的增幅分别为24%、6%、9%、97%,但提高小麦季PFPN为216%、降低玉米季PFPN为40%。(2)长期增施有机肥/秸秆还田处理中,0-20 cm表层土壤SOC、TN、硝态氮(NO3--N)、可溶性碳氮等养分含量以及氮矿化速率、硝化潜势等微生物学过程显著高于20-200 cm,说明长期增施有机肥/秸秆还田等外源碳的添加对土壤养分及微生物学过程的影响主要发生在表层。(3)与NPK相比,NPKM处理能够显著增加100-200 cm深层土壤中NO3--N含量,NO3--N平均含量为17.8-26.1 mg·kg-1;而NPKS处理在一定程度上能够增加0-100 cm土层NO3--N含量,NO3--N平均含量为3.6-13.4 mg·kg-1,表明增施有机肥会促进土壤NO3--N的向下迁移,而秸秆还田对土壤NO3--N具有一定的固持作用。此外,由于有机肥和秸秆带入的氮素, NPKM、NPKM+、NPKS处理氮盈余比NPK处理增加312%、1 037%、953%,大大增加了土壤氮素淋失风险。【结论】在氮磷钾化肥基础上增施有机肥/秸秆还田会提高作物产量、增强土壤肥力,但会提高土壤氮盈余量,提高氮素淋失风险,尤其是增施有机肥会大大增加氮素淋失风险。  相似文献   

16.
【目的】系统分析连续11年增量施磷下赤红壤蔗地土壤全磷、Olsen-P以及地表径流磷流失量的变化特征和土壤磷素变化与磷盈亏、蔗茎产量的响应关系,为土壤磷素科学管理提供参考。【方法】依托长期肥力及地表径流定位监测试验(2008年—),选取不施肥(CK)、推荐施肥(OPT)和增量施磷(OPT+P)3个处理,测定土壤全磷、Olsen-P含量及地表径流磷流失量,分析土壤磷素变化与磷累积盈亏量的关系,采用Mitscherlich模型拟合蔗茎产量对Olsen-P的响应曲线,计算土壤Olsen-P农学阈值,并推算施肥处理土壤Olsen-P含量从第11年降至环境阈值所需的时间。【结果】CK处理逐年降低土壤全磷含量,年降速率为0.0251 g·kg-1·a-1。施肥土壤全磷和Olsen-P含量随种植年限波动增加,土壤全磷和Olsen-P增速率OPT+P处理高于OPT处理。不施肥土壤表观磷盈亏10.2 kg·hm-2·a-1,施肥处理土壤表观磷盈余41.3—69.2 kg·hm-2·a-1,占施磷量的31.9%—35.6%,以OPT+P处理...  相似文献   

17.
Under the limited cultivated land area and the pursuit of sustainable agricultural development,it is essential for the safety of grain production to study agricultural management approaches on narrowing the winter wheat yield gap and improving nitrogen use efficiency (NUE) in China.In this study,DSSAT-CERES-Wheat Model is used to simulate winter wheat yield under different agricultural treatments,and we analyze yield gaps and NUE with different management scenarios at regional scales and evaluate the suitable approaches for reducing yield gap and increasing NUE.The results show that,the potential of narrowing yield gap ranges 300–900 kg ha~(–1) with soil nutrients increase,400–1 200 kg ha~(–1) with sowing date adjustment and 0–400 kg ha~(–1) with planting density increase as well as 700–2 200 kg ha~(–1) with adding nitrogen fertilizer.Contribution rates of management measures of soil nutrients,sowing date adjusting,planting density,and nitrogen fertilizers are 5–15%,5–15%,0–4%,and 10–20%,respectively.Difference in nitrogen partial productivity ranges 3–10 kg kg~(–1) for soil nutrients,1–10 kg kg~(–1) for sowing date adjusting,1–5 kg kg~(–1) for planting density increase,and–12–0 kg kg~(–1) for adding nitrogen fertilizers,respectively.It indicates that four treatments can narrow yield gap and improve the NUE in varying degrees,but increasing nitrogen fertilizer leads to the decrease of NUE.  相似文献   

18.
添加氧化镁和铵明矾对菜田高磷土壤活性磷的影响   总被引:2,自引:0,他引:2  
为研究不同种类钝化剂对土壤磷素的固定效果,通过室内培养试验,向土壤中添加氧化镁、铵明矾及二者不同比例的混合物,研究其对土壤0.01 mol·L~(-1)CaCl_2浸提磷、0.5 mol·L~(-1)NaHCO_3浸提磷含量及磷素组分的影响。结果表明:与未钝化的对照处理相比,向土壤分别添加0.5%和2.0%(m/m)的氧化镁、铵明矾或其混合物培养45 d后,均显著降低了土壤CaCl_2浸提磷含量。添加氧化镁或铵明矾分别降低了87.8%(0.5%)、98.0%(2.0%)和44.4%(0.5%)、88.8%(2.0%)的CaCl_2浸提磷含量,而二者混合物的钝化效果明显弱于氧化镁。添加2.0%的氧化镁、铵明矾或其混合物对土壤NaHCO_3浸提磷含量降低明显,但氧化镁和铵明矾的混合物降低土壤NaHCO_3浸提磷的效果弱于铵明矾。对培养45 d后的土壤进行Hedley分组测定磷素组分发现,添加氧化镁或铵明矾显著降低了土壤H_2O浸提总磷和NaHCO_3浸提总磷含量,添加铵明矾显著增加了土壤中Na OH浸提总磷的含量。氧化镁、铵明矾和土壤活性磷不同的作用机理是导致氧化镁固定CaCl_2-P效果显著而铵明矾固定Olsen-P效果显著的主要原因。  相似文献   

19.
为研究长期有机无机肥配施对红壤性水稻田作物产量、土壤微生物生物量及有机碳分子结构的影响,以始于1984年的江西红壤性水稻田长期定位试验为平台,选取的试验处理包括:不施肥(CK)、单施化肥(NPK)和等养分条件下70%化肥配施30%有机肥(NPKM1)、50%化肥配施50%有机肥(NPKM2)、30%化肥配施70%有机肥(NPKM3),采用固体13C核磁共振测定了土壤有机碳组分含量,分析了土壤化学指标和土壤微生物生物量碳(Microbial biomass carbon,MBC)和微生物生物量氮(Microbial biomass nitrogen,MBN)。结果表明,连续34年的不同施肥处理显著影响了水稻产量、土壤微生物生物量及土壤有机碳(SOC)分子结构。与NPK处理相比,有机肥配施(NPKM1、NPKM2、NPKM3)提高了水稻产量,增幅为6.5%~7.7%(P>0.05),中低有机肥配施比例(30%和50%)稳产效果更优。长期单施化肥使土壤严重酸化,而配施有机肥可减缓土壤酸化。长期施肥处理MBC和MBN较CK处理分别显著提高17.0%~71.1%和104.1%~267.0%,但MBC/MBN下降,有机无机肥配施处理较NPK处理提高了微生物熵。长期单施化肥主要提高了烷基碳的相对含量,而配施有机肥同时提高烷基碳和烷氧碳(甲氧基/含氮烷基碳)含量,有利于土壤活性有机质累积。Pearson相关性分析表明土壤微生物生物量与SOC、氮磷养分指标及甲氧基/含氮烷基碳呈显著或极显著正相关,与芳基碳和羧基碳呈显著负相关。冗余分析显示SOC、有效磷、速效钾及烷基碳等对水稻产量的影响较大。研究表明,在供试条件下,长期实行中低比例有机肥配施化肥有利于提高土壤养分和土壤微生物生物量,并改善土壤有机质结构,是维持作物高产和提升土壤质量的有效施肥措施。  相似文献   

20.
Azospirillum brasilense and Pseudomonas fluorescens are well-known plant growth promoting rhizobacteria. However, the effects of A. brasilense and P. fluorescens on the N cycles in the paddy field and rice plant growth are little known. This study investigated whether and how A. brasilense and P. fluorescens contribute to the N transformations and N supply capacities in the rhizosphere, and clarified the effects of A. brasilense and P. fluorescens on the N application rate in rice cultivation. Inoculations with A. brasilense and P. fluorescens coupled with N application rate trials were conducted in the paddy field in 2016 and 2017. The inoculations of rice seedlings included four treatments: sterile saline solution(M_0), A. brasilense(Mb), P. fluorescens(Mp), and co-inoculation with a mixture of A. brasilense and P. fluorescens(Mbp). The N application rate included four levels: 0 kg N ha~(–1)(N_0), 90 kg N ha~(–1)(N_(90)), 180 kg N ha~(–1)(N_(180)), and 270 kg N ha~(–1)(N_(270)). The results indicated that the Mbp and Mp treatments significantly enhanced the ammonification activities in the rhizosphere compared with the M_0 treatment, especially for higher N applications, while the Mbp and Mb treatments greatly enhanced the nitrogenase activities in the rhizosphere compared with the M_0 treatments, especially for lower N applications. Azospirillum brasilense and P. fluorescens did not participate in the nitrification processes or the denitrification processes in the soil. The soil respiration rate and microbial biomass N were greatly affected by the interactions between the rhizobacteria inoculations and the N fertilizer applications. In the Mbp treatment, N supply capacities and rice grain yields showed no significant differences among the N_(90), N_(180), and N_(270) applications. The N application rate in the study region can be reduced to 90 kg N ha~(–1) for rice seedlings co-inoculated with a mixture of A. brasilense and P. fluorescens.  相似文献   

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