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改良措施对苏北盐渍土盐碱障碍和作物磷素吸收的调控 总被引:5,自引:1,他引:4
以苏北轻度盐渍土(D)、中度盐渍土(Z)为研究对象,展开大麦-玉米轮作田间微区试验,分析仅施氮肥(CK)、常规施肥(P)及常规施肥下添加生物质炭(PC)、腐植酸(PH)和石膏(PG)处理对土壤盐分含量、pH和钠吸附比(SAR)以及作物磷素吸收利用的影响。结果表明:苏北滨海盐渍土壤盐分呈明显的季节性变化模式,各改良措施对0~20 cm土壤盐碱的调控作用较20~40 cm明显。石膏处理对土壤盐碱障碍的消减作用显著,DPG、ZPG处理下0~20 cm土壤脱盐率分别为31.06%、40.60%,土壤pH分别降低0.67、0.51个单位。各改良措施均能降低0~20cm土壤SAR,降低土壤Na+含量,改善土壤结构。轻度盐渍土上土壤SAR的降幅表现为:DPGDPHDPC,中度盐渍土上表现为:ZPGZPCZPH。轻度盐渍土上各改良措施均显著促进作物地上部吸磷,提高作物产量。DPC、DPH、DPG处理的积累磷肥利用率分别为对照的4.9倍、3.5倍、1.8倍。而中度盐渍土上仅ZPC和ZPG处理的增产效果显著,腐植酸在轻度盐渍土上的调控效果优于中度盐渍土。 相似文献
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不同施磷水平下生物质炭用量对土壤磷素状况及棉花养分吸收的影响 总被引:1,自引:0,他引:1
《土壤通报》2014,(6):1464-1470
通过两年温室盆栽试验,研究不同施磷水平(0、0.25、0.5 g kg-1)下,生物质炭用量(0%、1%和2%)对土壤磷素状况和棉花生长及养分吸收的影响。研究结果表明:施用生物质炭可提高土壤水溶性磷、速效磷和全磷含量,三种磷素的影响表现为:水溶性磷全磷速效磷。生物质炭用量对施用后第二年的土壤磷素影响更明显,高磷(0.5 g kg-1)水平下土壤水溶性磷和速效磷含量随生物质炭用量的增加而显著增加。不施磷和低磷(0.25 g kg-1)水平下,施用生物质炭显著提高了棉花植株总干物质重,但1%和2%用量间差异不显著;高磷(0.5 g kg-1)水平下,两年的试验结果不一致。生物质炭显著增加了棉花的氮、磷和钾吸收量;尤其是在高磷水平下,棉花磷素吸收量随生物质炭用量(0%到1%以及2%)显著增加。因此,生物质炭和磷肥合理配施可显著增加土壤磷素,促进棉花生长和养分吸收。 相似文献
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生物质炭及硝化/脲酶抑制剂对滨海盐渍土土壤盐分及作物氮素吸收利用的影响 总被引:2,自引:1,他引:1
为研究生物质炭及硝化/脲酶抑制剂对滨海盐渍土土壤盐碱、氮素有效性、作物氮素吸收利用以及土壤氮平衡的影响,通过盆栽试验,共设9个处理:不施氮肥、常规化肥、生物质炭+常规化肥、常规化肥+硝化抑制剂DCD、常规化肥+脲酶抑制剂NBPT、常规化肥+DCD+NBPT、生物质炭+常规化肥+DCD、生物质炭+常规化肥+NBPT、生物质炭+常规化肥+DCD+NBPT,以典型耐盐作物大麦为研究对象开展研究。结果表明:(1)各施氮肥处理均增加了盐分的淋洗,各生物质炭处理显著增加了10~20 cm土层的土壤电导率。土壤电导率高的土壤p H较低,生物质炭处理对土壤p H略有降低的作用。(2)NBPT和DCD添加增加了大麦籽粒产量,配合生物质炭的施用增产更多,但是却降低了秸秆的产量。NBPT和DCD添加均增加了大麦植株的吸氮量,其中NBPT添加增加了大麦秸秆和籽粒的全氮含量,但是配合生物质炭施用又有降低作用,其余抑制剂处理均降低了大麦籽粒和秸秆的全氮含量。(3)DCD和NBPT添加均提高了氮肥利用效率,配合生物质炭施用对各指标的增加更明显。(4)对作物收获后土壤残留无机氮含量,添加DCD处理相比常规化肥处理有所降低,添加NBPT处理相比常规化肥处理有所增加。添加DCD和NBPT处理均降低了氮的表观损失。因此,在滨海盐渍土中,通过在尿素中添加DCD和NBPT,可以提高作物产量和氮肥利用率,其中同时添加生物质炭、DCD和NBPT处理在产量提升、氮素高效利用及减少氮损失等方面表现更好。 相似文献
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[目的] 为了研究土壤磷肥和盐分及其交互作用对紫花苜蓿生长、磷营养和耐盐性的影响。[方法] 通过向[XC<0.TIF>;% 102% 102]土中添加不同浓度梯度的磷肥(0,40,80,160 mg/kg,以KH2PO4的形式添加)和氯化钠(0,0.4,0.8,1.6 g/kg)进行温室盆栽试验,种植紫花苜蓿"甘农七号"。[结果] 紫花苜蓿地上部生物量和地下部生物量均随着磷肥施加水平的提高而增加,但随着盐分添加水平的提高而减少;施磷时植物的磷吸收量增加,当磷水平为160 mg/kg时,根、茎、叶的磷含量均达到最大。添加盐分抑制对磷的吸收,当盐水平为1.6 g/kg时,根、茎、叶的磷含量与不加NaCl时相比显著减少;与不加磷肥时相比,酒石酸含量随着磷肥水平升高而减少,外源盐分添加显著增加紫花苜蓿根际酒石酸的含量;大部分处理的根际pH与非根际pH相比均降低,在盐胁迫的情况下土壤pH的降低提高土壤磷的有效性和植物对磷的吸收;高剂量(160 mg/kg)的磷肥添加使紫花苜蓿的磷吸收效率、磷利用效率均显著降低。[结论] 土壤磷肥与盐分之间存在显著的交互作用,盐分增加加剧植物磷缺乏,适当施用磷肥可提高紫花苜蓿的耐盐性,并提高其在盐渍土壤中的生产力。 相似文献
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不同有机培肥方式对红壤性水稻土磷素的影响 总被引:1,自引:0,他引:1
基于红壤性水稻土有机肥长期定位试验,分析了红壤双季稻种植模式下,不施肥、NPK、紫云英+猪粪+化肥、紫云英+猪粪+秸秆+化肥、紫云英+秸秆+化肥处理耕层土壤全磷、Olsen-P、磷素有效性和磷素利用率35年的变化特征,以及Olsen-P与水稻产量的响应关系。结果表明:不施肥处理土壤全磷含量显著降低,有效磷含量及磷素有效性略微下降。配施猪粪显著提高全磷、Olsen-P含量和磷素有效性,但显著降低磷肥利用率,增加磷的环境污染风险。化肥配合紫云英及稻草还田处理土壤全磷、有效磷含量以及磷素有效性保持稳定,但显著提高磷肥利用率。Olsen-P的产量农学阈值为16.36 mg kg-1。 相似文献
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田间陈化生物质炭提高稻田土壤团聚体稳定性和磷素利用率 总被引:3,自引:2,他引:1
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为探究不同施磷量对盐渍土中玉米磷素吸收及产量的影响,本研究通过两年田间试验,研究苏打碱土中不同磷水平(0、75、150、225、300 kg·hm-2)对玉米磷素吸收转运及生理活性的影响。结果表明,同一施磷水平下,2018年各处理产量、生物量、磷积累量及叶片磷素含量较2017年均显著提升。与不施用磷肥处理相比,2018年各增施磷肥处理显著提高了玉米地上部的磷积累量、叶片磷素的转运量和转运率,降低了盐渍土中玉米叶片的Na+/K+ 值,磷脂酶Dζ1活性增加了30.7%~73.7%,焦磷酸化酶活性增加了71.0%~235.5%,超氧化物歧化酶活性提高了65.4%~144.5%,显著提高了玉米不同生长期地上部生物量。2017年各增施磷肥处理较不施用磷肥处理的玉米产量提高了42.5%~85.9%,2018年各增施磷肥处理较不施用磷肥处理的玉米产量提高了30.6%~79.7%。为缓解松嫩平原苏打碱土盐胁迫、提高玉米生物量和产量,该区域磷肥施用量建议为225~ 相似文献
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紫色土减磷配施有机肥的磷肥效应与磷素动态变化 总被引:3,自引:0,他引:3
为探索长江上游稻油轮作系统减少农田磷素流失和有效提高磷肥利用率的最佳施肥模式,降低磷对水体富营养化的影响,采用长期田间定点试验并结合室内试验分析,研究了化肥配施猪粪和水稻秸秆还田对紫色土磷肥效应及磷素迁移的影响。结果表明:在常规作物施肥基础上配合施用有机肥,适当减少化学磷肥施用量,对作物产量没有显著的减产效应,且能在一定程度上减少农田磷素损失,提高磷肥利用率。水稻磷肥利用率总体表现为常规施磷量减20%+猪粪有机肥(MDP)常规施磷量减20%+秸秆还田(SDP)常规施肥+猪粪有机肥(MP)常规施肥+秸秆还田(SP)≈优化施肥(P),各处理利用率在20%~25%之间。油菜磷肥利用率总体表现为SDPMDPMPSPP,各处理利用率在17%~29%之间。在水稻生长前一个月内,田面水总磷含量随着施磷水平的增加而增加,其中常规施肥(P)比不施磷肥(P0)处理总磷含量高4倍左右。各处理中磷含量大小表现为PMPSPMDPSDPP0,配施有机肥可以提高稻田土壤对磷的吸附,降低前期土壤磷向水体中释放,配施秸秆比配施猪粪对减少土壤磷素流失效果更好,磷肥施用后的7~10天内是控制稻田磷素流失的关键时期。油菜蕾苔期的土壤有效磷含量较苗期明显降低,但在油菜开花期和收获后期,土壤有效磷含量明显上升,油菜生长花期以后是土壤有效磷淋失的主要时期。有机无机肥配施可以显著提高土壤有效磷含量。化学磷肥减量并配施有机肥是应对农业面源污染"控源节流"的较好措施。 相似文献
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南方红壤区磷肥当季利用率仅为10%~25%,提高磷肥利用率是亟待解决的问题。通过两年田间试验,分析了不同磷肥品种(过磷酸钙、猪粪、钙镁磷肥、磷酸一铵、磷酸二铵)、磷肥梯度(常规施磷、减磷20%、减磷30%)以及调控措施(石灰、钙镁磷肥配施磷酸二铵、钙镁磷肥配施秸秆)对红壤磷素有效性和作物生长的影响,探索提高磷肥利用率的途径。结果表明,各磷肥品种间,以猪粪处理土壤有效磷、地上部生物量、磷肥累积利用率等指标最高,土壤有效磷较不施磷处理两年分别提高了32%和241%,地上部生物量较不施磷处理两年分别提高了73%和510%,两年的磷肥累积利用率分别为16.4%和26.5%;伴随磷肥用量的减少,土壤有效磷含量显著降低,而对油菜生长、磷肥利用率及磷肥农学效率无显著影响;与单施钙镁磷肥相比,钙镁磷肥配施磷酸二铵能显著提高油菜籽粒产量、土壤有效磷含量、磷肥累积利用率、磷肥农学效率、土壤磷素盈余量等指标。添加石灰可提高作物产量及土壤有效磷含量。油菜产量与土壤有效磷呈极显著正相关关系。上述结果表明,猪粪替代化学磷肥可达到减施增效、促进作物生长的目的,且以减磷30%为宜;钙镁磷肥配施磷酸二铵可推荐为磷肥调控... 相似文献
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有机无机外源磷素长期协同使用对潮土磷素有效性的影响 总被引:3,自引:2,他引:1
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通过盆栽试验,采用Hedley连续浸提法研究不同生物质炭施用量处理(CK:0 t/hm2;B12:12 t/hm2;B36:36 t/hm2)对杉木幼苗土壤磷组分的影响。结果表明:与CK相比,试验180 d后B12和B36处理土壤全磷与有效磷含量分别增加了8.7%~26.0%和24.0%~101.7%,有效磷在全磷中的比例显著提高;土壤磷组分中,残余态磷在全磷及无机磷组分中的比例均最高,分别为48.5%~51.1%和58.7%~68.3%。B36处理下,土壤各无机磷组分均显著增加,其中易分解态磷和中等易分解态磷在无机磷中的比例显著提高,而稳定态磷和残余态磷的比例显著降低。中等易分解态磷占总有机磷的比例最高,达69.3%~70.2%,生物质炭施用对各有机磷组分在总有机磷中的比例影响均不显著,仅在B36处理下,土壤有机磷中易分解态磷和中等易分解态磷含量显著降低。冗余分析表明,土壤全碳与各无机磷组分呈显著正相关关系,与有机磷组分呈显著负相关关系,是影响土壤磷组分变化的关键因子。 相似文献
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Esawy Mahmoud Mahmoud Ibrahim Lamyaa Abd El-Rahman Asmaa Khader 《Communications in Soil Science and Plant Analysis》2019,50(3):362-372
The present work was carried out to investigate the effect of biochar and phosphorus (P) fertilizer application, on phosphorus fractions, soil microbial biomass carbon in a Vertisol during two seasons for wheat in field experiments. Phosphorus was added at 0%, 50%, 100% and 150% P of recommended P fertilizers, with or without biochar at a rate of 10 t h?1 arranged in a randomized complete block design with three replicates. Results showed that the wheat grain yield increased by 56% to 69% in plots treated with the interaction of biochar and P mineral during the 2015 and 2016 growing seasons. Co-application of biochar with inorganic P produced up to 1.5 fold more microbial biomass C than either biochar or inorganic P applied alone. Sequential extraction of the biochar-treated with P revealed that HCl-P decreased, whereas others fractions increased with increasing P rate. The inorganic and organic P fractions were increased significantly when the biochar was combined with fertilizer P as compared to the biochar or inorganic P applied alone. The results of this study reveal that the co-application of biochar with inorganic P can be a promising strategy to improve soil productivity and soil quality in alkaline soil. 相似文献
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长期有机无机肥配施提高黑土磷含量和活化系数 总被引:4,自引:1,他引:3
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Hongzhao Li Tongbo Yan Tianhong Fu Yongzhou Hao Jing Li Yi Tan Zhen Li Yutao Peng Xiao Chen Jingjing Chang Zhao Song Min Yu Xuewen Li Yalin Li Shiwei Song Baige Zhang 《Soil Use and Management》2023,39(4):1422-1436
Biochar and magnesium (Mg) fertilizers have gained increasing attention in agriculture for their potential benefits. However, their combined effects on vegetable growth in southern acidic soils have not been fully elucidated. To address this issue, a study was conducted with six treatments all of which included a baseline amount of compound fertilizer (CK), an increased amount of compound fertilizer (F), Mg fertilizer (M), biochar (BC), biochar combined with Mg (BCM) and an increased amount of compound F with Mg (FM), to investigate their synergistic effects on soil physicochemical properties, enzyme activity, microorganisms and cabbage yield. The results of the study showed that compared with CK, the M, BC and BCM treatments all increased soil organic matter (SOM), exchangeable magnesium (Ex-Mg), acid phosphatase (ACP) and yield, while the F treatment led to a 5% decrease in SOM. The BCM treatment significantly increased SOM, Ex-Mg, ACP by 14%, 40%, and 25%, respectively. The most abundant phyla in BCM processing were Proteobacteria (21%), Chloroflexi (19%) and Actinomycetes (17%); the most abundant genera were Bacillus (8%). Further, the effect of BCM on crop growth promotion was better than that of FM, and the economic analysis showed that compared with FM, the benefit of BCM increased by 14%. Through structural equation modelling analysis, the synergistic increase in yield was because of the increase in soil TP, Ex-Mg, NO3−–N and β-GC caused by BCM, improving soil nutrients and microbial communities, thereby promoting cabbage growth. Therefore, the combined application of biochar and Mg in acidic soil could significantly improve soil fertility and crop productivity, while also reducing the need for costly chemical fertilizers, thereby offering a promising and cost-effective approach for sustainable agriculture. 相似文献
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生物炭和有机肥施用提高了华北平原滨海盐土微生物量 总被引:2,自引:0,他引:2
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30年轮作施肥对棕壤磷库时间变异特征的影响 总被引:1,自引:0,他引:1
采用Hedley修正体系分级法对轮作30年的长期定位土壤进行测定,结果表明,不同施肥条件下各形态磷的基本表现为:有机肥区>化肥区>CK,而有机肥和化肥配施能明显增加土壤中各形态磷的含量,从而有效的扩大了土壤磷库。从30年轮作的动态变化来看,CK和单施氮肥处理的NaHCO3-P和NaOH-P含量的变化幅度不大;施磷化肥区NaHCO3-P和NaOH-P的含量随着种植年限的增加而缓慢的上升;有机肥区的NaHCO3-Pi和NaOH-Pi含量不断增加,而NaHCO3-Po和NaOH-Po的含量呈先升高再降低再显著升高的动态变化趋势。棕壤中无机磷主要以NaOH-Pi和HCl-Pi的形态存在,有机磷主要以NaOH-Po的形态存在;不同施肥对NaHCO3-Pi和Res-P所占总浸提磷比例影响较大,施入磷肥和有机肥能提高土壤中NaH-CO3-P的比例;有机肥能促进Res-P的转化并减少Res-P的固定,从而降低了Res-P在土壤中的比例。 相似文献
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Phosphorus availability and rice grain yield in a paddy soil in response to long-term fertilization 总被引:1,自引:0,他引:1
Rice (Oryza sativa L.) is one of the most important crops in the world, and its production is limited by soil phosphorus (P) deficiencies in many parts of the world. Impacts of long-term fertilization regimes on rice productivity and soil P availability is largely unknown. A long-term (26-year) field experiment in a paddy soil of southeastern China was carried out to study the response of rice grain yield and soil P pools to different fertilization regimes including control without fertilization (CK), nitrogen, P, and potassium (NPK) fertilizer (NPK), NPK fertilizer plus cattle manure (NPKM), and NPK fertilizer plus rice straw (NPKS). Application of fertilizers (NPK, NPKM, and NPKS) increased rice grain yield compared with the CK treatment (on average, by 75%, 97%, and 92%, respectively). Soil P was predominately present in the organic form (51–75% of total P) across different treatments. Most soil inorganic P fractions decreased with time due to continuous depletion by rice plants in the nonfertilized treatment (CK), while they generally increased with time in the fertilizer treatments (NPK, NPKM, and NPKS) due to continued supply of P to soil. On the other hand, soil organic P fractions increased continuously with time regardless of treatment, probably due to the retention of stubble and biological immobilization of inorganic P. Positive relationships between the rice grain yield and most inorganic P fractions in the CK treatment indicated the P limitation for rice production due to no P inputs and long-term conversion of inorganic P into organic P. 相似文献