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| 1 | 长期施肥下我国南方典型农田土壤的酸化特征显示文摘【目的】阐明长期施肥下我国南方典型农田土壤的酸化特征,为合理施肥缓解农田土壤酸化提供科学依据。【方法】对湖南省典型农田土壤一水稻土和红壤上设置的32个长期监测点10年间的土壤pH及相关数据进行统计分析。【结果】从整体上看水稻土在长期施肥下未呈现明显酸化;在水旱轮作模式下的水稻土出现显著酸化,其pH平均下降速率为每年0.076是持续种稻模式的10倍。化学氮肥施用量的增加是水旱轮作下土壤酸化的重要因素之一,有机肥的施用对水稻土酸化无显著影响。红壤在常规施肥10 a期间pH呈明显的阶段性变化特征,施肥4-6 a与1-3a相比土壤pH下降了0.19个单位显著酸化;持续施肥至7-10 a红壤pH保持相对稳定。起始pH相对较高(pH〉6)的红壤长期施肥下出现极显著酸化,pH平均下降速率为每年0.075,与化肥氮施用量呈显著正相关;pH相对较低(pH 4-5)的红壤长期施肥下未显著酸化。【结论】我国南方地区长期施肥下,与持续种稻模式相比水旱轮作模式加速了水稻土的酸化,化学氮肥施用量的增加是导致其酸化的重要原因;起始pH相对较高(pH〉6)的红壤显著酸化化学氮肥用量增加导致其显著酸化。因此,控制和减少化学氮肥的用量是防止水旱轮作模式下土壤及红壤旱地进一步酸化的重要措施。 | 周晓阳 徐明岗 周世伟 Colinet Gilles | 2015 | 植物营养与肥料学报2015,21,6: | 85 |
| 2 | 中国南方水稻土酸化演变特征及影响因素显示文摘【目的】明确中国南方水稻土酸化特征及主要影响因素,为防控水稻土酸化提供理论依据。【方法】选择中国南方江苏、湖南、广东、广西、四川和云南6个省份(自治区)的20个水稻土长期定位监测点,统计分析水稻土pH演变特征及阶段性变化规律,并探讨施肥量及土壤氮素含量对水稻土酸化的影响。【结果】1988—2013年25年间中国南方水稻土显著酸化,土壤pH下降0.59个单位,平均每年下降0.023个单位。水稻土酸化具有明显的阶段性特征,起始的14年中水稻土pH急速下降,平均每年可下降0.051个单位;近10年间,土壤pH趋于平稳。增施化肥特别是化学氮肥可导致水稻土酸化,二者与土壤pH均呈显著负相关关系(P<0.01),由此推算出化学氮肥每增施100 kg·hm-2,水稻土pH可下降0.65个单位。减少有机肥的施用也可引起水稻土酸化,有机肥施用量与土壤pH之间呈显著正相关关系,有机肥每减少100 kg·hm-2,水稻土pH下降0.51个单位。土壤全氮及碱解氮含量与pH间均呈极显著负相关关系,土壤全氮和碱解氮含量每增加100 mg·kg-1,水稻土pH约下降0.1个单位。【结论】在过去25年间,中国南方水稻土显著酸化,酸化具有明显的阶段性特征,施肥初期土壤pH显著降低。减少化学氮肥的施用和增施有机肥是控制水稻土酸化的重要措施。 | 周晓阳 周世伟 徐明岗 Colinet Gilles | 2015 | 中国农业科学2015,48,23: | 52 |
| 3 | 长期不同施肥处理黑土磷的吸附-解吸特征及对土壤性质的响应显示文摘【目的】长期不同施肥处理影响土壤磷库和土壤性质的变化。研究不同施肥处理下黑土磷的吸附解析特征及其与土壤性质的响应关系,为黑土合理施用磷肥,提高磷有效性提供理论依据。【方法】本研究依托于公主岭黑土肥力长期定位试验,供试作物为玉米。选取不施肥(CK)、施氮、钾肥(NK)、氮磷钾平衡施肥(NPK)、氮磷钾+有机肥(NPKM)4个处理。取1990、2000和2010年的0—20 cm土层的土壤样品,分析土壤性质,测定磷的吸附解吸值,并用Langmuir方程拟合了磷的吸附曲线,计算磷最大吸附量(Qmax)、磷吸附常数(K)、最大缓冲容量(MBC)、磷吸附饱和度(DPS)以及土壤易解吸磷(RDP)。【结果】Langmuir吸附等温线方程能很好的拟合土壤吸附磷和相应的平衡溶液磷浓度曲线(R2=0.93—0.99)。不同施肥处理磷吸附解吸特征参数具有明显的差异。随试验年限的增加,不同处理各特征参数变化不尽相同,与1990年相比,2010年不施磷处理(CK和NK),Qmax值分别增加了1.83和1.61倍,MBC值分别增加了0.80%和49.40%,DPS值分别降低了92.04%和87.50%,RDP值分别降低了20.00%和82.83%;NPK处理Qmax和DPS值分别增加了81.39%和90.74%,MBC和RDP值分别降低了79.37%和48.57%;NPKM处理Qmax和MBC值分别降低了33.35%和78.52%,DPS和RDP值分别增加了11.36倍和1.48倍。施肥21年后,与CK和NPK处理相比,NPKM处理的Qmax值降低了64.66%和49.52%,MBC值降低了81.87%和79.56%,DPS值增加了110和3.81倍,RDP值增加了4.36倍和78.57%。NPKM处理显著增加了土壤全磷(Total-P)、有效磷(Olsen-P)、有机质(SOM)和CaCO3含量,降低了比表面积,维持pH、游离铁铝氧化物值不变。冗余分析结果表明:SOM和Total-P是造成磷吸附解吸特征参数差异的主要因素,分别解释了全部变异的49.5%和18.7%(P<0.05)。【结论】长期有机无机配施可显著增加SOM和土壤中磷素累积,降低土壤对磷的吸附能力,增加土壤对磷的解吸,提高土壤磷的有效性,但同时显著提高了土壤磷吸附饱和度,易引起磷素流失的风险,对于NPKM处理应考虑有机肥与无机肥的投入量。 | 王琼 展晓莹 张淑香 彭畅 高洪军 张秀芝 朱平 GILLES Colinet | 2019 | 中国农业科学2019,52,21: | 27 |
| 4 | 长期有机无机肥配施提高黑土磷含量和活化系数显示文摘【目的】长期不同施肥模式影响着耕层土壤磷库以及各形态磷的变化。研究不同施肥模式下黑土各磷素形态含量及有效性的变化,为黑土的肥力培育和合理施用磷肥提供理论依据。【方法】黑土长期定位施肥试验位于吉林省公主岭市,始于1990年,供试作物是连作玉米。肥料试验包括不施肥对照(CK)、施氮、钾肥(NK)、氮磷钾平衡施肥(NPK)、氮磷钾+有机肥(NPKM)共4个处理。化肥处理施氮肥(N) 165 kg/hm^2、磷肥(P) 36 kg/hm^2、钾肥(K) 68 kg/hm^2、猪粪21 t/hm^2,NPKM处理的最终N-P-K养分投入量为165-75-145kg/hm^2。选取了1990、1995、2000、2005和2010年的土样,采用Hedley连续浸提法,分析了土壤全磷、有效磷及各有效磷形态含量,计算了土壤磷活化系数(PAC)。【结果】与初始年份相比,NPKM处理土壤全磷、有效磷和磷活化系数,分别显著提高了88.47%、12.98倍和6.42倍。NPK处理对全磷含量影响较小,土壤有效磷含量和PAC值分别增加了1.65倍和2.67倍。CK和NK处理全磷含量降低了15.12%和32.67%,有效磷含量降低了33.47%和12.57%,土壤磷活化系数(PAC)分别降低了52.49%和2.55%。所有处理黑土磷库均以无机磷为主,占全磷的80.53%~90.43%。施磷肥处理的无机磷含量占全磷的比值显著高于不施磷处理,对有机磷含量影响不显著。不同处理均以中活性态磷含量最多,占全磷的50.37%~55.06%,活性态磷含量最少,占全磷的7.61%~19.02%。与不施磷处理相比,施磷处理显著提高了土壤活性态磷的比值,尤其是无机磷中的活性态磷的比值。CK、NK处理中Resin-P、NaHCO_3-Pi、NaOH-Pi、Conc.HCl-Pi、Residual-P无机磷形态均呈减少趋势;NPK处理中Resin-P、NaHCO_3-Pi、NaOH-Pi、Dil.HCl-Pi呈增加趋势,Conc.HCl-Pi和Residual-P呈减少趋势;NPKM处理中,各无机态磷含量均随施肥年限的增加呈增加趋势。相关分析结果表明有效磷含量的变化值与Resin-P、NaHCO_3-Pi、NaOH-Pi、Conc.HCl-Po变化值之间存在显著的相关性,其相关系数为0.972、0.665、0.860和0.605,说明活性较高的无机磷对有效磷效率的贡献最大。【结论】与施氮钾肥和氮磷钾肥相比,氮磷钾配合有机肥可显著提高土壤全磷、有效磷含量,显著提高土壤活性态无机磷的比例,进而提高土壤磷活化系数,提高磷素利用率。 | 王琼 展晓莹 张淑香 彭畅 高洪军 张秀芝 朱平 Colinet Gilles | 2018 | 植物营养与肥料学报2018,24,6: | 20 |
| 5 | 长期秸秆还田显著降低褐土底层有机碳储量显示文摘【目的】秸秆还田作为一种有效的培肥方式,对土壤固碳效果显著,但对于深层土壤有机碳的影响还存在不确定性。分析不同秸秆还田方式下褐土剖面土壤有机碳(SOC)储量变化,为褐土区秸秆还田措施优化和固碳减排等提供科学依据。【方法】长期秸秆还田试验开始于1992年,采用裂区设计,主区为化肥春季和秋季施用,副区为4个秸秆还田处理:秸秆不还田(CK)、秸秆覆盖还田(SM)、秸秆粉碎后直接还田(SC)和秸秆过腹还田(CM)。在2013年春玉米收获后采集0—100 cm土层土壤样品,分析不同秸秆还田方式下SOC和土壤养分含量。【结果】在春季和秋季施肥下,与CK相比,CM、SM和SC处理表层(0—20 cm)SOC含量显著提高,而SM和SC处理40—60和80—100 cm SOC含量显著降低。同时,与CK处理相比各处理SOC储量变化量在处理间存在显著差异。在春季和秋季施肥下,与CK相比,SM、SC和CM处理表层SOC储量平均分别增加2.32、5.42和12.60 t/hm^(2),且CM处理显著高于SM和SC处理;而在底层(40—100 cm)平均分别降低3.98、6.99和3.76 t/hm^(2);0—100 cm,CM处理SOC储量增加9.62 t/hm^(2),而SM和SC处理平均分别降低1.81和5.36 t/hm^(2)。冗余分析结果表明,有机碳输入和土壤养分对表层碳储量变化的总解释率为90.10%,而对下层(20—100 cm)的总解释率仅为31.80%。其中,影响表层碳储量变化的主要因子是有效磷(解释率为80.10%),而下层则是全氮(25.28%)。【结论】在施用化肥基础上,长期秸秆还田促进表层碳累积,但底层氮素供应不足引起碳耗竭。总体上,秸秆过腹还田是褐土区农田培肥和增产的最优秸秆还田方式。 | 徐虎 蔡岸冬 周怀平 Colinet Gilles 张文菊 徐明岗 | 2021 | 植物营养与肥料学报2021,27,5: | 13 |
| 6 | Spatial variability of soil properties in red soil and its implications for site-specific fertilizer management显示文摘Assessing spatial variability and mapping of soil properties constitute important prerequisites for soil and crop management in agricultural areas. To explore the relationship between soil spatial variability and land management, 256 samples were randomly collected at two depths (surface layer 0–20 cm and subsurface layer 20–40 cm) under different land use types and soil parent materials in Yujiang County, Jiangxi Province, a red soil region of China. The pH, soil organic matter (SOM), total nitrogen (TN), cation exchange capacity (CEC), and base saturation (BS) of the soil samples were examined and mapped. The results indicated that soils in Yujiang were acidified, with an average pH of 4.87 (4.03–6.46) in the surface layer and 4.99 (4.03–6.24) in the subsurface layer. SOM and TN were significantly higher in the surface layer (27.6 and 1.50 g kg–1, respectively) than in the subsurface layer (12.1 and 0.70 g kg–1, respectively), while both CEC and BS were low (9.0 and 8.0 cmol kg–1, 29 and 38% for surface and subsurface layers, respectively). Paddy soil had higher pH (mean 4.99) than upland and forest soils, while soil derived from river alluvial deposits (RAD) had higher pH (mean 5.05) than the other three parent materials in both layers. Geostatistical analysis revealed that the best fit models were exponential for pH and TN, and spherical for BS in both layers, while spherical and Gaussian were the best fitted for SOM and CEC in the surface and subsurface layers. Spatial dependency varied from weak to strong for the different soil properties in both soil layers. The maps produced by selecting the best predictive variables showed that SOM, TN, and CEC had moderate levels in most parts of the study area. This study highlights the importance of site-specific agricultural management and suggests guidelines for appropriate land management decisions. | SONG Fang-fang XU Ming-gang DUAN Ying-hua CAI Ze-jiang WEN Shi-lin CHEN Xian-ni SHI Wei-qi Gilles COLINET | 2020 | Journal of Integrative Agriculture2020,19,9: | 4 |
| 7 | Factors affecting trace element content in periurban market garden subsoil in Yunnan Province,China显示文摘Field investigations were conducted to measure subsoil trace element content and factors influencing content in an intensive periurban market garden in Chenggong County,Yunnan Province,South-West China.The area was divided into three different geomorphological units:specifically,mountain (M),transition (T) and lacustrine (L).Mean trace element content in subsoil were determined for Pb (58.2 mg/kg),Cd (0.89 mg/kg),Cu (129.2 mg/kg),and Zn (97.0 mg/kg).Strong significant relationships between trace element content in topsoil and subsoil were observed.Both Pb and Zn were accumulated in topsoil (RTS (ratio of mean trace element in topsoil to subsoil) of Pb and Zn 1.0) and Cd and Cu in subsoil (RTS of Cd and Cu 1.0).Subsoil trace element content was related to relief,stoniness,soil color,clay content,and cation exchange capacity.Except for 7.5 YR (yellow-red) color,trace element content increased with color intensity from brown to reddish brown.Significant positive relationships were observed between Fe content and that of Pb and Cu.Trace element content in mountain unit subsoil was higher than in transition and lacustrine units (M > T > L),except for Cu (T > M > L).Mean trace element content in calcareous subsoil was higher than in sandstone and shale.Mean trace element content in clay texture subsoil was higher than in sandy and sandy loam subsoil,and higher Cu and Zn content in subsoil with few mottles.It is possible to model Pb,Cd,Cu,and Zn distribution in subsoil physico-chemical characteristics to help improve agricultural practice. | Yanqun zu Laurent Bock Christian Schvartz Gilles Colinet Yuan Li | 2011 | Journal of Environmental Sciences2011,23,3: | 3 |
| 8 | 长期施磷黑土中磷的吸附–解吸特征及其影响因素显示文摘【目的】比较长期不施磷与施磷黑土对外源磷的吸附–解吸特征,为黑土区磷素管理提供理论基础。【方法】供试黑土长期定位试验位于吉林省公主岭市,始于1990年。2018年选择其中不施肥(CK),施氮钾肥(NK),施氮磷钾肥(NPK)和氮磷钾+有机肥(NPK+M)4个处理小区,采集0—20、20—40和40—60 cm土层的土壤样品,分析了土壤理化性质,采用恒温平衡法测定了土壤磷的吸附–解吸特征,并由此计算得到磷最大吸附量(Q)、吸附亲和力常数(K_(Q))、最大缓冲容量(MBC)、磷吸附饱和度(DPS)、最大解吸量(D_(m))和解吸率(D_(r))。【结果】随着平衡溶液中磷浓度的增加,磷的吸附量与解吸量均呈先快速增加后逐渐趋于平衡的过程。与不施磷处理(CK和NK)土壤相比,施磷处理(NPK、NPK+M)减少了磷的吸附量,增加了磷的解吸量。与不施磷处理相比,施磷处理在0—60 cm剖面上的Q和MBC值分别降低了4.94%~63.46%和15.90%~75.18%,Dr值增加了8.52%~474.0%,以NPK+M处理变化量最大。施磷处理比不施磷处理在0—60 cm土壤剖面上全磷和有机质含量分别增加了34.40%~145.5%和12.77%~50.07%,游离态铁铝氧化物(Fe_(d)+Al_(d))含量降低了5.14%~11.35%。冗余分析表明,不施磷处理土壤的有机质、Fe_(d)+Al_(d)和全磷,以及施磷处理中的Fe_(d)+Al_(d)、络合态铁铝氧化物(Fe_(d)+Al_(d))、pH和有机质是影响磷吸附解吸特征参数的主要土壤因子,分别解释了不施磷和施磷处理全部变异的77.59%和90.62%。土壤有效磷(Olsen-P)与磷吸附饱和度(DPS)相关关系表明,所研究的黑土DPS环境界限值为8%左右,NPK+M处理中3个土层的DPS值(由Mehlich-3浸提的磷、铁和铝计算)为7.77%~25.96%,DPS值(由Olsen-P和Q计算)为17.24%~24.75%,均高于此环境界限值,具有磷素流失的风险。【结论】长期施磷降低了黑土对外源磷的吸附量,增加了磷解吸量。长期不施磷肥,土壤对磷的吸附和解吸主要受有机质、游离态铁铝氧化物的影响。而长期施肥,特别是有机肥与化肥配合处理,土壤中游离态和络合态铁铝氧化物、有机质及pH是影响磷吸附解吸特征的主要因素。 | 王琼 陈延华 张乃于 秦贞涵 金玉文 朱平 彭畅 Colinet Gilles 张淑香 | 2022 | 植物营养与肥料学报2022,28,9: | 1 |
| 9 | 基于荧光光谱分析秸秆深埋还田黑土剖面DOC组分结构变化特征显示文摘以黑土为研究对象,分析不同深度玉米秸秆还田(0~2,3~10,11~20,21~30和31~40 cm)后可溶性有机碳(DOC)的荧光特性差异,探讨秸秆深还田后腐殖化程度的变化特征。结果表明:秸秆还田可提高土壤DOC的含量。三维荧光光谱特征表明,土壤DOC的荧光组分均为2种,CK~T4处理分别为类腐殖质物质组分(Ex/Em=250~275/455 nm)和类色氨酸物质组分(Ex/Em=225~237/340~350 nm),而T5处理分别为类腐殖质物质组分(Ex/Em=250~275/455 nm)和类酪氨酸物质组分(Ex/Em=225/304 nm),还田31~40 cm深度有较小的自生成分,且腐殖化系数最高。土壤DOC组分C1的荧光强度有随着秸秆还田深度的加深而增大的趋势,C2组分则呈波动性的状态,荧光强度先增强再减弱。土壤DOC受自生源和外生源共同作用(FI>1.4,0.6 | 匡恩俊 迟凤琴 张久明 徐明岗 Gilles Colinet 宿庆瑞 郝小雨 朱宝国 | 2022 | 光谱学与光谱分析2022,42,10: | 1 |
| 10 | Effect of long-term fertilization on phosphorus fractions in different soil layers and their quantitative relationships with soil properties显示文摘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) 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., Na HCO-extracted Pi, Na OH-extracted Pi, and dilute HClextracted 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 Ca CO, 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. | WANG Qiong QIN Zhen-han ZHANG Wei-wei CHEN Yan-hua ZHU Ping PENG Chang WANG Le ZHANG Shu-xiang Gilles COLINET | 2022 | Journal of Integrative Agriculture2022,21,9: | 1 |
| 11 | 云南省元阳县传统水稻梯田的农业土壤评价(英文)显示文摘作为元阳水稻梯田农业生态系统可持续性评价的一部分,本文调查了箐口流域梯地的自然生物环境,评价了农业土壤的土壤肥力,采用地质—地貌—土壤信息相结合的方法建立了土壤—景观之间的组合模式。研究确定了人为、气候、地形因素为影响土壤形成的主要因素,评价了土壤潜在生产力以及相关的限制因子,并根据FAO体系,确定并划分了主要的土壤类型。研究结果表明:土壤肥力的空间分布相当均一;土壤属酸性,阳离子代换量和养分储量总体较低;农业生态系统在较大程度上受哈尼群众人为活动的影响,成功维持了相对活跃的养分循环系统。目前的研究集中在:(1) 本研究区域在整个哈尼梯田系统中的代表性评价;(2) 田间水平上的养分循环研究;(3) 土壤特性对作物产量的影响;(4) 将田间水平的研究结果应用于更大的空间单元。 | Gilles COLINET Keiko KOULOS 吴伯志 李永梅 Daniel LACROIX1 苏友波 Jean CHAPELLE Michael A. FULLEN Trevor HOCKING Laurent BOCK | 2011 | Journal of Resources and Ecology2011,2,4: | 0 |