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1.
Dhillon  K.S.  Dhillon  S.K. 《Plant and Soil》2000,227(1-2):243-248
A field experiment was conducted for 2 years on an alkaline calcareous seleniferous soil to study the effect of different levels of gypsum (0.2 – 3.2 t ha−1) applied to wheat only in the first year on Se accumulation by wheat (Triticum aestivum L.) – rice (Oryza sativa L.) cropping sequence. With gypsum application, grain yield of both rice and wheat crops increased by 0.4 – 0.5 t ha−1; the increase in straw yield was 0.4 – 1.1 t ha−1. Significant reduction in Se accumulation by wheat was observed with gypsum application up to 0.8 t ha−1 and its residual effect was evident on the following crops for 2 years. Reduction in Se accumulation varied from 53 to 64% in wheat grain, 46 to 49% in wheat straw, 35 to 63% in rice grain and 36 to 51% in rice straw with an application of gypsum at 0.8 t ha−1. A corresponding increase in S concentration was observed. In the gypsum-treated plots, the ratio of S:Se increased by 6 – 8 times in wheat and 3 – 6 times in rice. Reduction in Se accumulation by crop plants through gypsum application may help in lowering the risk of Se over-exposure of animals and humans that depend on diet materials grown on high selenium soils. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

2.
Experiments in the field and greenhouse were conducted in the presence of coal fly ash to determine whether gypsum can reduce Se concentration in alfalfa (Medicago sativa L.). In the field experiment, conducted at a coal fly ash landfill, 11.2 t ha-1 gypsum was applied to soil as a top dressing to test the effect of gypsum in reducing selenium (Se) concentration in aboveground plant tissue. There were four treatment combinations of gypsum over a two year period, 1990 and 1991: (0, 0), (0, 11.2) (11.2, 0) and (11.2, 11.2). In 1991, the Se concentration was lower in alfalfa grown with gypsum regardless of whether the gypsum was applied in both years or in only one year, indicating that the effect of gypsum application in the first year persisted into the second year. Since there was no increase in aboveground biomass with added gypsum, differences in Se concentration reflect a competitive interaction between S and Se. In the greenhouse experiment, 12 soil treatments were tested: three levels of fly ash (0, 10 and 20%) in combination with each of four levels of gypsum (0, 2.5, 5, and 7.5%). The Se concentration in alfalfa grown in 10% fly ash declined linearly with increasing gypsum dose, resulting in a reduction in Se concentration of 0.04±0.02 μg g-1 for each 1% gypsum added for the first harvest and 0.06±0.03 μg g-1 for each 1% gypsum added in the second harvest. Based on these results, gypsum may prove useful as a management tool to reduce the uptake of Se by plants growing on coal fly ash landfills. ei]H Lambers  相似文献   

3.
2-bromoethanesulfonate (BES) is a structural analogue of coenzyme M (Co-M) and potent inhibitor of methanogenesis. Several studies confirmed, BES can inhibit CH4 prodcution in rice soil, but the suppressing effectiveness of BES application on CH4 emission under rice cultivation has not been studied. In this pot experiment, different levels of BES (0, 20, 40 and 80 mg kg-1) were applied to study its effect on CH4 emission and plant growth during rice cultivation. Application of BES effectively suppressed CH4 emission when compared with control soil during rice cultivation. The CH4 emission rates were significantly (P<0.001) decreased by BES application possibly due to significant (P<0.001) reduction of methnaogenic biomarkers like Co-M concentration and mcrA gene copy number (i.e. methanogenic abunadance). BES significantly (P<0.001) reduced methanogen activity, while it did not affect soil dehydrogenase activity during rice cultivation. A rice plant growth and yield parameters were not affected by BES application. The maximum CH4 reduction (49% reduction over control) was found at 80 mg kg-1 BES application during rice cultivation. It is, therefore, concluded that BES could be a suitable soil amendment for reducing CH4 emission without affecting rice plant growth and productivity during rice cultivation.  相似文献   

4.
在江西双季稻田进行长期田间定位试验,分析了多年保护性耕作对水稻产量、土壤理化性状及生物学性状的影响。连续8a稻田保护性耕作处理的平均产量高于传统耕作4.46%—8.79%,各处理的有效穗数、每穗粒数和结实率均高于对照,而各处理间穗长和千粒重差异不显著。实行稻田保护性耕作处理的土壤容重低于传统耕作3.6%—5.6%,而总孔隙度和毛管孔隙度分别高出传统耕作1.6%—17.4%、2.4%—16.7%。与传统耕作相比,连续8a保护性耕作显著提高了土壤有机质(2.9%—10.0%)、有效磷(4.8%—31.6%)、速效钾(9.7%—25.7%)。在2005年免耕+插秧的土壤真菌数量最多,显著高于对照处理51.6%,免耕+抛秧在2008年达到最大,显著高于对照处理54.1%。2012年免耕+抛秧、免耕+插秧显著高于对照126.1%、121.1%;另外,各处理间过氧化氢酶、脲酶活性均差异不显著。8a间土壤转化酶活性变化范围在0.292—0.451 mg/g之间,其中2005—2007、2012年均是免耕+抛秧达到最大,与对照相比,增加范围为72.7%—137.7%,且差异显著(P0.05)。因此,实行稻田保护性耕作是适合江南丘陵区双季稻区农业可持续发展的有效模式之一,其中免耕+抛秧和免耕+插秧两种方式效果最为显著。  相似文献   

5.
Options for mitigating methane emission from a permanently flooded rice field   总被引:19,自引:0,他引:19  
Permanently flooded rice fields, widely distributed in south and south‐west China, emit more CH4 than those drained in the winter crop season. For understanding CH4 emissions from permanently flooded rice fields and developing mitigation options, CH4 emission was measured year‐round for 6 years from 1995 to 2000, in a permanently flooded rice field in Chongqing, China, where two cultivations with four treatments were prepared as follows: plain‐cultivation, summer rice crop and winter fallow with floodwater layer annually (convention, Ch‐FF), and winter upland crop under drained conditions (Ch‐Wheat); ridge‐cultivation without tillage, summer rice and winter fallow with floodwater layer annually (Ch‐FFR), and winter upland crop under drained conditions (Ch‐RW), respectively. On a 6‐year average, compared to the treatments with floodwater in the winter crop season, the CH4 flux during rice‐growing period from the treatments draining floodwater and planting winter crop was reduced by 42% in plain‐cultivation and by 13% in ridge‐cultivation (P < 0.05), respectively. The reduction of annual CH4 emission reached 68 and 48%, respectively. Compared to plain‐cultivation (Ch‐FF), ridge‐cultivation (Ch‐FFR) reduced annual CH4 emission by 33%, and which was mainly occurred in the winter crop season. These results indicate that draining floodwater layer for winter upland crop growth was not only able to prevent CH4 emission from permanently flooded paddy soils directly in the winter crop season, but also to reduce CH4 emission substantially during the following rice‐growing period. As an alternative to the completely drainage of floodwater layer in the winter crop season, ridge‐cultivation could also significantly mitigate CH4 emissions from permanently flooded rice fields.  相似文献   

6.
本研究开展了连续3年(2017-2019年)的田间试验,通过设置不施肥(CK)、单施化肥(F)、等氮条件下有机肥配施化肥(FM)(有机肥全部于早稻季施用)3个处理,对双季稻轮作系统作物产量、土壤肥力进行分析,并连续2年(2018-2019年)对单施化肥和有机肥配施化肥处理的CH4和N20排放进行监测.结果表明:施肥可以...  相似文献   

7.
控释掺混尿素对稻、麦土壤氮与酶活性的影响   总被引:1,自引:0,他引:1  
通过大田试验,共设7个处理,即不施氮、常规施肥以及掺混控释氮肥10%、20%、40%、80%、100%处理,探讨了不同施肥处理对土壤中4种形态氮(全氮、铵态氮、硝态氮、微生物生物量氮)和3种氮功能性酶(脲酶、蛋白酶、硝酸还原酶)活性的影响,以探究控释掺混尿素对稻、麦土壤肥力和环境的影响.结果表明: 土壤全氮在稻、麦全生育期内趋于稳定,且掺混比例20%以上各控释氮肥处理在稻、麦季均无显著差异;掺混40%以上控释氮肥能有效促进稻、麦生育中后期土壤无机氮水平;随稻、麦生育期推进,掺混40%以上控释氮肥处理可显著提高土壤微生物生物量氮,但常规施肥处理的微生物生物量氮整体呈明显下降趋势;掺混40%以上控释氮肥能明显提升稻、麦生育中后期土壤酶活性,土壤蛋白酶与硝酸还原酶活性在作物生育后期均随掺混比例增加而提高,以100%控释氮肥处理土壤酶活性最高.掺混20%以上控释氮肥处理能明显降低水稻季分蘖期脲酶活性,推迟铵态氮峰值期,有利于减少氮损失;掺混40%以上控释氮肥处理均可保障稻、麦生育中后期的氮素供应,刺激土壤脲酶与蛋白酶参与氮素转换,促进了土壤氮素有效性;100%控释氮肥处理对稻、麦生育后期土壤硝酸还原酶活性增加最明显,与掺混40%~80%控释氮肥处理相比,可显著减少小麦季20~40 cm土壤硝态氮残留量,在减少氮素损失方面的效果明显.  相似文献   

8.
The removal of sodium salts from saline soils by salt tolerant crops, as alternative for costly chemical amendments, has emerged as an efficient low cost technology. Lysimeter experiments were carried out on a highly saline sodic soil (ECe = 65.3 dS m(-1), ESP = 27.4, CEC = 47.9 cmole+ kg(-1), and pH = 7.7) and irrigated with canal water (EC = 2.2 dSm(-1), SAR = 4.8) to investigate reclamation efficiency under four different treatments: control (no crop and no gypsum application) (C), gypsum application equivalent to 100% gypsum requirement (G100), planting sea orach (Atriplex halimus) as phytoremediation crop (Cr), planting sea orach with gypsum application equivalent to 50% gypsum requirement (CrG50). Soil salinity (ECe) and exchangeable sodium percentage (ESP) were significantly reduced compared to the control. Average ESP and ECe (dS m(-1)) in the top layer were 9.1, 5.8 (control), 4.8, 3.7 (Cr), 3.3, 3.9 (CrG50), and 3.8, 3.1 (G100), respectively. Atriplex halimus can be recommended as phytoremediation crop to reclaim highly saline sodic clay loam soils.  相似文献   

9.
Characteristics of boron accumulation by fly ash application in paddy soil   总被引:1,自引:0,他引:1  
Lee SB  Lee YB  Lee CH  Hong CO  Kim PJ  Yu C 《Bioresource technology》2008,99(13):5928-5932
Fly ash has a high content of plant available silicate which is strongly needed for rice cultivation in Korea. One concern for plants grown on soils amended with fly ash is boron (B) toxicity because most of the fresh fly ash contains considerable B. This study was conducted in paddy soil to determine B uptake by rice and characteristics of B accumulation in soil after fly ash application (0, 40, 80, and 120 Mg fly ash ha−1). In all fly ash treatments, B content in rice leaves and available B in soil at all growing stage were higher than those of control, but were not exceeded a toxicity levels. Boron occluded in amorphous Fe and Al oxides comprised ca. 20–39% of total B and was not affected by fly ash application. Most of the B was accumulated by fly ash application as a residual B which is plant-unavailable form, comprised >60% of the total B in soil. Thus, fly ash can be a good soil amendment for rice production without B toxicity.  相似文献   

10.
以3年生人参榕(Ficus microcarpa)为试材,采用盆栽调控水分的方法,研究5种不同的水分处理(基质最大含水量的90%~100%,70%~80%,50%~60%,30% ~ 40%和10%~20%)对人参榕生长和生理的影响,为栽培生产提供理论依据.结果表明:随着浇水量的减少,人参榕的株高、冠幅、块根增量均显著下降(P<0.05);人参榕叶片的超氧化物歧化酶(SOD)、过氧化物酶(POD)活性显著增高(P<0.05),细胞膜相对透性显著增强,脯氨酸和丙二醛(MDA)含量也显著增加;叶片净光合速率(Pn)和蒸腾速率(Tr)呈随浇水量的减少而显著降低;但叶片水分利用效率(WUE)呈显著增加趋势;各处理的叶片初始荧光(F0)和最大光量子效率(Fv/Fm)差异不显著.在各处理中,70%~80%的最大基质含水量的处理,其人参榕叶片的细胞膜相对透性最低,保护酶活性最弱,脯氨酸和丙二醛含量最低,净光合速率高,从而导致了人参榕具有生长最快、株高、冠幅和最大块根直径增量最大的特点.可见,70%~80%的最大基质含水量为是人参榕种植效果最好的水分管理模式.  相似文献   

11.
2012年4-11月在浙江省丽水市碧湖镇下季村进行田间试验,研究等量蚕豆鲜秆还田配施不同比例常规用量化肥对单季晚稻养分吸收、养分利用率和产量的影响.试验设置不翻压蚕豆鲜秆和不施化肥(CK)、常规用量化肥(CF)及翻压15 t·hm-2(GM15)蚕豆鲜秆配施0、20%、40%、60%和80% CF共7个处理.结果表明: 在所有的蚕豆鲜秆还田配施化肥处理中,GM15+60%CF和GM15+80%CF处理的水稻N、P、K养分的总吸收量高于其他处理,但GM15+40%CF和GM15+60%CF处理的水稻N、P、K养分的农学利用效率最高.水稻稻谷产量与N、P、K的养分农学利用效率和养分生理利用效率之间均有显著的相关性,因此养分农学利用效率和养分生理利用效率2个指标可以用来准确综合评价N、P、K养分的肥效.与CK相比,CF和蚕豆鲜秆还田配施化肥处理的稻谷产量分别提高25.0%和6.1%~29.2%.在蚕豆 单季晚稻耕作制中,蚕豆鲜秆异地还田量15 t·hm-2不会使单季晚稻苗期产生僵苗现象.本试验条件下,从提高水稻产量、水稻养分利用率及降低环境风险的角度出发,蚕豆鲜秆异地还田量为15 t·hm-2时,以配施常规用量化肥60%为宜.
  相似文献   

12.
Swarup  Anand 《Plant and Soil》1993,155(1):477-480
A field experiment was conducted to evaluate the effect of three levels of Fe and two levels of Zn, and their combinations, on the growth, yield and Fe, Zn, and Mn nutrition of rice on a zinc deficient sodic soil amended with gypsum. Iron and zinc were supplied as sulphates. Application of Zn significantly enhanced the yield of rice and available soil and plant Zn irrespective of Fe application. Maximum response of rice to Zn was obtained when Fe was applied at the highest rate. While Fe application brought about a significant improvement in available soil and plant Fe and Mn, it decreased significantly Zn content of the crop. After crop harvest, recovery of added Fe was 20% and Zn 12%. Results suggest that benefits of Fe application to rice in sodic soils can only be realised if it is applied along with Zn.  相似文献   

13.
通过2018年早稻和晚稻田间试验,研究化学氮肥减量及配施稻秆生物炭对稻田土壤养分特性及植株氮素吸收的影响。试验包括6个处理:不施氮(CK)、常规施氮(N100)、减氮20%(N80)、减氮20%配施生物炭(N80+BC)、减氮40%(N60)、减氮40%配施生物炭(N60+BC)。结果表明: 与常规施氮相比,单纯减氮20%和40%或配施生物炭对早晚稻不同生育期土壤pH、有机质、全氮、铵态氮、全磷、有效磷、全钾、速效钾无显著影响;减氮20%配施生物炭显著增加晚稻分蘖期的土壤阳离子交换量(CEC),而减氮40%配施生物炭则显著增加晚稻抽穗期的电导率(EC)值。与单纯减氮相比,N80+BC的土壤速效钾含量在早晚稻抽穗期均显著升高,土壤pH值、全氮在晚稻成熟期显著增加;N60+BC的土壤全钾含量在早稻成熟期显著升高。不同处理早稻土壤硝态氮含量随生育进程逐渐降低,与分蘖期相比,抽穗期和成熟期的常规施氮土壤硝态氮含量分别降低50.0%和71.6%,而配施生物炭处理则降低6.3%~45.5%,减氮配施生物炭显著降低了硝态氮的流失。在晚稻抽穗期,减氮配施生物炭植株吸氮量显著高于常规施氮和单纯减氮,增加幅度为34.8%~52.4%。综上,适度的减氮或配施稻秆生物炭能有效保持土壤养分,促进水稻对氮素的吸收,提高氮素利用率。  相似文献   

14.
海涂土壤结构改良对水稻叶绿素荧光参数和产量的影响   总被引:2,自引:0,他引:2  
为探索添加生物炭和聚丙烯酰胺(PAM)改良海涂围垦区土壤结构对水稻叶片叶绿素荧光特性和产量的影响,开展测坑栽培试验.试验供试土壤分别设置3个水平生物炭(0%、2%、5%,分别表示为B1、B2和B3,占表层0~20 cm土重比)和PAM(0‰、0.4‰、1‰,分别表示为P1、P2和P3,占表层0~20 cm土重比)添加量处理.3年试验结果表明: 添加适宜生物炭和PAM有利于改善水稻叶片荧光特性,而高浓度生物碳和PAM对其影响不明显,甚至出现抑制现象.各生育期水稻叶片最大光化学量子产量(Fv/Fm)、实际量子产量(ΦPSⅡ)、光化学淬灭(qP)和非光化学淬灭(NPQ)均在B2P2组合处理下达到峰值.生物炭添加量处理间水稻叶片叶绿素量(SPAD值)无明显差异,而PAM添加量不同导致水稻叶片SPAD值差异显著,添加0.4‰PAM(P2)下水稻叶片SPAD值最高.添加生物炭和PAM改良盐渍土对水稻产量影响显著,在B2P2组合处理下产量最高,达到7236 kg·hm-2;与对照组(B1P1)相比,产量提高了28.5%.添加生物炭和PAM改良海涂盐渍土对水稻产量的影响主要是通过对水稻千粒重、每穴穗数、每穗粒数和结实率的影响而实现的.添加适量生物炭和PAM改良滩涂围垦区土壤结构有利于提高水稻叶绿素荧光特性和产量.  相似文献   

15.
The objectives of this field experiment were to study the growth characteristics and yield potential of rice plants under non‐flooded irrigation in arid area. Non‐flooded treatments included drip irrigation with plastic mulching treatments (DIs), furrow irrigation with plastic mulching treatment (FIM) and furrow irrigation with non‐mulching treatment (FIN). Conventional flooded cultivation (F) was check treatment (CK). The four drip irrigation treatments differed in the amount of water applied before and after panicle initiation. Root length density, leaf dry weight, shoot dry weight and root activity were generally higher in the non‐flood‐irrigated treatments (especially the drip‐irrigated treatments) than in the flood‐irrigated treatment at mid‐tillering. However, the growth and development of rice plants were limited after jointing in the non‐flooded irrigation treatments. Increasing the root/shoot ratio and root length density in the 20–40 cm depth and decreasing specific root length at 0–20 cm soil layer were important mechanisms for helping the rice plants to adapt to the non‐flooded environmental stresses. Finally, the grain yield in the non‐flooded irrigation treatments was lower than that in the F treatment. These low yields were mainly attributed to the low root length density at 0–20 cm depth and root activity. Generally speaking, the restricted degrees in the DIs were smaller than that in the FIM and FIN treatments. Among the DIs, both the highest grain yield (8223–8900 kg ha?1) and the highest water use efficiency (WUE) (0.63) were observed when the soil water content was kept at ?30 kPa before panicle initiation and at ?15 kPa after panicle initiation (referred to as the DI2 treatment). The yield in the DI2 treatment was not significantly different than that in the flood‐irrigated treatment. However, WUE was 2.5 times higher in the DI2 treatment than in the F treatment. These results suggest that drip irrigation technology can be considered as a better water‐saving cultivation of rice plants in arid region.  相似文献   

16.
A field plot experiment was conducted on two types of paddy soils in the Taihu Lake Region of China from June 2000 through 2002 to assess phosphorus (P) losses by runoff and drainage flow and the effectiveness of rice–wheat double cropping on reducing P losses from paddy soils. Commercial NPK compound fertilizer and single superphosphate fertilizer were applied to furnish 0, 30, 150, and 300 kg P ha–1 for rice season trials, and 0, 20, 80, and 160 kg P ha–1 for wheat season trials. The experiments consisted of four replicates (plots of 5 × 6 m in a randomized block design) of each treatment in Argic stagnic anthrosols (Anzhen site) and six replicates in Cumulic stagnic anthrosols (Changshu site). P30 and P20 treatments (30 and 20 kg P ha–1 in rice and wheat seasons, respectively) were considered as conventional P application rates in this area. Higher P treatments, such as P150 and P300 for rice and P80 and P160 for wheat, were intended to simulate the status of soil P in ~10–20 years with an application of P30 or P20 kg P ha–1 each season. Results revealed that the average concentration of total P (TP) in runoff samples was 0.870 mg P l–1 from P30 plots during the rice season, and 0.763 mg P l–1 from P20 plots during the wheat season in both years at the Anzhen site, while it was 0.703 and 1.292 mg P l–1, respectively, at the Changshu site. Average TP load (mass loss) at the Anzhen site with conventional P application rates was 220.9 and 439.5 g P ha–1 during rice season in 2000/2001 and 2001/2002, respectively, but was 382.3 and 709.4g P ha–1 during wheat season, respectively. Mass loss at the Changshu site was 140.4 and 165.7 g P ha–1 during the rice season and 539.1 and 1184.6 g P ha–1 during the wheat season, respectively. P losses from paddy soils were significantly greater during the wheat season, especially at the Changshu site, indicating that planting rice reduced P. Phosphate fertilizer levels significantly affected P concentrations and P loads in runoff both seasons. Both mean concentrations and average seasonal P loads from the P150/P80 plots were lower than that from the P300/P160 plots, but significantly higher than that from the P30/P20 and P0 plots. This implied that runoff P loads would be greatly increased in 10–20 years as a result of the accumulation of soil P if 50 kg P ha–1 (rice season plus wheat season) is applied each year.  相似文献   

17.
水稻生产正向资源节约和环境友好的方向转型,常规高产稻作技术亟待创新.本研究以粳稻辽星1号为试材,在2012、2013年研究密度增加、基蘖肥减少、穗肥稳定的“增密减氮”栽培模式对东北水稻产量和氮肥利用效率及温室效应的影响.结果表明: 与常规高产栽培模式相比,在基本苗增加33.3%和基蘖肥施氮量减少20.0%的条件下,氮肥农学效率和氮肥偏生产力两年平均分别提高49.6%(P<0.05)和20.4%(P<0.05),单位面积和单位产量的温室效应两年平均分别下降9.9%和12.7%(P<0.05).虽然水稻有效穗数和总生物量下降,但结实率和收获指数提高,所以产量基本稳定甚至提高.增密减氮降低了土壤NH4+-N和NO3--N浓度,提高了氮素回收效率.表明适度增密减氮可兼顾水稻高产、氮肥高效利用和温室气体减排.  相似文献   

18.
育秧箱全量施肥对水稻产量和氮素流失的影响   总被引:9,自引:0,他引:9  
采用育秧箱全量施肥技术,通过2年田间小区试验,研究中量控释氮肥(80 kg N·hm-2)、高量控释氮肥(120kgN·hm-2)和常规施肥(300 kg N·hm-2)处理对水稻产量和氮素流失的影响.结果表明:与常规施肥相比,高量控释氮肥处理的水稻产量未显著降低.常规施肥处理2年平均氮素利用率为33.2%,中量和高量控释氮肥处理的平均氮素利用率分别比常规施肥处理提高26.2%和20.7%.常规施肥处理田面水的总氮含量在施肥后1~3d达最大值,中量和高量控释氮肥处理的高峰期为施肥后7~9d,全生育期内,中量和高量控释氮肥处理田面水的总氮含量均显著低于常规施肥处理.常规施肥处理的氮素渗漏流失主要在分蘖期,中量和高量控释氮肥处理的氮素渗漏流失后移至分蘖-开花期.各处理硝态氮流失量占总氮流失量的59.7%~64.2%,高量控释氮肥处理的总氮净流失量比常规施肥处理减少51.8%.  相似文献   

19.
等距开槽结合施用石膏改良苏打盐碱土   总被引:2,自引:0,他引:2  
采用田间小区试验,研究了等距开槽结合施用石膏对东北松嫩平原西部苏打盐碱土的改良效果。结果表明:等距开槽(20~40cm心土层开槽,槽间距1m)能有效降低开槽点的土壤紧实度,对槽间土壤紧实度也有一定的降低作用,且与对照(不开槽)紧实度的差异达到极显著水平;等距开槽必须结合石膏才能改善土壤的化学性质,加石膏与未加石膏处理的pH和碱化度达到差异显著水平,而电导率值在处理前后差异不显著,开槽松土处理对槽内土壤化学性质改善效果不明显;磷石膏与脱硫石膏在改土效果上差异不显著,石膏配合开槽能有效改善土壤理化性质和植物生长状况,且对槽间土壤改良和植物生长均有一定的促进作用。  相似文献   

20.
平衡施肥对缺磷红壤性水稻土的生态效应   总被引:8,自引:0,他引:8  
为了研究平衡施肥对缺磷水稻土的生态效应,对长期缺施磷肥水稻土进行了3.5年平衡施肥试验。试验采取盆栽水稻的方式,在长期缺施磷肥的红壤性水稻土上比较不施磷肥(NK)、平衡施用氮磷钾无机肥(NPK)、无机氮磷钾肥配施硅肥(NPKSi)、无机氮磷钾肥配施有机肥(无机肥占3/5)、NPK基础上增施磷肥(NKhP)、NPKM基础上增施磷肥(NKhPM)处理的土壤肥力、土壤微生物特性、土壤磷的渗漏量以及地上部水稻产量、养分利用率、磷肥利用率的变化。试验表明,平衡施肥处理NPK、NPKSi、NPKM、NKhPM显著提高水稻产量,比不施磷肥(NK)平均增产147%,其中NPKM提高152%;能提高土壤肥力,比不施磷肥土壤有机质含量平均提高18.5%,其中NPKM提高30.1%;显著提高土壤微生物生物量,比不施磷肥土壤微生物生物量碳(MBC)平均提高57.2%,其中NPKM提高87.1%;提高氮素、钾素养分利用率,比不施磷肥平均分别提高120.3%、33.6%,其中NPKM分别提高152%、43%。而长期重施无机磷肥处理(NKhP)虽然水稻产量比不施磷肥处理提高125.1%,但因土壤中磷酸根离子含量过高影响土壤微生物正常生长,土壤微生物活度比不施磷处理降低9.4%,土壤微生物量碳(MBC)降低2.4%,稻田土壤微生物生态系统质量劣化。此外,重施磷肥处理(包括NKhP、NKhPM)易导致稻田水体的磷污染。各处理比较,NPKM综合生态效应最佳,以下依次是NKhPM、NPKSi、NPK,NKhP,NKhP对稻田土壤微生物生态系统产生负效应。根据试验结果,平衡施肥是恢复缺磷水稻土的有效措施,其中在平衡施用氮磷钾化肥的基础上增施有机肥或硅肥效果较好。  相似文献   

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