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不同灌水量和矿化度对小麦生长影响的试验研究 被引量:6
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作者 张济斌 蒋静 +2 位作者 马娟娟 冯绍元 李国安 《节水灌溉》 北大核心 2016年第5期1-5,11,共6页
通过在西北旱区石羊河流域开展的田间小麦咸水灌溉试验,研究了咸水灌溉对小麦生长指标及产量的影响。试验设置2个因素,灌水量3个水平W1、W2、W3(355、280、205mm),灌水矿化度4个水平S1、S2、S3、S4(0.7、3.0、5.0、7.0g/L)。试验结... 通过在西北旱区石羊河流域开展的田间小麦咸水灌溉试验,研究了咸水灌溉对小麦生长指标及产量的影响。试验设置2个因素,灌水量3个水平W1、W2、W3(355、280、205mm),灌水矿化度4个水平S1、S2、S3、S4(0.7、3.0、5.0、7.0g/L)。试验结果表明:在相同灌水量条件下,随灌水矿化度的增加,株高降低2.7%~16.0%,叶面积指数降低9.65%~28.28%、产量降低1.81%~27.02%、干物质减少15.66%~34.42%;在相同灌水矿化度条件下,随灌水量的减少,株高降低1.37%~11.67%、叶面积指数降低14.07%~20.45%、减产7.31%~27.33%、干物质减少10.26%~49.04%。在充分灌溉(355mm)处理下,与0.7g/L相比3.0g/L处理对小麦各生理指标影响差异较小,株高相差小于1cm、叶面积指数减少7.6%、减产1.81%、干物质减少7.1%。因此,灌水量355mm和矿化度3.0g/L可应用于该地区小麦灌溉。 展开更多
关键词 小麦咸水灌溉 株高 叶面积指数 小麦干物质 小麦产量
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Winter Wheat Salt Tolerance Appraisal Indices with Varied Mineral Content of Saline Water 被引量:1
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作者 曹彩云 党红凯 +4 位作者 李科江 马俊永 郑春莲 王广才 李伟 《Agricultural Science & Technology》 CAS 2014年第7期1134-1139,共6页
[Objective] The aim was to study wheat salt resistance appraisal indicators under the condition of saline water irrigation.[Method] A trial was conducted with five varieties irrigated with saline water at 1,2,4,6,and ... [Objective] The aim was to study wheat salt resistance appraisal indicators under the condition of saline water irrigation.[Method] A trial was conducted with five varieties irrigated with saline water at 1,2,4,6,and 8 g/L during 2009-2010 and 2010-2011 in the research station of Dry-land Farming Institute of Hebei Academy of Agricultural and Forestry Sciences.With standardized indicators for measuring treatment,the response relations among different salt stress levels and winter wheat growth index were analyzed in this study.[Result] Under the condition of different salinity of irrigation,relative plant height after jointing stage,relative leaf area index,relative dry matter weight,relative ear number per unit area showed significant differences among treatments and yield showed significant correlation,which can be taken as salt-resistance examination index of wheat.[Conclusion] The results showed that the relative height after jointing stage was recommended as the most practical salt-tolerance appraisal indices,because it was easy to be observed and sensitive to salt stress. 展开更多
关键词 Winter wheat Mineral content Salt tolerance Appraisal indices
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Soil Properties and Wheat Growth and Nutrients as Affected by Compost Amendment Under Saline Water Irrigation 被引量:10
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作者 A.M.MAHDY 《Pedosphere》 SCIE CAS CSCD 2011年第6期773-781,共9页
A greenhouse experiment was conducted to test and compare the suitability of saline compost and saline irrigation water for nutrient status amendment of a slightly productive sandy clay loam soil, to study the macronu... A greenhouse experiment was conducted to test and compare the suitability of saline compost and saline irrigation water for nutrient status amendment of a slightly productive sandy clay loam soil, to study the macronutrient utilization and dry matter production of wheat (Triticum aestivum c.v. Gemmiza 7) grown in a modified soil environment and to determine the effects of compost and saline irrigation water on soil productivity. The sandy clay loam soil was treated with compost of five rates (0, 24, 36, 48, and 60 m3 ha-1, equivalent to 0, 3, 4.5, and 6 g kg-1 soil, respectively) and irrigation water of four salinity levels (0.50 (tap water), 4.9, 6.3, and 8.7 dS m-l). The results indicated that at harvest, the electrical conductivity (EC) of the soil was significantly (P 〈 0.05) changed by the compost application as compared to the control. In general, the soil salinity significantly increased with increasing application rates of compost. Soluble salts, K, C1, HCO3, Na, Ca, and Mg, were significantly increased by the compost treatment. Soil sodium adsorption ratio (SAR) was significantly affected by the salinity levels of the irrigation water, and showed a slight response to the compost application. The soil organic carbon content was also significantly (P 〈 0.05) affected by application of compost, with a maximum value of 31.03 g kg-1 recorded at the compost rate of 60 m3 ha-1 and the irrigation water salinity level of 8.7 dS m-1 and a minimum value of 12.05 g kg-1 observed in the control. The compost application produced remarkable increases in wheat shoot dry matter production. The maximum dry matter production (75.11 g pot-1) occurred with 60 ma ha-1 compost and normal irrigation water, with a minimum of 19.83 g pot-1 with no addition of compost and irrigation water at a salinity level of 8.70 dS m-1. Significant increases in wheat shoot contents of K, N, P, Na, and C1 were observed with addition of compost. The relatively high shoot N values may be attributed to increases in N availability in the tested soil caused by the compost application. Similarly, significant increases in the shoot contents of Na and C1 may be ascribed to the increase in soil soluble K and Cl. The increases in shoot P, N, and K contributed to the growth stimulation since P supplied by the compost was probably responsible in saline and alkaline soils where P solubility was very low. 展开更多
关键词 electrical conductivity plant dry matter soil organic C soil sodium adsorption ratio soluble salts
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