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秸秆还田配施腐熟剂对砂性土壤性质及滴灌玉米生长的影响 被引量:19
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作者 勉有明 李荣 +2 位作者 侯贤清 李培富 王西娜 《核农学报》 CAS CSCD 北大核心 2020年第10期2343-2351,共9页
为探究秸秆还田配施腐熟剂对宁夏扬黄灌区土壤改良和玉米增产的效应,在秸秆还田条件下施用3种不同腐熟剂[生物秸秆速腐剂(SR+BS)、EM菌秸秆腐熟剂(SR+RJ)、有机废物发酵菌曲(SR+OW)],以秸秆还田不施腐熟剂处理为对照(CK),研究其对秸秆... 为探究秸秆还田配施腐熟剂对宁夏扬黄灌区土壤改良和玉米增产的效应,在秸秆还田条件下施用3种不同腐熟剂[生物秸秆速腐剂(SR+BS)、EM菌秸秆腐熟剂(SR+RJ)、有机废物发酵菌曲(SR+OW)],以秸秆还田不施腐熟剂处理为对照(CK),研究其对秸秆生物失重率、砂性土壤理化性状和滴灌玉米生长及产量的影响。结果表明,3种腐熟剂均能有效促进玉米秸秆腐解,其中SR+RJ的秸秆腐解程度最佳,翻埋130 d后其秸秆生物失重率为49.9%,SR+OW和SR+BS次之,3种处理分别较CK显著提高7.1、5.7、5.2个百分点。SR+RJ对改善0~40 cm土层土壤容重效果最佳,较CK显著降低4.2%,同时显著提高了耕层土壤有机质和速效养分含量及生育中后期土壤贮水量,SR+OW和SR+BS次之。施用秸秆腐熟剂能明显促进玉米生育中后期植株生长,其中SR+RJ最佳。SR+RJ和SR+OW对玉米增产增收效果最明显,分别较CK显著增产26.9%、23.4%,显著增收28.8%、23.4%。可见,秸秆还田配施腐熟剂可有效促进玉米秸秆腐解,改善土壤理化性质,促进玉米生长发育,显著提高作物产量与经济效益,以EM菌秸秆腐熟剂效果最佳。本研究为宁夏扬黄灌区还田后促进秸秆腐熟和砂性土壤培肥及玉米高产提供了技术参考。 展开更多
关键词 秸秆还田 腐熟剂 秸秆生物失重率 砂性土壤性质 滴灌玉米生长
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Hydraulic and mechanical properties of wax-coated sands
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作者 Jesmani Mehrab Bardet Jean-Pierre +1 位作者 Jabbari Nima Kamalzare Mehrad 《Journal of Central South University》 SCIE EI CAS 2013年第12期3667-3675,共9页
Wax-coated sands are a new category of synthetic soils, which are gradually becoming a reliable construction material. Because of their valuable drainage ability and mechanical properties, wax coated sandy soils are s... Wax-coated sands are a new category of synthetic soils, which are gradually becoming a reliable construction material. Because of their valuable drainage ability and mechanical properties, wax coated sandy soils are specifically applicable to pavement construction of horseracing tracks and sport fields. Although the mechanical and hydraulic properties of these synthetic soils are well-proven, there is still a lack of studies on how the soil samples behave differently when mixing with different wax fractions. Adding the wax affects permeability and compressibility of pure sand. Intensity of influences is a function of weight percentage of wax that has been added, and other physical and environmental factors. The effects of wax content on hydraulic properties(permeability), and mechanical properties(stress strain behavior, compressibility) of sandy soils based on a series of experimental efforts were investigated. Obtained experimental results infer that increasing the amount of wax up to 6% causes an about 50% increase in permeability, mainly because of the significant effect of wax in lowering the friction along with covering and filling the angular parts of particles' surfaces and forming rounded particles. In addition, wax-coated sands show a 20% to 60% decrease in confined compression modulus compared to non wax-coated sands. 展开更多
关键词 wax-coated sand confined compression coefficient PERMEABILITY COMPRESSIBILITY stress-strain behavior
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