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污水管道中微生物对混凝土的侵蚀
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作者 乔林冉 金立兵 +2 位作者 武甜 刘鹏 薛鹏飞 《安阳工学院学报》 2023年第4期97-102,共6页
微生物侵蚀是影响混凝土污水管道长期性能的重要原因。以污水管道中微生物侵蚀为对象,综述了混凝土表面的初始缓冲与微生物的定植、硫化氢的产生与聚集机理、氧化过程与混凝土的破坏耐久性损伤过程;同时对混凝土中生物硫酸的侵蚀与化学... 微生物侵蚀是影响混凝土污水管道长期性能的重要原因。以污水管道中微生物侵蚀为对象,综述了混凝土表面的初始缓冲与微生物的定植、硫化氢的产生与聚集机理、氧化过程与混凝土的破坏耐久性损伤过程;同时对混凝土中生物硫酸的侵蚀与化学硫酸(硫酸盐)的侵蚀进行了对比;分析了影响微生物侵蚀混凝土的因素及预防措施;对微生物侵蚀混凝土的速率预测模型的优劣进行分析。最后对微生物侵蚀混凝土研究进行了展望。 展开更多
关键词 污水管道 微生物 侵蚀过程 机理 硫酸盐侵蚀
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Effects of different ridge-furrow mulching systems on yield and water use efficiency of summer maize in the Loess Plateau of China 被引量:1
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作者 CHEN Pengpeng GU Xiaobo +5 位作者 LI Yuannong qiao linran LI Yupeng FANG Heng YIN Minhua ZHOU Changming 《Journal of Arid Land》 SCIE CSCD 2021年第9期947-961,共15页
Ridge-furrow film mulching has been proven to be an effective water-saving and yield-improving planting pattern in arid and semi-arid regions.Drought is the main factor limiting the local agricultural production in th... Ridge-furrow film mulching has been proven to be an effective water-saving and yield-improving planting pattern in arid and semi-arid regions.Drought is the main factor limiting the local agricultural production in the Loess Plateau of China.In this study,we tried to select a suitable ridge-furrow mulching system to improve this situation.A two-year field experiment of summer maize(Zea mays L.)during the growing seasons of 2017 and 2018 was conducted to systematically analyze the effects of flat planting with no film mulching(CK),ridge-furrow with ridges mulching and furrows bare(RFM),and double ridges and furrows full mulching(DRFFM)on soil temperature,soil water storage(SWS),root growth,aboveground dry matter,water use efficiency(WUE),and grain yield.Both RFM and DRFFM significantly increased soil temperature in ridges,while soil temperature in furrows for RFM and DRFFM was similar to that for CK.The largest SWS was observed in DRFFM,followed by RFM and CK,with significant differences among them.SWS was lower in ridges than in furrows for RFM.DRFFM treatment kept soil water in ridges,resulting in higher SWS in ridges than in furrows after a period of no water input.Across the two growing seasons,compared with CK,RFM increased root mass by 10.2%and 19.3%at the jointing and filling stages,respectively,and DRFFM increased root mass by 7.9%at the jointing stage but decreased root mass by 6.0%at the filling stage.Over the two growing seasons,root length at the jointing and filling stages was respectively increased by 75.4%and 58.7%in DRFFM,and 20.6%and 30.2%in RFM.Relative to the jointing stage,the increased proportions of root mass and length at the filling stage were respectively 42.8%and 94.9%in DRFFM,63.2%and 115.1%in CK,and 76.7%and 132.1%in RFM,over the two growing seasons,showing that DRFFM slowed down root growth while RFM promoted root growth at the later growth stages.DRFFM treatment increased root mass and root length in ridges and decreased them in 0-30 cm soil layer,while RFM increased them in 0-30 cm soil layer.Compared with CK,DRFFM decreased aboveground dry matter while RFM increased it.Evapotranspiration was reduced by 9.8%and 7.1%in DRFFM and RFM,respectively,across the two growing seasons.Grain yield was decreased by 14.3%in DRFFM and increased by 13.6%in RFM compared with CK over the two growing seasons.WUE in CK was non-significantly 6.8%higher than that in DRFFM and significantly 22.5%lower than that in RFM across the two growing seasons.Thus,RFM planting pattern is recommended as a viable water-saving option for summer maize in the Loess Plateau of China. 展开更多
关键词 ridge-furrow mulching summer maize soil water storage soil temperature root mass root length
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