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首页> 外文期刊>Journal of soil & sediments >Partial substitution of chemical fertilizers with organic amendments increased rice yield by changing phosphorus fractions and improving phosphatase activities in fluvo-aquic soil
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Partial substitution of chemical fertilizers with organic amendments increased rice yield by changing phosphorus fractions and improving phosphatase activities in fluvo-aquic soil

机译:通过改变潮汐土壤中的磷含量和改善磷酸酶活性,用有机改良剂部分替代化学肥料可以提高水稻产量。

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Purpose The aim of this study was to investigate the effect of combined use of chemical fertilizers with wheat straw and swine manure on rice yield and phosphorus (P) fractions distribution. Materials and methods We selected two field experiments, both located in Hefei, Anhui province of China. We named these experimental sites as HF-1 and HF-2. The experiments HF-1 and HF-2 were initiated on 2013 and 2015 respectively in fluvo-aquic soil. Treatments included CK (no fertilizer), NPK (chemical fertilizers), NPKS (chemical fertilizers plus wheat straw), and NPKM (chemical fertilizers plus swine manure at HF-1, and chemical fertilizers plus fermented wheat straw at HF-2). Results and discussion Results showed that NPKS and NPKM treatments increased grain yield, P use efficiency (PUE), P recovery efficiency, and partial factor productivity, and decreased apparent P balance compared with CK and NPK at both sites. NPKS and NPKM improved pH, organic matter, and nutrient contents in surface soil (0-20 cm) and also improved pH and organic matter content in sub-surface soil (20-40 cm), compared with CK and NPK treatments. Olsen P content in both soil depths was highest under NPKM, but NPKS had lower Olsen P content in sub-surface soil compared with that of NPK. Organic amendments changed P fractions and increased labile P and moderately labile P fractions, and decreased residual P compared with NPK. Organic amendments with chemical fertilizers also improved acid phosphomonoesterase and phosphodiesterase activities compared with chemical fertilization. In addition, path analysis showed relationship between soil properties and P mobility, and also explained soil properties influencing grain yield by changing PUE. Conclusions Our results suggested that organic amendments improve crop yield through improving PUE by changing soil P fractions and increasing the phosphatase activities.
机译:目的本研究的目的是研究将化肥与麦秸和猪粪肥联合使用对水稻产量和磷(P)组分分布的影响。材料和方法我们选择了两个现场实验,均位于中国安徽省合肥市。我们将这些实验地点命名为HF-1和HF-2。 HF-1和HF-2实验分别于2013年和2015年在潮土中启动。处理包括CK(无肥料),NPK(化肥),NPKS(化肥加麦秸)和NPKM(化肥加猪粪在HF-1,化肥加发酵的麦草在HF-2)。结果与讨论结果表明,与CK和NPK相比,NPKS和NPKM处理提高了谷物产量,磷的利用效率(PUE),磷的回收效率和部分因子生产率,并降低了表观P平衡。与CK和NPK处理相比,NPKS和NPKM改善了表层土壤(0-20 cm)的pH,有机质和养分含量,还改善了表下土壤(20-40 cm)的pH和有机质含量。在NPKM下,两种土壤深度的Olsen P含量最高,但与NPK相比,NPKS在地下土壤中的Olsen P含量较低。与NPK相比,有机修饰物改变了P分数,增加了不稳定P和中度不稳定P分数,并降低了残留P。与化学肥料相比,化学肥料的有机改良剂还改善了酸性磷酸单酯酶和磷酸二酯酶的活性。此外,路径分析显示了土壤性质与磷迁移率之间的关系,并解释了土壤性质通过改变PUE影响谷物产量。结论我们的结果表明,有机改良剂通过改变土壤P含量和增加磷酸酶活性,通过改善PUE来提高作物产量。

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