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优化施肥与生物炭施用对紫色土坡耕地磷素流失的影响

[Effect of Optimized Fertilization and Biochar Application on Phosphorus Loss in Purple Soil Sloping Farmland].

作者信息

Luo Dong-Hai, Wang Zi-Fang, Long Yi, Yan Dong-Chun, Xu Guo-Xing, Li Jiao, Gao Ming

机构信息

College of Resource and Environment, Southwest University, Chongqing 400715, China.

Institute of Mountain Hazards and Environment, Chinese Academy of Sciences and Ministry of Water Resources, Chengdu 610041, China.

出版信息

Huan Jing Ke Xue. 2020 Mar 8;41(3):1286-1295. doi: 10.13227/j.hjkx.201909221.

Abstract

Phosphorus is an essential nutrient for crop growth, but the input of excess phosphorus is a significant cause of eutrophication. This study explored the relationship between fertilization methods and phosphorus loss in actual production, providing a theoretical basis for scientific fertilization and rational reduction of fertilizer application. In the experiment, a wild-type OD flow plot was used to monitor the occurrence of multiple rainfall runoff and sediment yield in purple soil sloping farmland in 2017-2018. Four different schemes of non-fertilizer treatment, conventional fertilization treatment, optimized fertilization treatment, and reduced fertilization combined with biochar were studied. The effects of soil flow, surface runoff, and sediment phosphorus loss on purple soil sloping farmland were analyzed. The results showed that:①The total yield of each treatment was optimized (20737.23 L) > conventional (18513.17 L) > CK (18134.58 L) > biochar (13594.85 L), and the total sediment yield of each treatment was CK (1998 kg·hm) > biochar (1884 kg·hm) > optimized (1681 kg·hm) > conventional (910 kg·hm). The middle stream of soil is the main type of runoff in the rainy season, accounting for 60.14%-87.34% of the total output flow. The total amount of sediment produced by each treatment was not significantly different from that of the conventional treatment (>0.05). ②The flux of total phosphorus loss in each treatment was characterized by sediment > surface runoff > soil middle flow. Phosphorus lost through the middle stream of soil is the least, accounting for only 2.63%-12.91% of the flux of total phosphorus loss, while the flux of sediment loss of phosphorus can reach 63.74%-78.74%, and thus is the main output route of soil phosphorus loss. ③The application of biochar can effectively reduce the abortion flow in the soil of purple soil sloping land, and the loss flux of orthophosphate in the middle stream, which are 49.94% and 56.45% lower than the conventional treatment, respectively. However, the interception effect on surface runoff is not good, and there is no significant influence on the flux loss of particulate phosphorus. At the same time, the flux of total phosphorus in surface runoff and sediment is significantly increased by 73.28% and 123.53%, respectively, compared with conventional treatment (<0.05). Therefore, to control the loss of phosphorus in purple soil sloping farmland in southwest China, we should focus on reducing the occurrence of soil sediment loss. Bio-carbon should be further optimized in the practical application of agricultural production with the phosphorus fertilizer input ratio.

摘要

磷是作物生长必需的养分,但过量磷输入是水体富营养化的重要原因。本研究探讨了实际生产中施肥方式与磷素流失的关系,为科学施肥和合理减施化肥提供理论依据。试验采用野外型径流小区,于2017—2018年监测紫色土坡耕地多次降雨径流及产沙情况。研究了不施肥处理、常规施肥处理、优化施肥处理和减施化肥并添加生物炭4种不同方案,分析了紫色土坡耕地土壤中流、地表径流和泥沙磷流失情况。结果表明:①各处理总产量表现为优化(20737.23 L)>常规(18513.17 L)>对照(18134.58 L)>生物炭(13594.85 L),各处理总产沙量表现为对照(1998 kg·hm)>生物炭(1884 kg·hm)>优化(1681 kg·hm)>常规(910 kg·hm)。土壤中流是雨季径流的主要类型,占总产流量的60.14% - 87.34%。各处理产沙总量与常规处理差异不显著(>0.05)。②各处理总磷流失通量表现为泥沙>地表径流>土壤中流。通过土壤中流流失的磷最少,仅占总磷流失通量的2.63% - 12.91%,而泥沙中磷流失通量可达63.74% - 78.74%,是土壤磷流失的主要输出途径。③添加生物炭能有效减少紫色土坡耕地土壤中壤中流及中流中正磷酸盐流失通量,分别比常规处理降低49.94%和56.45%。但对地表径流拦截效果不佳且对颗粒态磷流失通量影响不显著。同时,与常规处理相比,地表径流和泥沙中总磷通量分别显著增加73.28%和123.53%(<0.05)。因此,要控制西南地区紫色土坡耕地磷素流失,应重点减少土壤泥沙流失的发生。在农业生产实际应用中应结合磷肥投入比例对生物炭进行进一步优化。

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