Shah Jawad Ali, Chu Guixin
Department of Environmental Science and Engineering, College of Life Science, Shaoxing University, Shaoxing City, Zhejiang, P.R. China.
PeerJ. 2021 Jul 5;9:e11493. doi: 10.7717/peerj.11493. eCollection 2021.
Short-chain polyphosphate fertilizers have been increasingly applied in agriculture, but little is known about the chemical behaviors of polyphosphate in soils. Herein, a cylinder experiment was carried out to investigate the influences of different P types (i.e., mono-ammonium phosphate (MAP), phosphoric acid (PA) and ammonium polyphosphate (poly-P)) and their application methods (single vs split) on the mobility and availability of P in soil through a column millimeter-scale slice cutting method; meanwhile a soil microcosm experiment (560-day) was conducted to investigate the effects of different P types on phosphorus dynamic transformation. Polyphosphate addition significantly increased P mobility. The average distance of P downward movement (81.5 mm) in soil profile in the poly-P application treatment increased by 33.6% and 81.1%, respectively, compared to the MAP and PA treatments. Different P application methods also markedly influenced phosphorus mobility. For instance, the average distance of P vertical movement in the split P application treatment was 21.2% higher than in the single application treatment, indicating that split P addition significantly increased P downward movement. Moreover, polyphosphate application decreased soil P fixation by blocking the transformation of the applied-P from labile to recalcitrant forms (HCl-P and residual-P). Overall, our findings provide meaningful information to current phosphorus fertilization practice in increasing soil P mobility and bioavailability. We suggest that polyphosphate could be regarded as an alternative P source used in agriculture, and split polyphosphate application is recommended as an effective P fertilization strategy.
短链聚磷酸肥料在农业中的应用越来越广泛,但人们对聚磷酸在土壤中的化学行为了解甚少。在此,通过柱毫米级切片法进行了一项柱体试验,以研究不同磷类型(即磷酸一铵(MAP)、磷酸(PA)和聚磷酸铵(poly-P))及其施用方式(单次施用与分次施用)对土壤中磷的迁移性和有效性的影响;同时进行了一项为期560天的土壤微观试验,以研究不同磷类型对磷动态转化的影响。添加聚磷酸显著提高了磷的迁移性。与MAP和PA处理相比,聚磷酸施用处理中土壤剖面中磷向下移动的平均距离(81.5毫米)分别增加了33.6%和81.1%。不同的磷施用方式也显著影响磷的迁移性。例如,分次施磷处理中磷垂直移动的平均距离比单次施用处理高21.2%,这表明分次施磷显著增加了磷的向下移动。此外,施用聚磷酸通过阻止施用的磷从易变形态转化为难分解形态(HCl-P和残留-P),从而降低了土壤对磷的固定。总体而言,我们的研究结果为当前磷肥施用实践在提高土壤磷迁移性和生物有效性方面提供了有意义的信息。我们建议聚磷酸可被视为农业中使用的替代磷源,并且推荐分次施用聚磷酸作为一种有效的磷肥施用策略。