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Phosphorus Sorption and Desorption in Soils Amended with Subabul Biochar

机译:亚马克生物炭修正的土壤中的磷吸附和解吸

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Phosphorus sorption mechanism after biochar application is important to understand the bioavailability of P to crops. The knowledge on P adsorption mechanism on biochar is still poorly understood, and therefore the present study was undertaken with varying biochar rates (0, 1, 3, 5%) on two soils, i.e., one taken from control plot (S1) and another from 100% NPK (S2) plots under long-term fertilizer experiment of red soils by fitting the equilibrium solution and sorbed concentrations of P using adsorption isotherms. Results showed that P sorption increased with higher biochar application rates and soils of S2 (701.8-840.1 mg kg(-1)) sorbed more P than S1 (534.7-742.4 mg kg(-1)) with 0-5% biochar rate. Phosphate adsorption on biochar was satisfactorily described by the Langmuir equation (r(2) = 0.97-0.99, P = 0.01) and Freundlich equation (r(2) = 0.89-0.99, P = 0.01). Phosphorus sorption increased with biochar application rates (0-5%). Desorption experiment showed lower P release and suggests a partial or slow irreversibility of the adsorption-desorption phenomena upon biochar addition to soil. In fertilizer-applied soil (S2) loaded with 60 mg P kg(-1) (as KH2PO4), desorption increased with increase in biochar application rates. Biochar application thus alters P availability depending upon P sorption and desorption capacities of soils which have implications for improving P use efficiency in soils.
机译:生物炭剂应用后的磷吸附机制对于了解P对作物的生物利用度非常重要。对Biochar的P吸附机制知识仍然差,因此,本研究采用两种土壤的不同生物炭率(0,1,3,5%)进行,即从对照图中取出(S1)和另一个土壤通过使用吸附等温线拟合平衡溶液和含量的P浓度,从100%NPK(S2)图下的红色土壤中的长期肥料试验。结果表明,PIOCHAR应用速率和S2的土壤增加了P吸附(701.8-840.1mg kg(-1))比S1(534.7-742.4 mg kg(-1)),Biochar率为0-5%。 Langmuir方程(R(2)= 0.97-0.99,P = 0.01)和Freundlich等式(R(2)= 0.89-0.99,p = 0.01),磷酸盐对生物炭的吸附令人满意的描述磷吸附随生物炭施用率(0-5%)增加。解吸实验显示P释放较低,并表明在对土壤中的生物炭加入吸附 - 解吸现象的部分或缓慢不可逆转。在肥料施加的土壤(S2)上装载60mg p kg(-1)(作为KH 2 PO 4),解吸随着生物炭施用率的增加而增加。因此,BioChar申请改变了P可用性,这取决于对土壤的PIRPITION和解吸能力有影响来改善土壤中的P使用效率的土壤。

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