Rashid Muhammad, Hussain Qaiser, Hayat Rifat, Ahmed Mukhtar, Islam Mohammad Sohidul, Soufan Walid, Elango Dinakaran, Rajendran Karthika, Iqbal Rashid, Bhat Tauseef A, El Sabagh Ayman
Institute of Soil and Environmental Sciences, PMAS-Arid Agriculture University, Rawalpindi 46000, Pakistan.
Soil and Water Testing Laboratory for Research, Rawalpindi 46000, Pakistan.
ACS Omega. 2023 Jun 12;8(25):22732-22741. doi: 10.1021/acsomega.3c01611. eCollection 2023 Jun 27.
Conventional nitrogen (N) fertilizers particularly urea mineralized quickly in soil. Without sufficient plant uptake, this rapid mineralization favors the heavy N losses. Lignite is a naturally abundant and cost-effective adsorbent capable of extending multiple benefits as a soil amendment. Therefore, it was hypothesized that lignite as an N carrier for the synthesis of lignite-based slow-release N fertilizer (LSRNF) could offer an eco-friendly and affordable option to resolve the limitations of existing N fertilizer formulations. The LSRNF was developed by impregnating urea on deashed lignite and pelletized by a mixture of polyvinyl alcohol and starch as a binder. The results indicated that LSRNF significantly delayed the N mineralization and extended its release to >70 days. The surface morphology and physicochemical properties of LSRNF confirmed the sorption of urea on lignite. The study demonstrated that LSRNF also significantly decreased the NH-volatilization up to 44.55%, NO-leaching up to 57.01%, and NO-emission up to 52.18% compared to conventional urea. So, this study proved that lignite is a suitable material to formulate new slow-release fertilizers, suiting to alkaline calcareous soils favorably where N losses are further higher compared to non-calcareous soils.
传统氮肥尤其是尿素在土壤中矿化迅速。如果没有足够的植物吸收,这种快速矿化会导致大量氮素损失。褐煤是一种天然丰富且经济高效的吸附剂,作为土壤改良剂能带来多种益处。因此,有人提出假设,褐煤作为合成褐煤基缓释氮肥(LSRNF)的氮载体,可以提供一种环保且经济实惠的选择,以解决现有氮肥配方的局限性。LSRNF是通过将尿素浸渍在脱灰褐煤上,并以聚乙烯醇和淀粉的混合物作为粘结剂制成颗粒而开发的。结果表明,LSRNF显著延迟了氮的矿化,并将其释放延长至70天以上。LSRNF的表面形态和理化性质证实了尿素在褐煤上的吸附。该研究表明,与传统尿素相比,LSRNF还显著降低了氨挥发44.55%、硝酸盐淋失57.01%和氧化亚氮排放52.18%。所以,本研究证明褐煤是配制新型缓释肥料的合适材料,特别适合碱性石灰性土壤,在这种土壤中氮素损失比非石灰性土壤更高。