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Bioactivation of Poorly Soluble Phosphate Rocks with a Phosphorus-Solubilizing Fungus

机译:磷溶菌对难溶性磷酸盐岩的生物活化作用

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Many studies have demonstrated ineffectiveness of finely ground phosphate rock (PR) use due to the low solubility of its P contents. This study was conducted to develop a simple, effective, and environmentally sound process to improve P availability of PR to crops by using a phosphate-solubilizing fungus (PSF), Aspergillus niger BCC F.194, isolated from tropical acid soils. The optimum incubation period and the optimum level of PR were determined. The P-solubilizing effect of the supernatant of 9-d-old liquid culture supernatant (LCS) of the fungus was also determined by reacting it at various concentrations with Morrocan phosphate rock (MPR). The inoculation of the growth media with the PSF A. niger resulted in the highest P solubility of the rock after 9 d of culturing at 2.5 g L-1 MPR. Up to a certain degree, direct inoculation of fungal biomass and its LCS onto MPR caused a remarkable increase in 2% citric acid–soluble P, but not in water-soluble P content. The possibilities of using the LCS instead of H2SO4 in superphosphate (SP) production and using both with lower H3PO4 concentrations were investigated with MPR as raw materials. Replacement of H2SO4 by the LCS in the SP production process yielded a comparable 2% citric acid–soluble P content. Combining the LCS and H2SO4 reduced the consumption of H3PO4 that occurs in standard SP production. This LCS technique provides a practical means for an effective bioactivation of PR intended for both as a P fertilizer and a raw material of the SP.
机译:许多研究表明,由于磷含量低的溶解度,细碎的 磷酸盐岩(PR)的使用无效。 该研究的目的是开发一种简单,有效且实用的磷矿石。 环境友好的过程,通过使用磷酸盐增溶真菌(PSF),曲霉 niger BCC F.194,分离自热带酸性土壤。确定了最佳的 孵育时间和最佳的PR水平。 9 d龄液体 培养物上清液的P增溶作用还通过使各种浓度的真菌上清液(LCS)与Morrocan磷酸 岩石(MPR)反应来确定。用PSF A接种生长培养基。在2.5 g L -1 MPR下培养 9 d后,niger使岩石的P溶解度最高。在一定程度上,直接 将真菌生物量及其LCS接种到MPR上会导致2%柠檬酸可溶性P 显着增加,但不是 代替H 2 SO 4 的可能性以及同时使用 的可能性以 MPR为原料,研究了较低的H 3 PO 4 浓度。在 SP生产过程中用LCS取代H 2 SO 4 产生了可比的2%柠檬酸可溶的 P内容。将LCS和H 2 SO 4 组合使用可减少H 3 PO 4 >在标准SP生产中出现。这种LCS技术 提供了一种有效的生物活化 PR的实用方法,旨在同时用作P肥料和 SP的原料。< sup>

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