An effective flotation approach is proposed for improving the recovery of molybdenite fines from a finely-disseminated molybdenum ore. To maximize the flotation recovery of molybdenum, process mineralogy of raw ore, c...An effective flotation approach is proposed for improving the recovery of molybdenite fines from a finely-disseminated molybdenum ore. To maximize the flotation recovery of molybdenum, process mineralogy of raw ore, contrast tests, optimization of operation conditions and particle size analysis were systematically investigated. Process mineralogy suggests that in the raw ore, 61.63% of molybdenite particles distribute in the 〈20 pm size fraction, and intergrow with muscovite and pyrite as the contained and disseminated type. Contrast tests indicate that conventional flotation responds to poor collection efficiency for particles less than 25 pm. Oil agglomerate flotation (OAF) process demonstrates an obvious superiority in improving the flotation recovery of molybdenite fines. Furthermore, the flotation results of OAF process reveal that the dosage of transformer oil plays a critical role on the average size of collected mineral particles (d(0), agglomerates (d^0) and the molybdenum recovery. In addition, industrial tests illustrate that compared with the Mo-S bulk flotation approach, OAF process not only increases Mo recovery and grade of molybdenum concentrate by 22.75% and 17.47% respectively, but also achieves a sulfur concentrate with a superior grade of 38.92%.展开更多
Physalin B(PB),one of the major active steroidal constituents of Solanaceae Physalis plants,has a wide variety of biological activities.We found that PB significantly down-regulatedβ-amyloid(Aβ)secretion in N2a/APPs...Physalin B(PB),one of the major active steroidal constituents of Solanaceae Physalis plants,has a wide variety of biological activities.We found that PB significantly down-regulatedβ-amyloid(Aβ)secretion in N2a/APPsw cells.However,the underlying mechanisms are not well understood.In the current study,we investigated the changes in key enzymes involved inβ-amyloid precursor protein(APP)metabolism and other APP metabolites by treating N2a/APPsw cells with PB at different concentrations.The results indicated that PB reduced Aβ secretion,which was caused by down-regulation of β-secretase(BACE1)expression,as indicated at both the protein and mRNA levels.Further research revealed that PB regulated BACE1 expression by inducing the activation of forkhead box O1(FoxO1)and inhibiting the phosphorylation of signal transducer and activator of transcription 3(STAT3).In addition,the effect of PB on BACE1 expression and Aβsecretion was reversed by treatment with FoxO1 siRNA and STAT3 antagonist S3I-201.In conclusion,these data demonstrated that PB can effectively down-regulate the expression of BACE1 to reduce Aβsecretion by activating the expression of FoxO1 and inhibiting the phosphorylation of STAT3.展开更多
基金Project(2016zztsl03) supported by the Fundamental Research Funds for the Central Universities, China Project(51374249) supported by the National Natural Science Foundation of China+1 种基金 Project(2015BAB12B02) supported by the National Key Technology R&D Program of China Project(2013B090800016) supported by Guangdong Provincial Science and Technology Plan, China
文摘An effective flotation approach is proposed for improving the recovery of molybdenite fines from a finely-disseminated molybdenum ore. To maximize the flotation recovery of molybdenum, process mineralogy of raw ore, contrast tests, optimization of operation conditions and particle size analysis were systematically investigated. Process mineralogy suggests that in the raw ore, 61.63% of molybdenite particles distribute in the 〈20 pm size fraction, and intergrow with muscovite and pyrite as the contained and disseminated type. Contrast tests indicate that conventional flotation responds to poor collection efficiency for particles less than 25 pm. Oil agglomerate flotation (OAF) process demonstrates an obvious superiority in improving the flotation recovery of molybdenite fines. Furthermore, the flotation results of OAF process reveal that the dosage of transformer oil plays a critical role on the average size of collected mineral particles (d(0), agglomerates (d^0) and the molybdenum recovery. In addition, industrial tests illustrate that compared with the Mo-S bulk flotation approach, OAF process not only increases Mo recovery and grade of molybdenum concentrate by 22.75% and 17.47% respectively, but also achieves a sulfur concentrate with a superior grade of 38.92%.
基金supported by the National Natural Science Foundation(No.U1604108)Key Science and Technology Program of Henan Province(Nos.202102310020 and 182102311148)+1 种基金the Program for Innovative Research Team(in Science and Technology)in University of Henan Province(No.20IRTSTHN030)the Graduate Scientific Research Innovation Support Project of Xinxiang Medical University(No.YJSCX201866Y).
文摘Physalin B(PB),one of the major active steroidal constituents of Solanaceae Physalis plants,has a wide variety of biological activities.We found that PB significantly down-regulatedβ-amyloid(Aβ)secretion in N2a/APPsw cells.However,the underlying mechanisms are not well understood.In the current study,we investigated the changes in key enzymes involved inβ-amyloid precursor protein(APP)metabolism and other APP metabolites by treating N2a/APPsw cells with PB at different concentrations.The results indicated that PB reduced Aβ secretion,which was caused by down-regulation of β-secretase(BACE1)expression,as indicated at both the protein and mRNA levels.Further research revealed that PB regulated BACE1 expression by inducing the activation of forkhead box O1(FoxO1)and inhibiting the phosphorylation of signal transducer and activator of transcription 3(STAT3).In addition,the effect of PB on BACE1 expression and Aβsecretion was reversed by treatment with FoxO1 siRNA and STAT3 antagonist S3I-201.In conclusion,these data demonstrated that PB can effectively down-regulate the expression of BACE1 to reduce Aβsecretion by activating the expression of FoxO1 and inhibiting the phosphorylation of STAT3.