No consistent variation was found in soil respiration Q10 under various O2 conditions.Substrate C quality had a strong effect on Q10 in oxic soils.N limitation had a large impact on Q10 in soils under O2 limitation.Cu...No consistent variation was found in soil respiration Q10 under various O2 conditions.Substrate C quality had a strong effect on Q10 in oxic soils.N limitation had a large impact on Q10 in soils under O2 limitation.Current studies on the temperature sensitivity(Q10)of soil organic matter(SOM)decomposition mainly focus on aerobic conditions.However,varia-tions and determinants of Q10 in oxygen(O2)-deprived soils remain unclear.Here we incubated three grassland soils under oxic,suboxic,and anoxic conditions subjected to varying temperatures to compare variations in Q10 in relation to changing substrates.No consistent variation was found in Q10 under various O2 conditions.Further analysis of edaphic properties demon-strated that substrate carbon quality showed a strong influence on Q10 in oxic soils,whereas nitrogen limitation played a more important role in suboxic and anoxic soils.These results suggest that substrate carbon quality and nitrogen limitation may play roles of varying importance in determining the temperature sensitivity of SOM decomposition under various O2 conditions.展开更多
The relatively low sensitivity is an important reason for restricting the microbial fuel cell(MFC)sensors'application in low concentration biodegradable organic matter(BOM)detection.The startup parameters,includin...The relatively low sensitivity is an important reason for restricting the microbial fuel cell(MFC)sensors'application in low concentration biodegradable organic matter(BOM)detection.The startup parameters,including substrate concentration,anode area and external resistance,were regulated to enhance the sensitivity of MFC sensors.The results demonstrated that both the substrate concentration and anode area were positively correlated with the sensitivity of MFC sensors,and an external resistance of 210Ωwas found to be optimal in terms of sensitivity of MFC sensors.Optimized MFC sensors had lower detection limit(1 mg/L)and higher sensitivity(Slope value of the linear regression curve was 1.02),which effectively overcome the limitation of low concentration BOM detection.The essential reason is that optimized MFC sensors had higher coulombic efficiency,which was beneficial to improve the sensitivity of MFC sensors.The main impact of the substrate concentration and anode area was to regulate the proportion between electrogens and nonelectrogens,biomass and living cells of the anode biofilm.The external resistance mainly affected the morphology structure and the proportion of living cells of the anode.This study demonstrated an effective way to improve the sensitivity of MFC sensors for low concentration BOM detection.展开更多
A new type of semiconductor gas sensor fabricated on an alumina substrate for CO and CH_4 detection has been developed.The alumina substrate was obtained by an anodizing method companying with micromachining to form p...A new type of semiconductor gas sensor fabricated on an alumina substrate for CO and CH_4 detection has been developed.The alumina substrate was obtained by an anodizing method companying with micromachining to form patterned structure.Gas sensitive material was made of nano-sized SnO_2 powder prepared by a chemical precipitation method.Au (0.048wt.%) and Pd (0.3 wt%) were doped to SnO_2 powder to increase sensitivity to CO and CH_4,respectively.The heating power and sensing performance were measured with an automatic test system.The results show that the sensors have remarkable responses and certain selectivity to the target gases.Our study demonstrates that alumina substrate can be successfully applied in sensor micromachining technology.展开更多
Ten pathogenic strains were isolated fi-om gingers infected by blast, and were identified by substrate utilization test and biochemical test. The identifica- tion results showed that these ten strains accorded with th...Ten pathogenic strains were isolated fi-om gingers infected by blast, and were identified by substrate utilization test and biochemical test. The identifica- tion results showed that these ten strains accorded with the basic characteristics of Pseudomonas solanacearum. Drug sensitivity test of ten strains was carried out, and prevention agents were screened to provide an experimental basis for the control of ginger blast.展开更多
基金supported by the National Key Research and Development Program of China(No.2019YFA0607303)the National Natural Science Foundation of China(No.42107315).
文摘No consistent variation was found in soil respiration Q10 under various O2 conditions.Substrate C quality had a strong effect on Q10 in oxic soils.N limitation had a large impact on Q10 in soils under O2 limitation.Current studies on the temperature sensitivity(Q10)of soil organic matter(SOM)decomposition mainly focus on aerobic conditions.However,varia-tions and determinants of Q10 in oxygen(O2)-deprived soils remain unclear.Here we incubated three grassland soils under oxic,suboxic,and anoxic conditions subjected to varying temperatures to compare variations in Q10 in relation to changing substrates.No consistent variation was found in Q10 under various O2 conditions.Further analysis of edaphic properties demon-strated that substrate carbon quality showed a strong influence on Q10 in oxic soils,whereas nitrogen limitation played a more important role in suboxic and anoxic soils.These results suggest that substrate carbon quality and nitrogen limitation may play roles of varying importance in determining the temperature sensitivity of SOM decomposition under various O2 conditions.
基金supported by the National Natural Science Foundation of China(Nos.51525805,51727812 and 51808527)the Soft Science Research Project of Sichuan(No.2019JDR0286)the Special Research Assistant Program of Chinese Academy of Science。
文摘The relatively low sensitivity is an important reason for restricting the microbial fuel cell(MFC)sensors'application in low concentration biodegradable organic matter(BOM)detection.The startup parameters,including substrate concentration,anode area and external resistance,were regulated to enhance the sensitivity of MFC sensors.The results demonstrated that both the substrate concentration and anode area were positively correlated with the sensitivity of MFC sensors,and an external resistance of 210Ωwas found to be optimal in terms of sensitivity of MFC sensors.Optimized MFC sensors had lower detection limit(1 mg/L)and higher sensitivity(Slope value of the linear regression curve was 1.02),which effectively overcome the limitation of low concentration BOM detection.The essential reason is that optimized MFC sensors had higher coulombic efficiency,which was beneficial to improve the sensitivity of MFC sensors.The main impact of the substrate concentration and anode area was to regulate the proportion between electrogens and nonelectrogens,biomass and living cells of the anode biofilm.The external resistance mainly affected the morphology structure and the proportion of living cells of the anode.This study demonstrated an effective way to improve the sensitivity of MFC sensors for low concentration BOM detection.
文摘A new type of semiconductor gas sensor fabricated on an alumina substrate for CO and CH_4 detection has been developed.The alumina substrate was obtained by an anodizing method companying with micromachining to form patterned structure.Gas sensitive material was made of nano-sized SnO_2 powder prepared by a chemical precipitation method.Au (0.048wt.%) and Pd (0.3 wt%) were doped to SnO_2 powder to increase sensitivity to CO and CH_4,respectively.The heating power and sensing performance were measured with an automatic test system.The results show that the sensors have remarkable responses and certain selectivity to the target gases.Our study demonstrates that alumina substrate can be successfully applied in sensor micromachining technology.
基金Supported by Science and Technology Development Project of Shandong Province(2011YD210220)
文摘Ten pathogenic strains were isolated fi-om gingers infected by blast, and were identified by substrate utilization test and biochemical test. The identifica- tion results showed that these ten strains accorded with the basic characteristics of Pseudomonas solanacearum. Drug sensitivity test of ten strains was carried out, and prevention agents were screened to provide an experimental basis for the control of ginger blast.