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10篇 您的检索式:作者名="ERDAL U G"
    题名 作者 年代 出处 被引量
1The competition between PAOs ( phosphorus accumulating organisms) and GAOs (glycogen accumulating organisms) in EBPR (enhanced biological phosphorus removal) systems at different temperatures and the effects on system performance 显示文摘ERDAL U G ERDAL Z K RANDALL C W 2003Water Sci Technol2003,47,11:1
2The competition betwecn PAOs (phosphorus accumulating organisms) and GAOs(glycogen accumulating organisms) in EBPR (enhanced biological phosphorus removal) systems at different temperatures and the effects on system performance显示文摘Erdal U G Erdal Z K Randall C W 2003Water Sci Technol2003,47,:1
3The competition between PAOs (phosphorus accumulating organisms) and GAOs (glycogen accumulating organisms) in EBPR (enhanced biological phosphorus removal) systems at different temperatures and the effects on system performance显示文摘Erdal U G Erdal Z K Randall C W 2003Wat Sci & Tech2003,47,11:1
4Biochemistry of enhanced biological phosphorus removal and anaerobic COD stabilization显示文摘Erdal Z K Erdal U G Randall C W 2005Water Sci & Tech2005,52,1011:1
5The competition between PAOs (phosphorus accumulating organisms) and GAOs (glycogen accu- mulating organisms) in EBPR (enhanced biological phosphorus removal) systems at different temperatures and the effects on system performance显示文摘Erdal U G Erdal Z K Randal C W 2003International Water Association2003,47,11:1
6The competition between PAOs ( phosphorus accumulating organisms ) and GAOs ( glycogen accumulating organisms) in EBPR (enhanced biological phosphorus removal) systems at different temperatures and effects on system performance显示文摘Erdal U G Z Erdal Z K Randall C W 2003Water Sci Technol2003,47,11:1
7Biochemistry of enhanced bio- logical phosphorus removal and anaerobic COD stabilization显示文摘Erdal Z K Erdal U G Randall C W 2005Water Science and Technology2005,52,1011:1
8The competition between PAOs (phosphorus accumulating organisms) and GAOs (glycogen accumulating organisms) in EBPR (en- hanced biological phosphorus removal) systems at different temperatures and the effects on system performance显示文摘ERDAL U G ERDAL Z K RANDALL C W 2003Wa- ter Science and Technology2003,47,11:1
9Effect of temperature on EBPR system performance and microbial community显示文摘Erdal U G Erdal Z K Randall C W 0,,14:1
10Casting properties of ASTM A128 Gr.E1 steel modified with Mn-alloying and titanium ladle treatment显示文摘This work aims to produce a high manganese steel with more refined austenite grains and better wear resistance without sacrificing the toughness and tensile properties by Mn alloying and Ti ladle treatment in comparision to ASTM A128 Gr.E1 steel (1.0C-13Mn) that is mostly used in the mining industry.The 1.0C-17Mn-xTi alloys (x=0,0.05 and 0.1,in wt.%) were prepared.A relationship was established between the microstructures and mechanical properties of the as-cast and solution annealed alloys.Increasing Ti content increases the stable Ti(CN) phase on and beside the grain boundaries and decreases up to 37% the austenite grain size of the as-cast alloy with 0.10wt.% Ti.Correspondingly,after solution annealed,optimized titanium content (0.05wt.%) results in significant improvements in wear resistance,hardness,elongation,yield and tensile strengths by 44%,31%,30%,8% and 12%,respectively,except 9% decrease in impact toughness compared to ASTM A 128 Gr.E1 steel without modification.These results show that 1.0C-17Mn-0.05Ti alloy can be used for parts exposed to high load wear and applied in conditions where relatively high tensile properties with sufficent ductility is needed.Uğur Gürol Erdal Karadeniz OzanÇoban Süleyman Can Kurnaz 2021China Foundry2021,18,3:0
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