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Potential of aeration flow rate and bio-char addition to reduce greenhouse gas and ammonia emissions during manure composting
Md Albarune Chowdhury
*
, Andreas de Neergaard,
Lars Stoumann Jensen
*
Corresponding author for this work
Section for Plant and Soil Sciences
157
Citations (Scopus)
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Dive into the research topics of 'Potential of aeration flow rate and bio-char addition to reduce greenhouse gas and ammonia emissions during manure composting'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Ammonia
65%
Carbon
11%
Cattle
18%
Composting
92%
Greenhouse Gases
100%
Hordeum
81%
Manure
93%
Nitrogen
11%
Trout
76%
Earth & Environmental Sciences
aeration
53%
ammonia
45%
barley
56%
carbon
5%
cattle
19%
comparison
3%
composting
59%
effect
2%
greenhouse gas
49%
greenhouse gas emissions
8%
laboratory
5%
loss
30%
low flow
28%
manure
55%
need
5%
nitrogen
5%
rate
18%
slurry
18%
straw
48%
Engineering & Materials Science
Ammonia
61%
Carbon
7%
Composting
87%
Flow rate
43%
Gas emissions
58%
Greenhouse gases
57%
Manures
80%
Nitrogen
8%
Straw
58%
Chemical Compounds
Ammonia
43%
Carbon Atom
5%
Flow
7%
Flow Kinetics
44%
Greenhouse Gas
74%
Nitrogen
6%