Application of hydrochar and pyrochar to manure is not effective for mitigation of ammonia emissions from cattle slurry and poultry manure

被引:0
作者
M. Gronwald
M. Helfrich
A. Don
R. Fuß
R. Well
H. Flessa
机构
[1] Thünen-Institute of Climate-Smart Agriculture,
来源
Biology and Fertility of Soils | 2018年 / 54卷
关键词
Nitrogen; Cattle slurry; Poultry manure; Pyrochar; Hydrochar; pH; Soil;
D O I
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学科分类号
摘要
Nitrogen (N) loss as ammonia (NH3) from agricultural systems is one of the major sources of atmospheric pollutants and is responsible for more than 50% of global NH3 emissions. Ammonia volatilization from animal manures may be altered by amendment with chars derived from pyrolysis (pyrochars) or hydrothermal carbonization (hydrochars) by providing exchange sites for ammonium (NH4+) or changing the pH of manure. Pyrochar and hydrochar differ in chemical and structural composition, specific surface area, and pH and therefore may affect NH3 volatilization differently. In a laboratory incubation experiment, we investigated the effect of pyrochar (pH 9.0) and hydrochar (pH 3.8) from Miscanthus on NH3 emission after addition to poultry manure and cattle slurry. We analyzed manure treatments with and without char addition and acidification and determined the effect of char addition on immobilization of manure-derived NH4+. Ammonia emission from pure poultry manure amounted 84% of the applied NH4+-N, while 67% of the applied NH4+-N was lost as NH3 from cattle slurry. Addition of pyrochar or hydrochar had no or only marginal effects on NH3 emissions except for a reduction in NH3 emissions by 19% due to hydrochar application to CS (p < 0.05), which seems to be primarily related to the char pH. Sorption of NH4+ by admixture of chars to manure was generally small: between 0.1- and 0.5-mg NH4+-N g−1 chars were sorbed. This corresponds to between 0.1 and 3.5% of the NH4+ applied, which obviously was not strong enough to reduce emissions of NH3. Overall, our results do not provide evidence that addition of pyrochar or hydrochar to cattle slurry and poultry manure is an effective measure to reduce NH3 volatilization.
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页码:451 / 465
页数:14
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共 270 条
[41]  
Mao JD(2006)Nutrient accumulation and movement from poultry litter Nutr Cycl Agroecosyst 74 259-273
[42]  
Cassity-Duffey K(2012)Calibration of a simple method for determining ammonia volatilization in the field—comparative measurements in Henan Province, China J Environ Qual 41 88-94
[43]  
Cabrera M(1986)Effects of cattle slurry acidification on ammonia and methane evolution during storage J Soil Sci 37 21-29
[44]  
Mowrer J(1996)A model of ammonia volatilization from applied urea. 2. Experimental testing Plant Soil 181 123-129
[45]  
Kissel D(2012)Laboratory measurements and simulations of ammonia volatilization from urea applied to calcareous Chinese loess soils J Environ Qual 41 1107-1114
[46]  
Chen CR(2012)Impact of biochar enriched with dairy manure effluent on carbon and nitrogen dynamics J Environl Qual 41 1001-1013
[47]  
Phillips IR(2014)One step forward toward characterization: some important material properties to distinguish biochars Agric Ecosyst Environ 191 39-52
[48]  
Condron LM(1995)Biochar, hydrochar and uncarbonized feedstock application to permanent grassland—effects on greenhouse gas emissions and plant growth J Agric Sci 124 45-53
[49]  
Goloran J(1995)The chemical buffer system in raw and digested animal slurry J Agric Sci 124 447-453
[50]  
Xu ZH(2017)A simple model of pH in slurry J Environ Qual 46 514-521