Effects of Feedstock and Pyrolysis Temperature on Biochar Adsorption of Ammonium and Nitrate

Влияние исходного сырья и температуры пиролиза на адсорбцию аммония и нитрата биоуглем
Xiapu Gai, Hongyuan Wang, Jian Liu, Limei Zhai, Shen Liu, Tianzhi Ren, Hongbin Liu
2014-12-03

Ammonium nitrogenBiochar adsorptionFreundlich isothermNitrate nitrogenPyrolysis temperature
Biochar produced by pyrolysis of biomass can be used to counter nitrogen (N) pollution. The present study investigated the effects of feedstock and temperature on characteristics of biochars and their adsorption ability for ammonium N (NH4(+)-N) and nitrate N (NO3(-)-N). Twelve biochars were produced from wheat-straw (W-BC), corn-straw (C-BC) and peanut-shell (P-BC) at pyrolysis temperatures of 400, 500, 600 and 700°C. Biochar physical and chemical properties were determined and the biochars were used for N sorption experiments. The results showed that biochar yield and contents of N, hydrogen and oxygen decreased as pyrolysis temperature increased from 400°C to 700°C, whereas contents of ash, pH and carbon increased with greater pyrolysis temperature. All biochars could sorb substantial amounts of NH4(+)-N, and the sorption characteristics were well fitted to the Freundlich isotherm model. The ability of biochars to adsorb NH4(+)-N followed: C-BC>P-BC>W-BC, and the adsorption amount decreased with higher pyrolysis temperature. The ability of C-BC to sorb NH4(+)-N was the highest because it had the largest cation exchange capacity (CEC) among all biochars (e.g., C-BC400 with a CEC of 38.3 cmol kg(-1) adsorbed 2.3 mg NH4(+)-N g(-1) in solutions with 50 mg NH4(+) L(-1)). Compared with NH4(+)-N, none of NO3(-)-N was adsorbed to biochars at different NO3(-) concentrations. Instead, some NO3(-)-N was even released from the biochar materials. We conclude that biochars can be used under conditions where NH4(+)-N (or NH3) pollution is a concern, but further research is needed in terms of applying biochars to reduce NO3(-)-N pollution.
1
All tested biochars substantially adsorbed ammonium, with adsorption behavior well described by the Freundlich isotherm model.
2
Ammonium adsorption capacity ranked C-BC>P-BC>W-BC and decreased as pyrolysis temperature increased.
3
Corn-straw biochar showed the highest ammonium adsorption, associated with its greatest cation exchange capacity; C-BC400 adsorbed 2.3 mg NH4+-N g−1 at 50 mg NH4+ L−1.
4
Increasing pyrolysis temperature from 400°C to 700°C reduced biochar yield and N, hydrogen, and oxygen contents, while increasing ash, pH, and carbon contents.
5
None of the biochars adsorbed nitrate, and some released nitrate; therefore, their application is more suitable for ammonium pollution than nitrate pollution.

Biochars produced from wheat straw, corn straw, and peanut shells at pyrolysis temperatures of 400–700°C

The effects of feedstock and pyrolysis temperature on biochar properties and adsorption of ammonium and nitrate nitrogen

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2014-12-03
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Xiapu Gai
Hongyuan Wang
Jian Liu
Limei Zhai
Shen Liu
Tianzhi Ren
Hongbin Liu
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