409
Views
3
CrossRef citations to date
0
Altmetric
Research Article

Effects of bamboo biochar on nitrogen conservation during co-composting of layer manure and spent mushroom substrate

, , , , , , , & show all
Pages 3861-3869 | Received 20 Feb 2021, Accepted 21 May 2021, Published online: 11 Jun 2021

References

  • Kumar M, Ou YL, Lin JG. Co-composting of green waste and food waste at low C/N ratio. Waste Manag. 2010;30:602–609.
  • Schlegel AJ, Assefa Y, Bond HD, et al. Changes in soil nutrients after 10 years of cattle manure and swine effluent application. Soil and Tillage Research. 2017;172:48–58.
  • Kong Z, Wang X, Liu Q, et al. Evolution of various fractions during the windrow composting of chicken manure with rice chaff. J Environ Manage. 2018;207:366–377.
  • Ravindran B, Nguyen DD, Chaudhary DK, et al. Influence of biochar on physico-chemical and microbial community during swine manure composting process. J Environ Manage. 2019;232:592–599.
  • Zubair M, Wang S, Zhang P, et al. Biological nutrient removal and recovery from solid and liquid livestock manure: recent advance and perspective. Bioresour Technol. 2020;301:122823.
  • Pratt C, Redding M, Hill J, et al. Does manure management affect the latent greenhouse gas emitting potential of livestock manures? Waste Manag. 2015;46:568–576.
  • Ni JQ, Heber AJ, Hanni SM, et al. Characteristics of ammonia and carbon dioxide releases from layer hen manure. Br Poult Sci. 2010;51:326–334.
  • Huang GF, Wu QT, Wong JW, et al. Transformation of organic matter during co-composting of pig manure with sawdust. Bioresour Technol. 2006;97:1834–1842.
  • Sanchez-Garcia M, Alburquerque JA, Sanchez-Monedero MA, et al. Biochar accelerates organic matter degradation and enhances N mineralisation during composting of poultry manure without a relevant impact on gas emissions. Bioresour Technol. 2015;192:272–279.
  • Guo R, Li G, Jiang T, et al. Effect of aeration rate, C/N ratio and moisture content on the stability and maturity of compost. Bioresour Technol. 2012;112:171–178.
  • Hrebeckova T, Wiesnerova L, Hanc A. Change in agrochemical and biochemical parameters during the laboratory vermicomposting of spent mushroom substrate after cultivation of Pleurotus ostreatus. Sci Total Environ. 2020;739:140085.
  • Wei Y, Jin Z, Zhang M, et al. Impact of spent mushroom substrate on Cd immobilization and soil property. Environ Sci Pollut Res Int. 2020;27:3007–3022.
  • Liu Y, Ma R, Li D, et al. Effects of calcium magnesium phosphate fertilizer, biochar and spent mushroom substrate on compost maturity and gaseous emissions during pig manure composting. J Environ Manage. 2020;267:110649.
  • Lou Z, Sun Y, Bian S, et al. Nutrient conservation during spent mushroom compost application using spent mushroom substrate derived biochar. Chemosphere. 2017;169:23–31.
  • Meng L, Li W, Zhang X, et al. Influence of spent mushroom substrate and molasses amendment on nitrogen loss and humification in sewage sludge composting. Heliyon. 2020;6.
  • Peng Y, Sun Y, Hanif A, et al. Design and fabrication of exfoliated Mg/Al layered double hydroxides on biochar support. Journal of Cleaner Production. 2021;289:125142.
  • Meng L, Zhang S, Gong H, et al. Improving sewage sludge composting by addition of spent mushroom substrate and sucrose. Bioresour Technol. 2018;253:197–203.
  • Agyarko-Mintah E, Cowie A, Van Zwieten L, et al. Biochar lowers ammonia emission and improves nitrogen retention in poultry litter composting. Waste Manag. 2017;61:129–137.
  • Peng Y, Sun Y, Sun R, et al. Optimizing the synthesis of Fe/Al (Hydr)oxides-Biochars to maximize phosphate removal via response surface model. Journal of Cleaner Production. 2019;237:117770.
  • Liu J, Ren S, Cao J, et al. Highly efficient removal of thallium in wastewater by MnFe2O4-biochar composite. Journal of Hazardous Materials. 2021;401:123311.
  • Peng Y, Sun Y, Fan B, et al. Fe/Al (hydr)oxides engineered biochar for reducing phosphorus leaching from a fertile calcareous soil. Journal of Cleaner Production. 2021;279:123877.
  • Cui S, Zhang R, Peng Y, et al. New insights into ball milling effects on MgAl-LDHs exfoliation on biochar support: A case study for cadmium adsorption. Journal of Hazardous Materials. 2021;416:126258.
  • Qu J, Zhang L, Zhang X, et al. Biochar combined with gypsum reduces both nitrogen and carbon losses during agricultural waste composting and enhances overall compost quality by regulating microbial activities and functions. Bioresour Technol. 2020;314:123781.
  • Janczak D, Malinska K, Czekala W, et al. Biochar to reduce ammonia emissions in gaseous and liquid phase during composting of poultry manure with wheat straw. Waste Manag. 2017;66:36–45.
  • Yuan J, Li Y, Chen S, et al. Effects of phosphogypsum, superphosphate, and dicyandiamide on gaseous emission and compost quality during sewage sludge composting. Bioresour Technol. 2018;270:368–376.
  • Yang F, Li G, Shi H, et al. Effects of phosphogypsum and superphosphate on compost maturity and gaseous emissions during kitchen waste composting. Waste Manag. 2015;36:70–76.
  • Lee JE, Rahman MM, Ra CS. Dose effects of Mg and PO4 sources on the composting of swine manure. J Hazard Mater. 2009;169:801–807.
  • Chen H, Awasthi SK, Liu T, et al. Effects of microbial culture and chicken manure biochar on compost maturity and greenhouse gas emissions during chicken manure composting. J Hazard Mater. 2020;389:121908.
  • Duan Y, Awasthi SK, Liu T, et al. Response of bamboo biochar amendment on volatile fatty acids accumulation reduction and humification during chicken manure composting. Bioresour Technol. 2019;291:121845.
  • Liu D, Zhang R, Wu H, et al. Changes in biochemical and microbiological parameters during the period of rapid composting of dairy manure with rice chaff. Bioresour Technol. 2011;102:9040–9049.
  • Jindo K, Sanchez-Monedero MA, Hernandez T, et al. Biochar influences the microbial community structure during manure composting with agricultural wastes. Sci Total Environ. 2012;416:476–481.
  • Zhang L, Sun X. Changes in physical, chemical, and microbiological properties during the two-stage co-composting of green waste with spent mushroom compost and biochar. Bioresour Technol. 2014;171:274–284.
  • Wei L, Shutao W, Jin Z, et al. Biochar influences the microbial community structure during tomato stalk composting with chicken manure. Bioresour Technol. 2014;154:148–154.
  • Ren X, Wang Q, Zhang Y, et al. Improvement of humification and mechanism of nitrogen transformation during pig manure composting with Black Tourmaline. Bioresour Technol. 2020;307:123236.
  • Zhang H, Marchant-Forde JN, Zhang X, et al. Effect of Cornstalk biochar immobilized bacteria on ammonia reduction in laying hen manure composting. Molecules. 2020;25.
  • Malińska K, Zabochnicka-Świątek M, Cáceres R, et al. The effect of precomposted sewage sludge mixture amended with biochar on the growth and reproduction of Eisenia fetida during laboratory vermicomposting. Ecol Eng. 2016;90:35–41.
  • Cole DP, Smith EA, Lee YJ. High-resolution mass spectrometric characterization of molecules on biochar from pyrolysis and gasification of switchgrass. Energy Fuels. 2012;26:3803–3809.
  • Khan N, Clark I, Sanchez-Monedero MA, et al. Maturity indices in co-composting of chicken manure and sawdust with biochar. Bioresour Technol. 2014;168:245–251.
  • Andersen JK, Boldrin A, Christensen TH, et al. Mass balances and life cycle inventory of home composting of organic waste. Waste Manag. 2011;31:1934–1942.
  • Huang GF, Wong JW, Wu QT, et al. Effect of C/N on composting of pig manure with sawdust. Waste Manag. 2004;24:805–813.
  • Yu H, Xie B, Khan R, et al. The changes in functional marker genes associated with nitrogen biological transformation during organic-inorganic co-composting. Bioresour Technol. 2020;295:122197.
  • Sánchez A, Artola A, Font X, et al. Greenhouse gas emissions from organic waste composting. Environ Chem Lett. 2015;13:223–238.
  • Jiang T, Schuchardt F, Li GX, et al. Gaseous emission during the composting of pig feces from Chinese ganqinfen system. Chemosphere. 2013;90:1545–1551.
  • Pagans E, Barrena R, Font X, et al. Ammonia emissions from the composting of different organic wastes. dependency on process temperature. Chemosphere. 2006;62:1534–1542.
  • Yang Y, Awasthi J, Wu L, et al. Role and multi-scale characterization of bamboo biochar during poultry manure aerobic composting. Bioresour Technol. 2017;241:190–199.
  • Philippe FX, Laitat M, Nicks B, et al. Ammonia and greenhouse gas emissions during the fattening of pigs kept on two types of straw floor. Agric Ecosyst Environ. 2012;150:45–53.
  • Yamulki S. Effect of straw addition on nitrous oxide and methane emissions from stored farmyard manures. Agric Ecosyst Environ. 2006;112:140–145.
  • Szanto GL, Hamelers HV, Rulkens WH, et al. NH3, n2o and CH4 emissions during passively aerated composting of straw-rich pig manure. Bioresour Technol. 2007;98:2659–2670.
  • Kader NA E, Robin P, Paillat JM, et al. Turning, compacting and the addition of water as factors affecting gaseous emissions in farm manure composting. Bioresour Technol. 2007;98:2619–2628.
  • Fukumoto Y, Osada T, Hanajima D, et al. Patterns and quantities of NH3, N2O and CH4 emissions during swine manure composting without forced aeration––effect of compost pile scale. Bioresour Technol. 2003;89:109–114.
  • Wang C, Lu H, Dong D, et al. Insight into the effects of biochar on manure composting: evidence supporting the relationship between N2O emission and denitrifying community. Environ Sci Technol. 2013;47:7341–7349.
  • Sun D, Lan Y, Xu EG, et al. Biochar as a novel niche for culturing microbial communities in composting. Waste Manag. 2016;54:93–100.
  • Vandecasteele B, Sinicco T, D’Hose T, et al. Biochar amendment before or after composting affects compost quality and N losses, but not P plant uptake. J Environ Manage. 2016;168:200–209.
  • Chen L, Zheng H, Wang ZY. The formation of toxic compounds during biochar production. Applied Mechanics and Materials. 2013;361-363:867–870.
  • Jiang T, Schuchardt F, Li G, et al. Effect of C/N ratio, aeration rate and moisture content on ammonia and greenhouse gas emission during the composting. J Environ Sci. 2011;23:1754–1760.
  • Morand P, Peres G, Robin P, et al. Gaseous emissions from composting bark/manure mixtures. Compost Sci Util. 2005;13:14–26.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.