Core Microbiome. Группа авторов

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J., Bundela, P.S., Wong, J.C., and Selvam, A. (2014). Evaluation of thermophilic fungal consortium for organic municipal solid waste composting. Bioresource Technology 168: 214–221.

      5 Aydinsakir, K., Unlu, A., Yilmaz, S., and Ari, N. (2009). The effects of compost applications on yield and quality characteristics of Anemone coronaria L. cv. red meron. Acta Horticulturae 807: 359–364.

      6 Bellamy, P.H., Loveland, P.J., Bradley, R.I., Lark, R.M., and Kirk, G.D. (2005). Carbon losses from all soils across England and Wales 1978–2003. Nature 437: 245–248.

      7 Bonilla, N., Gutierrez-Barranquero, J.A., de Vicente, A., and Cazorla, F.M. (2012). Enhancing soil quality and plant health through suppressive organic amendments. Diversity 4: 475–491..

      8 Brechin, J. and McDonald, G.K. (1994). Effect of form and rate of pig manure on the growth and nutrient uptake and yield of barley (cv. Gallen). Australian Journal of Experimental Agriculture 34: 505–510.

      9 Brown, S. and Cotton, M. (2011). Changes in soil properties and carbon content following compost application: Results of on-farm sampling. Compost Science and Utilization 19: 88–97.

      10 Buckerfield, J. and Webster, K. (2003). Composted organics for soil rehabilitation. Report to Natural Heritage Trust.

      11 Charfen, L. (1981). The recycling of crop residues in Taiwan. Food and Fertilizer Technology Center Extension 177: 1–8.

      12 Chelah, M.B., Nozulaidi, M.N., Musliania, M.I., Khanif, Y.M., and Jahan, M.S. (2011). Composting increases BRIS soil health and sustains rice production on BRIS soil. Soil Asia 37: 291–295.

      13 Farrell, M. and Jones, D.L. (2009). Critical evaluation of municipal solid waste composting and potential compost markets. Bioresource Technology 100: 4301–4310.

      14 Goldstein, N. (2002). Erosion control research update. Biocycle 43: 78–82.

      15 Hanslin, H.M., Saebo, A., and Bergersen, O. (2005). Estimation of oxygen concentrations in the soil gas phase beneath compost mulch by means of a simple method. Urban Forestry and Urban Greening 4: 37–40.

      16 Hountin, J.A., Karam, A., and Prent, L.E. (1995). Effect of peat moss-shrimp wastes compost on the growth of barley (Hordeum Vulgare L.) on a loamy sand soil. Communications in Soil Science and Plant Analysis 26: 3275–3289.

      17 Hurrell, J.W. (2015). Climate and climate change. Climate variability: North Atlantic and Arctic Oscillation. Encyclopedia of Atmospheric Sciences. 47–60.

      18 Kastner, M. and Miltner, A. (2016). Application of compost for effective bioremediation of organic contaminants and pollutants in soils. Applied Microbiology and Biotechnology 100: 3433–3449.

      19 Li, Z., Lu, H., Ren, L., and He, L. (2013). Chemosphere experimental and modeling approaches for food waste composting: A review. Chemosphere 93: 1247–1257.

      20 Manios, V.I. and Kapetanios, E. (1992). Effects of town refuse compost as soil amendment on green tomato crop. Biological Wastes 19: 35–62.

      21 Martinez-Blanco, J., Lazcano, C., Christensen, T., Munoz, P., Rieradevall, J., Moller, J., Anton, A., and Boldrin, A. (2013). Compost benefits for agriculture evaluated by life cycle assessment: A review. Agronomy for Sustainable Development 33: 721–732.

      22 Miller, J.J., Beasley, B.W., Drury, C.F., Larney, F.J., and Hao, X. (2015). Influence of long-term (9 yr) composted and stockpiled feedlot manure application on selected soil physical properties of a clay loam soil in Southern Alberta. Compost Science and Utilization 23: 1–10.

      23 Mukumbuta, I., Shimizu, M., and Hatano, R. (2017). Mitigating global warming potential and greenhouse gas intensities by applying composted manure in cornfield: A 3-year field study in an Andosol soil. Agriculture 7: 1–20.

      24 Nicholson, F., Bhogal, A., Cardenas, L., Chadwick, D., Misselbrook, T., Rollett, A., Taylor, M., Thorman, R., and Williams, J. (2017). Nitrogen losses to the environment following food-based digestate and compost applications to agricultural land. Environmental Pollution 228: 504–516.

      25 Ozores-Hampton, M., Obreza, T.A., Stoffella, P.J., and Fitzpatrick, G. (2002). Immature compost suppresses weed growth under greenhouse conditions. Compost Science and Utilization 10: 105–113.

      26 Park, Y., Lim, T., Park, J., and Lee, S. (2018). Long-term effects of chemical fertilizer and compost applications on yield of red pepper and soil chemical properties. Korean Journal of Soil Science and Fertilization 51: 111–118.

      27 Powell, K.S., Burns, A., Norng, S., Granett, J., and McGourty, G. (2007). Influence of composted green waste on the population dynamics and dispersal of grapevine phylloxera Daktulosphaira vitifoliae. Agriculture, Ecosystems and Environment 119: 33–38.

      28 Smith, M.W., Carroll, B.L., and Cheary, B.S. (2000). Mulch improves pecan tree growth during orchard establishment. Horticultural Science 35: 192–195.

      29 Smith, S.R., Hall, J.E., and Hadley, P. (1992). Composting sewage sludge wastes in relation to their suitability for use as fertilizer materials for vegetable crop production. Acta Horticulturae 302: 202–215.

      30 Soheil, R., Hossien, M.H., Gholamreza, S., Leila, H., Mozhdeh, J., and Hassan, E. (2012). Effects of composted municipal waste and its leachate on some soil chemical properties and corn plant responses. International Journal of Agricultural Research and Reviews 2: 801–814.

      31 Taiwo, A.M. (2011). Composting is a sustainable waste management technique in developing countries. Journal of Environmental Science and Technology 4: 93–102.

      32 Tong, J., Sun, X., Li, S., Qu, B., and Wan, L. (2018). Reutilization of green waste as compost for soil improvement in the afforested land of the Beijing plain. Sustainability 10: 1–17.

      33 Varma, V.S. and Kalamdhad, A.S. (2014). Effects of leachate during vegetable waste composting using rotary drum composter. Environmental Engineering Research 19: 67–73.

      34 Wang, D., Shi, Q., Wang, X., Wei, M., Hu, J., Liu, J., and Yang, F. (2010). Influence of cow manure vermicompost on the growth, metabolite contents, and antioxidant activities of Chinese cabbage (Brassica campestris spp. Chinensis). Biology and Fertility of Soils 46: 689–696.

      35 Wu, L. and Ma, L.W. (2000). Relationship between compost stability and extractable organic carbon. Journal of Environmental Quality 31: 1323–1328.

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