Changes in P fractions after long-term application of biogas slurry to soils under organic farming

Organic Agriculture - Tập 6 - Trang 297-306 - 2015
Carmen Haase1, Stefanie Wentzel1, Reiner Schmidt2, Rainer Georg Joergensen1
1Soil Biology and Plant Nutrition, University of Kassel, Witzenhausen, Germany
2Extension Service Schwäbisch Hall, Ilshofen, Germany

Tóm tắt

In the present field study, the effects of applying biogas slurry for 25 years on soil microbiological and soil chemical properties were investigated in comparison with the application of raw cattle slurry. An on-farm research approach was used with pairwise comparison of neighboring fields, taking samples at a high spatial resolution from two biodynamic farms down to 10 cm. Texture, soil organic C (SOC), total N and P, microbial biomass C, N, and P as well as P fractions were determined by different extraction procedures. Application of biogas slurry had no significant effects on SOC, total N, or microbial biomass C, N, and P. Clay and pH effects outweighed site-specific differences for most properties. Biogas slurry increased the fractions of plant-available inorganic phosphate (+66 % more Olson-Pi) and of Ca-associated phosphates (+40 % 1 M HCl-Pi) at the expense of hardly soluble Fe and Al phosphates (-25 % 6 M HCl-Pi). This is in line with the observation that biogas slurry contains significantly more H2O-Pi and 1 M HCl-Pi than raw slurry. The long-term application of biogas slurry had no negative impacts on any of the soil properties analyzed.

Tài liệu tham khảo

Alt F, Oelmann Y, Herold N, Schrumpf M, Wilcke W (2011) Phosphorus partitioning in grassland and forest soils of Germany as related to land-use type, management intensity, and land use-related pH. J Plant Nutr Soil Sci 174:195–209 Anderson JPE, Domsch KH (1980) Quantities of plant nutrients in the microbial biomass of selected soils. Soil Sci 130:211–216 Anderson TH, Domsch KH (1989) Ratios of microbial biomass carbon to total organic carbon in arable soils. Soil Biol Biochem 21:471–479 Bach M, Frede HG (1998) Agricultural nitrogen, phosphorus and potassium balances in Germany—methodology and trends 1970 to 1995. J Plant Nutr Soil Sci 161:385–393 Bach EM, Baer SG, Meyer CK, Six J (2010) Soil texture affects soil microbial and structural recovery during grassland restoration. Soil Biol Biochem 42:2182–2191 Bachmann S, Wentzel S, Eichler-Löbermann B (2011) Codigested dairy slurry as a phosphorus and nitrogen source for Zea mays L. and Amaranthus cruentus L. J Plant Nutr Soil Sci 174:908–915 Barnett GM (1994) Phosphorus forms in animal manure. Biores Technol 49:139–147 Bar-Yosef B (1991) Root excretions and their environmental effects: influence on availability of phosphorus. In: Waisel Y, Eshel A, Kafkafi U (eds) Plant roots: the hidden half. Dekker, New York, pp 529–557 Blake L, Johnston AE, Poulton PR, Goulding KWT (2003) Changes in soil phosphorus fractions following positive and negative phosphorus balance for long periods. Plant Soil 25:245–261 Blume HP, Stahr K, Leinweber P (2011) Bodenkundliches Praktikum, 3ed. Spektrum Akademischer Verlag, Heidelberg Bowles TM, Acosta-Martinez V, Calderón F, Jackson LE (2014) Soil enzyme activities, microbial communities, and carbon and nitrogen availability in organic agroecosystems across an intensively-managed agricultural landscape. Soil Biol Biochem 68:252–262 Brookes PC, Powlson DS, Jenkinson DS (1982) Measurement of microbial biomass phosphorus in soil. Soil Biol Biochem 14:319–329 Brookes PC, Landman A, Pruden G, Jenkinson DS (1985) Chloroform fumigation and the release of soil nitrogen: a rapid direct extraction method to measure microbial biomass nitrogen in soil. Soil Biol Biochem 17:837–842 Chander K, Hartmann G, Joergensen RG, Khan KS, Lamersdorf N (2008) Comparison of three methods for measuring heavy metals in soils contaminated by different sources. Arch Agron Soil Sci 54:413–422 Chen R, Blagodatskaya E, Senbayram M, Blagodatsky S, Myachina O, Dittert K, Kuzyakov Y (2012) Decomposition of biogas residues in soil and their effects on microbial growth kinetics and enzyme activities. Biomass Bioenergy 45:221–229 Crews TE, Brookes PC (2014) Changes in soil phosphorus forms through time in perennial versus annual agroecosystems. Agric Ecosyst Environ 184:168–181 Cross AF, Schlesinger WH (1995) A literature review and evaluation of the Hedley fractionation: applications to the biogeochemical cycle of soil phosphorus in natural ecosystems. Geoderma 64:197–214 Ernst G, Müller A, Göhler H, Emmerling C (2008) C and N turnover of fermented residues from biogas plants in soil in the presence of three different earthworm species (Lumbricus terrestris, Aporrectodea longa, Aporrectodea caliginosa). Soil Biol Biochem 40:1413–1420 FAO (2014) World reference base for soil resources 2014. World Soil Resources Reports No 103, FAO, Rome Field JA, Caldwell JS, Jeyanayagam S, Reneau RB, Kroontje W, Collins ER (1984) Fertilizer recovery from anaerobic digesters. Trans ASAE 27:1871–1876 FNR (2014) Entwicklung Biogasanlagen https://mediathek.fnr.de/grafiken/daten-und-fakten/bioenergie/biogas/entwicklung-biogasanlagen.html Fouda S, von Tucher S, Lichti F, Schmidhalter U (2013) Nitrogen availability of various biogas residues applied to ryegrass. J Plant Nutr Soil Sci 176:572–584 Frear C, Liao W, Ewing T, Chen S (2011) Evaluation of co-digestion at a commercial dairy anaerobic digester. Clean Soil Air Water 39:697–704 Güngör K, Karthikeyan KG (2005) Influence of anaerobic digestion on dairy manure phosphorus extractability. Trans ASAE 48:1497–1507 Güngör K, Karthikeyan KG (2008) Phosphorus forms and extractability in dairy manure: a case study for Wisconsin on-farm anaerobic digesters. Biores Technol 99:425–436 Güngör K, Jürgensen A, Karthikeyan KG (2007) Determination of phosphorus speciation in dairy manure using XRD and XANES spectroscopy. Environ Qual 36:1856–1863 Hedley MJ, Stewart JWB, Chauhan BS (1982) Changes in inorganic and organic soil phosphorus fractions induced by cultivation practices and by laboratory incubations. Soil Sci Soc Am J 46:970–976 Hedley MJ, Kirk GJDMB, Santos MB (1994) Phosphorus efficiency and the forms of soil phosphorus utilized by upland rice cultivars. Plant Soil 158:53–62 Heinze S, Raupp J, Joergensen RG (2010) Effects of fertilizer and spatial heterogeneity in soil pH on microbial biomass indices in a long-term field trial of organic agriculture. Plant Soil 328:203–215 Hinsinger P (2001) Bioavailability of soil inorganic P in the rhizosphere as affected by root-induced chemical changes: a review. Plant Soil 237:173–195 Höper H, Kleefisch B (2001) Untersuchung bodenbiologischer Parameter im Rahmen der Boden-Dauerbeobachtung in Niedersachsen—Bodenbiologische Referenzwerte und Zeitreihen. Arbeitshefte Boden 2001/4, NLfB, Hannover Joergensen RG, Kübler H, Meyer B, Wolters V (1995) Microbial biomass phosphorus in soils of beech (Fagus sylvatica L.) forests. Biol Fertil Soils 19:215–219 Joergensen RG, Mäder P, Fließbach A (2010) Long-term effects of organic farming on fungal and bacterial residues in relation to microbial energy metabolism. Biol Fertil Soils 46:303–307 Jorgensen K, Magid J, Luxhøi J, Jensen LS (2010) Phosphorus distribution in untreated and composted solid fractions from slurry separation. J Environ Qual 39:393–401 Kallenbach C, Grandy AS (2011) Controls over soil microbial biomass responses to carbon amendments in agricultural systems: a meta-analysis. Agric Ecosyst Environ 144:241–252 Khan KS, Joergensen RG (2012) Relationship between P fractions and the microbial biomass in soils under different land use management. Geoderma 173–174:274–281 Liu A, Hamel C, Spedding T, Zhang TQ, Mongeau R, Lamarre GR, Tremblay G (2008) Soil microbial carbon and phosphorus as influenced by phosphorus fertilization and tillage in a maize-soybean rotation in south-western Quebec. Can J Soil Sci 88:21–30 Loria ER, Sawyer JE (2005) Extractable soil phosphorus and inorganic nitrogen following application of raw and anaerobically digested swine manure. Agron J 97:879–885 Mäder P, Fließbach A, Dubois D, Gunst L, Fried P, Niggli U (2002) Soil fertility and biodiversity in organic farming. Science 296:1694–1697 Malik MA, Khan KS, Marschner P, Ali S (2013) Organic amendments differ in their effect on microbial biomass and activity and on P pools in alkaline soils. Biol Fertil Soils 49:415–425 Mayer J, Buegger F, Jensen ES, Schloter M, Heß J (2003) Estimating N rhizodeposition of grain legumes using a 15N in situ stem labelling method. Soil Biol Biochem 35:21–28 Möller K, Müller T (2012) Effects of anaerobic digestion on digestate nutrient availability and crop growth: a review. Eng Life Sci 12:242–257 Möller K, Stinner W (2010) Effects of organic wastes digestion for biogas production on mineral nutrient availability of biogas effluents. Nutr Cycl Agroecosyst 87:395–413 Möller K, Stinner W, Deuker A, Leithold G (2008) Effects of different manuring systems with and without biogas digestion on nitrogen cycle and crop yield in mixed organic dairy farming systems. Nutr Cycl Agroecosyst 82:209–232 Mueller T, Joergensen RG, Meyer B (1992) Estimation of soil microbial biomass C in the presence of living roots by fumigation-extraction. Soil Biol Biochem 24:179–181 Müller T, Höper H (2004) Soil organic matter turnover as a function of the soil clay content: consequences for model applications. Soil Biol Biochem 36:877–888 Murphy J, Riley JP (1962) A modified single solution method for the determination of phosphate in natural waters. Anal Chim Acta 27:31–36 Negassa W, Leinweber P (2009) How does the Hedley sequential phosphorus fractionation reflect impacts of land use and management on soil phosphorus: a review. J Plant Nutr Soil Sci 172:305–325 Oehl F, Frossard E, Fliessbach A, Dubois D, Oberson A (2004) Basal organic phosphorus mineralization in soils under different farming systems. Soil Biol Biochem 36:667–675 Pätzold S, Hejcman M, Barej J (2013) Soil phosphorus fractions after seven decades of fertilizer application in the Rengen Grassland Experiment. J Plant Nutr Soil Sci 176:910–920 Perrott KW, Maher FW, Thorrold BS (1989) Accumulation of phosphorus fractions in yellow-brown pumice soils with development. NZ J Agric Res 32:53–62 Powlson DS, Brookes PC, Christensen BT (1987) Measurement of soil microbial biomass provides an early indication of changes in total soil organic matter due to straw incorporation. Soil Biol Biochem 19:159–164 Probst B, Schüler C, Joergensen RG (2008) Vineyard soils under organic and conventional management—microbial biomass and activity indices and their relation to soil chemical properties. Biol Fertil Soils 44:443–450 Raupp J (2001) Forschungsthemen und Ergebnisse eines Langzeitdüngungsversuchs in zwei Jahrzehnten; ein Beitrag zur Bewertung von pflanzenbaulichen Langzeitversuchen. Ber Landwirtschaft 79:71–93 Redel Y, Rubio R, Rouanet J, Borie F (2007) Phosphorus bioavailability affected by tillage and crop rotation on a Chilean volcanic derived Ultisol. Geoderma 139:388–396 Salamanca EF, Raubuch M, Joergensen RG (2006) Microbial reaction of secondary tropical forest soils to the addition of leaf litter. Appl Soil Ecol 31:53–61 Sánchez E, Borja R, Weiland P, Travieso L, Martín A (2000) Effect of temperature and pH on the kinetics of methane production, organic nitrogen and phosphorus removal in the batch anaerobic digestion process of cattle manure. Bioprocess Eng 22:247–252 Scheller E (2006) Biogas im organischen Landbau: ein Problem? Lebendige Erde 2006(4):18–21 Scheller E (2013) Grundzüge einer Pflanzenernährung des Ökologischen Landbaus—Ein Fragment. Lebendige Erde, Darmstadt Sharpley A, Moyer B (2000) Phosphorus forms in manure and compost and their release during simulated rainfall. J Environ Qual 29:1462–1469 Sieling K, Herrmann A, Wienforth B, Taube F, Ohl S, Hartung E, Kage H (2013) Biogas cropping systems: short term response of yield performance and N use efficiency to biogas residue application. Eur J Agron 47:44–54 Slazak A, Freese D, da Silva ME, Hüttl RF (2010) Soil organic phosphorus fraction in pine-oak forest stands in Northeastern Germany. Geoderma 158:156–162 Stinner W, Möller K, Leithold G (2008) Effects of biogas digestion of clover/grass-leys, cover crops and crop residues on nitrogen cycle and crop yield in organic stockless farming systems. Eur J Agron 29:125–134 Terhoeven-Urselmans T, Scheller E, Raubuch M, Ludwig B, Joergensen RG (2009) CO2 evolution and N mineralization after biogas slurry application in the field and its yield effects on spring barley. Appl Soil Ecol 42:297–302 Tiessen H, Moir JO (1993) Characterisation of available P by sequential extraction. In: Carter MR (ed) Soil sampling and methods of analysis. Lewis Publishers, London, pp 75–86 Toor GS, Cade-Menun BJ, Sims JT (2005) Establishing a linkage between phosphorus forms in dairy diets, feces, and manures. J Environ Qual 34:1380–1391 Turner BL, Leytem AB (2004) Phosphorus compounds in sequential extracts of animal manures: chemical speciation and a novel fractionation procedure. Environ Sci Technol 38:6101–6108 van Kessel JS, Reeves JB III (2000) On-farm quick tests for estimating nitrogen in dairy manure. J Dairy Sci 83:1837–1844 Vance ED, Brookes PC, Jenkinson DS (1987) An extraction method for measuring soil microbial biomass C. Soil Biol Biochem 19:703–707 Voelkner A, Holthusen D, Horn R (2015) Influence of homogenized residues of anaerobic digestate on the physicochemical properties of differently textured soil. J Plant Nutr Soil Sci 178:261–269 Wentzel S, Schmidt R, Piepho HP, Semmler-Busch U, Joergensen RG (2015) Response of soil fertility indices to long-term application of biogas and raw slurry under organic farming. Appl Soil Ecol 96:99–107 Wu J, Joergensen RG, Pommerening B, Chaussod R, Brookes PC (1990) Measurement of soil microbial biomass C by fumigation-extraction—an automated procedure. Soil Biol Biochem 22:1167–1169