The role of biochar in improving the effect of mineral fertilizer on the growth and production of wheat

2023

Ali Muhammad Haider


书目信息
出版者
Tishreen University Faculty of Agriculture Engineering
其它主题
الكفاءة الإنتاجية; الكفاءة التسميدية; الفحم الحيوي; Biochar; Fertilization efficiency; Olive pressing residues; مخلفات عصير الزيتون
语言
阿拉伯
注释
References 1- ABBASA, T.; , RIZWANA, M.; ALIA, SH.; ZIA-UR-REHMANB, M.; QAYYUMC, M .F.; ABBASA, F.; HANNANA, F.; RINKLEBED, J. AND SIK OK, Y. " Effect of biochar on cadmium bioavailability and uptake in wheat (Triticum aestivum L.) grown in a soil with aged contamination ", Ecotoxicology and Environmental Safety, 140, (2017): 37-47. 2- ABEL S, PETERS A, TRINKS S, SCHONSKY H, FACKLAM M, WESSOLEK G., "Impact of biochar and hydrochar addition on water retention and water repellency of sandy soil". Geoderma 202–203, (2013): 183– 191. https://doi.org/10.1016/j.geoderma.2013.03.003 3- ABROL, V., BEN-HUR, M., VERHEIJEN, F., KEIZER, J., MARTINS, M., TENAW, H. and E. GRABER., "Biochar effects on soil water infiltration and erosion under seal formation conditions: rainfall simulation experiment", Journal of Soils and Sediments, Vol. 16, (2016): 2709–2719. 4- AGHOGHOVWIA MP, HARDIE AG, ROZANOV AB., " Characterisation, adsorption and desorption of ammonium and nitrate of biochar derived from diferent feedstocks". Environ Technol. (2020). https://doi. org/10.1080/09593330.2020.1804466 5- AHMEDNA, M., MARSHALL, W.E., HUSSEINY, A.A., RAO, R.M., GOKTEPE, I., "The use of nutshell carbons in drinking water filters for removal of trace metals"., Water Res. 38, (2004): 1062-1068. 6- AKHTAR SS, LI G, ANDERSEN MN, LIU F., "Biochar enhances yield and quality of tomato under reduced irrigation"., Agric Water Manag, 138, (2014): 37–44. https://doi.org/10.1016/j.agwat.2014. 02.016 7- AKHTAR, S. S.; ANDERSEN, M. N and LIU, F. "Biochar Mitigates Salinity Stress in Potato". Journal of Agronomy and Crop Science, Vol (201), No (5), (2015): 368–378. 8- AL ARNI S. "Comparison of slow and fast pyrolysis for converting biomass into fuel". Renewable Energy., 124, ( 2018):197-201. 9- ALBURQUERQUE JA, SALAZAR P, BARRÓN V, TORRENT J, DEL CAMPILLO MC, GALLARDO A, VILLAR R. "Enhanced wheat yield by biochar addition under different mineral fertilization levels". Agron Sustain Dev 33, (2013): 475–484. 10- AL-WABEL, M., AL-OMRAN, A., EL-NAGGAR, A.H., NADEEM, M., USMAN, A.R.A., "Pyrolysis temperature induced changes in characteristics and chemical composition of biochar produced from conocarpus wastes. Bioresour"., Technol. 131, (2013): 374-379. 11- AMIN FR, HUANG Y, HE Y, ZHANG R, LIU G, CHEN C. "Biochar applications and modern techniques for characterization". Clean Technologies and Environmental Policy., 18(5), (2016):1457-1473.12- AMIN, A. E AND EISSA, M. A. "Biochar effects on nitrogen and phosphorus use efficiencies of zucchini plants grown in a calcareous sandy soil"., J. Soil Sci. Plant Nutr, No (17), (2017): 912–921. 13- ASLAM, Z.; KHALID, M.; AON, M. "Impact of biochar on soil physical properties", J. Agric. Sci. 4, (2014): 280–284. 14- ATKINSON, C. J., FITZGERALD, J. D., AND HIPPS, N. A. "Potential mechanisms for achieving agricultural benefits from biochar application to temperate soils: A review"., Plant Soil 337, (2010): 1–18. 15- AZEEM, B., KUSHAARI, K., MAN, Z.B., BASIT, A., THANH, T.H. "Review on materials & methods to produce controlled release coated urea fertilizer"., J. Control. Release, (2014): https://doi.org/10.1016/j.jconrel.2014.02.020. 16- BAGREEV, A., BANDOSZ, T., LOCKE, D. "Pore structure and surface chemistry of adsorbents obtained by pyrolysis of sewage sludge-derived fertilizer"., Carbon 39, (2001): 1971-1979. 17- BAIAMONTE, G.; CRESCIMANNO, G.; PARRINO, F.; DE PASQUALE, C. "Biochar Amended Soils and Water Systems: Investigation of Physical and Structural Properties", Appl. Sci., 11, (2021): 12108. https://doi.org/10.3390/app112412108 18- BALDOCK, J. A., AND SMERNIK, R. J. "Chemical composition and bioavailability of thermally altered Pinus resinosa (red pine) wood"., Org. Geochem., 33, (2002): 1093–1109. 19- BANGROO, S. A,. M. A. WANI,. T. ALI,. M. A. MALIK,. N. A. KIRMANI,. J. A. SOFI AND F. RASOOL. "Potassium adsorption characteristics of soils under long term maize-legume cropping sequence". African Journal of Agricultural Research, Vol. 7(48), (2012): pp. 6502-6507. 20- BARNES, R., GALLAGHER, M., MASIELLO, C., LIU, Z and B. DUGAN., "Biochar-induced changes in soil hydraulic conductivity and dissolved nutrient fluxes constrained by laboratory experiments", PloS one, Vol.9, (2014): P 9. 21- BEUSCH C., "Biochar as a soil ameliorant: how biochar properties beneft soil fertility—a review". J Geosci Environ Prot 9(10), (2021): 28– 46. https://doi.org/10.4236/gep.2021.910003 22- BOREL LD, LIRA TS, RIBEIRO JA, ATAÍDE CH, BARROZO MA. "Pyrolysis of brewer’s spent grain: Kinetic study and products identification", Industrial Crops and Products., 121, (2018): 388-395. 23- BOREL LD, REIS FILHO AM, XAVIER TP, LIRA TS, BARROZO MA. "An investigation on the pyrolysis of the main residue of the brewing industry"., Biomass and Bioenergy. (2020);140:105698. 24- BRIDGWATER A. & PEACOCKE G. "Fast pyrolysis processes for biomass". Renewable and Sustainable Energy Reviews.;4(1), (2000): 1-73. 25- BRIGGS C, BREINER JM AND RC. GRAHAM., "Physical and chemical properties of Pinus ponderosa charcoal: implications for soil modification"., Soil Science 177, (2012): 263–268.26- BRODOWSKI, S., JOHN, B., FLESSA, H and W. AMELUN., "Aggregateoccluded black carbon in soil", European Journal of Soil Science, Vol. 57, (2006): 539-546. 27- BRUUN EW, PETERSEN CT, HANSEN E, HOLM JK, HAUGGAARDNIELSEN H., "Biochar amendment to coarse sandy subsoil improves root growth and increases water retention",. Soil Use Manag 30(1), (2014): 109–118. https://doi.org/10.1111/sum.12102 28- CHAN, K. Y.; VAN ZWIETEN, L.; MESZAROS, I.; DOWNIE, A and S, JOSEPH. "Agronomic values of green waste biochar as a soil amendment"., Australian Journal of Soil Research, No (45), (2007): 629. 29- CHANG C ET AL. "Study on products characteristics from catalytic fast pyrolysis of biomass based on the effects of modified biochars. Energy", 229, (2021): 120818. 30- CHEN, T., ZHANG, Y.X., WANG, H.T., LU, W.J., ZHOU, Z.Y., ZHANG, Y.C., REN, L.L., "Influence of pyrolysis temperature on characteristics and heavy metal adsorptive performance of biochar derived from municipal sewage sludge"., Bioresour. Technol. 164, (2014): 47-54. 31- CHENFEI L, XIAOLIN Z, SHENGLEI F ET AL., "Biochar alters the resistance and resilience to drought in a tropical soil"., Environ Res Lett 9, (2014): 64013 32- CHENG C-H, LEHMANN J and MH. ENGELHARD., "Natural oxidation of black carbon in soils: Changes in molecular form and surface charge along a climosequence"., Geochimica et Cosmochimica Acta, 72, (2009): 1598–1610. 33- CHENG, C.; LEHMANN, J.; THIES, J.E and S, BURTON., "Stability of black carbon in soils across a climatic gradient". Journal of Geophysical Research, No (113), (2008): 20-27. 34- CHENG, Y.; CAI, Z.; CHANG, S.; WANG, J and J, ZHANG., "Wheat straw and its biochar have contrasting effects on inorganic N retention and N2O production in a cultivated Black Chernozem". Biol. Fer. Soil, No (48),( 2012): 941–946. 35- CHOUDHARY V, PATEL M, PITTMAN CU JR, MOHAN D., "Batch and continuous fxed-bed lead removal using Himalayan pine needle biochar: isotherm and kinetic studies"., ACS Omega, 5, (2020): 16366–16378. 36- CHUN, Y., SHENG, G., CHIOU, C.T., XING, B., "Compositions and sorptive properties of crop residue-derived chars". Environ. Sci. Technol. 38, (2004): 4649-4655. 37- CZEKAŁA, W., JEZOWSKA, A., CHEŁKOWSKI, D., "The use of biochar for the production of organic fertilizers"., J. Ecol. Eng. 20, (2019): 1–8. https://doi.org/10.12911/22998993/93869. 38- DAHAL, R.K., ACHARYA, B., FAROOQUE, A., "Biochar: a sustainable solution for solid waste management in agro-processing industries". Biofuels, (2018): 1–9. https://doi.org/10.1080/ 17597269.2018.1468978. 39- DAI. "Production of bio-oil and biochar from soapstock via microwaveassisted co-catalytic fast pyrolysis". Bioresource Technology., 225, (2017): 1-8.40- DAS SK, GHOSH GK, AVASTHE RK, SINHA K., "Compositional heterogeneity of diferent biochar: efect of pyrolysis temperature and feedstocks". J Environ Manag., (2021): 278:111501. https://doi.org/10. 1016/j.jenvman.2020.111501 41- DIACONO, M., MONTEMURRO, F., "Long-term effects of organic amendments on soil fertility". A review. Agron. Sustain., (2010): Dev. https://doi.org/10.1051/agro/2009040. 42- DIAS, B.O.; SILVA, C.A.; HIGASHIKAWA, F.S.; ROIG, A and M.A, SANCHEZ-MONEDERO., "Use of biochar as bulking agent for the composting of poultry manure: Effect on organic matter degradation and humification"., Bioresource Technology, No (101), (2009): 1239-1246. 43- DING, Y., LIU, Y., LIU, S., LI, Z., TAN, X., HUANG, X., ZENG, G., ZHOU, L., ZHENG, B., "Biochar to improve soil fertility". A review., Agron. Sustain., (2016): Dev. https://doi.org/10.1007/s13593- 016-0372-z. 44- EEA, The European environment state and outlook (2010): soil thematic assessment. European Environment Agency, Denmark. 45- ENDERS, A.; HANLEY, K.; WHITMAN, T.; JOSEPH, S and J, LEHMANN., "Characterization of biochars to evaluate recalcitrance and agronomic performance"., Bio-resour. Technol. No (114), (2012): 644–653. 46- FAO. "Productivity and Efficiency Measurement in Agriculture Literature Review and Gaps Analysis"., Publication prepared in the framework of the Global Strategy to improve Agricultural and Rural Statistics, (2017). 47- FARHANGI-ABRIZ S. & TORABIAN S., "Antioxidant enzyme and osmotic adjustment changes in bean seedlings as afected by biochar under salt stress"., Ecotoxicol Environ Saf 137, (2017): 64–70. https://doi. org/10.1016/j.ecoenv.2016.11.029 48- FATIMA I, AHMAD M, VITHANAGE M, IQBAL S., "Abstraction of nitrates and phosphates from water by sawdust- and rice huskderived biochars: their potential as N- and P-loaded fertilizer for plant productivity in nutrient defcient soil". J Anal Appl Pyrolysis 155, (2021): 105073. https://doi.org/10.1016/j.jaap.2021.105073 49- FLETCHER, A.J., SMITH, M.A., HEINEMEYER, A., LORD, R., ENNIS, C.J., HODGSON, E.M., FARRAR, K., "Production factors controlling the physical characteristics of biochar derived from phytoremediation willow for agricultural applications"., Bioenergy Res. 7, (2014): 371–380. 50- Food and Agriculture Organization of the United Nations (FAO), "Droughtresistant Soils: Optimization of Soil Moisture for Sustainable Plant Production". (2004): FAO Information Division, Rome. 51- GAFFAR, S., DATTAMUDI, S., BABOUKANI, A.R., CHANDA, S., NOVAK, J.M., WATTS, D.W. & JAYACHANDRAN, K., "Physiochemical characterization of biochars from six feedstocks and their effects on the sorption of atrazine in an organic soil". Agronomy 11, (2021): 716.52- GAI X, WANG H, LIU J, ZHAI L, LIU S, REN T, LIU H., "Efects of feedstock and pyrolysis temperature on biochar adsorption of ammonium and nitrate", (2014). PLoS ONE 9(12):e113888. https://doi. org/10.1371/journal.pone.0113888 53- GAO, S. & DELUCA, T.H., "Wood biochar impacts soil phosphorus dynamics and microbial communities in organically-managed croplands", Soil Biology and Biochemistry 126, (2018): 144–150. 54- GHODSZAD L, REYHANITABAR A, OUSTAN S, ALIDOKHT L., "Phosphorus sorption and desorption characteristics of soils as afected by biochar", Soil Tillage Res 216, (2022):105251. https://doi.org/10.1016/j. still.2021.105251 55- GLASER, B.; J. LEHMANN and W. ZECH., "Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal". A Review. Biology and Fertility of Soils, No (35), (2002): 219–230. 56- GONG,Y.; XIONG, Z and L, CHENG., "Phosphate and ammonium adsorption of the modified biochar based on Phragmitesaustralis after phytoremediation". Environmental Science and Pollution Research, No (11),( 2017): 9-24. 57- GOODMAN, A.M. and ENNOS. A.R., "The effects of soil bulk density on the morphology and anchorage mechanics of the root systems of sunflower and maize", J. Annals of Botany, (1999): 293-302. 58- GOPAL M, GUPTA A, SHAHUL HAMEED K, SATHYASEELAN N, KHADEEJATH RAJEELA TH, THOMAS GV., "Biochars produced from coconut palm biomass residues can aid regenerative agriculture by improving soil properties and plant yield in humid tropics". Biochar 2(2), (2020): 211–226. https://doi.org/10.1007/s42773-020-00043-5 59- GRABER, E.R.; HAREL, Y.M.; KOLTON, M.; CYTRYN, E.; SILBER, A.; DAVID, D.R.; TSECHANSKY, L.; BORENSHTEIN, M. and Y, ELAD.. "Biochar impact on development and productivity of pepper and tomato grown in fertigated soilless media"., Plant Soil, No (337), (2010): 481- 496. 60- GRONWALD M, DON A, TIEMEYER B, HELFRICH M., "Efects of fresh and aged chars from pyrolysis and hydrothermal carbonization on nutrient sorption in agricultural soils". SOIL 1(1), (2015):475–489. https://doi.org/10.5194/soil-1- 475-2015 61- GUNARATHNE V, SENADEERA A, GUNARATHNE U ET AL., "Potential of biochar and organic amendments for reclamation of coastal acidic-salt afected soil"., Biochar 2, (2020): 107–120. https://doi.org/ 10.1007/s42773-020-00036-4 62- GURWICK, N.P.; KELLY, C.; ELIAS, P. "The Scientific Basis for Biochar as a Climate Change Mitigation Strategy: Does It Measure up?" 2012. Available online: http://www.ucsusa.org/sites/default/files/legacy/assets/documents/ global_warming/Biochar-Climate-Change-Mitigation-Strategy-Does-It-Measure- Up (accessed on 15 September 2019).63- HAMIDREZA S, S., HAZBAVI, Z and H. M. KIANI., "Control ability of Runoff and Soil Loss from Small Plots Treated by Vinasse-Produced Biochar", Sci. Total Environ, Vol. 541, (2016): 483–490. 64- HARTLEY W, DICKINSON N, RIBY P AND N. LEPP., "Arsenic mobility in brownfield soils amended with green waste compost or biochar and planted with Miscanthus"., Environmental Pollution., (2009): doi:10.1016/ j. env. pol. 2009.05.011. 65- HAYGARTH, P.M., JARVIS, S.C., "Agriculture, Hydrology and Water Quality"., (2002). 66- HAZRA, G., "Different types of eco-friendly fertilizers: an overview". Sustain. Environ., (2016): 1, 54. https://doi.org/10.22158/se.v1n1p54. 67- HERATH, H., CAMPS-ARBESTAIN, M and M. HEDLEY., "Effect of biochar on soil physical properties in two contrasting soils: An Alfisol and an Andisol". Geoderma, Vol. 209, (2013): 188–197. 68- HIEN TTT, TSUBOTA T, TANIGUCHI T, SHINOGI Y., "Enhancing soil water holding capacity and provision of a potassium source via optimization of the pyrolysis of bamboo biochar",. Biochar 3(1), (2021): 51–61. https://doi.org/10.1007/s42773-020-00071-1 69- HMID, A.; AL CHAMI, Z.; SILLEN, W.; DE VOCHT, A and J, VANGRONSVELD., "Olive mill waste biochar: a promising soil amendment for metal immobilization in contaminated soils"., Envi. Sci. Poll. Res., (2014): 1-13. 70- HOSSAIN M.K., STREZOV V., YIN CHAN K., NELSON P.F., "Ag ronomic properties of wastewater sludge biochar and bioavailability of metals in production of cherry tomato (Lycopersicon esculentum)"., Chemosphere, 78 (9) , (2010): pp. 1167-1171. 71- HOSSAIN, M., STREZOV, V., CHAN, K.Y., ZIOLKOWSKI, A., NELSON, P.F. "Influence of pyrolysis temperature on production and nutrient properties of wastewater sludge biochar"., J. Environ. Manag., 92, (2011): 223-228. https://doi.org/10. 1016/j.micromeso.2016.06.020. 72- HUA, L.; WU, W.X.; LIU, Y.X.; MCBRIDE, M and Y.X, CHEN. "Reduction of nitrogen loss and Cu and Zn mobility during sludge composting with bamboo charcoal amendment". Envi. Sci. Poll. Res., No (16),( 2009): 1-9. 73- IBRAHEEM, M. and ZIDAN, A. "The effect of Integration Between Heat and Time Factors on The Efficiency of the Carbonization of Peanut Shells to Prepare Biochar". SSRG. IJAES, v7. Issue 3, (2020). 74- IGALAVITHANA, A.D., OK, Y.S., USMAN, A.R.A., AL-WABEL, M.I., OLESZCZUK, P., LEE, S.S., "The effects of biochar amendment on soil fertility"., Agricultural & Environmental Applications of Biochar: Advances and Barriers, (2015): pp. 123–144 https://doi.org/10.2136/ sssaspecpub63.2014.0040. 75- IMAM, T., and CAPAREDA, S. "Characterization of bio-oil, syn-gas and biochar from switchgrass pyrolysis at various temperatures". Journal of Analytical and Applied Pyrolysis, 93, (2012): 170-177.76- IPCC. "Working group I contribution to the IPCC fifth assessment report (AR5)", climate change, (2013): Intergovernmental panel on Climate Change. The Physical Science Basis, Stockholm. 77- ITSUKUSHIMA, R., IDETA, K., IWANAGA, Y., SATO, T and Y. SHIMATANI., "Evaluation of infiltration capacity and water retention potential of amended soil using bamboo charcoal and humus for urban flood prevention", in: Proceeding softhe11th International Symposium on Eco-hydraulics. Melbourne. Australia., (2016). 78- JEFERY S, VERHEIJEN F, VAN DER VELDE M, BASTOS A., "A quantitative review of the efects of biochar application to soils on crop productivity using meta-analysis"., Agric Ecosyst Environ 144(1), (2011): 175– 187. https://doi.org/10.1016/j.agee.2011.08.015 79- JIN, J.W., LI, Y.A., ZHANG, J.Y., WU, S.C., CAO, Y.C., LIANG, P., ZHANG, J., WONG, M.H., WANG, M.Y., SHAN, S.D., CHRISTIE, P., "Influence of pyrolysis temperature on properties and environmentalsafety of heavy metals in biochars derived from municipal sewage sludge". J. Hazard. Mater 320, (2016): 417-426. 80- JOSEPH, S. D., CAMPS-ARBESTAIN, M., LIN, Y., MUNROE, P., CHIA, C. H., HOOK, J., VAN ZWIETEN, L., KIMBER, S., COWIE, A., SINGH, B. P., LEHMANN, J., AND FOIDL, N., "An investigation into the reactions of biochar in soil. Aust"., J. Soil Res. 48, (2010): 501–515. 81- JOSEPH, S.D., DOWNIE, A., CROSKY, A., LEHMANN, J., MUNROE, P., "Biochar for carbon sequestration, reduction of greenhouse gas emissions and enhancement of soil fertility; a review of the materials science"., Rend. Circ. Mat. Palermo Suppl., 48, (2007), 101-106. 82- KAMEYAMA K, MIYAMOTO T, SHIONO T, SHINOGI Y., "Infuence of sugarcane bagasse-derived biochar application on nitrate leaching in calcaric dark red soil". J Environ Qual 41(4), (2012): 1131–1137. https://doi.org/10.2134/jeq2010.0453 83- KIM HS, KIM KR, YANG JE ET AL., "Efect of biochar on reclaimed tidal land soil properties and maize (Zea mays L.) response"., Chemosphere 142, (2016):153–159. https://doi.org/10.1016/j.chemosphere. 2015.06.041 84- KŁAPEĆ, T., CHOLEWA, A., Zagrożenia dla zdrowia związane ze stosowaniemnawozów organicznych i organiczno-mineralnych, Medycyna Ogólna i Nauki o Zdrowiu. (2012). 85- KOŃCZAK,M., OLESZCZUK, P., "Application of biochar to sew age sludge reduces toxicity and improve organisms growth in sewage sludge-amended soil in long termfield experiment"., Sci. Total Environ., 625, (2018): 8–15. https://doi.org/10.1016/j.scitotenv.2017.12.118. 86- KUMAR A, BHATTACHAR & YA T. "Biochar: a sustainable solution". Environ Dev Sustain. (2020). https://doi.org/10.1007/s10668-0287- LAIRD, A. D., "The charcoal vision. A win-win-win scenario for simultaneously producing bioenergy, permanently sequestering carbon, while improving soil and water quality"., Agron. J. 100, (2008): 178–181. 88- LARSBO M, LOFSTRAND E, DE VEER DA AND B. ULEN., "Pesticide leaching from two Swedish topsoils of contrasting texture amended with biochar"., Journal of Contaminant Hydrology, 147, (2013): 73–81. 89- LASHARI MS, YE Y, JI H ET AL., "Biochar-manure compost in conjunction with pyroligneous solution alleviated salt stress and improved leaf bioactivity of maize in a saline soil from central China: a 2-year feld experiment"., J Sci Food Agric, 95, (2015):1321–1327. https://doi.org/10.1002/jsfa.6825 90- LATEEF, A., NAZIR, R., JAMIL, N., ALAM, S., SHAH, R., KHAN, M.N., SALEEM, M., REHMAN, S., UR, "Synthesis and characterization of environmental friendly corncob biochar based nano-composite – a potential slow release nano-fertilizer for sustainable agriculture"., Environ. Nanotechnol. Monit. Manag. 11, (2019): 100212. https://doi.org/10.1016/j.enmm.2019.100212. 91- LATEEF, A., NAZIR, R., JAMIL, N., ALAM, S., SHAH, R., KHAN,M.N., SALEEM,M., "Synthesis and characterization of zeolite based nano-composite: an environment friendly slow release fertilizer"., Microporous Mesoporous Mater. 232, (2016): 174–183. 92- LEHMANN, J., "Bio-energy in the black. Front. Ecol"., Environ. 5, (2007): 381– 387. 93- LEHMANN, J., AND JOSEPH, S., "Biochar for environmental management: An introduction. In ―Biochar for Environmental Management: Science and Technology" ( J. Lehmann and S. Joseph, Eds.), Earthscan, London. (2009). 94- LEHMANN, J., DA SILVA, J. P. JR., STEINER, C., NEHLS, T., ZECH, W., AND GLASER, B., "Nutrient availability and leaching in an archaeological Anthrosol and a Ferralsol in the Central Amazon basin: Fertiliser, manure and charcoal amendments"., Plant Soil, 249, (2003): 343–357. 95- LI S, BARRETO V, LI R, CHEN G, HSIEH YP., "Nitrogen retention of biochar derived from diferent feedstocks at variable pyrolysis temperatures". J Anal Appl Pyrolysis 133, (2018):136–146.https://doi. org/10.1016/j.jaap.2018.04.010 96- LIANG B, LEHMANN J, SOLOMON D, KINYANGI J, GROSSMAN J, ET AL., "Black carbon increases cation exchange capacity in soils"., Soil Science Society of America Journal, 70, (2006): 1719–1730. 97- LIANG, B.; LEHMANN, J.; SOLOMON, D.; SOHI, S.; THIES, J.E.; SKJEMSTAD, J.O.; LUIZAO, F.J.; ENGELHARD, M.H.; NEVES, E.G and S. WIRICK., "Stability of biomass derived black carbon in soils". Geochimica et Cosmochimica. Acta 72, (2008): 6096–6078. 98- LU H, LASHARI MS, LIU X ET AL., "Changes in soil microbial community structure and enzyme activity with amendment of biochar-manure compost and pyroligneous solution in a saline soil from Central China". Eur J Soil Biol 70, (2015):67–76. https://doi. org/10.1016/j.ejsobi.2015.07.00599- MAJOR, J.; C. STEINER, A.; DITOMMASO, N.P.S.; FALCAO, and J. LEHMANN. "Weed composition and cover afterthree years of soil fertility management in the centralBrazilian Amazon; compost, fertilizer, manure andcharcoal applications"., Weed Biology and Management, No (5), (2005): 69– 76. 100- MAJOR, J.; RONDON, M.; MOLINA, D.; RIHA, S.J and J. LEHMANN., "Maize yield and nutrition after 4 years of doing biochar application to a Colombian savanna oxisol". Plant and Soil, No (333),( 2010): 117–128. 101- MAJOR, J; STEINER, C; DOWNIE, A. and LEHMANN, J., "Biochar effects on nutrient leaching". J. Lehmann and S. Joseph (ed.) "Biochar for environmental management"., Science and technology. Earth scan. London., (2009): Pp: 271– 287. 102- MANKASINGH, U., CHOI, P.C and RAGNARSDOTTIR, V., "Biochar application in a tropical, agricultural region: A plot scale study in Tamil Nadu", India. Appl, Geochem, (2011): 218-221. 103- MASIELLO, C., DUGAN, B., BREWER, C., SPOKAS, K., NOVAK, J and Z. LIU., "Biochar effects on soil hydrology". Lehmann J, Stephen J (eds) "Biochar for environmental management". science and technology, Routledge, (2015): 543–562. 104- MATAR, A AND A. ZIDAN. (1983). "THE MANUAL OF SOIL FERTILITY. Text book for 4th year agriculture". (Arabic). Pp 138, Tishreen University Publications. Syria. 105- MEHLICH, A. "Rapid Determination of Cation and Anion Exchange Properties and pHe of Soils", Journal of Association of Official Agricultural Chemists, Volume 36, Issue 2, (1953): Pages 445–457. 106- METWALY, H., "Response of Potato Growth, Yield and Quality to Fulvic Acid and Biochar Applications under Different Levels of Chemical Fertilization"., Journal of plant production. No (11), (2020): 145-151. 107- MOHAN, D., PITTMAN, C. U. JR., BRCIKA, M., SMITH, F., YANCEY, B., MOHAMMAD, J., STEELE, P. H., ALEXANDRE-FRANCO, M. F., GO´MEZSERRANO, V., AND GONG, H., "Sorption of arsenic, cadmium and lead by chars produced from fast pyrolysis of wood and bark during bio-oil production"., J. Colloid Interface Sci. 310, (2007): 57–73. 108- MORALES MM, COMERFORD N, GUERRINI IA, FALCÃO NPS, REEVES JB., "Sorption and desorption of phosphate on biochar and biochar-soil mixtures". Soil Use Manage 29(3), (2013):306–314. https:// doi.org/10.1111/sum.12047 109- MORTVEDT, J. J,. P. M. GIORDANO AND W. L. LINDSAY., "Micronutrients In Agriculture. 4th ed", Soil Sc. Soc. of America, (1982), Inc. Madison, Wisconsin USA. 110- MOTSARA, M. AND ROY, R.N. "Guide to Laboratory Establishment for Plant Nutrient Analysis". Food and Agriculture Organization of the United Nations, (2008): Rome.111- MUKHERJEE, A. and LAL. R., "Biochar impacts on soil physical properties and greenhouse gas emissions"., J. Agronomy, (2013): 313 - 339. 112- NARTEY, O.D.; ZHAO, B. "Biochar preparation, characterization, and adsorptive capacity and its effect on bioavailability of contaminants: An overview. Adv. Mater", Sci. Eng., (2014): 715398. 113- NGUYEN, B.T., LEHMANN, J., HOCKADAY, W.C., JOSEPH, S., MASIELLO, C.A., "Temperature sensitivity of black carbon decomposition and oxidation"., Environ. Sci. Technol. 44, (2010): 3324-3331. 114- NULL Corporation. (2009). Genstat Twelfth Edition, Procedure Library Release, PL12.1, VSN. International Ltd. 115- OLMO M, LOPEZ-IGLESIAS, B, VILLAR R. "Drought changes the structure and elemental composition of very fine roots in seedlings of ten woody tree species, Implications for a drier climate". Plant Soil (2014). 116- PALM, C A., GACHENGO, C.N., DELVE, R.J., CADISH, G. and GILLER, K.E. "Organic inputs for soil fertility management in tropical agro ecosystem: application of an organic resource database", Agric. Ecosys. Environ, Vol. 83, (2001): 27-42. 117- PANDIT, NR.; MULDER, J.; HALE, SE.; MARTINSEN, V.; SCHMIDT, HP and G. Cornelissen., "Biochar improves maize growth by alleviation of nutrient stress in a moderately acidic low-input Nepalese soil". Science of The Total Environment. No (625), (2018): 1380-1389. 118- PASCUAL, JA.; GARCÍA, C and HERNANDEZ, T. "Lasting microbiological and biochemical effects of the addition of municipal solid waste to an arid soil", Biol-Fertil Soils, No. 30, (1999): 1–6. 119- POULTON, J.L., BRYLA, D., KOIDE, R.T., STEPHENSON, A.G., "Mycorrhyzal infection and high soil phosphorus improve vegetative growth and the female and male functions in tomato"., New Phytol. 154, (2002): 255–264. 120- PRATIWI EPA, HILLARY AK, FUKUDA T, SHINOGI Y., "The efects of rice husk char on ammonium, nitrate and phosphate retention and leaching in loamy soil".Geoderma277,(2016):61–68.https://doi.org/10.1016/j.geoderma.2016.05.006 121- RAHMAN, M.M., SALLEH, M.A.M., RASHID, U., AHSAN, A., HOSSAIN, M.M., RA, C.S., "Production of slow release crystal fertilizer from wastewaters through struvite crystallization - a review"., Arab. J. Chem. 7, (2014): 139–155. https://doi.org/10.1016/j.arabjc.2013.10.007. 122- RASHMI I, JHA P, BISWAS AK., "Phosphorus sorption and desorption in soils amended with subabul biochar". Agric Res 9(3), (2020): 371– 378. https://doi.org/10.1007/s40003-019-00437-3 123- REDDY, S.B.N. "Biocharculture: Biochar for Environment and Development", 1st ed.; Meta Meta: Hertogenbosch, The Netherlands, 2014. 124- RICHARDS, L. A." Diagnosis and Improvement of Saline and Alkali Soils Handbook". USDA. (1954(: N0 60.125- RINGER, M., JAKAB, G., SIPOS, P., SZABÓ, M., HORVÁTH-SZABÓ, K., PERÉNYI, K. & SZALAI, Z., "Vertical differentiation of pedogenic iron forms– a key of hydromorphic soil profile development". Hungarian Geographical Bulletin 70, (2021): 369–380. 126- SHAVIV, A., "Advances in controlled-release fertilizers"., Adv. Agron. (2001): https://doi.org/10.1016/s0065-2113(01)71011-5. 127- SOHI, SP.; KRULL, E.; LÓPEZ-CAPEL, E and R, BOL., "A review of biochar and its use and function in soil"., Adv. Agro., No (105),( 2010): 47–82. 128- Spokas, K.A.; Cantrell, K.B.; Novak, J.M.; Archer, D.W., Ippolito, J.A.; Collins, H.P.; Boateng, A.A.; Lima, I.M.; Lamb, M.C.; McAloon, A.J.; et al. "Biochar: A synthesis of its agronomic impact beyond carbon sequestration"., J. Environ. Qual, 41, (2012): 973–989. 129- STAVI, I and R, LAL. "Agroforestry and biochar to offset climate change: A Review"., Agro. Sustain. Dev. No (33), (2013): 81–96. 130- STEFANIUK, M., OLESZCZUK, P., "Addition of biochar to sewage sludge decreases freely dissolved PAHs content and toxicity of sewage sludge-amended soil"., Environ. Pollut. 218, (2016): 242–251. https://doi.org/10.1016/j.envpol.2016.06.063. 131- STEFANIUK, M., TSANG, D.C.W., OK, Y.S., OLESZCZUK, P. "A field study of bioavailable polycyclic aromatic hydrocarbons (PAHs) in sewage sludge and biochar amended soils". J. Hazard. Mater. 349, (2018): 27–34. https://doi.org/10.1016/j.jhazmat.2018.01.045. 132- STEINER C, TEIXEIRA WG, LEHMANN J, NEHLS T, DE MACÊDO JLV, BLUM WE, ZECH W., "Long term efects of manure, charcoal and mineral fertilization on crop production and fertility on a highly weathered Central Amazonian upland soil"., Plant Soil 291(1– 2), (2007): 275–290. https://doi.org/10.1007/s11104-007-9193-9 133- TADESSE, W., SANCHEZ-GARCIA, M., ASSEFA, S. G., AMRI, A., BISHAW, Z., OGBONNAYA, F. C., AND BAUM, M. "Genetic Gains in Wheat Breeding and Its Role in Feeding the World. Crop Breeding", Genetics and Genomics, 1, (2019): 1-28. 134- TAKAYA C, FLETCHER L, SINGH S, ANYIKUDE K, ROSS A., "Phosphate and ammonium sorption capacity of biochar and hydrochar from diferent wastes". Chemosphere,145,(2016):518-527. https://doi.org/10.1016/j.chemosphere.2015.11.052 135- THOMAS SC, FRYE S, GALE N ET AL., "Biochar mitigates negative efects of salt additions on two herbaceous plant species"., J Environ Manage, 129, (2013):62–68. https://doi.org/10.1016/j.jenvm an.2013.05.057 136- TITILADUNAYO, I. F., MCDONALD, A. G., and FAPETU, O. P. "Effect of temperature on biochar product yield from selected lignocellulosic biomass in a pyrolysis process". Waste and Biomass Valorization, 3(3), (2012): 311-318.137- TRAZZI P, LEAHY J, HAYES M, KWAPINSKI W., "Adsorption and desorption of phosphate on biochars", J Environ Chem Eng 4(1), (2016):37– 46. https://doi.org/10.1016/j.jece.2015.11.005 138- U.S. Department of Agriculture (USDA). "World Agricultural Production. International Production Assessment Division (IPAD)". Washington,: Foreign Agricultural Service, Office of Global Analysis. (2019): Retrieved from https://apps.fas.usda.gov/psdonline/circulars/production.pdf 139- UDO, E. J., H. L. BOHN AND T. C. TUCKER., "Zink adsorption by calcareous soils"., Soil Sc. Soc. Amer. Proc. 34, (1970): 405 – 407. 140- USMAN ARA, AL-WABEL MI, OK YS ET AL., "Conocarpus biochar induces changes in soil nutrient availability and tomato growth under saline irrigation. Pedosphere"., 26, (2016):27–38. https://doi.org/10. 1016/S1002-0160(15)60019-4 141- UZOMA, K.C., INOUE, M., ANDRY, H., FUJIMAKI, H., ZAHOOR, A and NISHIHARA, E., "Effect of cow manure biochar on maize productivity under sandy soil condition", Soil Use and Management, Vol. 27 (2), (2011): 205–212. 142- VAN ZWIETEN, L., KIMBER, S., DOWNIE, A., CHAN, K.Y., COWIE, A., WAINBERG, R., MORRIS, S., "Paper mill char: benefits to soil health and plant production. In: International Biochar Initiative Conference, Terrigal, Australia", 30 April–2 May (2007). 143- VANLAUWE, B. "Integrated soil fertility management research at TSBF: the framework, the principles and their application. In: Managing N nutrient cycles to sustain soil fertility in sub-Saharan Africa". A. Bationo (ed.) Academy Science Publishers, AAS, Nairobi, Kenya, (2004): 25-42. 144- WALKLEY, A. AND BLACK, I.A. "An Examination of the Degtjareff Method for Determining Soil Organic Matter and a Proposed Modification of the Chromic Acid Titration Method". Soil Science, 37, (1934): 29-38. 145- WALTER, R. and B, RAO. "Biochars influence sweet-potato yield and nutrient uptake in tropical Papua New Guinea". Journal of Plant Nutrition and Soil Science, Vol (178), No (3), (2015): 393–400. 146- WANG L. "The roles of biochar as green admixture for sediment-based construction products". Cement and Concrete Composites. (2019): 104:103348. 147- WANG Q, XU L, GUO D, WANG G, SONG X, MA Y., "The continuous application of biochar in feld: efects on P fraction, P sorption and release"., Chemosphere 263, (2021): 128084. https://doi.org/10.1016/j. chemosphere.2020.128084 148- WOLDE, G. M., TRAUTEWIG, C., MASCHER, M., AND SCHNURBUSCH, T. "Genetic insights into morphometric inflorescence traits of wheat", Theoretical and Applied Genetics, 132, (2019): 1661–1676. 149- WONG, J., CHEN, Z., WONG, A., NG, C and M. WONG., "Effects of biochar on hydraulic conductivity of compacted kaolin clay"., Envi. Poll, Vol. 234, (2018): 468–472150- XIE, T., REDDY, K.R., WANG, C., YARGICOGLU, E., SPOKAS, K., "Characteristics and applications of biochar for environmental remediation: a review"., Crit. Rev. Environ. Sci. Technol. 45, (2015): 939–969. https://doi.org/10.1080/10643389.2014.924180. 151- XU CY, HOSSEINI-BAI S, HAO Y, RACHAPUTI R, WANG H, XU Z, WALLACE H., "Efect of biochar amendment on yield and photosynthesis of peanut on two types of soils"., Environ Sci Pollut Res 22(8), (2015): 6112–6125. https://doi.org/10.1007/s11356-014-3820-9 152- XU W-C, TOMITA A. "The effects of temperature and residence time on the secondary reactions of volatiles from coal pyrolysis". Fuel Processing Technology., 21(1), (1989): 25-37. 153- Xu, Y., and CHEN, B. "Investigation of thermodynamic parameters in the pyrolysis conversion of biomass and manure to biochars using thermogravimetric analysis". Bioresource technology, 146, (2013): 485-493. 154- YANG, YANG, LIU, B., NI, X., TAO, L., YU, L., YANG, YE, FENG, M., ZHONG, W., WU, Y., "Rice productivity and profitability with slow-release urea containing organic-inorganic matrix materials"., Pedosphere 31, (2021): 511– 520. https://doi.org/10.1016/S1002-0160(21)60001-2. 155- YAO Y, GAO B, ZHANG M, INYANG M, ZIMMERMAN AR., "Efect of biochar amendment on sorption and leaching of nitrate, ammonium, and phosphate in a sandy soil". Chemosphere 89(11), (2012): 1467– 1471. https://doi.org/10.1016/j.chemosphere.2012.06.002 156- YOGALAKSHMI K ET AL. "Lignocellulosic biomass-based pyrolysis: A comprehensive review". Chemosphere. (2022): 286:131824. 157- YUAN, J.H., XU, R.K., ZHANG, H., "The forms of alkalis in the biochar produced from crop residues at different temperatures". Bioresour. Technol. 102, (2011): 3488-3497. 158- ZAMPARAS, M; M. DROSOS,; Y. GEORGIOU; Y. DELIGIANNAKIS AND I. ZACHARIAS., "A novel bentonite-humic acid composite material Bephos™ for removal of phosphate and ammonium from eutrophic waters". Chemical Engineering Journal, 225, (2013): 43–51. 159- ZHANG D, PAN G, WU G, WANJIRU KIBUE G, LI L, ZHANG X, ZHENG J, ZHENG J, CHENG K, JOSEPH S, LIU X., "Biochar helps enhance maize productivity and reduce greenhouse gas emissions under balanced fertilization in a rainfed low fertility inceptisol". Chemosphere 142, (2015): 106–113. https://doi.org/10.1016/j.chemosphere. 2015.04.088 160- ZHANG H, CHEN C, GRAY EM, BOYD SE, YANG H, ZHANG D., " Roles of biochar in improving phosphorus availability in soils: a phosphate adsorbent and a source of available phosphorus". Geoderma 276, (2016):1–6. https://doi.org/10.1016/j.geoderma.2016.04.020 161- ZHANG, L., ZHAO, J and Y. WANG., "Biochar addition drives soil aggregation and carbon sequestration in aggregate fractions from an intensive agricultural system", Soils Sediments, (2016): 1349-1368.162- ZHANG, L.; SUN, X.; TIAN, Y. and X, GONG., "Biochar and humic acid amendments improve the quality of composted green waste as a growth medium for the ornamental plant Calathea insignis". Scientia Horticulture, No (176),(2014): 70–78 163- ZHAO, N.; LV, Y.; YANG, X., "A new 3D conceptual structure modeling of biochars by molecular mechanic and molecular dynamic simulation"., J. Soils Sediments, 17, (2015): 1–15. 164- ZHAO, S. X., Ta, N., and WANG, X. D. "Effect of temperature on the structural and physicochemical properties of biochar with apple tree branches as feedstock material". Energies, 10(9), (2017): 1293. 165- ZHENG H, WANG Z, DENG X, ZHAO J, LUO Y, NOVAK J, HERBERT S, XING B., "Characteristics and nutrient values of biochars produced from giant reed at diferent temperatures". Bioresour Technol 130, (2013): 463–471. https://doi.org/10.1016/j.biortech.2012.12.044 166- ZHOU Y ET AL. "Production and beneficial impact of biochar for environmental application: A comprehensive review". Bioresource Technology. (2021); 337:125451. 167- ZIDAN, A; EBRAHEM, G; HABEEB, L and A. ROKIA., "Geology & Fundamentals of Soil Science", Tishreen University Publications, Text book for 2nd year agriculture. (Arabic). Lattakia. Syria., (1997): 350.
类型
Thesis

2024-01-16
EndNote