Drum composting of nitrogen-rich Hydrilla Verticillata with carbon-rich agents: Effects on composting physics and kinetics.
暂无分享,去创建一个
[1] A. Kalamdhad,et al. Efficacy of batch mode rotary drum composter for management of aquatic weed (Hydrilla verticillata (L.f.) Royle). , 2018, Journal of environmental management.
[2] Lujia Han,et al. Particle-scale visualization of the evolution of methanogens and methanotrophs and its correlation with CH4 emissions during manure aerobic composting. , 2018, Waste management.
[3] Lujia Han,et al. Multivariate and Multiscale Approaches for Interpreting the Mechanisms of Nitrous Oxide Emission during Pig Manure-Wheat Straw Aerobic Composting. , 2018, Environmental science & technology.
[4] A. Kalamdhad,et al. Composting physics: A degradation process-determining tool for industrial sludge , 2018, Ecological Engineering.
[5] A. Kalamdhad,et al. Composting physics: A science behind bio-degradation of lignocellulose aquatic waste amended with inoculum and bulking agent , 2018 .
[6] Rohit H. Jambhulkar,et al. Biochar amendment for batch composting of nitrogen rich organic waste: Effect on degradation kinetics, composting physics and nutritional properties. , 2018, Bioresource technology.
[7] A. Kalamdhad,et al. A review on management of Hydrilla verticillata and its utilization as potential nitrogen-rich biomass for compost or biogas production , 2018 .
[8] A. Kalamdhad,et al. The preferential composting of water fern and a reduction of the mobility of potential toxic elements in a rotary drum reactor , 2016 .
[9] Lujia Han,et al. Particle-scale modeling of oxygen uptake rate during pig manure–wheat straw composting: A new approach that considers surface convection , 2016 .
[10] Lu Zhang,et al. Influence of bulking agents on physical, chemical, and microbiological properties during the two-stage composting of green waste. , 2016, Waste management.
[11] Lujia Han,et al. Modeling of oxygen uptake rate evolution in pig manure–wheat straw aerobic composting process , 2015 .
[12] Lujia Han,et al. Mechanism and kinetics of organic matter degradation based on particle structure variation during pig manure aerobic composting. , 2015, Journal of hazardous materials.
[13] Li-Ming Shao,et al. Effects of bulking agent addition on odorous compounds emissions during composting of OFMSW. , 2014, Waste management.
[14] Lu Zhang,et al. Effects of rhamnolipid and initial compost particle size on the two-stage composting of green waste. , 2014, Bioresource technology.
[15] A. Kalamdhad,et al. Potential for composting of green phumdi biomass of Loktak lake , 2014 .
[16] Lujia Han,et al. Characterization of the dynamic thickness of the aerobic layer during pig manure aerobic composting by Fourier transform infrared microspectroscopy. , 2014, Environmental science & technology.
[17] V. S. Varma,et al. Effects of Leachate during Vegetable Waste Composting using Rotary Drum Composter , 2014 .
[18] F. Tack,et al. Effect of composting on the Cd, Zn and Mn content and fractionation in feedstock mixtures with wood chips from a short-rotation coppice and bark. , 2013, Waste management.
[19] Xiaoqiang Gong,et al. Effects of brown sugar and calcium superphosphate on the secondary fermentation of green waste. , 2013, Bioresource technology.
[20] M. Çakmakci,et al. Profiling of bacterial community in a full-scale aerobic composting plant , 2013 .
[21] C. Druilhe,et al. The impact of compaction, moisture content, particle size and type of bulking agent on initial physical properties of sludge-bulking agent mixtures before composting. , 2012, Bioresource technology.
[22] J. Benoist,et al. Characterization and modelling of the heat transfers in a pilot-scale reactor during composting under forced aeration. , 2012, Waste management.
[23] R. JayanP,et al. Aquatic weed classification, environmental effects and the management technologies for its effective control in Kerala, India , 2012 .
[24] A. Kalamdhad,et al. High rate composting of herbal pharmaceutical industry solid waste. , 2012, Water science and technology : a journal of the International Association on Water Pollution Research.
[25] F. Antunes,et al. Theoretical analysis of the kinetic performance of laboratory- and full-scale composting systems , 2012, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[26] X. Font,et al. Odours and volatile organic compounds emitted from municipal solid waste at different stage of decomposition and relationship with biological stability. , 2011, Bioresource technology.
[27] Jason M. Evans,et al. Life cycle assessment of nutrient remediation and bioenergy production potential from the harvest of hydrilla (Hydrilla verticillata). , 2010, Journal of environmental management.
[28] James I. Chang,et al. Effects of bulking agents on food waste composting. , 2010, Bioresource technology.
[29] M. Iqbal,et al. Characterization of bulking agents and its effects on physical properties of compost. , 2010, Bioresource technology.
[30] A. Bonmatí,et al. An assessment of the characteristics of yard trimmings and recirculated yard trimmings used in biowaste composting. , 2010, Bioresource technology.
[31] Marga López,et al. Bulk density determination as a simple and complementary tool in composting process control. , 2010, Bioresource technology.
[32] Ajay S Kalamdhad,et al. Rotary drum composting of vegetable waste and tree leaves. , 2009, Bioresource technology.
[33] J. A. Alburquerque,et al. Composting of animal manures and chemical criteria for compost maturity assessment. A review. , 2009, Bioresource technology.
[34] A. Kazmi,et al. Effects of turning frequency on compost stability and some chemical characteristics in a rotary drum composter. , 2009, Chemosphere.
[35] Fabrizio Adani,et al. Biological compost stability influences odor molecules production measured by electronic nose during food-waste high-rate composting. , 2008, The Science of the total environment.
[36] P. Morard,et al. Effects of humic substances derived from organic waste enhancement on the growth and mineral nutrition of maize. , 2008, Bioresource technology.
[37] S. Towprayoon,et al. Aeration improvement in fed batch composting of vegetable and fruit wastes , 2008 .
[38] Kotaro Kato,et al. Effect of matured compost as a bulking and inoculating agent on the microbial community and maturity of cattle manure compost. , 2008, Bioresource technology.
[39] A. Kazmi,et al. Stability evaluation of compost by respiration techniques in a rotary drum composter , 2008 .
[40] M. C. Vargas-García,et al. In vitro Studies on lignocellulose degradation by microbial strains isolated from composting processes , 2007 .
[41] M. Benito,et al. Chemical and physical properties of pruning waste compost and their seasonal variability. , 2006, Bioresource technology.
[42] Romeela Mohee,et al. Analysis of the physical properties of an in-vessel composting matrix , 2005 .
[43] S. Houot,et al. Stabilization of Organic Matter During Composting: Influence of Process and Feedstocks , 2005 .
[44] H. V. M. Hamelers,et al. Modeling composting kinetics: A review of approaches , 2004 .
[45] N. Koivula,et al. Ash in composting of source-separated catering waste. , 2004, Bioresource technology.
[46] O. Yaldiz,et al. Determination of aeration rate and kinetics of composting some agricultural wastes. , 2004, Bioresource technology.
[47] J.M. Agnew,et al. The Physical Properties of Compost , 2003 .
[48] E. Madejón,et al. New approaches to establish optimum moisture content for compostable materials. , 2002, Bioresource technology.
[49] M. Hamoda,et al. Evaluation of municipal solid waste composting kinetics , 1998 .
[50] K. Ro,et al. Remediation Composting Process Principles: Focus on Soils Contaminated with Explosive Compounds , 1998 .
[51] R. Haug. The Practical Handbook of Compost Engineering , 1993 .
[52] R. Gabriëls,et al. A RAPID METHOD FOR THE DETERMINATION OF PHYSICAL PROPERTIES OF GROWING MEDIA , 1993 .
[53] M. Maher,et al. PHYSICAL AND CHEMICAL PROPERTIES OF FRACTIONATED PEAT , 1993 .
[54] K. R. Reddy,et al. Growth characteristics of aquatic macrophytes cultured in nutrient-enriched water: II. Azolla, Duckweed, and Salvinia , 1985, Economic Botany.
[55] K. L. Schulze,et al. Continuous thermophilic composting. , 1962, Applied microbiology.
[56] E. R. Oviedo-Ocaña,et al. Co-composting of Green Waste Mixed with Unprocessed and Processed Food Waste: Influence on the Composting Process and Product Quality , 2019 .
[57] O. Nunes,et al. Influence of the composition of the initial mixtures on the chemical composition, physicochemical properties and humic-like substances content of composts. , 2014, Waste management.
[58] Suzelle Barrington,et al. Characterization of food waste and bulking agents for composting. , 2008, Waste management.
[59] T. Hernández,et al. Composting anaerobic and aerobic sewage sludges using two proportions of sawdust. , 2007, Waste management.
[60] Y. Kawase,et al. Aerobic composting of waste activated sludge: kinetic analysis for microbiological reaction and oxygen consumption. , 2006, Waste management.
[61] R Barrena,et al. Prediction of temperature and thermal inertia effect in the maturation stage and stockpiling of a large composting mass. , 2006, Waste management.
[62] J. Wong,et al. Effect of C/N on composting of pig manure with sawdust. , 2004, Waste management.
[63] James M. Vose,et al. Quantitative comparison of in situ soil CO 2 flux measurement methods , 2002 .
[64] Miguel A. Sánchez-Monedero,et al. Influence of the bulking agent on the degradation of olive-mill wastewater sludge during composting , 1996 .
[65] A. E. Greenberg,et al. Standard methods for the examination of water and wastewater : supplement to the sixteenth edition , 1988 .