Poultry biogas slurry can partially substitute for mineral fertilizers in hydroponic lettuce production

被引:0
作者
Lei Wang
Shirong Guo
Ying Wang
Dandan Yi
Jian Wang
机构
[1] Nanjing Agricultural University,College of Horticulture
[2] Nanjing Agricultural University (Suqian) Academy of Protected Horticulture,undefined
来源
Environmental Science and Pollution Research | 2019年 / 26卷
关键词
Poultry biogas slurry; Substitute fertilization; Quality; Heavy metals; Economic and ecological benefits; Lettuce;
D O I
暂无
中图分类号
学科分类号
摘要
Poultry biogas slurry, a by-product of the biogas production process, is rich in nutrients. However, improper handling increases the potential for serious environmental contamination and resource waste. The preparation of nutrient solutions for hydroponic lettuce production requires large amounts of mineral fertilizers, which provides an opportunity for poultry biogas slurry to enter the crop nutrient cycle. To assess the feasibility of the application of poultry biogas slurry, we used different proportions of biogas slurry and mineral fertilizers in a hydroponics experiment with lettuce. Four treatments were established: HS (half-strength Hoagland solution), BS (2.6% biogas slurry), BS + HS (1.3% biogas slurry + quarter-strength Hoagland solution), and BS + MF (2.6% biogas slurry + mineral fertilizers). The addition of poultry biogas slurry (BS + HS) did not have an adverse effect on lettuce growth, significantly increased the soluble sugar concentration, reduced the nitrate concentration, and the concentrations of heavy metals were still within the safety standards. In addition, the application of poultry biogas slurry could effectively reduce the production costs, energy consumption, and greenhouse gas emissions of hydroponically grown lettuce. Based on our study, poultry biogas slurry could replace 50% of the mineral fertilizer used in hydroponic lettuce production. The key is to control the electrical conductivity and replenish the nutrients that are lacking in the biogas slurry, especially magnesium.
引用
收藏
页码:659 / 671
页数:12
相关论文
共 259 条
[1]  
Abubaker J(2012)Biogas residues as fertilisers—effects on wheat growth and soil microbial activities Appl Energy 99 126-134
[2]  
Risberg K(2012)Chemical properties of anaerobic digestates affecting C and N dynamics in amended soils Agric Ecosyst Environ 160 15-22
[3]  
Pell M(2012)Assessment of the fertiliser potential of digestates from farm and agroindustrial residues Biomass Bioenergy 40 181-189
[4]  
Alburquerque JA(1949)Copper enzymes in isolated chloroplasts. Polyphenoloxidase in Plant Physiol 24 1-15
[5]  
Fuente CDL(2004)Potential biochemical indicators of salinity tolerance in plants Plant Sci 166 3-16
[6]  
Bernal MP(2012)Effect of organic fertilizers on nitrate accumulation in vegetables and mineral nitrogen in tropical soils of Morogoro, Tanzania Exp Agric 48 111-126
[7]  
Alburquerque JA(2017)Nitrous oxide emissions and nitrogen use efficiency of manure and digestates applied to spring barley Agric Ecosyst Environ 239 188-198
[8]  
Fuente CDL(2013)Photosynthetic and anatomical responses of Eucalyptus grandis leaves to potassium and sodium supply in a field experiment Plant Cell Environ 37 70-81
[9]  
Ferrercosta A(2016)Health risk assessment of heavy metals in soil–plant system amended with biogas slurry in Taihu basin, China Environ Sci Pollut Res 23 16955-16964
[10]  
Carrasco L(2014)Migration of heavy metals in vegetable farmlands amended with biogas slurry in the Taihu Basin, China Ecol Eng 71 380-383