References
- F. Montes, R. Meinen, C. Dell, A. Rotz, A.N. Hristov, J. Oh,
G. Waghorn, P.J. Gerber, B. Henderson, H.P.S. Makkar,
J. Dijkstra, SPECIAL TOPICS — Mitigation of methane and
nitrous oxide emissions from animal operations: II. A review of
manure management mitigation options, J. Anim. Sci., 91 (2013)
5070–5094.
- S.V.W.B. de Oliveira, A.B. Leoneti, G.M.M. Caldo,
M.M.B. de Oliveira, Generation of bioenergy and biofertilizer
on a sustainable rural property, Biomass Bioenergy, 35 (2011)
2608–2618.
- H. Insam, I.H. Franke-Whittle, S.M. Podmirseg, Agricultural
waste management in Europe, with an emphasis on anaerobic
digestion, J. Integr. Field Sci., 11 (2014) 13–17.
- X. Chen, G. Li, H. Lin, Y. Li, Y. Ma, R. Dai, J. Zhang, Operation
performance and membrane fouling of a spiral symmetry
stream anaerobic membrane bioreactor supplemented with
biogas aeration, J. Membr. Sci., 539 (2017) 206–212.
- L. Wang, J. Cao, X. Cheng, C. Lei, Q. Dai, B. Yang, Z. Li,
M.A. Younis, L. Lei, Y. Hou, K. Ostrikov, ZIF-Derived carbon
nanoarchitecture as a bifunctional ph-universal electrocatalyst
for energy-efficient hydrogen evolution, ACS Sustainable
Chem. Eng., 7 (2019) 10044–10051.
- X. Bian, Y. Xia, T. Zhan, L. Wang, W. Zhou, Q. Dai, J. Chen,
Electrochemical removal of amoxicillin using a Cu doped PbO2
electrode: Electrode characterization, operational parameters
optimization and degradation mechanism, Chemosphere, 233
(2019) 762–770.
- Z. Liu, K. Sun, B. Zheng, Q.L. Dong, G. Li, H. Han, Z. Li, T. Ning,
Impacts of straw, biogas slurry, manure and mineral fertilizer
applications on several biochemical properties and crop yield in
a wheat-maize cropping system, Plant Soil Environ., 65 (2019)
1–8.
- C. Ledda, A. Schievano, S. Salati, F. Adani, Nitrogen and water
recovery from animal slurries by a new integrated ultrafiltration,
reverse osmosis and cold stripping process: a case study, Water
Res., 47 (2013) 6157–6166.
- L. Masse, D.I. Masse, Y. Pellerin, The use of membranes for the
treatment of manure: a critical literature review, Biosyst. Eng.,
98 (2007) 371–380.
- N.F. Razali, A.W. Mohammad, N. Hilal, C.P. Leo, J. Alam,
Optimisation of polyethersulfone/polyaniline blended
membranes using response surface methodology approach,
Desalination., 311 (2013) 182–191.
- K.W. Jung, M.J. Hwang, M.J. Cha, K.H. Ahn, Application
and optimization of electric field-assisted ultrasonication
for disintegration of waste activated sludge using response
surface methodology with a Box–Behnken design, Ultrason.
Sonochem., 22 (2015) 437–445.
- W.H. Chan, S.C. Tsao, Fabrication of nanofiltration membranes
with tunable separation characteristics using methods of
uniform design and regression analysis, Chemom. Intell. Lab.
Syst., 65 (2003) 241–256.
- D.H. Luo, Optimization of total polysaccharide extraction from
Dioscorea nipponica Makino using response surface methodology
and uniform design, Carbohydr. Polym., 90 (2012) 284–288.
- J.M. Wang, S. Lan, W.K. Li, Numerical simulation and process
optimization of an aluminum holding furnace based on
response surface methodology and uniform design, Energy, 72
(2014) 521–535.
- D.Q. Sun, A.Y. Xue, B. Zhang, X. Xue, J. Zhang, W. Liu,
Enhanced oral bioavailability of acetylpuerarin by poly(lactideco-glycolide) nanoparticles optimized using uniform design
combined with response surface methodology, Drug Des. Dev.
Ther., 10 (2016) 2029–2039.
- The State Environmental Protection Standards of the
People’s Republic of China (HJ/T 399-2007): Water Quality-Determination of Chemical Oxygen Demand-Fast Digestion-Spectrophotometric Method, China Environmental Science
Press, Beijing, 2009.
- The State Environmental Protection Standards of the People’s
Republic of China (HJ 535-2009): Water Quality-Determination
of Ammonia Nitrogen-Nessler Reagent Spectrophotometry,
China Environmental Science Press, Beijing, 2009.
- The State Environmental Protection Standards of the People’s
Republic of China (HJ 636-2012): Water Quality-Determination
of Total Nitrogen-Alkaline Potassium Persulfate Digestion UV
Spectrophotometric Method [S], China Environmental Science
Press, Beijing, 2012.
- The State Environmental Protection Standards of the
People’s Republic of China (GB 11893-89): Water Quality-Determination of Total Phosphorus-Ammonium Molybdate
Spectrophotometric Method, China Environmental Science
Press, Beijing, 1989.
- J.P. Wang, Y.Z. Chen, Y. Wang, S.J. Yuan, H.Q. Yu, Optimization
of the coagulation-flocculation process for pulp mill wastewater
treatment using a combination of uniform design and response
surface methodology, Water Res., 45 (2011) 5633–5640.
- F. Wei, H. Wu, J. Cheng, Y. Liu, G. Zhu, Study on the application
of multifactor experimental designs in pesticide microemulation
development, Chin. J. Pestic. Sci., 11 (2009) 373–380.
- W. Jiang, S.Z. Wang, Z.L. Yang, B.S. Fang, B12-independent
glycerol dehydratase and its reactivase from Clostridia
butyricum: optimizing cloning by uniform design logic, Eng.
Life Sci., 15 (2015) 519–524.
- T.Y. Qiu, P.A. Davies, Concentration polarization model of
spiral-wound membrane modules with application to batchmode
RO desalination of brackish water, Desalination, 368
(2015) 36–47.
- J.S. Choi, J.T. Kim, Modeling of full-scale reverse osmosis
desalination system: Influence of operational parameters, J. Ind.
Eng. Chem., 21 (2015) 261–268.
- L. Masse, D.I. Masse, Y. Pellerin, The effect of pH on the
separation of manure nutrients with reverse osmosis
membranes, J. Membr. Sci., 325 (2008) 914–919.
- P. Fu, H. Ruiz, K. Thompson, C. Spangenberg, Selecting
membranes for removing NOM and DBP precursors, J. Am.
Water Works Assn., 86 (1994) 55–72.
- T. Matsuura, S. Sourirajan, Physicochemical criteria for reverse
osmosis separation of monohydric and polyhydric alcohols in
aqueous solutions using porous cellulose acetate membranes,
J. Appl. Polym. Sci., 15 (2010) 2905–2927.
- M. Weng, J. Pei, Electrochemical oxidation of reverse
osmosis concentrate using a novel electrode: parameter
optimization and kinetics study, Desalination, 399 (2016)
21–28
- M. Weng, X. Yu, Electrochemical oxidation of paraaminophenol
with rare earth doped lead dioxide electrodes:
kinetics modeling and mechanism, Front. Chem., 7 (2019)
382.