References
- X. Li, S. Peng, X. Deng, M. Su, H. Zeng, Attribution of lake
warming in four shallow lakes in the middle and lower Yangtze
river basin, Environ. Sci. Technol., 53 (2019) 12548–12555.
- X. Hu, X.J. Hu, C.F. Tang, S.Z. Wen, X.F. Wu, J. Long, X. Yang,
H. Wang, L. Zhou, Mechanisms underlying degradation
pathways of Microcystin-LR with doped TiO2 photocatalysis,
Chem. Eng. J., 330 (2017) 355–371.
- P.R. Liu, T. Wang, Z.Y. Yang, Y. Hong, X. Xie, Y.L. Hou, Effects
of Fe3O4 nanoparticle fabrication and surface modification on
Chlorella sp. harvesting efficiency, Sci. Total Environ., 704 (2019)
135286, doi:10.1016/j.scitotenv.2019.135286.
- D. Liu, P. Wang, G.R. Wei, W.B. Dong, F. Hui, Removal of
algal blooms from freshwater by the coagulation–magnetic
separation method, Environ. Sci. Pollut. Res., 20 (2013) 60–65.
- J.K. Song, X.J. Wang, J.X. Ma, X. Wang, J.Y. Wang, J.F. Zhao,
Visible-light-driven in situ inactivation of Microcystis aeruginosa
with the use of floating g-C3N4 heterojunction photocatalyst:
performance, mechanisms and implications, Appl. Catal., B,
226 (2017) 83–92.
- H.R. Sindelar, J.N. Yap, T.H. Boyer, M.T. Brown, Algae
scrubbers for phosphorus removal in impaired waters, Ecol.
Eng., 85 (2015) 144–158.
- Y. Tang, H. Zhang, X. Liu, D.Q. Cai, H.Y. Feng, C.G. Miao,
X.Q. Wang, Z.Y. Wu, Z.L. Yu, Flocculation of harmful algal
blooms by modified attapulgite and its safety evaluation, Water
Res., 45 (2011) 2855–2862.
- K.P. Tsai, H. Uzun, H. Chen, T. Karanfil, A.T. Chow, Control
wildfire-induced Microcystis aeruginosa blooms by copper
sulfate: trade-offs between reducing algal organic matter and
promoting disinfection by-product formation, Water Res.,
158 (2019) 227–236.
- Y.J. Sun, H.L. Zheng, Z.P. Xiong, Y.L. Wang, X.M. Tang,
W. Chen, Y. Ding. Algae removal from raw water by flocculation
and the fractal characteristics of flocs, Desal. Water Treat.,
56 (2015) 894–904.
- B.H. Zhang, Z.G. Ding, H.Q. Li, X.Z. Mou, Y.Q. Zhang,
J.Y. Yang, E.M. Zhou, W.J. Li, Algicidal activity of Streptomyces
eurocidicus JXJ-0089 metabolites and their effects on microcystis
physiology, Appl. Environ. Microbiol., 82 (2016) 5132–5143.
- H. Zou, J.X. Deng, Y. Zhu, Application of plant allelopathy
in controlling of algal bloom, Food Sci. Biotechnol., 31 (2012)
134–140.
- Y.L. Guo, H.Y. Fu, G.H. Huang, P.F. Gao, T. Chai, B. Yan, H. Liao,
Allelopathy effects of ferulic acid and coumarin on Microcystis
aeruginosa, Environ. Sci., 34 (2013) 1492–1497.
- B.L. Wang, Q.Y. Song, J.J. Long, J.F. Song, W.J. Mi, Y.H. Bi,
Optimization method for Microcystis bloom mitigation by
hydrogen peroxide and its stimulative effects on growth of
chlorophytes, Chemosphere, 228 (2019) 503–512.
- H.P. Wang, F. Liu, P. Luo, Z.H. Li, L.G. Zheng, H. Wang, D.S. Zou,
J.S. Wu, Allelopathic effects of Myriophyllum aquaticum on two
cyanobacteria of Anabaena flos-aquae and Microcystis aeruginosa,
Bull. Environ. Contam. Toxicol., 98 (2017) 556–561.
- S.P. Zuo, Z.C. Fang, S.B. Zhou, L.T. Ye, Benthic fauna promote
algicidal effect of allelopathic macrophytes on Microcystis
aeruginosa, J. Plant Growth Regul., 35 (2016) 646–654.
- S.P. Zuo, H.M. Wang, L.D. Gan, L.D.D. Gan, M.H. Shao,
Allelopathy appraisal of worm metabolites in the synergistic
effect between Limnodrilus hoffmeisteri and Potamogeton
malaianus on algal suppression, Ecotoxicol. Environ. Saf.,
182 (2019) 109482.
- P. Laue, H. Bährs, S. Chakrabarti, C.E.W. Steinberg, Natural
xenobiotics to prevent cyanobacterial and algal growth in
freshwater: contrasting efficacy of tannic acid, gallic acid, and
gramine, Chemosphere, 104 (2014) 212–220.
- Z.B. Wu, Y.N. Gao, J. Wang, B.Y. Liu, Y.Y. Zhang, Allelopathic
effects of pyrogallic acid secreted by submerged macrophytes
on Microcystis aeruginosa: role of ROS generation, Allelopathy J.,
33 (2014) 121–129.
- H.Q. Wang, S.P. Cheng, S.H. Zhang, H. Feng, L. Wei, L.P. Zhang,
C.Y. Hu, F.J. Ge, Z.B. Wu, Chemical composition in aqueous
extracts of Potamogeton malaianus and Potamogeton maackianus and their allelopathic effects on Microcystis aeruginosa, Pol. J.
Environ. Stud., 19 (2010) 213–218.
- S.C. Sinang, N. Daud, N. Kamaruddin, K.B. Poh, Potential
growth inhibition of freshwater algae by herbaceous plant
exctracts, Acta Ecol. Sin., 39 (2019) 229–233.
- O.R. Colegio, N.Q. Chu, A.L. Szabo, T. Chu, A.M. Rhebergen,
V. Jairam, N. Cyrus, C.E. Brokowski, S.C. Eisenbarth,
G.M. Phillips, Functional polarization of tumour-associated
macrophages by tumour-derived lactic acid, Nature, 513 (2014)
559–563.
- Z. Wen, H. Yan, M. Shi, B. Chen, T.T. Zhang, Inhibitory effect of
the lactic acid leaching solution of Allium cepa L. on Microcystis
aeruginosa, J. Hyg., 47 (2018) 822–832.
- H.J. Tian, J.J. Du, J. Wen, Y. Liu, S.R. Montgomery,
T.P. Scott, B. Aghdasiet, C.J. Xiong, A. Suzuki, T. Hayashi,
M. Ruangchainikom, K. Phan, G. Weintraud, A. Raed,
S.S. Murray, M.D. Doubs, X.J. Yang, X.B. Yuan, J.C. Wang, Y.F. Lu,
Growth-factor nanocapsules with tunable release capability for
bone regeneration, ACS Nano, 10 (2016) 7362–7369.
- S.E. Bae, J. Choi, Y.K. Joung, K. Park, D.K. Han, Controlled
release of bone morphogenetic protein (BMP)-2 from
nanocomplex incorporated on hydroxyapatite-formed titanium
surface, J. Control Release, 160 (2012) 676–684.
- A. Sar, A. Karaipekli, C. Alkan, Preparation, characterization
and thermal properties of lauric acid/expanded perlite as novel
form-stable composite phase change material, Chem. Eng. J.,
155 (2009) 899–904.
- L.X. Ni, K. Acharya, G.X. Ren, S.Y. Li, Y.P. Li, Y. Li, Preparation
and characterization of anti-algal
sustained-release granules
and their inhibitory effects on algae, Chemosphere, 91 (2013)
608–615.
- L.X. Ni, X.T. Jie, P.F. Wang, S.Y. Li, S.Z. Hu, Y.P. Li, Y. Li,
K. Acharya, Characterization of unsaturated fatty acid
sustained-release microspheres for long-term algal inhibition,
Chemosphere, 120 (2015) 383–390.
- A. Sar, A. Karaipekli, K. Kaygusuz, Capric acid and stearic
acid mixture impregnated with gypsum wallboard for lowtemperature
latent heat thermal energy storage, Int. J. Energy
Res., 32 (2008) 154–160.
- A. Belščak-Cvitanović, R. Stojanović, V. Manojlović,
D. Komes, I.J. Cindrić, V. Nedović, B. Bugarski, Encapsulation
of polyphenolic antioxidants from medicinal plant extracts
in alginate–chitosan system enhanced with ascorbic acid by
electrostatic extrusion, Food Res. Int., 44 (2011) 1094–1101.
- A. Karaipekli, A. Sari, Capric-myristic acid/vermiculite
composite as form-stable phase change material for thermal
energy storage, Sol. Energy, 83 (2009) 323–332.
- F. Cheng, X.G. Zhang, R.L. Wen, Z.H. Huang, M.H. Fang,
Y.G. Liu, X.W. Wu, X. Min, Thermal conductivity enhancement
of form-stable tetradecanol/expanded perlite composite phase
change materials by adding Cu powder and carbon fiber for
thermal energy storage, Appl. Therm. Eng., 156 (2019) 653–659.
- U.A. Khan, J.J. Liu, J.B. Pan, H.C. Ma, S.L. Zuo, Y.C. Yu,
A. Ahmad, S. Ullah, M. Iqbal, B.S. Li, Fabrication of flowershaped
hierarchical rGO QDs-Bi-Bi2WO6/EP floating
photocatalyst: eminent degradation kinetic under sun-like
irradiation, Appl. Surf. Sci., 484 (2019) 341–353.
- J. Meng, L.L. Wang, X.M. Liu, J.J. Wu, P.C. Brookes,
J.M. Xu, Physicochemical properties of biochar produced from
aerobically composted swine manure and its potential use as
an environmental amendment, Bioresour. Technol., 142 (2013)
641–646.
- Z. Wang, Y. Lin, D.Y. Wu, H.N. Kong, Hydrous iron oxide
modified diatomite as an active filtration medium for phosphate
capture, Chemosphere, 144 (2016) 1290–1298.
- C.Z. Liu, C.Y. Luo, T.T. Xu, P.Z. Lv, Z.H. Rao, Experimental
study on the thermal performance of capric acid-myristyl
alcohol/expanded perlite composite phase change materials for
thermal energy storage, Sol. Energy, 191 (2019) 585–595.
- W.J. Long, X.W. Tan, B.X. Xiao, N.X. Han, F. Xing, Effective
use of ground waste expanded perlite as green supplementary
cementitious material in eco-friendly alkali activated slag
composites, J. Cleaner Prod., 213 (2019) 406–414.
- L.L. Fu, Q.H. Wang, R.D. Ye, X.M. Fang, Z.G. Zhang, A calcium
chloride hexahydrate/expanded perlite composite with good
heat storage and insulation properties for building energy
conservation, Renewable Energy, 114 (2017) 733–743.
- C.C. Qin, H. Wang, X.Z. Yuan, T. Xiong, J.J. Zhang, J. Zhang,
Understanding structure–performance correlation of biochar
materials in environmental remediation and electrochemical
devices, Chem. Eng. J., 382 (2019) 122977, doi: 10.1016/j.
cej.2019.122977.
- R.J. Zheng, Z.J. Ren, H.M. Gao, A.L. Zhang, Z. Bian, Effects
of calcination on silica phase transition in diatomite, J. Alloys
Compd., 757 (2018) 364–371.
- R. Maryam, A. Nusret, An investigation on the toxic effects of
Malathion (Organophosphate Insecticide) on the Daphnia magna
Straus, 1820 (Crustacea, Cladocera), Turk. J. Zool., 26 (2002)
349–349.
- J. Li, L. Jiang, Y.W. Zhang, G. Qiang, S.C. Han, Study of a new
biological control method combining an enteropathogen and a
chemical insecticide against Solenopsis invicta (Hymenoptera:
Formicidae), J. Econ. Entomol., 111 (2018) 817–822.
- J.X. Chen, W.L. Jiang, H.Y. Hu, X.Y. Ma, Q. Li, X.P. Song, X.L. Ren,
Y. Ma, Joint toxicity of methoxyfenozide and lufenuron on
larvae of Spodoptera exigua Hübner (Lepidoptera: Noctuidae),
J. Asia-Pac. Entomol., 22 (2018) 795–801.
- X.G. Zhang, Z.Y. Yin, D.Z. Meng, Z.H. Huang, R.L. Wen,
Y.T. Huang, X. Min, Y.G. Liu, M.H. Fang, X.W. Wu, Shape-stabilized
composite phase change materials with high thermal
conductivity based on stearic acid and modified expanded
vermiculite, Renewable Energy, 112 (2017) 113–123.
- Y.F. Xu, X.G. Zhang, B.G. Wu, Y.G. Xu, R.L. Wen, Y.G. Liu,
M.H. Fang, X.W. Wu, X. Min, Z.H. Huang, Preparation and
performance of shape-stable phase change materials based on
carbonized-abandoned orange peel and paraffin, Fullerenes
Nanotubes Carbon Nanostruct., 27 (2018) 289–298.
- X.G. Zhang, R.L. Wen, C. Tang, B.G. Wu, Z.H. Huang,
X. Min, Y.T. Huang, Y.G. Liu, M.H. Fang, X.W. Wu, Thermal
conductivity enhancement of polyethylene glycol/expanded
perlite with carbon layer for heat storage application, Energy
Build., 130 (2016) 113–121.
- E.A. Faria, A.G.S. Prado, Kinetic studies of the thermal
degradation of cellulose acetate/niobium and chitosan/niobium
composites, React. Funct. Polym., 67 (2007) 655–661.
- F. Chen, M. Tian, D.M. Zhang, J. Wang, Q.G. Wang, X.X. Yu,
X.H. Zhang, C.X. Wan, Preparation and characterization
of oxidized alginate covalently cross-linked galactosylated
chitosan scaffold for liver tissue engineering, Mater. Sci. Eng.,
32 (2012) 310–320.
- S. Karaman, A. Karaipekli, A. Sar, A. Bicer, Polyethylene glycol
(PEG)/diatomite composite as a novel
form-stable phase change
material for thermal energy storage, Sol. Energy Mater. Sol.
Cells, 95 (2011) 1647–1653.
- N. Tudorachi, R. Lipsa, F.R. Mustata, Thermal degradation of
carboxymethyl starch-g-poly(lactic acid) copolymer by TG–FTIR–MS analysis, Ind. Eng. Chem. Res., 51 (2012) 15537–15545.
- N. Karimpour-Motlagh, H.A. Khonakdar, S.M.A. Jafari, M.
Panahi-Sarmad, S.F. Kasbi, S. Shojaei, V. Goodarzih,
M. Arjmand,
Influence of polypropylene and nanoclay on thermal and
thermo-oxidative degradation of poly(lactide acid): TG-FTIR,
TG-DSC studies and kinetic analysis, Thermochim. Acta,
691 (2020) 178709, doi:10.1016/j.tca.2020.178709.
- C.G.D. Rosa, C.D. Borges, R.C. Zambiazi, M.R. Nunes,
E.V. Benvenutt, S.R.D. Luz, R.F. Davila, J.K. Rutz, Microencapsulation
of gallic acid in chitosan, β-cyclodextrin and xanthan,
Ind. Crops Prod., 46 (2013) 138–146.
- S.H. Yu, F.L. Mi, J.C. Pang, S.C. Jiang, T.H. Kuo, S.J. Wu,
S.S. Shyu, Preparation and characterization of radical and
pH-responsive chitosan–gallic acid conjugate drug carriers,
Carbohydr. Polym., 84 (2011) 794–802.
- L.Y. Ma, C.G. Guo, R.X. Ou, L.C. Sun, Q.W. Wang, L.P. Li,
Preparation and characterization of modified porous wood
flour/lauric-myristic acid eutectic mixture as a form-stable
phase change material, Energy Fuels, 32 (2018) 5453–5461.
- S.S. Khemalapure, V.S. Katti, C.S. Hiremath, M. Basanagouda,
S.M. Hiremath, S.J. Armakovic, S. Armakovic, Molecular
structure, optoelectronic properties, spectroscopic (FTIR,
FT-Raman and UVeVis), H-BDE, NBO and drug likeness
investigations on 7,8-benzocoumarin-4-acetic acid (7BAA),
J. Mol. Struct., 1195 (2019) 815–826.
- C.Y. Guo, X.F. Luo, X.H. Zhou, B.J. Shi, J.J. Wang, J. Zhao,
J.J. Wang, Quantitative analysis of binary polymorphs mixtures
of fusidic acid by diffuse reflectance FTIR spectroscopy, diffuse
reflectance FT-NIR spectroscopy, Raman spectroscopy and
multivariate calibration, J. Pharm. Biomed., 140 (2017) 130–136.
- A. Shalviri, Q. Liu, M.J. Abdekhodaie, X.Y. Wu. Novel modified
starch–xanthan gum hydrogels for controlled drug delivery:
synthesis and characterization, Carbohydr. Polym., 79 (2010)
898–907.
- S.M. Hiremath, A. Suvitha, N.R. Patil, C.S. Hiremath,
S.S.K. Khemalapure, S.K. Pattanayak, Molecular structure,
vibrational spectra, NMR, UV, NBO, NLO, HOMO-LUMO and
molecular docking of 2-(4,6-dimethyl-1-benzofuran-3-yl) acetic
acid (2DBAA): experimental and theoretical approach, J. Mol.
Struct., 1171 (2018) 362–374.
- X.Y. Dou, Q. Li, Q.X. Wu, L.S. Duan, S.Y. Zhou, Y. Zhang,
Effects of lactic acid and mixed acid aqueous solutions on
the preparation, structure and properties of thermoplastic
chitosan, Eur. Polym. J., 134 (2020) 109850, doi: 10.1016/j.
eurpolymj.2020.109850.
- J.S. Liu, Y.Y. Yu, X. He, Research on the preparation and
properties of lauric acid/expanded perlite phase change
materials, Energy Build., 110 (2016) 108–111.
- L.S. He, F.L. Meng, X.J. Diao, Y.W. Li, R. Meng, B.D. Xi, J.M. Shu,
Allelopathic effect of elumbo nucifera stem and leaf tissue extract
on the growth of Microcystis aeruginosa and Scenedesmus
quadricanda, Environ. Sci., 34 (2013) 2637–2641.
- J.X. Deng, H. Zou, Y. Zhuang, On the isolation of anti-algal
compounds from the wheat straw and the algae inhibiting
effect, J. Saf. Environ., 13 (2013) 39–43.
- M. Xu, F.Y. Xu, X.Q. Wu, Effects of the activity of midgut
chitinase, cuticle ache on 4th instar larvae of Hyphantria cunea
by the treatment of different concentration of the mixture of bt
and chlorbenzuron, J. Southwest For. Univ., 35 (2015) 64–70.