References

  1. G. Sharma, Mu. Naushad, Adsorptive removal of noxious cadmium ions from aqueous medium using activated carbon/zirconium oxide composite: isotherm and kinetic modelling, J. Mol. Liq., 310 (2020) 113025, doi:10.1016/j.molliq.2020.113025.
  2. G. Sharma, B. Thakur, A. Kumar, S. Sharma, Mu. Naushad, F.J. Stadler, Atrazine removal using
    chitin-Cl-poly(acrylamideco-itaconic acid) nanohydrogel: isotherms and pH responsive nature, Carbohydr. Polym., 241 (2020) 116258, doi: 10.1016/j. carbpol.2020.116258.
  3. F. Abdullah, N.A.F. Salleh, M.L. Selahuddeen, Phytochemical and toxicity analysis of Leucas zeylanica crude extracts, Environ. Toxicol. Manage., 1 (2021) 1–8.
  4. A.A.M. Akahir, Z.M. Lazim, S. Salmiati, Removal of silver nanoparticles using phytoremediation method, Environ. Toxicol. Manage., 1 (2021) 28–31.
  5. T. Hadibarata, B.V. Tangahu, Green engineering principles and application: bioremediation, Environ. Toxicol. Manage., 1 (2021) 1–8.
  6. K.N. Mahmud, T.H. Wen, Z.A. Zakaria, Activated carbon and biochar from pineapple waste biomass for the removal of methylene blue, Environ. Toxicol. Manage., 1 (2021) 30–36.
  7. N.S. Zaidi, J. Sohaili, Z.Z. Loh, A. Arisa, N. Hussein, Effect of metal content from sewage sludge on the growth of Orthosiphon stamineus, Environ. Toxicol. Manage., 1 (2021) 29–34.
  8. A. Shahid, M. Usman, Z. Atta, S.G. Musharraf, S. Malik, A. Elkamel, M. Shahid, N. Abdulhamid Alkhattabi, M. Gull, M.A. Mehmood, Impact of wastewater cultivation on pollutant removal, biomass production, metabolite biosynthesis, and carbon dioxide fixation of newly isolated cyanobacteria in a multiproduct biorefinery paradigm, Bioresour. Technol., 333 (2021) 125194, doi: 10.1016/j.biortech.2021.125194.
  9. F. Khan, A. Shahid, H. Zhu, N. Wang, M.R. Javed, N. Ahmad, J. Xu, M.A. Alam, M.A. Mehmood, Prospects of algaebased green synthesis of nanoparticles for environmental applications, Chemosphere, 293 (2022) 133571, doi: 10.1016/j. chemosphere.2022.133571.
  10. A. Shahid, A.Z. Khan, S. Malik, C.-G. Liu, M.A. Mehmood, A. Syafiuddin, N. Wang, H. Zhu, R. Boopathy, Advances in green technologies for the removal of effluent organic matter from the urban wastewater, Curr. Pollut. Rep., 7 (2021) 463–475.
  11. A.I. Abd-Elhamid, M. Emran, M.H. El-Sadek, A.A. El-Shanshory, H.M.A. Soliman, M.A. Akl, M. Rashad, Enhanced removal of cationic dye by eco-friendly activated biochar derived from rice straw, Appl. Water Sci., 10 (2020) 45, doi: 10.1007/s13201-019-1128-0.
  12. G. Sharma, A. Kumar, S. Sharma, Mu. Naushad, P. Dhiman, D.-V.N. Vo, F.J. Stadler, Fe3O4/ZnO/Si3N4 nanocomposite based photocatalyst for the degradation of dyes from aqueous solution, Mater. Lett., 278 (2020) 128359, doi: 10.1016/j. matlet.2020.128359.
  13. G. Sharma, D.D. Dionysiou, S. Sharma, A. Kumar, A.H. Al-Muhtaseb, Mu. Naushad, F.J. Stadler, Highly efficient Sr/Ce/activated carbon bimetallic nanocomposite for photoinduced degradation of rhodamine B, Catal. Today, 335 (2019) 437–451.
  14. Mu. Naushad, G. Sharma, Z.A. Alothman, Photodegradation of toxic dye using
    Gum Arabic-crosslinked-poly(acrylamide)/Ni(OH)2/FeOOH nanocomposites hydrogel, J. Cleaner Prod., 241 (2019) 118263, doi: 10.1016/j.jclepro.2019.118263.
  15. D.N. Ahmed, L.A. Naji, A.A.H. Faisal, N. Al-Ansari, Mu. Naushad, Waste foundry sand/MgFe-layered double hydroxides composite material for efficient removal of Congo red dye from aqueous solution, Sci. Rep., 10 (2020) 2042, doi: 10.1038/s41598-020-58866-y.
  16. S. Wong, N.A. Ghafar, N. Ngadi, F.A. Razmi, I.M. Inuwa, R. Mat, N.A.S. Amin, Effective removal of anionic textile dyes using adsorbent synthesized from coffee waste, Sci. Rep., 10 (2020) 2928,
    doi:10.1038/s41598-020-60021-6.
  17. A. Syafiuddin, M.A. Fulazzaky, Decolorization kinetics and mass transfer mechanisms of Remazol Brilliant Blue R dye mediated by different fungi, Biotechnol. Rep., 29 (2021) e00573, doi: 10.1016/j.btre.2020.e00573.
  18. A. Syafiuddin, R. Boopathy, Role of anaerobic sludge digestion in handling antibiotic resistant bacteria and antibiotic resistance genes – a review, Bioresour. Technol., 330 (2021) 124970, doi:10.1016/j.biortech.2021.124970.
  19. A. Ratnasari, A. Syafiuddin, R. Boopathy, S. Malik, M. Aamer Mehmood, R. Amalia, D. Dwi Prastyo, N. Syamimi Zaidi, Advances in pretreatment technology for handling the palm oil mill effluent: challenges and prospects, Bioresour. Technol., 344 (2022) 126239, doi: 10.1016/j.biortech.2021.126239.
  20. T. Hadibarata, X.K. Chia, Cleaner production: a brief review on definitions, trends and the importance in environment protection, Environ. Toxicol. Manage., 1 (2021) 23–27.
  21. T. Hadibarata, B.A. Permatasari, Groundwater and society: fresh submarine groundwater discharge and its management improvement, Environ. Toxicol. Manage., 1 (2021) 19–22.
  22. M.N.H. Jusoh, C.N. Yap, T. Hadibarata, H. Jusoh, M.Z.M. Najib, Nanomaterial for inorganic pollutant remediation, Environ. Toxicol. Manage., 1 (2021) 18–25.
  23. A. Syafiuddin, S. Salmiati, J. Jonbi, M.A. Fulazzaky, Application of the kinetic and isotherm models for better understanding of the behaviors of silver nanoparticles adsorption onto different adsorbents, J. Environ. Manage., 218 (2018) 59–70.
  24. M.A. Fulazzaky, N.A.A. Salim, M.H. Khamidun, M.H. Puteh, A.R.M. Yusoff, N.H. Abdullah, A. Syafiuddin,
    M.A.A. Zaini, The mechanisms and kinetics of phosphate adsorption onto iron-coated waste mussel shell observed from hydrodynamic column, Int. J. Environ. Sci. Technol. (Tehran), (2021),
    doi: 10.1007/s13762-021-03563-0.
  25. A. Syafiuddin, M.A. Fulazzaky, S. Salmiati, A.B.H. Kueh, M. Fulazzaky, M.R. Salim, Silver nanoparticles adsorption by the synthetic and natural adsorbent materials: an exclusive review, Nanotechnol. Environ. Eng., 5 (2020) 1–18.
  26. D. Phuong, N. Loca, T. Miyanishi, Efficiency of dye adsorption by biochars produced from residues of two rice varieties, Japanese Koshihikari and Vietnamese IR50404, Desal. Water Treat., 165 (2019) 333–351.
  27. T. Hadibarata, A. Syafiuddin, F.A. Al-Dhabaan, M.S. Elshikh, Rubiyatno, Biodegradation of Mordant orange-1 using newly isolated strain Trichoderma harzianum RY44 and its metabolite appraisal, Bioprocess Biosyst. Eng., 41 (2018) 621–632.
  28. A. Syafiuddin, S. Salmiati, T. Hadibarata, A.B.H. Kueh, M.R. Salim, M.A.A. Zaini, Silver nanoparticles in the water environment in Malaysia: Inspection, characterization, removal, modeling, and future perspective, Sci. Rep., 8 (2018) 1–15.
  29. D.A. Al Farraj, T. Hadibarata, A. Yuniarto, A. Syafiuddin, H.K. Surtikanti, M.S. Elshikh, M.M. Al Khulaifi,
    R. Al-Kufaidy, Characterization of pyrene and chrysene degradation by halophilic Hortaea sp. B15, Bioprocess Biosyst. Eng., 42 (2019) 963–969.
  30. A.A.-F. Mostafa, M.S. Elshikh, A.A. Al-Askar, T. Hadibarata, A. Yuniarto, A. Syafiuddin, Decolorization and biotransformation pathway of textile dye by Cylindrocephalum aurelium, Bioprocess Biosyst. Eng., 42 (2019) 1483–1494.
  31. A. Syafiuddin, S. Salmiati, T. Hadibarata, M.R. Salim, A.B.H. Kueh, S. Suhartono, Removal of silver nanoparticles from water environment: experimental, mathematical formulation, and cost analysis, Water Air Soil Pollut., 230 (2019) 102–117.
  32. A. Ratnasari, A. Syafiuddin, A.B.H. Kueh, S. Suhartono, T. Hadibarata, Opportunities and challenges for sustainable bioremediation of natural and synthetic estrogens as emerging water contaminants using bacteria, fungi, and algae, Water Air Soil Pollut., 232 (2021) 242, doi: 10.1007/s11270-021-05183-3.
  33. A. Ratnasari, N.S. Zaidi, A. Syafiuddin, R. Boopathy, A.B.H. Kueh, R. Amalia, D.D. Prasetyo, Prospective biodegradation of organic and nitrogenous pollutants from palm oil mill effluent by acidophilic bacteria and archaea, Bioresour. Technol. Rep., 15 (2021) 100809, doi: 10.1016/j.biteb.2021.100809.
  34. P. Ganguly, R. Sarkhel, P. Das, Synthesis of pyrolyzed biochar and its application for dye removal: batch, kinetic and isotherm with linear and non-linear mathematical analysis, Surf. Interfaces, 20 (2020) 100616, doi: 10.1016/j.surfin.2020.100616.
  35. A. Mohammadi, B. Khoshnevisan, G. Venkatesh, S. Eskandari, A critical review on advancement and challenges of biochar application in paddy fields: environmental and life cycle cost analysis, Processes, 8 (2020) 1275, doi: 10.3390/pr8101275.
  36. C.C. de Figueiredo, A. de Souza Prado Junqueira Reis, A.S. de Araujo, L.E.B. Blum, K. Shah, J. Paz-Ferreiro, Assessing the potential of sewage sludge-derived biochar as a novel phosphorus fertilizer: influence of extractant solutions and pyrolysis temperatures, Waste Manage., 124 (2021) 144–153.
  37. S. Wei, M. Zhu, X. Fan, J. Song, P. Peng, K. Li, W. Jia, H. Song, Influence of pyrolysis temperature and feedstock on carbon fractions of biochar produced from pyrolysis of rice straw, pine wood, pig manure and sewage sludge, Chemosphere, 218 (2019) 624–631.
  38. A.N. Matheri, N.S. Eloko, F. Ntuli, J.C. Ngila, Influence of pyrolyzed sludge use as an adsorbent in removal of selected trace metals from wastewater treatment, Case Stud. Chem. Environ. Eng., 2 (2020) 100018, doi:10.1016/j.cscee.2020.100018.
  39. B.A. Militaru, R. Pode, L. Lupa, W. Schmidt, A. Tekle-Röttering, N. Kazamer, Using sewage sludge ash as an efficient adsorbent for Pb(II) and Cu(II) in single and binary systems, Molecules, 25 (2020) 2559, doi:10.3390/molecules25112559.
  40. K.S.A. Sohaimi, N. Ngadi, H. Mat, I.M. Inuwa, S. Wong, Synthesis, characterization and application of textile sludge biochars for oil removal, J. Environ. Chem. Eng., 5 (2017) 1415–1422.
  41. D. Aller, S. Bakshi, D.A. Laird, Modified method for proximate analysis of biochars, J. Anal. Appl. Pyrolysis, 124 (2017) 335–342.
  42. M.S. Hasan, R. Vasquez, M. Geza, Application of biochar in stormwater treatment: experimental and modeling investigation, Processes, 9 (2021) 860, doi: 10.3390/pr9050860.
  43. S.-X. Zhao, N. Ta, X.-D. Wang, Effect of temperature on the structural and physicochemical properties of biochar with apple tree branches as feedstock material, Energies, 10 (2017) 1293, doi: 10.3390/en10091293.
  44. A. Callegari, A.G. Capodaglio, Properties and beneficial uses of (bio)chars, with special attention to products from sewage sludge pyrolysis, Resources, 7 (2018) 20, doi: 10.3390/resources7010020.
  45. Y. Kuang, X. Zhang, S. Zhou, Adsorption of methylene blue in water onto activated carbon by surfactant modification, Water, 12 (2020) 587, doi: 10.3390/w12020587.
  46. C.E. de Farias Silva, B.M.V. da Gama, A.H. da Silva Gonçalves, J.A. Medeiros, A.K. de Souza Abud, Basic-dye adsorption in albedo residue: effect of pH, contact time, temperature, dye concentration, biomass dosage, rotation and ionic strength, J. King Saud Univ. – Eng. Sci., 32 (2020) 351–359.
  47. I.A. Ahmed, A.H. Ragab, M.A. Habila, T.S. Alomar, E.H. Aljuhani, Equilibrium and kinetic study of anionic and cationic pollutants remediation by limestone–chitosan–alginate nanocomposite from aqueous solution, Molecules, 26 (2021) 2586, doi: 10.3390/molecules26092586.
  48. C.S. Nkutha, N.D. Shooto, E.B. Naidoo, Adsorption studies of methylene blue and lead ions from aqueous solution by using mesoporous coral limestones, S. Afr. J. Chem. Eng., 34 (2020) 151–157.
  49. C. Santhosh, E. Daneshvar, K.M. Tripathi, P. Baltrėnas, T. Kim, E. Baltrėnaitė, A. Bhatnagar, Synthesis and characterization of magnetic biochar adsorbents for the removal of Cr(VI) and Acid orange 7 dye from aqueous solution, Environ. Sci. Pollut. Res., 27 (2020) 32874–32887.