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7661by Kanbar, Hussein“... industrialized. The introduction of wastes or by-products into the river is highly anticipated. Based...”
Published 2017
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7662by Yuedong Sun, Jörn Peckmann, Yu Hu, Xudong Wang, Shanggui Gong, Yongbo Peng, Duofu Chen, Dong Feng“... to oxic bottom waters. The carbonate content of the micritic pipes falls between 12.5 and 67.3 wt...”
Published 2020-08-01
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7663by PORTO, Yuri Duarte“... some premises as: inactivate, destroy or remove the toxins; do not produce others toxic waste; maintain...”
Published 2018
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7664by Fraga, Isabel Matos“... of industrial wastes has been stepped up around the world to enhance the quality of the recycled product...”
Published 2017
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7665by M. Saunois, P. Bousquet, B. Poulter, A. Peregon, P. Ciais, J. G. Canadell, E. J. Dlugokencky, G. Etiope, G. Etiope, D. Bastviken, S. Houweling, S. Houweling, G. Janssens-Maenhout, F. N. Tubiello, S. Castaldi, S. Castaldi, S. Castaldi, R. B. Jackson, M. Alexe, V. K. Arora, D. J. Beerling, P. Bergamaschi, D. R. Blake, G. Brailsford, L. Bruhwiler, C. Crevoisier, P. Crill, K. Covey, C. Frankenberg, C. Frankenberg, N. Gedney, L. Höglund-Isaksson, M. Ishizawa, A. Ito, F. Joos, H.-S. Kim, T. Kleinen, P. Krummel, J.-F. Lamarque, R. Langenfelds, R. Locatelli, T. Machida, S. Maksyutov, J. R. Melton, I. Morino, V. Naik, S. O'Doherty, F.-J. W. Parmentier, P. K. Patra, C. Peng, C. Peng, S. Peng, S. Peng, G. P. Peters, I. Pison, R. Prinn, M. Ramonet, W. J. Riley, M. Saito, M. Santini, M. Santini, R. Schroeder, I. J. Simpson, R. Spahni, A. Takizawa, B. F. Thornton, H. Tian, Y. Tohjima, N. Viovy, A. Voulgarakis, R. Weiss, D. J. Wilton, A. Wiltshire, D. Worthy, D. Wunch, X. Xu, X. Xu, Y. Yoshida, B. Zhang, Z. Zhang, Z. Zhang, Q. Zhu“... after 2006 comes from microbial sources (more from agriculture and waste sectors than from natural...”
Published 2017-09-01
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7666by Crouzet, Camille“... this Ph.D thesis at the boundary between process engineering, geosciences and material sciences through...”
Published 2016
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7667by Mattos, Gabriela Nunes Mattos“... volume of waste is generated, being the grape pomace, the main by-product. Due to its composition, rich...”
Published 2017
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7668by Leite, Mayla Monique dos Santos“... with the independent variables: percentage of water (5-30%), concentration of Inulin (0-3%) and concentration of MTGase...”
Published 2017
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7669by FRANCO JUNIOR, Kleso K. S.“..., decreasing water erosion and reducing fertilization costs. In addition, such use stimulates the biological...”
Published 2018
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7670
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7671by Chen, Yi-ning King“...Many industrial operations produce phenolic wastes which are objectionable to receiving waters...”
Published 2017
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7672by Edward Weisberg“.... Waste, if produced in the pasture, would recycle and fertilize the grasses. Instead, the sheer volume...”
Published 2016-01-01
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7673by PINTO, Bruno Vilarinho Victorino“...: water percentage (5, 9, 15, 21 and 25%), manioc starch (0, 2, 5, 8, 10%) and transglutaminase (0, 0.4, 1...”
Published 2018
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7674by Farias Filho, Antonio Lima“... for disposal of treated leachate on surface waters. This study evaluated the use of submerged aerated reactor...”
Published 2016
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7675by Meilleur, Desiree“... in the different wastes located around the mine site. In addition, a potential method to reduce arsenic transport...”
Published 2009
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7676by Magalh?es Neto, B?rbara“...) in the process of sorption are: low waste generation, easy recovery of metals, the possibility of reuse...”
Published 2017
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7677by Cabreira, Gerhard Valkinir“... is the stabilized sewage sludge (biosolid). A solid waste from Sewage Treatment Plants, rich in organic matter...”
Published 2018
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7678by Smith, Benjamin Edward“... as 3% by weight NAs. The acids cause engineering and production difficulties through corrosion...”
Published 2006
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7680