LEADER 04799nam 2201249z- 450 001 9910585945303321 005 20231214132945.0 035 $a(CKB)5600000000483024 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/91202 035 $a(EXLCZ)995600000000483024 100 $a20202208d2022 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aAdvanced Technology of Waste Treatment 210 $aBasel$cMDPI - Multidisciplinary Digital Publishing Institute$d2022 215 $a1 electronic resource (276 p.) 311 $a3-0365-3755-4 311 $a3-0365-3756-2 330 $aThe protection of human health and the environment (representing the main reason for waste management), as well as the sustainable use of natural resources, requires chemical, biological, physical and thermal treatment of wastes. This refers to the conditioning (e.g., drying, washing, comminution, rotting, stabilization, neutralization, agglomeration, homogenization), conversion (e.g., incineration, pyrolysis, gasification, dissolution, evaporation), and separation (classification, direct and indirect (i.e., sensor-based) sorting) of all types of wastes to follow the principles of the waste hierarchy (i.e., prevention (not addressed by this issue), preparation for re-use, recycling, other recovery, and disposal). Longstanding challenges include the increase of yield and purity of recyclable fractions and the sustainable removal or destruction of contaminants from the circular economy.This Special Issue on ?Advanced Technology of Waste Treatment? of Processes collects high-quality research studies addressing challenges on the broad area of chemical, biological, physical and thermal treatment of wastes. 606 $aTechnology: general issues$2bicssc 606 $aHistory of engineering & technology$2bicssc 610 $aselective Cu(II) separation 610 $asustainable waste treatment 610 $amunicipal solid waste 610 $apolymer-assisted ultrafiltration 610 $areal fly ash extracts 610 $aurban mining 610 $apilot installation 610 $aMSWI fly ash 610 $aproperties of fly ash 610 $aacid leaching 610 $aheavy metal recovery 610 $amarine litter 610 $awaste treatment 610 $aplastic waste 610 $apyrolysis 610 $agasification 610 $aincineration 610 $athermogravimetric analysis 610 $abiotechnological upcycling 610 $aplastics recycling 610 $afeedstock recycling 610 $aplastic pyrolysis 610 $alumped modeling 610 $akinetic modeling 610 $aReOil 610 $arisk modelling 610 $aportable batteries 610 $alithium batteries 610 $afire hazards 610 $awaste management 610 $alithium-ion-batteries 610 $apyrometallurgical recycling 610 $acarbothermal reduction 610 $awood ash treatment 610 $achromate reduction 610 $ahot alkaline extraction 610 $arecycling 610 $arefractory 610 $aregenerate 610 $aelectrodynamic fragmentation 610 $ainnovative process 610 $aprocess optimization 610 $aenhanced landfill mining 610 $aNEW-MINE 610 $aparticle size distribution 610 $acompositional data analysis 610 $asimplex 610 $aisometric log-ratios 610 $amultivariate multiple linear regression 610 $amechanical processing 610 $acommercial waste 610 $ashredder 610 $achemical recycling 610 $awet-mechanical processing 610 $apolyolefins 610 $acircular economy 610 $aWEEE 610 $arecovery of aromatics 610 $aoil upgrading 610 $adehalogenation 610 $ahydrothermal carbonization 610 $asewage sludge 610 $aphosphorus recovery 610 $ahydrochar 610 $aprocess-water 610 $apH 610 $amixed waste 610 $amunicipal waste 610 $arecovery 610 $acontaminants 610 $aplastics 610 $adigitalisation 610 $asmart waste factory 615 7$aTechnology: general issues 615 7$aHistory of engineering & technology 700 $aVollprecht$b Daniel$4edt$01288354 702 $aSarc$b Renato$4edt 702 $aVollprecht$b Daniel$4oth 702 $aSarc$b Renato$4oth 906 $aBOOK 912 $a9910585945303321 996 $aAdvanced Technology of Waste Treatment$93020753 997 $aUNINA