Essec\Faculty\Model\Contribution {#2216
#_index: "academ_contributions"
#_id: "10925"
#_source: array:26 [
"id" => "10925"
"slug" => "10925-production-based-pollution-versus-deforestation-optimal-policy-with-state-independent-and-dependent-environmental-absorption-efficiency-restoration-process"
"yearMonth" => "2020-09"
"year" => "2020"
"title" => "Production-Based Pollution Versus Deforestation: Optimal Policy With State-Independent And-Dependent Environmental Absorption Efficiency Restoration Process"
"description" => "EL OUARDIGHI, F., KHMELNITSKY, E. et LEANDRI , M. (2020). Production-Based Pollution Versus Deforestation: Optimal Policy With State-Independent And-Dependent Environmental Absorption Efficiency Restoration Process. <i>Annals of Operations Research</i>, 292(1), pp. 1–26."
"authors" => array:3 [
0 => array:3 [
"name" => "EL OUARDIGHI Fouad"
"bid" => "B00000177"
"slug" => "el-ouardighi-fouad"
]
1 => array:1 [
"name" => "KHMELNITSKY Eugene"
]
2 => array:1 [
"name" => "LEANDRI Marc"
]
]
"ouvrage" => ""
"keywords" => array:5 [
0 => "Optimal pollution"
1 => "Deforestation"
2 => "Environmental absorption efficiency"
3 => "Restoration process"
4 => "History dependence"
]
"updatedAt" => "2025-02-24 10:06:02"
"publicationUrl" => "https://doi.org/10.1007/s10479-020-03638-0"
"publicationInfo" => array:3 [
"pages" => "1–26"
"volume" => "292"
"number" => "1"
]
"type" => array:2 [
"fr" => "Articles"
"en" => "Journal articles"
]
"support_type" => array:2 [
"fr" => "Revue scientifique"
"en" => "Scientific journal"
]
"countries" => array:2 [
"fr" => null
"en" => null
]
"abstract" => array:2 [
"fr" => "An important yet largely unexamined issue is how the interaction between deforestation and pollution affects economic and environmental sustainability. This article seeks to bridge the gap by introducing a dynamic model of pollution accumulation where polluting emissions can be mitigated and the absorption efficiency of pollution sinks can be restored. We assume that emissions are due to a production activity, and we include deforestation both as an additional source of emissions and as a cause of the exhaustion of environmental absorption efficiency. To account for the fact that the switching of natural sinks to a pollution source can be either possible, and in such a case even reversible, or impossible, we consider that restoration efforts can be either independent from or dependent on environmental absorption efficiency, i.e., state-independent versus state-dependent restoration efforts. We determine (i) whether production or deforestation is the most detrimental from environmental and social welfare perspectives, and (ii) how state-dependent restoration process affects pollution accumulation and deforestation policies and the related environmental and social welfare consequences."
"en" => "An important yet largely unexamined issue is how the interaction between deforestation and pollution affects economic and environmental sustainability. This article seeks to bridge the gap by introducing a dynamic model of pollution accumulation where polluting emissions can be mitigated and the absorption efficiency of pollution sinks can be restored. We assume that emissions are due to a production activity, and we include deforestation both as an additional source of emissions and as a cause of the exhaustion of environmental absorption efficiency. To account for the fact that the switching of natural sinks to a pollution source can be either possible, and in such a case even reversible, or impossible, we consider that restoration efforts can be either independent from or dependent on environmental absorption efficiency, i.e., state-independent versus state-dependent restoration efforts. We determine (i) whether production or deforestation is the most detrimental from environmental and social welfare perspectives, and (ii) how state-dependent restoration process affects pollution accumulation and deforestation policies and the related environmental and social welfare consequences."
]
"authors_fields" => array:2 [
"fr" => "Systèmes d'Information, Data Analytics et Opérations"
"en" => "Information Systems, Data Analytics and Operations"
]
"indexedAt" => "2025-07-19T02:21:45.000Z"
"docTitle" => "Production-Based Pollution Versus Deforestation: Optimal Policy With State-Independent And-Dependent Environmental Absorption Efficiency Restoration Process"
"docSurtitle" => "Journal articles"
"authorNames" => "<a href="/cv/el-ouardighi-fouad">EL OUARDIGHI Fouad</a>, KHMELNITSKY Eugene, LEANDRI Marc"
"docDescription" => "<span class="document-property-authors">EL OUARDIGHI Fouad, KHMELNITSKY Eugene, LEANDRI Marc</span><br><span class="document-property-authors_fields">Information Systems, Data Analytics and Operations</span> | <span class="document-property-year">2020</span>"
"keywordList" => "<a href="#">Optimal pollution</a>, <a href="#">Deforestation</a>, <a href="#">Environmental absorption efficiency</a>, <a href="#">Restoration process</a>, <a href="#">History dependence</a>"
"docPreview" => "<b>Production-Based Pollution Versus Deforestation: Optimal Policy With State-Independent And-Dependent Environmental Absorption Efficiency Restoration Process</b><br><span>2020-09 | Journal articles </span>"
"docType" => "research"
"publicationLink" => "<a href="https://doi.org/10.1007/s10479-020-03638-0" target="_blank">Production-Based Pollution Versus Deforestation: Optimal Policy With State-Independent And-Dependent Environmental Absorption Efficiency Restoration Process</a>"
]
+lang: "en"
+"_type": "_doc"
+"_score": 8.758601
+"parent": null
}