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        <baseName xml:lang="de">Fabrik\Silizium-Zelle-mono-DE-2005</baseName>
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      <classificationInformation>
        <common:classification name="NACE 1.1" classes="../346de909-54de-490d-90df-18c4952c3d26.xml">
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      <common:generalComment xml:lang="de">Kurzinfo: Datensatz aus GEMIS. Negative Werte durch Gutschriftenrechnung. 
 
GEMIS steht f&#252;r &#8220;Globales Emissions-Modell Integrierter Systeme&#8220;; es ist ein Softwaretool des &#214;ko-Instituts. GEMIS wurde 1987 erstmals angewendet und wird seitdem weiterentwickelt. 
 
Die GEMIS-Datens&#228;tze beruhen - je nach Anwendung - auf unterschiedlichen Methoden; auch der zeitliche und der &#246;rtliche Bezug der Datens&#228;tze sind verschieden.
 
Methode bei Prozessen mit mehreren Outputs:
 
Zur Modellierung der Datens&#228;tze zu Multi-Output Prozessen wird in GEMIS die Methode der Systemerweiterung verwendet. Hierbei werden Datens&#228;tze, in denen jeweils alle Inputs, alle Outputs und alle Umweltaspekte eines Multi-Output Prozesses ausgewiesen sind, als &#8220;Brutto&#8220; bezeichnet. Durch Subtraktion von &#8218;Bonus&#8217;-Prozessen, die jeweils einen der Outputs auf herk&#246;mmliche Weise bereitstellen, entsteht ein Nettoprozess, in denen das substituierte Nebenprodukt als Gutschrift erscheint. Die Gutschrift ist dabei kein realer Output des Prozesses, sondern ein rechnerischer &#8218;Merker&#8217;. 
 
Beispiel: 
 
Multi-Output Prozess Biogas-BZ-MC-HKW-D-2020/brutto: Output ist 1 TJ Elektrizit&#228;t und 0,6 TJ W&#228;rme, der &#8220;Netto&#8220;-Datensatz soll sich aber nur auf die Elektrizit&#228;t beziehen. Durch Subtraktion des Bonusprozesses W&#228;rme-Bonus-Gas-Hzg-D-2020 mit dem Output W&#228;rme(0,6 TJ) entsteht der &#8220;Netto&#8220;-Datensatz Biogas-BZ-MC-HKW-D-2020/Gas, f&#252;r den als Output 1 TJ Elektrizit&#228;t und 0,6 TJ &#8218;Gutschrift W&#228;rme-Bonus-f&#252;r-KWK (Bio)-2020 bei W&#228;rme-Bonus-Gas-Hzg-D-2020&#8217; angegeben werden; die Gutschrift stellt keinen Stoff- oder Energiefluss des Prozesses dar, sie ist allein rechnerisch begr&#252;ndet.
 

 
Transport:
 
Angaben zu den angesetzten Transportdistanzen werden nicht gegeben.
 
Abschneidekriterien:
 
Wasser wird in der Regel nur auf der Inputseite angegeben (etwa als K&#252;hlwasser), auch wenn es den Prozess wieder verl&#228;sst als Abwasser.
 Weitere Angaben zu angewendeten Abschneidekriterien werden nicht gegeben.
 
Besondere Nomenklatur:
 
Zahlreiche Abk&#252;rzungen f&#252;r Brennstoffe aus Biomasse und entsprechende Technologien.
 
Besonderheiten auf Datensatzebene:
 
Die Datens&#228;tze sind mit Vorketten-Datens&#228;tzen verkn&#252;pft, in denen die jeweils ben&#246;tigten Vorprodukte, Energien und Transportleistungen erzeugt werden. Die Daten zu den Umweltaspekten werden erstens &#8220;direkt&#8220; (d.h., nur aus dem jeweiligen Prozess, falls dieser direkt zu Umweltaspekten beitr&#228;gt) als auch &#8220;mit Vorkette&#8220; (d.h., einschlie&#223;lich aller vorausgehenden Prozesse) ausgewiesen. 
 Negative Werte f&#252;r Stofffl&#252;sse kommen in GEMIS regelm&#228;&#223;ig vor; sie entstehen durch die Anwendung von Systemerweiterung um Multi-Output Prozesse in Single Output Prozesse umzurechnen. 
 Teilweise werden Aufwendungen f&#252;r Produktionsmittel (Anlagen, Fahrzeuge etc.) aufgef&#252;hrt (als Stofffl&#252;sse im Input); diese sind jedoch nicht auf die funktionelle Einheit bezogen, sondern werden als absolute Werte angegeben; sie werden nur als Input und nicht als Output (Entsorgung der Betriebsmittel) angegeben. 
 Die durch die Herstellung dieser Produktionsmittel verursachten Umweltaspekte sind dagegen &#252;ber Leistung, j&#228;hrliche Auslastung und Lebensdauer auf die funktionelle Einheit bezogen 
 
Weiterf&#252;hrende Hinweise und Literatur:
 
#1: Fritsche, U.R., Schmidt, K.: Globales Emissions-Modell Integrierter Systeme (GEMIS), Version 4.2, Handbuch, Darmstadt, August 2004.
 #2: Fritsche, U.R., Schmidt, K.: Globales Emissions-Modell Integrierter Systeme (GEMIS), Version 4.1, Handbuch, Darmstadt, Darmstadt, Januar 2003.
 #3: Fritsche, U., et al.: Stoffstromanalyse zur nachhaltigen energetischen Nutzung von Biomasse, Verbundprojekt gef&#246;rdert vom BMU im Rahmen des ZIP, Projekttr&#228;ger: FZ J&#252;lich, Mai 2004, Anhangband zum Endbericht.
 #4: Fritsche, U., et al.: Umweltanalyse von Energie-, Transport- und Stoffsystemen: Gesamt-Emissions-Modell integrierter Systeme (GEMIS) Version 2.1 - erweiterter und aktualisierter Endbericht, U. Fritsche u.a., i.A. des Hessischen Ministeriums f&#252;r Umwelt, Energie und Bundesangelegenheiten (HMUEB), ver&#246;ffentlicht durch HMUEB, Wiesbaden 1995
 


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      <technologyDescriptionAndIncludedProcesses xml:lang="de">Herstellung von mono-kristallinen Siliziumzellen, Daten nach #1, Tabelle V. Dieser Prozess reflektiert die folgenden Aktivitäten: Aufbringen der Kontakte, 6% Bruch bei Fertigung. Die Daten beziehen sich auf die Herstellung einer mono-Si-Zelle mit einer Fläche von 156 cm², einer Dicke 270-300 µm und einem Gewicht von 10,36 g.
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Zusätzliche Emissionen in Abwasser:	[kg/kg]
neutrale Lösung	70.600
alkalische Lösung	20,9
saure Lösung	76
organischer Abfall	0,0118

Auslastung: 5000h/a
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gesicherte Leistung: 100%
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        <ef2018:originatingProcess refObjectId="0e0b2733-9043-11d3-b2c8-0080c8941b49">
          <common:shortDescription xml:lang="de">Chem-Anorg\NaOH 50 %(Amal.)-DE-2000</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="16">
      <referenceToFlowDataSet type="flow data set" refObjectId="0e0b2401-9043-11d3-b2c8-0080c8941b49">
        <common:shortDescription xml:lang="de">N2 (gasförmig)</common:shortDescription>
        <common:shortDescription xml:lang="en">N2 (gaseous)</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>2.79</meanAmount>
      <resultingAmount>2.79</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="0e0b2e01-9043-11d3-b2c8-0080c8941b49">
          <common:shortDescription xml:lang="de">Xtra-generisch\N2 (gasförmig)</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="17">
      <referenceToFlowDataSet type="flow data set" refObjectId="82b46f7f-faa4-4aa5-bf55-135c0cbb31b6">
        <common:shortDescription xml:lang="de">Metallisierungspaste</common:shortDescription>
        <common:shortDescription xml:lang="en">metallisation paste</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.113</meanAmount>
      <resultingAmount>0.113</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="8c9cfc27-28a7-4007-8d38-dca8645af15d">
          <common:shortDescription xml:lang="de">Chem-Anorg\Metallisierungspaste-2005</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="18">
      <referenceToFlowDataSet type="flow data set" refObjectId="980c98b5-884b-4ac9-b85d-0e60d77dec13">
        <common:shortDescription xml:lang="de">HCl</common:shortDescription>
        <common:shortDescription xml:lang="en">HCl</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.0687</meanAmount>
      <resultingAmount>0.0687</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="6b4b4b69-4286-4393-9b8c-ecea51be3764">
          <common:shortDescription xml:lang="de">Xtra-Rest\HCl</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="19">
      <referenceToFlowDataSet type="flow data set" refObjectId="b68b156a-71fe-4399-8a54-a2c047f4d711">
        <common:shortDescription xml:lang="de">Flußsäure (hochrein)</common:shortDescription>
        <common:shortDescription xml:lang="en">hydrofluoric acid (high purity)</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.0285</meanAmount>
      <resultingAmount>0.0285</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="4a9dc05b-9ce3-4cd5-8255-b4a6b6b610fb">
          <common:shortDescription xml:lang="de">Chem-Anorg\Flußsäure (hochrein)</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="20">
      <referenceToFlowDataSet type="flow data set" refObjectId="c3107aac-e4ad-4b05-bbd1-5840a7b3dca9">
        <common:shortDescription xml:lang="de">Ethanol (hochrein)</common:shortDescription>
        <common:shortDescription xml:lang="en">ethanol (high purity)</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.000963</meanAmount>
      <resultingAmount>0.000963</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="695d8309-7da4-4503-a545-b958b23f183a">
          <common:shortDescription xml:lang="de">Chem-Org\Ethanol (hochrein)</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="21">
      <referenceToFlowDataSet type="flow data set" refObjectId="10c5da71-68a4-44e6-be0c-27b9386ef442">
        <common:shortDescription xml:lang="de">Essigsäure (hochrein)</common:shortDescription>
        <common:shortDescription xml:lang="en">Acetic acid (high purity)</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.00427</meanAmount>
      <resultingAmount>0.00427</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="a8b8b6a4-b732-48d1-8f0d-189258471ec1">
          <common:shortDescription xml:lang="de">Chem-Org\Essigsäure (hochrein)</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="22">
      <referenceToFlowDataSet type="flow data set" refObjectId="0e0b2368-9043-11d3-b2c8-0080c8941b49">
        <common:shortDescription xml:lang="de">EPS</common:shortDescription>
        <common:shortDescription xml:lang="en">EPS</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.000614</meanAmount>
      <resultingAmount>0.000614</resultingAmount>
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      <common:other>
        <ef2018:originatingProcess refObjectId="2f64ebb8-5441-4669-9fe4-c030f557e442">
          <common:shortDescription xml:lang="de">Kunststoff\EPS-DE-2005</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="23">
      <referenceToFlowDataSet type="flow data set" refObjectId="0e0b235d-9043-11d3-b2c8-0080c8941b49">
        <common:shortDescription xml:lang="de">Elektrizität</common:shortDescription>
        <common:shortDescription xml:lang="en">electricity</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>205</meanAmount>
      <resultingAmount>205</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="3006c253-fae4-42b3-92cc-9a91af1c9800">
          <common:shortDescription xml:lang="de">Netz-el-DE-Verteilung-MS-2005</common:shortDescription>
        </ef2018:originatingProcess>
      </common:other>
    </exchange>
    <exchange dataSetInternalID="24">
      <referenceToFlowDataSet type="flow data set" refObjectId="30875c71-7818-4608-9173-aad8bbddf473">
        <common:shortDescription xml:lang="de">CF4 (hochrein)</common:shortDescription>
        <common:shortDescription xml:lang="en">CF4 (high purity)</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.0012</meanAmount>
      <resultingAmount>0.0012</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="3bf953e5-b516-4b48-8d11-52ad3feb862f">
          <common:shortDescription xml:lang="de">Chem-Org\CF4 (hochrein)</common:shortDescription>
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      </common:other>
    </exchange>
    <exchange dataSetInternalID="25">
      <referenceToFlowDataSet type="flow data set" refObjectId="1e24836b-81ad-4b90-baab-76cd14dfc74a">
        <common:shortDescription xml:lang="de">CaCl2 (hochrein)</common:shortDescription>
        <common:shortDescription xml:lang="en">CaCl2 (high purity)</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.0325</meanAmount>
      <resultingAmount>0.0325</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="55a9c5fd-2362-4670-ad5b-8cf186690c32">
          <common:shortDescription xml:lang="de">Chem-Anorg\CaCl2 (hochrein)</common:shortDescription>
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      </common:other>
    </exchange>
    <exchange dataSetInternalID="26">
      <referenceToFlowDataSet type="flow data set" refObjectId="6c7dfc61-3eac-454f-a5fb-e4712b2cf2e3">
        <common:shortDescription xml:lang="de">C2F6 (hochrein)</common:shortDescription>
        <common:shortDescription xml:lang="en">C2F6 (high purity)</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.0012</meanAmount>
      <resultingAmount>0.0012</resultingAmount>
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      <common:other>
        <ef2018:originatingProcess refObjectId="ae1ad576-fd7e-46b6-acae-00d61baeeffb">
          <common:shortDescription xml:lang="de">Chem-Org\C2F6 (hochrein)</common:shortDescription>
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      </common:other>
    </exchange>
    <exchange dataSetInternalID="27">
      <referenceToFlowDataSet type="flow data set" refObjectId="72d5bb08-bea4-11d3-b42d-0080c8426c9a">
        <common:shortDescription xml:lang="de">Argon</common:shortDescription>
        <common:shortDescription xml:lang="en">argon</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.0387</meanAmount>
      <resultingAmount>0.0387</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="07d594a0-3bd2-444c-bf10-6d247e624169">
          <common:shortDescription xml:lang="de">Xtra-generisch\Argon-DE-2005</common:shortDescription>
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      </common:other>
    </exchange>
    <exchange dataSetInternalID="28">
      <referenceToFlowDataSet type="flow data set" refObjectId="522e3994-f72e-46fb-a7e7-7f5cd39634d0">
        <common:shortDescription xml:lang="de">2-Propanol (hochrein)</common:shortDescription>
        <common:shortDescription xml:lang="en">2-propanol (high purity)</common:shortDescription>
      </referenceToFlowDataSet>
      <exchangeDirection>Input</exchangeDirection>
      <meanAmount>0.119</meanAmount>
      <resultingAmount>0.119</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <common:other>
        <ef2018:originatingProcess refObjectId="e38b305d-0edf-4adc-95c7-d949a704a15c">
          <common:shortDescription xml:lang="de">Chem-Org\2-Propanol (hochrein)</common:shortDescription>
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    </exchange>
    <exchange dataSetInternalID="29">
      <referenceToFlowDataSet type="flow data set" refObjectId="0e0b2479-9043-11d3-b2c8-0080c8941b49">
        <common:shortDescription xml:lang="de">Silizium</common:shortDescription>
        <common:shortDescription xml:lang="en">silicon</common:shortDescription>
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      <exchangeDirection>Output</exchangeDirection>
      <meanAmount>1</meanAmount>
      <resultingAmount>1</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
    </exchange>
    <exchange dataSetInternalID="30">
      <referenceToFlowDataSet type="flow data set" refObjectId="8c42d7a5-1435-11d4-b41c-0080c88d3b6a">
        <common:shortDescription xml:lang="de">Produktionsabfall</common:shortDescription>
        <common:shortDescription xml:lang="en">Produktionsabfall</common:shortDescription>
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      <exchangeDirection>Output</exchangeDirection>
      <meanAmount>0.416</meanAmount>
      <resultingAmount>0.416</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
      <generalComment xml:lang="de">Nicht eindeutig mappbarer Fluß – kontextabhängige Verwendung ist zwingend zu überprüfen: </generalComment>
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    <exchange dataSetInternalID="31">
      <referenceToFlowDataSet type="flow data set" refObjectId="4d9a8790-3ddd-11dd-91dc-0050c2490048">
        <common:shortDescription xml:lang="en">lead</common:shortDescription>
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      <meanAmount>0.00117</meanAmount>
      <resultingAmount>0.00117</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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    <exchange dataSetInternalID="32">
      <referenceToFlowDataSet type="flow data set" refObjectId="08a91e70-3ddc-11dd-93f7-0050c2490048">
        <common:shortDescription xml:lang="en">fluoride</common:shortDescription>
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      <exchangeDirection>Output</exchangeDirection>
      <meanAmount>6.935E-06</meanAmount>
      <resultingAmount>6.935E-06</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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    <exchange dataSetInternalID="33">
      <referenceToFlowDataSet type="flow data set" refObjectId="29066274-6556-11dd-ad8b-0800200c9a66">
        <common:shortDescription xml:lang="en">acid (as H+)</common:shortDescription>
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      <meanAmount>1.1390781836E-05</meanAmount>
      <resultingAmount>1.1390781836E-05</resultingAmount>
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    <exchange dataSetInternalID="34">
      <referenceToFlowDataSet type="flow data set" refObjectId="4d9a8790-3ddd-11dd-9444-0050c2490048">
        <common:shortDescription xml:lang="en">chloride</common:shortDescription>
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      <exchangeDirection>Output</exchangeDirection>
      <meanAmount>0.00039097421816400004</meanAmount>
      <resultingAmount>0.00039097421816400004</resultingAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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  <LCIAResults>
    <LCIAResult>
      <referenceToLCIAMethodDataSet type="LCIA method data set" refObjectId="5e0c0def-8819-41aa-8c65-c41e029231f8">
        <common:shortDescription xml:lang="de">KEA, sonstige</common:shortDescription>
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    <LCIAResult>
      <referenceToLCIAMethodDataSet type="LCIA method data set" refObjectId="0112e78e-eeee-4a4d-8e1a-6c7eead1cfca">
        <common:shortDescription xml:lang="de">KEA, erneuerbar</common:shortDescription>
      </referenceToLCIAMethodDataSet>
      <meanAmount>0</meanAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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    <LCIAResult>
      <referenceToLCIAMethodDataSet type="LCIA method data set" refObjectId="aa4ff649-ff2f-4c5c-8d70-23160ac4d8a1">
        <common:shortDescription xml:lang="de">KEA-nichterneuerbar</common:shortDescription>
      </referenceToLCIAMethodDataSet>
      <meanAmount>0</meanAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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    <LCIAResult>
      <referenceToLCIAMethodDataSet type="LCIA method data set" refObjectId="342c0b66-1f97-4393-8190-f5716c683fa1">
        <common:shortDescription xml:lang="de">KEV, sonstige</common:shortDescription>
      </referenceToLCIAMethodDataSet>
      <meanAmount>0</meanAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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    <LCIAResult>
      <referenceToLCIAMethodDataSet type="LCIA method data set" refObjectId="66ea4732-e5e0-4fc4-91eb-6ff6970bfde7">
        <common:shortDescription xml:lang="de">KEV, erneuerbar</common:shortDescription>
      </referenceToLCIAMethodDataSet>
      <meanAmount>0</meanAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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    <LCIAResult>
      <referenceToLCIAMethodDataSet type="LCIA method data set" refObjectId="d52283fe-1482-11d4-b41c-0080c88d3b6a">
        <common:shortDescription xml:lang="de">KEV-nichterneuerbar</common:shortDescription>
      </referenceToLCIAMethodDataSet>
      <meanAmount>0</meanAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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    <LCIAResult>
      <referenceToLCIAMethodDataSet type="LCIA method data set" refObjectId="b2df61f8-1825-42f8-a163-895a8dcfd9a9">
        <common:shortDescription xml:lang="de">Treibhauseffekt</common:shortDescription>
      </referenceToLCIAMethodDataSet>
      <meanAmount>0</meanAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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    <LCIAResult>
      <referenceToLCIAMethodDataSet type="LCIA method data set" refObjectId="47782e9d-4b4e-4122-ba33-45bcfdaaac60">
        <common:shortDescription xml:lang="de">Versauerung</common:shortDescription>
      </referenceToLCIAMethodDataSet>
      <meanAmount>0.000365</meanAmount>
      <uncertaintyDistributionType>undefined</uncertaintyDistributionType>
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</processDataSet>