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UNEP greenhouse gas abatement costing studies. Zimbabwe country study. Phase two

Abstract

The aim was to assess options and cost of reducing emissions of greenhouse gases (with emphasis on carbon dioxide) from human activity in Zimbabwe. A brief description of the country`s economy and energy sector, policy and pricing and regulations is given and substantial data related to the country`s economy, technology, energy consumption, emission and fuel prices are presented. The energy demand in households and for other sectors in Zimbabwe are assessed, and documented in the case of the former. The reference scenarios on energy demand and supply assess greenhouse gas emissions under conditions whereby the present economic growth trends predominate. Energy efficiency improvements are discussed. Abatement technology options are stated as afforestation for carbon sequestration, more efficient coal-fired industrial boilers, extended use of hydroelectricity, prepayment electric meters, minimum tillage, optimization of coal-fired tobacco barns, industrial power factor correction equipment, domestic biogas digesters, solar water heating systems, time switches in electric geysers, optimization of industrial furnaces, photovoltaic water pumps, production of ammonia from coal for fertilizing purposes, and recovery of coke oven gases for use in thermal power generation. (AB)
Authors:
Maya, R S; Nziramasanga, N; [1]  Muguti, E; [2]  Fenhann, J [3] 
  1. Southern Centre for Energy and Environment (Zimbabwe)
  2. Department of Energy, Ministry of Transport and Energy (Zimbabwe)
  3. Risoe National Laboratory. Systems Analysis Department (Denmark)
Publication Date:
Oct 01, 1993
Product Type:
Technical Report
Report Number:
NEI-DK-1421
Reference Number:
SCA: 290301; 290400; PA: DK-94:001060; EDB-94:029230; NTS-94:010252; ERA-19:009216; SN: 94001144692
Resource Relation:
Other Information: PBD: Oct 1993
Subject:
29 ENERGY PLANNING, POLICY AND ECONOMY; ZIMBABWE; AIR POLLUTION ABATEMENT; ECONOMY; POLITICAL ASPECTS; CONSTRAINTS; GREENHOUSE GASES; CARBON DIOXIDE; SUPPLY AND DEMAND; ENERGY ANALYSIS; ENERGY CONSUMPTION; COST; PRICES; STATISTICAL DATA; 290301; 290400; REGIONAL AND GLOBAL ENVIRONMENTAL ASPECTS; ENERGY RESOURCES
OSTI ID:
10122918
Research Organizations:
Risoe National Lab., Roskilde (Denmark). Systems Analysis; Southern Centre for Energy and Environment, Harare (Zimbabwe)
Country of Origin:
Denmark
Language:
English
Other Identifying Numbers:
Other: ON: DE94740163; TRN: DK9401060
Availability:
OSTI; NTIS; INIS
Submitting Site:
DK
Size:
95 p.
Announcement Date:
Jun 30, 2005

Citation Formats

Maya, R S, Nziramasanga, N, Muguti, E, and Fenhann, J. UNEP greenhouse gas abatement costing studies. Zimbabwe country study. Phase two. Denmark: N. p., 1993. Web.
Maya, R S, Nziramasanga, N, Muguti, E, & Fenhann, J. UNEP greenhouse gas abatement costing studies. Zimbabwe country study. Phase two. Denmark.
Maya, R S, Nziramasanga, N, Muguti, E, and Fenhann, J. 1993. "UNEP greenhouse gas abatement costing studies. Zimbabwe country study. Phase two." Denmark.
@misc{etde_10122918,
title = {UNEP greenhouse gas abatement costing studies. Zimbabwe country study. Phase two}
author = {Maya, R S, Nziramasanga, N, Muguti, E, and Fenhann, J}
abstractNote = {The aim was to assess options and cost of reducing emissions of greenhouse gases (with emphasis on carbon dioxide) from human activity in Zimbabwe. A brief description of the country`s economy and energy sector, policy and pricing and regulations is given and substantial data related to the country`s economy, technology, energy consumption, emission and fuel prices are presented. The energy demand in households and for other sectors in Zimbabwe are assessed, and documented in the case of the former. The reference scenarios on energy demand and supply assess greenhouse gas emissions under conditions whereby the present economic growth trends predominate. Energy efficiency improvements are discussed. Abatement technology options are stated as afforestation for carbon sequestration, more efficient coal-fired industrial boilers, extended use of hydroelectricity, prepayment electric meters, minimum tillage, optimization of coal-fired tobacco barns, industrial power factor correction equipment, domestic biogas digesters, solar water heating systems, time switches in electric geysers, optimization of industrial furnaces, photovoltaic water pumps, production of ammonia from coal for fertilizing purposes, and recovery of coke oven gases for use in thermal power generation. (AB)}
place = {Denmark}
year = {1993}
month = {Oct}
}