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This paper has its primary focus on the analysis of perceptions and willingness-to-pay (WTP) for composted municipal solid and faecal waste among urban and peri-urban farmers and other potential compost users in Ghana. Participatory rural appraisal and contingent valuation methods (CVM) were used for the demand analysis. Most respondents were clear and firm in their responses to the principal question about WTP for compost, as well as in giving their views and perceptions about issues involved in demand for compost. The probit analysis proved valuable in highlighting variables, which explain variations in the WTP. The WTP analysis allowed the quantification of the compost demand under different scenarios of subsidized and non-subsidized compost production, with due allowance for a local reference price to cover compost station operating costs. The analysis revealed that the effective demand for compost for agricultural purposes is marginal and limited by farmers' transport costs. Only through the additional consideration of the demand of the construction sector can about 25% of the organic waste produced in Ghana's capital, Accra, be transformed and utilized. Public subsidies appear necessary and could be generated through savings in transport and disposal. Without subsidies, the challenge for an increased agricultural use is how to produce a low-cost but nutrient-rich compost, which can compete with abundant and cheap poultry manure and still achieve the price to maintain a compost station. The experience in Ghana shows that this is hardly possible except through private-public partnerships.  相似文献   
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Demand for particleboards keeps increasing and as such more trees are fell for its production, engendering deforestation. For the purpose of reducing falling of trees, this study, focused on recycling of waste paper in the development of paperboard as alternative to particleboards used for furniture and interior household applications. Kenaf fiber (KF) was blended at varying proportions of 0, 1, 2, 3, 4, and 5 wt.% with 20 wt.% constant cement and 20 wt.% constant coconut shell powder while the remaining was paper pulp. Board specimen developed were cured for 14, 28, and 90 days and mechanical properties were examined. Results obtained showed that fiber dosage improved bond strength and screw holding strengths as compared with the control mix. Similarly, modulus of rupture was enhanced with KF loading as compared with control mix while 1 to 3 wt.% KF spawned enhancement of modulus of elasticity. However, 4 and 5 wt.% KF led to a reduction in the modulus. Infusion of the fiber enhanced tensile strength from 1 to 3 wt.% content. 14-day and 28-day curing periods were observed to improve properties while the 90-day curing period is detrimental to all properties. Optimization via signal-to-noise ratio revealed an optimum mix of 2 wt.% obtained for fiber and an optimum curing duration of 28 days.

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Environmental Science and Pollution Research - Waste wigs are often disposed off in their volume on landfills, thus constituting a nuisance to the environment. Recycling these wigs in masonry...  相似文献   
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