Welcome to GarPPS at Blog.com.

As our world struggles with the competing demands of waste disposal, energy production and environmental protection for a limiting space and growing population, sustainable ways of garbage control and processes to transform waste into value added materials and fuel for power generation is being highly adapted for human hygiene, renewable and alternative energy sources and profitable livelihood.

GarPPS Schematic

Around this technology, various ways and designs of waste to power systems had been developed and had been established and adapted, such as Anaerobic Digestion- Fermentation, Slurrying, Gasification, Pyrolysis, Devolitization, Plasma Thermal Destruction and the non-incineration Vantage Waste Processing. This renewable energy technology reduces wastes about 95% and turn residues into value added recyclable and reusable materials like woods, papers,  metals and tin sheets, plastic and glass elements for building materials such as light hollow blocks, wall, roof, ceiling sheets and other construction aggregates, ash and dry organic residues into fertilizers, while deriving from solid waste aftermath, fuel briquettes and synthetic gas and from organic waste, methane and ethanol and other gas emissions into fuel for producing electricity.

These systems utilized the latest technology that replaces existing sewage treatment plant, minimizes garbage transfer stations and gate fees for waste collection, eliminating dumpsites, efficiently producing electricity, creating renewable energy sources, promote 3R’s-recyle, reuse and reduce- turn waste into value added products and is highly qualified to earn carbon credits as a Clean Development Mechanism (CDM) project .

RESUSTAINING OUR PLANET by Engr. June A. Yasol

Waste To Energy Technology Overview

We can combine all these WTE technologies and design which is best suited for your requirements in partnership with proprietary technology providers and incorporate qualified local equipment fabricators to minimize cost. So, let’s move the time for Waste To Energy is NOW!

Consult with us on your Waste to Energy projects:

Clean and Power Your City

Engr. June A. Yasol
Alternative Energy Consultant
Paranaque City, Philippines
juneayasol@yahoo.com
+639208371042

With Waste to Energy:
960px-Ortigas_Center_Skyline_panoramicOrtigas Skyline

A city that churns more than 500 tons of garbage a day can produce a 13 Megawatt of Electricity and Heat with the modern ways of processing waste into value-added products, renewable fuel and carbon credits.

Introducing, the latest in Waste to Energy processing, the VANTAGE WASTE PROCESS by RECLAIM RESOURCES LTD. (RRL), UK,  a non- incineration steam treatment and no pre-separation required waste processing for clean recyclable residues, fertilizer- making, heat and electricity generation for plant operation and grid supply and clean fuel (Ethanol) production plant.

RRL VWP

Non-incineration Waste to Energy process

RECLAIM RESOURCES LTD.  “Vantage”  Waste Process – See how it works!

Consult with us for you Pre-Feasibility Studies: jay@juneayasol.com

Clean and Power the City

ENGR. JUNE A. YASOL

RRL Authorized Representative

JAY Alternative and Renewable Energy Consultancy

+63-920-8371042

The Garbage Power Plant System’s (GarPPS) Waste to Energy (WtE) propositions offers three phases of Waste to Energy project feasibility, development and implementation,  based on our partnership and representation with Marklink Ltd.,  and the recommended technology of Reclaim Resources Ltd., of UK such as the following, to wit:

PROJECT INITIAL SCOPE OF WORK:

1) Waste Resource Assessment and Project Site Location and Identification.

2) Power Supply and Load Capacity Evaluation, Site Requirements, Utilities and Facilities Verifications

3) Pre-feasibility Study for Technical, Socio-Economic and Financial Analyses

4) Project Site Survey, Planning and Estimate for Permitting.

5) Final Feasibility Study for Local Equity Funding, Development Assistance Loan Application, Clean Development Mechanism Project Design Document (DCDM PDD) preparation and application for potential Build Operate Transfer scheme.

PROJECT PHASES

Phase I- Waste to Energy Preliminary Screening – Includes no. 1) Scope of Work and depending on the specific type of study, location, amount of time require, and any additional requirements that may be added and to be borne by the client, Phase I Fee is negotiable.  This  preliminary screening averages 30 to 60 days to complete and may include a coordination meeting with all Stakeholders and visual presentation of the project or a site visit to be borne by client to an affiliated WTE Plant abroad.

Phase II- Waste to Energy Pre-Feasibility Study, Review and Analyses – Includes no. 2) and 3) Scope of Work and depending on the type, location, amount of time it require, and any additional requirements that may be included and borne by the client. Phase II Fee is negotiable. This study requires 90 to 120 days, on average, to complete. Final result is usually a basis for a    Pre-Feasibility Report of the WTE project for client evaluation and confirmation.

Phase III- Waste to Energy Detailed Concept, Engineering Design and Planning – Scope of Work no.4, is where actual Waste to Energy project is conceived, conferred, designed and engineered. Final result is usually ready for a WTE client to apply for permit and submit Final Feasibility Report  for Funding, Development Assistance Loan Application and CDM PPD  application. This amounts to 510% of the overall cost of the actual project for implementation with negotiable downpayment.

The Feasibility Studies, Reviews and Analyses will be led by GARPPS Designer with our partners- Engineers that will be contracted on our Consultancy, prospective local fabrication Contractors and the Technology Provider Affiliate Organization. They are each recognized leaders in the renewable energy industry.  Our goal is to to help  determine whether  the GARPPS WTE Project is viable, identify the merits of  the proposed renewable energy project, identify weak points, provide the type of suggestive course of action, as well as  recommendations for waste resource assessment and processing, equipment supply and services, site and technology selection that the project needs for further review, evaluation and approval, then implementation.

Consult with us for your Waste to Energy Feasibility Studies:

Clean and Power the City

Engr. June A. Yasol
Alternative Energy Consultant
Paranaque City, Ph.
+639208371042
6327877030